WO2019153713A1 - 食物处理机 - Google Patents

食物处理机 Download PDF

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Publication number
WO2019153713A1
WO2019153713A1 PCT/CN2018/102328 CN2018102328W WO2019153713A1 WO 2019153713 A1 WO2019153713 A1 WO 2019153713A1 CN 2018102328 W CN2018102328 W CN 2018102328W WO 2019153713 A1 WO2019153713 A1 WO 2019153713A1
Authority
WO
WIPO (PCT)
Prior art keywords
cup
slag
food
hole
feeding
Prior art date
Application number
PCT/CN2018/102328
Other languages
English (en)
French (fr)
Inventor
孙毅
梅若愚
邓原胜
张永刚
何柏锋
刘小凯
周亚
曹珊珊
Original Assignee
广东美的生活电器制造有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201820206536.2U external-priority patent/CN208425880U/zh
Priority claimed from CN201820207014.4U external-priority patent/CN208582180U/zh
Priority claimed from CN201820207013.XU external-priority patent/CN208371479U/zh
Priority claimed from CN201810119037.4A external-priority patent/CN110115475A/zh
Priority claimed from CN201810119389.XA external-priority patent/CN110115477B/zh
Priority claimed from CN201810119036.XA external-priority patent/CN110115474B/zh
Priority claimed from CN201810119391.7A external-priority patent/CN110115478B/zh
Priority claimed from CN201820207650.7U external-priority patent/CN208551046U/zh
Priority claimed from CN201820207651.1U external-priority patent/CN208551047U/zh
Priority claimed from CN201810118965.9A external-priority patent/CN110115531A/zh
Priority claimed from CN201810119388.5A external-priority patent/CN110115476B/zh
Priority claimed from CN201820207649.4U external-priority patent/CN208425996U/zh
Priority claimed from CN201820685998.7U external-priority patent/CN208905521U/zh
Priority claimed from CN201820686836.5U external-priority patent/CN208692898U/zh
Priority claimed from CN201810439192.4A external-priority patent/CN110464191B/zh
Priority claimed from CN201810438278.5A external-priority patent/CN110464190A/zh
Priority claimed from CN201810438371.6A external-priority patent/CN110464224B/zh
Priority claimed from CN201820685982.6U external-priority patent/CN208709296U/zh
Application filed by 广东美的生活电器制造有限公司 filed Critical 广东美的生活电器制造有限公司
Priority to KR1020207022569A priority Critical patent/KR102433760B1/ko
Priority to JP2020542233A priority patent/JP7018515B2/ja
Priority to US16/967,415 priority patent/US11786065B2/en
Priority to EP18905424.0A priority patent/EP3733025B1/en
Publication of WO2019153713A1 publication Critical patent/WO2019153713A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J19/00Household machines for straining foodstuffs; Household implements for mashing or straining foodstuffs
    • A47J19/02Citrus fruit squeezers; Other fruit juice extracting devices
    • A47J19/023Citrus fruit squeezers; Other fruit juice extracting devices including a pressing cone or reamer
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J19/00Household machines for straining foodstuffs; Household implements for mashing or straining foodstuffs
    • A47J19/02Citrus fruit squeezers; Other fruit juice extracting devices
    • A47J19/025Citrus fruit squeezers; Other fruit juice extracting devices including a pressing screw
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J19/00Household machines for straining foodstuffs; Household implements for mashing or straining foodstuffs
    • A47J19/06Juice presses for vegetables
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B9/00Presses specially adapted for particular purposes
    • B30B9/02Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material
    • B30B9/12Presses specially adapted for particular purposes for squeezing-out liquid from liquid-containing material, e.g. juice from fruits, oil from oil-containing material using pressing worms or screws co-operating with a permeable casing

Definitions

  • the application number is 201820207014.4
  • the utility model name is “Food Processing Cup and Food Processor”. It was submitted to the Chinese Patent Office on February 6, 2018, and the application number is 2011010119037.4.
  • the invention name is “Auxiliary feeding device, food processing cup assembly and food processor” was submitted to the Chinese Patent Office on February 06, 2018, and the application number was 201102207013.X
  • the utility model name is “auxiliary feeding device, food processing cup assembly and food processor”, submitted to the Chinese Patent Office on February 6, 2018, application number 201810119036X, and the invention name is “food processor”, in 2018 Submitted to the China Patent Office on June 06, the application number is 201820206536.2, the utility model name is “food processor”, submitted to the Chinese Patent Office on February 06, 2018, the application number is 201810119391.7, and the invention name is “feeding device, food processing”.
  • the present invention relates to the field of household appliances, and more particularly to a food processor.
  • the juice machine or the slow juicer product adopts a method to try to slow down the oxidation problem after pressing and extracting fruits and vegetables, the pressing effect under normal pressure is not significant.
  • the present invention aims to solve at least one of the technical problems existing in the prior art.
  • a first aspect of the present invention provides a food processor comprising: a base assembly; a food processing cup mountable on the base assembly, including a cup body and rotatably mounted in the cup body Working screw, the cup can be used for accommodating food juice, wherein the cup body is provided with a first slag opening or the cup body is provided with a second slag opening; the feeding assembly is sealed and installed at the a cup mouth end of the cup body; a slag assembly sealed to the first slag outlet for collecting food slag, or the slag assembly is located in the cup body, and the second slag outlet a connection for collecting food slag; forming a mutually-conducting sealed cavity between the cup body, the feed assembly and the slag assembly; and a pumping assembly capable of communicating with the sealed chamber for The air in the sealed chamber is drawn out.
  • a food processor includes a base assembly, a food processing cup, a feeding assembly, a slag assembly, and a suction assembly.
  • the base assembly is used to power the entire product, control the work of the entire product, and support the installation of the food processing cup, the feeding assembly and the slag assembly.
  • the food processing cup is used to pulverize the food material by the cooperation of the cup body and the working screw, and to separate the juice residue of the food material.
  • the feeding component is used for feeding the foodstuff, that is, for feeding the foodstuff into the food processing cup
  • the suction component is used for pumping the entire feeding component, the suction component and the sealing cavity formed by the slag assembly. To achieve the purpose of vacuuming.
  • the air suction component can be activated to extract the air in the product, so that the cup body can be substantially vacuumed, and then the working screw can be started to process the food material, thereby achieving the vacuum state.
  • the treatment of the ingredients can further alleviate the oxidation of the processed food to prevent the loss of nutrients in the food and ensure the color and taste of the food juice.
  • the structure of the cup body can be reasonably set, so that the cup body can be used to collect the food juice, so that the juice structure is not required to be additionally provided, so that the structure of the cup body can be simplified and the cost of the product can be reduced.
  • the device is disposed in the whole process of food processing of the product, and the food juice can be first stored in the cup body, that is, the food juice is discharged without having to squeeze the juice, so that it is not required during the whole food processing process.
  • the juice is opened out of the juice outlet, so that the outside air cannot enter the cup through the juice outlet during the whole food processing process, thereby improving the sealing performance of the cup body, so as to maintain the cup body at all times.
  • Internal vacuum condition can utilize the ready-made cup for the collection of the food juice compared to the solution of additionally sealing the juice cup on the cup body, thereby improving the utilization of the cup body, and It can simplify the structure of the product and reduce the processing cost of the product.
  • the cup body is used for the collection of the food juice.
  • the oxygen content in the sealed cavity is low, which can better ensure the preservation effect of the food juice. It is only necessary to export the food juice when drinking, to ensure that the drinker can drink the freshest food juice.
  • the slag assembly can be installed integrally with the food processing cup or directly disposed in the cup body 22, so that it is not necessary to open the slag opening during the whole food processing process, that is, It can always seal the slag outlet during the slagging process of the product.
  • the slag opening is always open during the whole product juice extraction, so that the oxygen of the product can always enter the sealed cavity through the slag outlet. , which in turn causes oxidation of the food juice.
  • the slag device installed in the first slag outlet is directly installed or the slag slag device is directly disposed in the cup body, so that the product does not need to be sealed when the product is working, and the food slag can be realized.
  • the collection that is, the application can make the slag outlet always sealed during the working process of the product, so that the outside air can not enter the sealing cavity during the working process of the product, and then the pressing treatment of the food material can be realized under vacuum condition. And the collection of the food juice under vacuum, so that the oxidation of the food juice can be significantly slowed down, and the taste of the food after the extraction is ensured.
  • the cross-sectional area of the working screw is increased from one end of the working screw near the cup opening of the cup body to the other end of the working screw, preferably gradually increasing, so that the gap between the cup body and the working screw can be
  • the opening of the cup body gradually decreases to the bottom of the food processing cup, so that the pressing force of the foodstuff can be sequentially increased, so that the more the food material is crushed and crushed, the juice yield can be increased.
  • the slag-removing device is configured to collect the food slag after the juice residue of the food material is separated.
  • the slag assembly can be installed in the cup or outside the cup.
  • the slag removing device By arranging the slag removing device in the cup body, the slag removing device can be hidden and installed in the cup body, so that the slag removing device can be installed in the cup body without being abruptly installed, thereby improving the appearance of the product, and further, installing the slag removing device in the cup body It only takes up a part of the space, and other spaces in the cup can be reasonably utilized, thus improving space utilization.
  • the slag assembly is installed in the cup body, so that the connection structure between the slag assembly and the cup body can be omitted, and the structure of the cup body and the slag assembly device can be further simplified.
  • the slag assembly in the cup body, it is not necessary to additionally provide a slag opening on the cup body, thereby improving the sealing performance of the cup body, and thus when the food processor is set as a vacuum food processor, It can effectively improve the sealing performance of the food processor, and significantly alleviate the oxidation problem of the foodstuff during juice extraction and after juice extraction.
  • a first slag opening may be disposed on the cup body, and the slag removing device is installed outside the cup body and is electrically connected to the cup body through the first slag opening.
  • the food processor provided according to the above embodiment of the present invention has the following additional technical features:
  • the base assembly includes: a driving device connected to the working screw for driving the working screw to rotate; and a control device connected to the driving device and the air suction assembly, Controlling the pumping assembly to pump or control the operation of the driving device, and/or for controlling the pumping assembly to pump air, and controlling the driving device after the pumping assembly is exhausted start working.
  • the working screw can be driven by a driving device to pulverize, squeeze, etc. the foodstuff, and the control device is used to control the operation of the driving device and the pumping assembly.
  • the control device can separately control the driving device or the pumping assembly to perform separate work, or can control the pumping component to work for a period of time first, so that the pumping operation can be completed first, and then the driving device is started to work for food. deal with.
  • the method of food treatment after the first pumping can be carried out after the pumping is completed, so that all the ingredients are processed under vacuum, so that all the ingredients are not easily oxidized, so that Significantly alleviate food oxidation.
  • the food processor further includes a reservation device coupled to the control device for causing the control device to control the driving device and the pumping assembly after a preset time work.
  • a reservation device can be set on the product, so that the reservation function of the product can be realized by the reservation device, thereby reducing the waiting time of the user.
  • the reservation device includes a collection device for collecting users.
  • the reservation parameter, the timing device is used for timing according to the reservation parameter, and after the timing is completed, the control device starts working.
  • the cup body is provided with a juice outlet
  • the sealing lid of the juice outlet is provided with a juice cover
  • the juice cover is used for opening or closing the juice outlet
  • a first seal is further disposed between the juice outlet and the juice cover, and the first seal is configured to sealingly connect the juice cover to the juice outlet.
  • a juice outlet may be disposed on the cup body, and a first sealing member and a juice outlet cover are disposed at the juice outlet, wherein the first sealing member and the juice discharging cover are used to achieve the pair during the working process of the product.
  • the seal of the juice outlet After the food processing is completed, when the user wants to use the food juice, the juice outlet can be opened through the juice cover so that the food juice can be taken through the juice outlet, and after the user takes out the desired food juice, the juice can be discharged.
  • the lid closes the juice outlet to continue to store the remaining food juice in the cup, thereby alleviating the oxidation of the remaining food juice.
  • the juice outlet may not be provided, and after the food processing is finished, the food juice is poured directly through the cup mouth of the cup body.
  • the cup body is provided with a juice outlet
  • the juice outlet is provided with a valve for controlling opening or closing of the juice outlet.
  • a valve can also be provided at the juice outlet, so that the opening and closing of the juice outlet can be realized through the valve.
  • a valve similar to a faucet can be provided at the outlet of the juice, so that the opening and stopping of the juice outlet can be realized like the operation of the faucet, thereby making the taking of the food juice more convenient and convenient.
  • the feeding assembly comprises: a feeding cylinder, one end of the feeding cylinder is sealingly mounted to the cup end of the cup; the feeding cover, the sealing cover is mounted in the The other end of the feed cylinder is for opening or closing the feed cylinder; an auxiliary feeding device can be installed in the feed cylinder for auxiliary feeding, such as the auxiliary feeding device being rotatably mounted In the feed cylinder.
  • the feed barrel is for feeding and the feed cover is for sealing the opening of the feed barrel, wherein preferably, a third seal can be placed between the feed barrel and the feed cover
  • a third seal can be placed between the feed barrel and the feed cover
  • the seal between the feed barrel and the feed cover can be achieved by a third seal.
  • a rotatably auxiliary feed device is provided in the feed cylinder so that the auxiliary feed can be realized by the rotation of the auxiliary feed device so as to be able to control the feed speed and prevent food clogging.
  • the pre-cutting of the food material can be achieved by the auxiliary feeding device, or the feeding of the food material previously stored in the feeding cylinder into the cup body can be performed by the auxiliary feeding device.
  • the food processor further includes: a cover body, the cover is installed outside the feed tube, and one end of the cover body is closed at one end, and one end of the cover body is installed at a fourth sealing member disposed at a joint of the cover body and the cup body, and sealingly connecting the cover body and the cup body; the outer side of the cup body A support structure is disposed on the wall, and one end of the cover opening is sealingly mounted on the support structure.
  • the cover body is disposed outside the feed cylinder and is sealingly mounted to the cup body, so that the feed cylinder can be sealedly disposed in the cover body, and the device is arranged to seal the entire product.
  • the cup and the cover can form a tightly sealed closed space, so that the opening of the upper end of the feeding tube does not need to be sealed during vacuum juicing.
  • the joint between the feeding cylinder and the cup body is not required to be sealed, thereby reducing the need for sealing, reducing the sealing difficulty and improving the sealing effect, thereby being more remarkable.
  • the structure is only provided with an additional cover on the conventional food processor, so that the structure of the conventional food processor can be retained to reduce the manufacturing difficulty and improve the production efficiency of the product, and when vacuum juicing is not required,
  • the structure is removed and the method of use is basically the same as that of the conventional juice machine, so that the food processor can perform vacuum juice extraction and ordinary juice extraction.
  • a support structure can be provided on the side wall of the cup so that the cover body can be covered by the cover body and sealed to the support structure on the side wall of the cup body.
  • the cover body is sealed and mounted to the support structure, so that the end surface of the upper end of the cup body can be reserved for the installation of the feed cylinder, so that the feed cylinder and the cover body can be fixedly mounted on different parts of the cup body respectively. Therefore, it is possible to prevent interference between the feeding cylinder and the cover body, thereby making the overall structural layout of the product more rational and compact.
  • a gap is provided between a top wall of the cover body and an end surface of the feeding cylinder away from an end of the cup body; and/or a side wall of the cover body and A gap is disposed between the side walls of the feed cylinder.
  • a gap is provided between the top wall of the cover body and the end surface of the feeding cylinder away from the end of the cup body, and/or a gap is provided between the side wall of the cover body and the side wall of the feeding cylinder.
  • the top and the side walls of the cover body can be prevented from directly contacting the feeding cylinder, so that the displacement of the feeding cylinder due to the unbalanced force during pressing is not easily transmitted to the cover body, thereby not affecting
  • the integral sealing of the product to the cover allows the cover to be reliably sealed to the cup at all times.
  • the outer side wall surface of the cup body comprises a plurality of first planes disposed along an axial direction of the cup body, and the plurality of the first planes are along a circumference of the cup body The directions are spaced apart from each other; wherein two adjacent first planes are connected by a first curved surface.
  • the outer side wall surface of the cup body includes a plurality of first planes disposed along the axial direction of the cup body, so that the cup body can be formed substantially in a polygonal shape, so that the cup body is closer to a square shape and adjacent to each other.
  • the connection of the two first planes by the first curved surface enables a smoother transition of the side walls of the cup.
  • the cup is closer to a square shape.
  • the square cup can make the positioning between the cup and the feed barrel and the cover easier and more convenient because of the round or cone.
  • the shape is a symmetrical structure, so that the positioning direction of the cup cannot be quickly recognized during installation, and the user needs to carefully distinguish the direction of the positioning, and the square cup can be used as a reference by the length and the width, so that It is quicker and easier to locate the orientation, which in turn makes the positioning between the cup and the feed barrel and the cover easier and more intuitive, making the product more convenient to use.
  • the top wall of the cover body is curved; and/or the outer surface of the top wall of the cover body is provided with a rounded corner; and/or the cover
  • the side wall of the body comprises two second curved faces which are oppositely disposed and evenly distributed along the circumferential direction of the cover body, and the four second curved faces are spaced apart from each other, and the two adjacent ones are adjacent to each other.
  • the second curved surface is connected by a third curved surface.
  • the top wall of the cover body may be flat or curved, and preferably has a curved surface design, because the arrangement can effectively avoid deformation of the cover body due to internal negative pressure, specifically,
  • the outer wall can resist the extrusion, and the inner wall resists the stretching, so that the deformation of the cover can be reduced during the operation of the product, and the force applied to the cover by the vacuum negative pressure can be reduced.
  • the side wall of the cover body may be arranged in an arc shape.
  • the front, back, left and right sides of the cover body may be arranged as a second curved surface, and four thirds are arranged on the four corners of the front, rear, left and right.
  • the curved surface can improve the pressure resistance of the side wall of the cover body and improve the strength of the side wall of the cover body.
  • rounding is provided on the edge of the outer surface of the top wall of the cover, so that the structure of the cover can be made smoother, so that the overall strength of the cover can be further improved.
  • the top wall of the cover body is planar, and the side wall of the cover body comprises a plurality of second planes spaced apart along a circumferential direction of the cover body, wherein Two adjacent second planes are connected by a fourth curved surface, and the fourth curved surface is a circular arc surface centered on the center of the top wall of the cover.
  • the top of the cover can also be arranged in a plane, so that when the cover is made transparent, the light can be ensured to be incident and reflected in parallel, thereby avoiding the image when the user views through the cover. Distortion distortion, which in turn ensures the user's viewing experience.
  • several side walls of the cover can also be arranged substantially in a plane to ensure that the sample light can be incident and reflected in parallel from the side wall, thereby preventing distortion of the image when the user views through the cover.
  • the curved surface enables a smoother connection between the respective planar side walls of the cover body, so that the structure of the cover body can be made smoother, and the curved surface on the side wall is centered on the center of the top wall of the cover body.
  • the arc can further ensure that the image integrity will not be deformed when the internal juicing process is observed through the top of the shell.
  • the side wall of the cover body may preferably be provided in an arc shape or an arc-shaped structure, so that the structure of the cover body can be made smoother, and thus the strength and deformation resistance of the cover body can be improved.
  • the cover body has the same wall thickness at each position; and/or the cover body is a transparent cover; and/or the cover body has a wall thickness of 2 mm or more and less than or equal to 4 mm; and/or the cover body is an axisymmetric structure; and/or an end surface of one end of the cover body opening has an arc shape or a circular arc shape.
  • the wall thickness of the cover body at each position is equal, so that the force of the cover body is uniform everywhere, so that the force can be evenly distributed, and the occurrence of the weak portion of the force is prevented, and at the same time, the cover
  • the equal wall thickness of the body at various locations also makes the structure of the cover simpler, so that the cover can be processed better.
  • the cover is preferably a transparent cover.
  • a transparent material such as transparent polycarbonate or plexiglass may be used to process the cover, so that the user can see the inside of the cover through the cover when the product is in operation. , thus enhancing the user experience.
  • the wall thickness of the cover is greater than or equal to 2 mm and less than or equal to 4 mm, so that the thickness of the cover is not too thick or too thin.
  • the axially symmetrical structure of the cover can further simplify the structure of the cover, thereby further increasing the strength of the cover.
  • the end surface of one end of the opening of the cover body has an arc shape or a circular arc shape, so that the end surface of one end of the opening of the cover body is relatively smooth, so that when the cover body is sealed on the end face, the cover body and the first seal member are better fitted. This ensures a sealing effect and prevents the cover from piercing the seal.
  • the auxiliary feeding device is drivingly coupled to the working screw and is rotatable by the working screw.
  • the auxiliary feeding device can be drivingly connected to the working screw, so that the auxiliary feeding device can be driven by the working screw, so that the mechanism for driving the auxiliary feeding device can be omitted, thereby simplifying the product.
  • the structure reduces the cost of the product.
  • the auxiliary feeding device can also not be connected to the working screw. In this case, an additional driving member can be provided to drive the auxiliary feeding device.
  • the feeding cylinder is provided with a mounting plate and a feeding port
  • the mounting plate is mounted to an inner side wall of the feeding cylinder
  • the mounting plate is provided with a first a mounting hole
  • one end of the auxiliary feeding device is located at a side of the mounting plate away from the cup body
  • the working screw is located at a side of the mounting plate adjacent to the cup body
  • the other end of the auxiliary feeding device Inserted into the first mounting hole, drivingly connected with the working screw
  • a mounting plate can be provided in the feed cylinder so that on the one hand a support installation of the auxiliary feed device can be achieved by means of the mounting plate.
  • a part of the ingredients can be stored through the mounting plate.
  • the mounting plate can also be used with the auxiliary feeding device to cut the ingredients so that the ingredients can be processed into small pieces in advance.
  • the auxiliary feeding device can drive the food together to move during the rotation, and when the processed food is large, the food material will partially enter the feeding port, and the auxiliary feeding device will continue.
  • a cutting edge can be provided on the auxiliary feeding device so that the cutting of the food material can be achieved by the cutting edge.
  • the feed port can be directly disposed on the mounting plate, or can be enclosed by the mounting plate and the side wall of the feeding cylinder.
  • the auxiliary feeding device comprises a first auxiliary feeding device, the first auxiliary feeding device comprising: a first material feeding member rotatably mounted on the mounting plate a side away from the cup; a first transmission shaft, one end of the first transmission shaft is drivingly connected to the working screw, and the other end of the first transmission shaft is inserted into and through the first mounting hole and The first material member drives the connection.
  • a first plucking member such as a plucking paddle, a lever, and the like can be disposed above the mounting plate, and driven to the working screw through the first transmission shaft, so that when the working screw rotates , the first material member can be rotated, so that the food material placed in the feeding cylinder can enter the cup body from the feeding port under the movement of the first material feeding member, and the processed food material is larger.
  • the first material will continue to rotate, so that the food can be squeezed between the first material and the edge of the feed port, so that A squeezing force is applied to the ingredients so that the ingredients can be squeezed into small pieces to achieve a preliminary treatment of the ingredients.
  • a cutting edge may be provided on the first material member to enable cutting of the food material by the cutting edge.
  • the cutting and the like of the food material can be processed, and the feeding speed of the food material can be improved, the clogging of the feeding tube can be prevented, and the processing efficiency of the food material can be improved.
  • the first material member is provided with a first through hole
  • the first transmission shaft is inserted into the first mounting hole from the one end of the working screw.
  • the first through hole, the first auxiliary feeding device further includes: a cover mounted on an end of the first transmission shaft protruding from the first through hole.
  • the first material member can be installed through the first through hole on the end of the first transmission shaft extending from the first mounting hole, and is passed through the first material, so that The installation reliability between the first material member and the first transmission shaft can be improved.
  • the cover By providing the cover, the upper end of the first transmission shaft can be restrained on the upper side of the first material, so that the first transmission shaft can be prevented from sliding down from the first through hole, thereby further improving the first material. Connection reliability with the first drive shaft.
  • the first transmission shaft is provided with at least one driving protrusion, and the driving protrusion is engageable with the working screw to rotate under the driving of the working screw.
  • one or more first driving protrusions may be disposed on the lower end surface of the first transmission shaft so as to be engaged with the side of the upper end of the working screw through the first driving protrusion to achieve and work.
  • the drive connection between the screws, of course, the first drive shaft can also be connected to the working screw by other structures.
  • the first material member and the first transmission shaft are of a split structure, or the first material member and the first transmission shaft are of a unitary structure.
  • the first material member and the first transmission shaft may be a split structure, such as two parts, so that each of the first material member and the first transmission shaft can be separately operated. Repair and replace separately.
  • the first material part and the first transmission shaft may also be a unitary structure, so that the connection strength between the first material part and the first transmission shaft can be improved, so that the first material part can be improved.
  • the first transmission shaft is not easily damaged, and the seamless connection between the first material member and the first transmission shaft can be realized, thereby preventing a gap from being formed between the first material member and the first transmission shaft, thereby facilitating cleaning. .
  • the first material member is symmetrically mounted on the first transmission shaft. This arrangement makes the structure of the product more reasonable and compact, and also makes the structure of the product simpler.
  • the feed port is surrounded by the mounting plate and the side wall of the feed cylinder, the number of the feed ports is two, and the two feeds Both the port and the mounting plate are symmetrical about the axis of the feed barrel.
  • the feed port is preferably surrounded by the mounting plate and the side wall of the feed cylinder, which simplifies the structure of the mounting plate and thereby reduces the cost.
  • the number of feed ports is preferably two, which makes each feed port larger, thus facilitating the product to process some large pieces of food.
  • the two inlets and the mounting plates are all symmetrical about the axis of the feed cylinder so that the mounting portion can be mounted just to the center of the working screw, thereby also making the interior of the feed cylinder more rational and compact.
  • the mounting plate is composed of a circular plate and two sector plates symmetrically disposed on two sides of the circular plate, wherein the first mounting hole is disposed in a middle portion of the circular plate.
  • the feed cylinder is in a straight cylindrical shape.
  • the feed cylinder is preferably of a straight cylinder shape, that is, the feed cylinder is not bent, so that the food material can flow smoothly from top to bottom.
  • the feed cylinder can also be bent.
  • both the inner side wall and the outer side wall of the feed barrel are vertically disposed.
  • the first material member is a material bar or a material.
  • the shape of the first material member can be arbitrarily set, but is preferably a pick rod or a material.
  • the first transmission shaft is provided with one of a first positioning groove and a first positioning protrusion
  • the working screw is provided with a first positioning groove and the first Another one of the positioning protrusions, the first positioning protrusion can be inserted into the first positioning groove to position the working screw; wherein the first positioning groove is provided with a first Wear parts.
  • a first positioning protrusion or a first positioning groove or a positioning hole may be disposed on the upper end surface of the working screw, and a first positioning protrusion or a corresponding positioning protrusion is disposed on the lower end of the first transmission shaft or a first positioning groove or a positioning hole, so that the positioning of the working screw can be realized by the cooperation of the first positioning protrusion and the positioning hole or the first positioning protrusion and the positioning shaft, thereby improving the stability of the working screw after installation, Reduce the sway of the working screw.
  • the first wear-resistant member in the first positioning groove the wear between the first positioning projection and the first positioning groove can be reduced.
  • the mounting plate is disposed on one side of the cup body with a hollow column having an open end, the hollow column is electrically connected to the feeding port; One end extends from the bottom of the feed cylinder into the hollow column and is capable of cooperating with a side wall of the hollow column to pulverize the food material; wherein the hollow column is away from the end of the mounting plate and the The side walls of the feed barrel are connected, or the end of the hollow column away from the mounting plate is suspended.
  • a hollow column that can be electrically connected to the feed port can be disposed under the mounting plate, and the hollow column is sleeved and installed on the upper end of the working screw, so that the food material enters from the inlet to the installation. After the bottom of the plate, it can be squeezed or cut by the side wall of the hollow column and the working screw, that is, the food can be pulverized before the food enters the cup, thereby improving The effect of the product on the ingredients to improve the juice yield.
  • the effective inner diameter of the lower end of the feeding cylinder can be reduced, and the passage formed between the working screw and the side wall of the lower end of the feeding cylinder can be made smaller, so that the processing strength of the food material can be increased.
  • one end of the hollow column away from the mounting plate is preferably connected to the side wall of the feeding cylinder, so that the hollow column can further support the mounting plate, so that the strength of the mounting plate can be improved, and in another technical solution, the hollow column is far away
  • One end of the mounting plate can also be suspended, that is, not connected to the side wall of the feeding cylinder.
  • the hollow column is tapered.
  • the upper end of the screw and the like generally increases from top to bottom, so that the hollow column is correspondingly tapered so that the hollow column can be matched with the upper end of the working screw, so that the working screw can better cooperate with the hollow column.
  • the mounting plate is detachably mounted to an inner side wall of the feed cylinder, or the mounting plate and the inner side wall of the feed cylinder are of a unitary structure.
  • the mounting plate is detachably mounted in the feeding cylinder, so that the storage tray can be disassembled for cleaning the cup body and the storage table, and the setting device can be used for the mounting plate and the feeding member. It is installed as a whole for installation, maintenance and sales.
  • the inner side walls of the mounting plate and the feeding cylinder are also of a one-piece structure, that is, the mounting plate can also be directly processed on the feeding, which can enhance the connection strength between the mounting plate and the feeding cylinder.
  • the feed cylinder is detachably sealably mounted to the cup end of the cup, or the feed barrel and the cup are of a unitary structure.
  • the feeding cylinder and the cup body are integrated, so that the feeding and processing of the food material can be realized by a large cup, and the arrangement does not need to additionally provide a feeding material on the cup body.
  • the structure of the cartridge or the like which in turn can simplify the number of parts of the product, and in addition, the structure has only one cup, so that only the opening of the cup is open, so that only the sealing of the cup is required It is sufficient to seal the opening of the cup body.
  • the connection between the cup body and the feeding cylinder and the opening of the cup body need to be sealed, so at least two places need to be sealed, so that the structure is relative to the prior art. It also reduces the difficulty of sealing the product.
  • the feeding cylinder and the cup body can be detachably connected, so that the material can be pulverized by the cup body and the juice residue of the food material can be separated, and the feeding material can be added to the cup body through the feeding cylinder, so that the feeding and processing of the food material are made. It can be divided into two cups, so that the height of each cup can be reduced to make the product better processed and cleaned.
  • the working screw is provided with a first transmission structure
  • the auxiliary feeding device comprises a second auxiliary feeding device
  • the second auxiliary feeding device comprises: a storage platform Installed in the feeding cylinder, the storage platform is provided with a feeding passage; a second material feeding member is rotatably installed in the feeding cylinder, and the storage tray is located away from the working a second transmission member is disposed on one side of the screw, and the second transmission structure is configured to cooperate with the first transmission structure to drive the working screw and the second material connection.
  • the storage platform is installed in the feeding cylinder for storing the foodstuff
  • the second dispensing member is rotatably mounted in the feeding cylinder, above the storage tray, wherein the second dial
  • the food stored on the storage table can be squeezed, cut, etc., and can be pushed into the feeding channel after being processed by extrusion, cutting, etc., so that the food can enter the cup body.
  • the second transmission member By providing a first transmission structure on the second material member and a second transmission structure on the working screw, the second transmission member can be coupled with the second transmission structure by the cooperation of the first transmission structure and the second transmission structure.
  • the working screw is driven to be driven to be driven by the working screw.
  • the driving method can realize the driving of the second material by means of the working screw, so that there is no need to additionally provide a mechanism for driving the second material. Therefore, the structure of the product can be simplified and the cost of the product can be reduced.
  • the cup body and the feeding cylinder are of a unitary structure, or the cup body and the feeding cylinder are of a split structure; the cup body and the feeding body
  • the storage tray is detachably mounted in the feeding cylinder; when the cup body and the feeding cylinder are in a split structure, the storage platform is detachably mounted In the feed cylinder, or the storage table and the feed cylinder are of a unitary structure.
  • the feeding cylinder and the cup body are integrated, so that the feeding and processing of the food material can be realized by a large cup body, and the arrangement does not need to additionally set a cup on the one hand.
  • the number of parts of the product can be simplified, and in addition, the structure has only one cup body, and therefore, only one opening of the cup body is open, so that only the sealing cup is required when sealing the cup body.
  • the opening of the body is sufficient, and in the prior art, the connection between the cup and the feeding cylinder and the opening of the cup need to be sealed, so at least two places need to be sealed, so that the structure can be compared with the prior art. Reduce the difficulty of sealing the product.
  • the feeding cylinder and the cup body can be detachably connected, so that the material can be pulverized by the cup body and the juice residue of the food material can be separated, and the feeding material can be added to the cup body through the feeding cylinder, so that the feeding and processing of the food material are made. It can be divided into two cups, so that the height of each cup can be reduced to make the product better processed and cleaned.
  • the storage table can be detachably installed in the feeding cylinder, so that the storage table can be disassembled for cleaning the cup and the storage table.
  • the storage platform can be detachably installed in the feeding cylinder, or the storage platform can be integrally installed in the feeding cylinder.
  • the storage platform is provided with a second mounting hole
  • the first transmission structure is one of a transmission hole and a second transmission shaft
  • the second transmission structure is The other of the transmission hole and the second transmission shaft, the second transmission shaft being insertable into the transmission hole through the second mounting hole, the working screw and the second material Drive connection.
  • a second mounting hole may be disposed on the storage platform so that the working screw and the material feeding member can be connected to each other through the second mounting hole
  • the first transmission structure is preferably a transmission hole or a second transmission.
  • the shaft that is to say, can be provided with a transmission hole or a second transmission shaft on the material, and a second transmission shaft or transmission hole is arranged on the working screw, so that the transmission hole and the second transmission shaft can pass through Cooperating, in order to realize the direct drive of the working screw to the material, so that the material can be driven to rotate above the material storage tray of the feeding cylinder, thereby realizing the processing of cutting, squeezing or pushing the food, thereby realizing Automatic feeding.
  • the storage platform is disposed on a side of the working screw, and a first mounting groove is disposed around the second mounting hole, and the food processor further includes: The two wear parts are mounted in the first mounting groove and sleeved on the second transmission shaft between the working screw and the surface of the storage table.
  • a first mounting groove can be disposed around the second mounting hole on the lower surface of the storage platform, so that the positioning and mounting of the second wear-resistant member can be realized by the first mounting groove, and
  • the two wear parts are disposed between the storage table and the upper end surface of the working screw, which can reduce the mutual wear between the working screw and the storage table, thereby improving the service life of the working screw and the storage platform.
  • the transmission hole is a polygonal hole
  • the second transmission shaft is a polygonal shaft adapted to the polygonal hole
  • the first transmission structure is the second a drive shaft, the second transmission structure being the transmission hole.
  • the transmission hole is a polygonal hole
  • the second transmission shaft is a polygonal shaft adapted to the polygonal hole, so that the driving between the working screw and the material feeding member can be realized by the non-circular arc surface, thereby being able to increase The contact area between the transmission hole and the second transmission shaft to increase the driving force, thereby improving the transmission efficiency and ensuring the reliability of the transmission.
  • a second transmission shaft is arranged on the working screw, and a transmission hole is correspondingly arranged on the material-feeding member, so that the working screw and the material-feeding member can be better matched.
  • the auxiliary feeding device comprises a third auxiliary feeding device
  • the third auxiliary feeding device comprises: a storage base installed in the feeding cylinder, located at the The work screw is away from one side of the bottom of the cup body, and the storage seat is provided with a storage cavity, the storage cavity is open away from one end of the working screw, and the storage base is provided with at least one inlet a feed hole, the feed hole is electrically connected to the storage chamber and the cup; and a third material member, the third material member is rotatably mounted in the storage chamber, the first The three-piece material member is capable of rotating at an angle of 30° or more; wherein the storage material holder is used for storing foodstuffs, and the third material-feeding member is used for cutting and/or squeezing the foodstuff in the storage chamber, and The food material stored in the storage chamber is pushed into the feed hole.
  • the third auxiliary feeding device includes a storage holder located above the working screw, and a third material member rotatably mounted in the storage housing.
  • the feeding seat is also provided with a feeding hole. Therefore, in actual use, the food can be directly put into the storage base, so that the storage material can be used to store the food, and the third material can be rotated.
  • the utility model is installed in the storage base, and the storage base is further provided with a feed hole which is electrically connected to the storage chamber, so that the rotation of the third material member can push the food stored on the storage base to rotate, and
  • the food material can be squeezed by the mutual friction between the food material and the food material during the rotation process or the mutual friction between the food material and the side wall of the feeding cylinder or the mutual friction between the food material and the third material.
  • the preliminary cutting and/or extrusion processing of the food material is achieved, and the smaller food material after the preliminary cutting and/or extrusion processing can fall from the feeding hole into the storage base under the action of the third material. Below, the larger material will be stuck in the feeding hole.
  • the third material will not stop rotating, that is, the third material will continue to rotate, so that the third material can be Forming a pinch force on the food material between the side wall of the feed hole, and thus capable of
  • the food at the feed hole applies a pressing or cutting force, so that the food can be squeezed or cut into smaller pieces, so that the food can be sequentially squeezed by the continuous rotation of the third material.
  • After being cut into pieces of a certain size it is sequentially passed through the feed hole and into the cup body, and the ingredients entering the cup body can be crushed or cut under the double action of the working screw and the side wall of the cup body. After the crushing, the juice residue of the food can be separated by the strainer or the double cup twin screw.
  • the third auxiliary feeding device when the juice is actually juiced, the user can put all the ingredients into the storage base at one time and store them in the storage base, after which the food can be in the third material.
  • the automatic stepwise feeding is realized, so that the user does not need to gradually feed the material during the actual juice extraction, so that the one-time feeding can be realized, and in the actual process, all the ingredients can be put into the storage base first, and then Then, by controlling the product such as the reservation component, the product is temporarily not working, but the work can be started after a fixed period of time, so that the advance reservation processing of the food material can be realized, thereby reducing the waiting time of the user and improving the user experience, that is, the kind
  • the structure provides the possibility for the product to achieve an appointment for juice extraction so that a reservation component can be set up on the food processor to effect the appointment function.
  • this kind of setting can realize automatic feeding under the action of the third material feeding member after one-time feeding, so that it is not necessary to use a push rod or the like to realize manual pushing, thereby reducing the operation amount of the user.
  • the user experience can be improved, and the structure such as the push rod can be omitted to avoid a series of problems such as the push rod and the placement problem of the push rod.
  • the safety hazard problem with the pusher bar since the setting is capable of cutting or squeezing the food material in advance through the third material member when the food material falls into the cup body through the feeding hole, the particles of the food material entering the cup body are small.
  • the difficulty of the working screw can be reduced, the wear of the working screw can be reduced, and the processing effect of the food material can be improved to improve the juice yield.
  • this arrangement can effectively prevent the working screw from being stuck and prevent the slag opening from being clogged.
  • the third auxiliary feeding device itself has the function of accommodating the food material, so that when the food material is placed, the position of the third auxiliary feeding device to the food material can be moved without It is necessary to move the ingredients to the product for feeding, which makes the operation of the ingredients more convenient and quicker.
  • the side wall of the storage chamber can be directly used to block and squeeze the food material, so that the side wall of the feeding tube does not need to be used, so that the corresponding storage base
  • the side wall portion of the feed cylinder does not come into direct contact with the foodstuff, thus reducing the processing requirements of the side wall of the feed cylinder to reduce product cost and ensure that the feed cylinder is clean here to reduce the feed.
  • the difficulty of cleaning the tube is disposed in the storage base, and the food material is prevented from being caught between the storage plate and the side wall of the feeding cylinder, compared to the solution of setting the storage base as the storage plate. It can prevent waste of ingredients.
  • the angle of rotation of the third material member is greater than or equal to 30°, so that the third material member has a reasonable rotation angle, so that the food material on the storage base can be fully pulverized and pushed to the feeding hole.
  • the rotation angle of the third material member can be prevented from being too small, and the feeding is not smooth.
  • the storage base is further provided with a third mounting hole
  • the third auxiliary feeding device further includes: a third transmission shaft, one end of the third transmission shaft is located
  • the storage chamber is drivingly connected to the third material
  • the other end of the third transmission shaft protrudes from the third mounting hole and is drivingly connected to the working screw.
  • a third material that can be rotated such as a paddle, a lever, and the like, can be disposed in the storage chamber, and is driven and connected to the working screw through the third transmission shaft, so that when the working screw rotates,
  • the third conveying member can be rotated by the third driving shaft to realize the processing of cutting and/or squeezing the food material.
  • the cut and/or extruded food material can further enter the cup from the feed hole under the action of the third material.
  • the third material member can also be driven to connect to the working screw by other means, or the third material member can also be connected to the working screw, but additionally provided with a driving structure for driving its rotation.
  • the outer bottom wall of the storage base is provided with a receiving groove, and one end of the working screw can protrude into the receiving groove, and the inner bottom of the storage base a mounting boss is disposed on the wall, the third mounting hole extends through the mounting boss and the receiving slot, and one end of the third driving shaft is located in the receiving slot for driving connection with the working screw The other end of the third transmission shaft extends into the storage cavity through the third mounting hole, and is drivingly connected to the third material.
  • a mounting boss is disposed on the inner bottom wall surface of the storage base, and on the one hand, the third feeding member can be mounted higher by using the mounting boss, and the setting can also be increased.
  • the extrusion strength of the ingredients can further improve the processing effect of the ingredients.
  • the receiving groove can be disposed corresponding to the mounting boss, so that the thickness of the bottom wall of the stock holder can be ensured without increasing the thickness of the bottom wall of the stock holder.
  • the receiving groove is disposed on the outer bottom wall surface of the storage base, so that the storage seat cover can be disposed on one end of the working screw, so that the working screw can also cooperate with the side wall of the receiving groove to realize further cutting of the food material and/or Or extrusion treatment, thereby further improving the treatment effect of the foodstuff.
  • the feed hole extends from an edge of an end surface of the mounting boss away from an end of the storage chamber to a bottom of the storage holder.
  • the feed hole extends from the edge of the end face of the mounting boss away from the end of the storage chamber to the bottom of the storage holder, so that the feed hole is opened larger, thereby improving the smoothness of the feed.
  • the number of the feed holes is one or more, and when the feed holes are plural, the plurality of feed holes are symmetrically disposed.
  • a side wall surface of the mounting boss is away from an end of the mounting boss away from a bottom wall of the storage base to a bottom of the mounting boss near the storage base
  • One end of the wall is outwardly inclined; and/or the shape of the receiving groove is adapted to the shape of the end of the working screw that projects into the receiving groove.
  • the outer side wall of the mounting boss is inclined outwardly from the opening of the storage chamber to the bottom wall of the storage chamber, so that after the food material is cut and/or extruded, the food material can be mounted along the convexity.
  • the outer side wall of the table flows downwards, thereby allowing the food material to be accelerated downward by gravity, thereby enabling the food material to feed more smoothly through the feed holes.
  • this arrangement also enables a better fit between the receiving groove and the upper end of the working screw, while also making the structure of the third auxiliary feeding device more reasonable.
  • the bottom wall of the storage holder is recessed into the storage chamber to form the receiving groove and the mounting boss.
  • the bottom wall of the storage base may be recessed into the storage base to form a mounting boss on the inner bottom wall surface thereof, and a receiving groove is formed on the outer bottom wall surface.
  • the structure can quickly and easily machine the mounting boss and the receiving groove on the bottom wall of the storage base, thereby reducing the processing difficulty and reducing the processing cost.
  • the third material member comprises: a fixing seat on the mounting boss and is mounted to the third transmission shaft; a material feeding structure, the material structure One end of the material is connected to the fixing base, and the other end of the material is extended to the bottom wall of the storage chamber; wherein the material is a material, a material bar or a material bar.
  • the third material member comprises a base and a material structure, wherein the base is used for connecting with the third transmission shaft and the installation of the material is realized, and the material is specifically used for cutting and/or Squeeze the ingredients and shake the ingredients.
  • the mounting boss is arranged in the storage chamber
  • the third material member can be installed on the top of the mounting boss, so that one end of the third material member can be installed higher, and the third dialing can be performed.
  • the other end of the material member hangs down to the bottom of the storage chamber, so that the third material member can cut and/or squeeze the food materials of different heights in the storage chamber, thereby improving the processing effect of the food material, so as to improve the processing effect of the food material, Increase the juice rate.
  • the third material member can only be mounted on the bottom wall of the storage chamber, so that the height of the third material that can handle the food material is subject to the material.
  • the height limit of the structure so that when the material setting structure is short, the treatment effect on the food material is reduced, but if the entire material structure is set higher, in order to ensure the strength of the material structure, only At the same time, the fixing seat is set higher, which causes the structure of the third material to be more complicated, and also reduces the connection strength between the third transmission shaft and the third transmission shaft.
  • the material structure can be in the form of a sheet or a rod or a rod. Specifically, the shape of the material can be selected according to actual conditions.
  • the third transmission shaft is provided with at least one second driving protrusion, and the second driving protrusion can be engaged with the working screw to be in the working screw Drive to rotate.
  • one or more second driving protrusions may be disposed on the lower end surface of the third transmission shaft so as to be engaged with the side of the upper end of the working screw through the second driving protrusion to realize the third
  • the drive connection between the drive shaft and the working screw of course, the third drive shaft can also achieve its drive connection with the work screw by other structures.
  • the third material member and the third transmission shaft are of a split structure, or the third material member and the third transmission shaft are of a unitary structure.
  • the third material member and the third transmission shaft may be a split structure, such as two parts, so that it is convenient to separately perform each of the third material member and the third power transmission shaft. Repair and replace separately.
  • the third material part and the third transmission shaft may also be an integrated structure, so that the connection strength between the third material part and the third transmission shaft can be improved, so that the third material part can be improved.
  • the third transmission shaft is not easily damaged, and the seamless connection between the third material member and the third transmission shaft can be realized, thereby preventing a gap from being formed between the third material member and the third transmission shaft, thereby facilitating cleaning. .
  • the third transmission shaft is provided with one of a second positioning groove and a second positioning protrusion
  • the working screw is provided with a second positioning groove and a second Another one of the positioning protrusions, the second positioning protrusion can be inserted into the second positioning groove to position the working screw; wherein the second positioning groove is provided with a third Wear parts.
  • a second positioning protrusion or a second positioning groove may be disposed on the upper end surface of the working screw, and a second positioning protrusion or the second positioning may be correspondingly disposed on the lower end of the third transmission shaft.
  • the groove can be used to realize the positioning of the working screw by the cooperation of the second positioning protrusion and the second positioning protrusion and the positioning shaft, thereby improving the stability of the working screw after installation and reducing the shaking of the working screw.
  • the third auxiliary feeding device is detachably mounted in the feeding cylinder, or the third auxiliary feeding device is located in the feeding cylinder, and
  • the storage base of the third auxiliary feeding device is integrally formed with the side wall of the feeding cylinder, or a third buckle is disposed on the inner side wall of the feeding cylinder, and the outer side wall of the storage seat is Providing a fourth buckle, the storage holder being mountable in the feeding cylinder through a mating buckle of the third buckle and the fourth buckle; and/or a side of the storage chamber
  • the wall is inclined from the opening of the storage chamber to the bottom of the storage chamber to the storage chamber.
  • the third auxiliary feeding device is preferably installed in the feeding cylinder and above the working screw, so that the installation of the third auxiliary feeding device can be realized through the feeding cylinder, and at the same time, it is installed in In the feed cylinder, it is also possible to prevent the foodstuff in the third auxiliary feeding device from splashing out by using the feeding cylinder, thereby preventing waste of the foodstuff.
  • the storage base and the feeding cylinder of the third auxiliary feeding device can be arranged in an integrated structure, and the storage seat of the third auxiliary feeding device can also be detachably installed in the feeding cylinder.
  • the third auxiliary feed means is preferably detachably mounted in the feed barrel.
  • a fourth buckle is disposed on the outer side wall of the storage base, and a third buckle is disposed on the inner side wall of the feeding cylinder, so that the third buckle and the fourth buckle can be matched.
  • the third auxiliary feeder is snapped into the feed cylinder. This arrangement allows the third auxiliary feed device to be detached from the feed cylinder at will, thereby facilitating the maintenance of the third auxiliary feed device even when the third auxiliary feed device is cleaned.
  • the food processing cup further comprises: a sieve disposed between the cup and the working screw; wherein the inner side wall of the feeding cylinder corresponds to the An end of the filter screen adjacent to the feed barrel is provided with a positioning step surface for cooperating with the screen to position the screen.
  • a sieve may be disposed between the cup and the working screw, so that the filter can be used after the food is pulverized. The separation of juice residue of the ingredients is achieved.
  • a positioning step surface may be disposed on the inner side wall of the feeding cylinder corresponding to the upper end surface of the screen, so that the positioning step surface can be used to press the screen to realize axial positioning and installation of the screen, thereby improving Filter installation reliability.
  • the food processor further includes: a pressure relief hole disposed on any one or more of the cup body, the feeding assembly, and the slag assembly, capable of The sealing cavity is electrically connected; a pressure relief plug can be installed at the pressure relief hole to open or seal the pressure relief hole.
  • a pressure relief hole that is electrically connected to the sealing cavity may be disposed on any one or more of the cup body, the feeding assembly and the slag assembly, and the pressure relief hole is opened by the pressure relief plug. Or sealed.
  • the pressure relief plug can be closed before the product is started to seal the pressure relief hole, so that the cup body, the feed assembly and the slag assembly can be completely sealed, so that the vacuum can be evacuated through the suction assembly.
  • the treatment of the foodstuff can be carried out substantially under vacuum or near vacuum, thereby preventing oxidation of the foodstuff.
  • the pressure relief hole can be opened through the pressure relief plug, so that the inside of the product is electrically connected to the outside, and the negative pressure in the cup body, the feeding assembly and the slag assembly can be gradually unloaded, so that Relieve pressure quickly and easily.
  • pressure relief may also be performed by other means, such as inward delivery of air through the air extraction assembly to achieve pressure relief.
  • the pumping assembly includes: an air pump; an air suction passage, one end of the air suction passage is connected to the air pump, and the other end of the air suction passage is The sealed chamber is connected.
  • an air pump can be used to achieve air extraction, and an air suction passage is used to achieve gas discharge.
  • the pumping assembly further includes: an exhaust passage connected to an outlet of the air pump for exhausting; and a noise reducing device disposed on the exhaust passage.
  • the exhaust may be performed by providing an exhaust passage, wherein the exhaust passage is preferably an exhaust pipe.
  • the noise reduction device can reduce the noise of the pumping components and improve the user experience.
  • the air pump is disposed on any one of the base assembly, the cup body and the feeding assembly, or the air pump is opposite to the base assembly
  • the cup and the feed assembly are independently arranged.
  • the air pump can be disposed at any position, such as on the base assembly, on the cup or on the feeding assembly.
  • the air pump can also be set independently of the base assembly, the cup and the feeding assembly.
  • the pump can also be peripherally attached to the base assembly, the cup body and the feed assembly.
  • the suction passage is an exhaust pipe.
  • the suction passage is preferably an exhaust pipe.
  • the suction passage may also be other passage structure provided on the casing of the food processor.
  • the air pump is an electric pump or a manual pump or a foot pump.
  • the air pump is preferably an electric pump, so that the air pump can be pumped with the electric drive pump, so that manual pumping is not required.
  • the air pump can also be a manual pump or a foot pump.
  • the air pump is a vacuum pump.
  • the air pump is preferably a vacuum pump, because the vacuum pump is relatively common and thus easy to purchase, and the vacuum pump has a strong ability to evacuate, so that a large amount of air inside the food processor can be taken out to ensure that the food is processed.
  • the vacuum effect inside the cup is preferably a vacuum pump, because the vacuum pump is relatively common and thus easy to purchase, and the vacuum pump has a strong ability to evacuate, so that a large amount of air inside the food processor can be taken out to ensure that the food is processed.
  • the vacuum effect inside the cup is preferably a vacuum pump
  • the cup body is provided with a first slag outlet
  • the slag assembly comprises: slag a cup is detachably sealed and installed at the first slag opening, a side wall of the slag cup is provided with a slag opening, and the slag opening is electrically connected to the first slag opening; a slag cover, the sealing cover is mounted on the open end of the slag cup; a second sealing member is disposed at a joint of the slag cover and the slag cup for making the slag cover and the slag cover a slag cup sealing connection; wherein one of the slag cup and the cup body is provided with a mounting post, and the other of the slag cup and the cup body is provided with a mounting sleeve, the connection The slag cup is detachably sealably mounted at the first slag outlet by the cooperation of the mounting post
  • the first slag opening is disposed on the cup body, and when the slag assembly device is installed outside the cup body, the slag slag device may be preferably configured to include a slag cup and a slag cover structure, so that The slag treatment is performed by the slag cup, and the slag cup is opened and sealed by the slag cover.
  • the slag cup and the cup body can be detachably connected, so that the slag cup can be detached from the cup body, and the slag or cleaning can be performed.
  • a mounting sleeve can be arranged on one of the slag cup and the cup body, and a mounting post can be arranged on the other side, so that the sleeve can be installed between the slag cup and the cup body through the mounting sleeve and the mounting post. Removable installation.
  • a second seal can be placed between the mounting sleeve and the mounting post to enable the mounting sleeve to be sealingly coupled to the mounting post.
  • the slag assembly can also be other types of structures, such as slag bags, or other cavity structures.
  • the food processor further comprises: a slag pressure regulating assembly disposed at the first slag outlet for adjusting a slag pressure at the first slag outlet.
  • a slag pressure regulating component may be disposed at the first slag outlet, so that the slag pressure at the first slag outlet can be adjusted by the slag pressure regulating component, so that the slag can be properly controlled The pressure, so that the food slag can be further squeezed before being discharged, so that the juice residue is more thoroughly separated.
  • the slag pressure regulating component can have only one gear pressure, that is, the slag pressure is a fixed value, and the user cannot change the slag pressure after the product is assembled.
  • the slag pressure regulating component can also have multiple gear pressures, that is, the slag pressure includes a plurality of gear values.
  • the user can operate the slag pressure regulating component to make the product have multiple slag discharges.
  • Pressure so that when processing different ingredients, the slag pressure can be adjusted according to the type of ingredients and the needs of the user, so that on the one hand, it can better meet the various needs of the user, and on the other hand, it can be reasonably adjusted according to the type of the ingredients.
  • Slag pressure which can prevent some softer ingredients, such as grapes, from being crushed, resulting in loss of nutrients, poor taste, etc., and prevent certain crude fiber ingredients such as sugar cane and ginger. Insufficient extrusion of ingredients such as carrots and carrots leads to a low juice yield, which in turn ensures the nutrition and taste of the ingredients and increases the juice yield of the products.
  • the slag pressure can be adjusted by a damping silica gel.
  • the specific structure of the slag pressure regulating component may be a structure for adjusting the slag pressure on the existing juice machine, juicer or the like.
  • one end of the feed assembly is detachably snap-fitted into the open end of the cup.
  • a first buckle may be disposed on the lower end of the feeding assembly, such as the feeding cylinder, and a second buckle capable of engaging the first buckle may be disposed on the inner side wall of the upper end of the cup body.
  • a second buckle capable of engaging the first buckle may be disposed on the inner side wall of the upper end of the cup body.
  • one end of the feed assembly can be sealingly mounted within the open end of the cup by a snap fit of the first snap and the second snap.
  • the cup body comprises a pulverizing cup and a pressing cup
  • the feeding assembly sealing cover is mounted on the cup end of the pulverizing cup, and the other end of the pulverizing cup is a communication port is provided, the pressing cup is in communication with the pulverizing cup through the communication port
  • the working screw includes a pulverizing screw installed in the pulverizing cup and an extrusion screw installed in the squeezing cup
  • the cup body is provided with a first slag opening, and when the slag assembly is sealingly connected to the first slag opening, the first slag opening is disposed on the pressing cup,
  • the slag assembly is in communication with the extrusion cup through the first slag outlet
  • the base assembly is provided with a first drive shaft and a second drive shaft, the first drive shaft and the pulverizing screw a driving connection for driving the pulverizing screw to pulverize the food material, and the second driving shaft is drivingly coupled to the extru
  • the pulverizing screw is driven by the first driving shaft to cooperate with the side wall of the pulverizing cup to pulverize the food, and the pulverized food material enters the squeezing under the action of the pulverizing screw.
  • the extrusion screw presses the foodstuff under the drive of the second drive shaft to separate the juice residue of the foodstuff.
  • the technical scheme separates the pulverizing process of the food material and the squeezing process of the squeezing juice, and in the pulverizing process, since the slag discharging is not required, the smashing cup does not need to be provided with a filter screen and a rotating brush, thereby making the smashing cup
  • the food inside can be pulverized by the action of the pulverizing cup and the pulverizing screw, and at the same time, the squeezing screw can be arranged horizontally in the process of squeezing the slag, and the slag discharging system can be set to the horizontal type, thereby being very It is convenient to separate the juice residue of the food.
  • the juice yield of the food processor on the other hand, it can avoid the use of components such as a strainer and a rotating brush, so that the structure of the food processor is simple and easy to install, and at the same time Since the filter is eliminated, the user's cleaning difficulty can be reduced, and the user experience can be improved.
  • an axis of the pressing cup and an axis of the pulverizing cup are at an angle of 75° or more and 180° or less, or an axis of the pressing cup
  • the axis of the pulverizing cup has an angle of 90° or more and 135° or less.
  • an angle can be set between the pressing cup and the crushing cup, as long as the food material can enter from the pressing cup into the crushing cup, wherein preferably, the axis of the pressing cup and the axis of the crushing cup Between the angle of 75° or more and 180° or less, that is, the pressing cup is horizontally or obliquely downward, so that the food material enters into the pressing cup or flows into the first slag opening in the pressing cup at least does not need to be overcome.
  • the gravity of the food material further makes the flow of the food material smoother, wherein, further, the angle between the axis of the pressing cup and the axis of the crushing cup is greater than 90° and less than or equal to 135°, and the food is arranged to be squeezed.
  • the axis of the pressing cup and the axis of the pulverizing cup are at an angle of 90°.
  • an axis of the extrusion screw and an axis of the pulverizing screw are at an angle of 75° or more and 180° or less, or an axis of the extrusion screw and an axis of the pulverizing screw
  • the angle between 90° and less is equal to or less than or equal to 135°.
  • an axis of the extrusion screw and an axis of the pulverizing screw are at an angle of 90°.
  • the base assembly further comprises a base and a housing assembly, the housing assembly being mounted on the base.
  • the cup body is provided with a first slag outlet
  • the food processor further comprises: a first vent a pressure passage, one end of the first pressure relief passage communicates with the cup body, the other end of the first pressure relief passage communicates with the outside; the second pressure relief passage, one end of the second pressure relief passage Said slag device is connected, the other end of the second pressure relief passage is in communication with the outside; a fifth sealing member is mounted on one end of the first pressure relief passage communicating with the outside and the second pressure relief passage and the outside The connected end is configured to open or close the first pressure relief passage and the second pressure relief passage.
  • a first pressure relief passage communicating with the cup body is provided, and the cup body can be depressurized after the vacuum juicing is completed by the first pressure relief passage, and Providing a second pressure relief passage communicating with the slag assembly slag assembly, capable of relieving the slag assembly of the slag device after the vacuum juicing is completed by the second pressure relief passage, and the fifth seal is sealed and connected to the first drain
  • the end of the pressure passage and the second pressure relief passage communicate with the outside, so that whether the first pressure relief passage and the second pressure relief passage are connected to the outside can be controlled by the opening or closing of the fifth seal, so that when vacuum juicing,
  • the first pressure relief passage and the second pressure relief passage are closed to ensure that the cup body can be sealed, and after the juice extraction is finished, the fifth sealing member can be opened to open the first pressure relief passage and the second pressure relief passage, so that The cup body and the slag assembly slag device can be simultaneously relieved.
  • the cup body and the slag assembly slag device can be respectively released at the time of pressure relief, so that no matter the cup Whether the slag outlet of the first slag outlet of the body is blocked by the food slag, and the slag slag splicing device can release the pressure in time, so that the slag slag slag device can be easily and conveniently removed after the juice is finished to be poured
  • the slag or cleaning treatment can solve a series of problems caused by the slag slag slag splicing device unable to release pressure in time due to the clogging of the food slag, thereby improving the overall performance of the product and improving the user experience.
  • one end of the first pressure relief passage communicating with the outside and one end of the second pressure relief passage communicating with the outside are merged into a same passage;
  • the side wall of the cup body is disposed a connecting passage, one end of the connecting passage extending to the first tap opening, communicating with the first tap opening,
  • the inner side wall of the connecting passage is provided with a second passage communicating with the cup a hole,
  • a third through hole is disposed on an outer sidewall of the connecting passage, and the fifth seal is openably or sealingly mounted at the third through hole.
  • first pressure-relieving passage and the second pressure-relieving passage with the outside end, that is, the intake end into a single passage, so that only a fifth sealing member needs to be provided at the same time.
  • the first pressure relief passage and the second pressure relief passage are simultaneously opened or closed at the same time, so that when the cup body and the slag assembly are closed for vacuum juice extraction, only the fifth sealing member needs to be installed in place, and the pressure is released.
  • it is only necessary to open a fifth sealing member thereby simplifying the operation of the user during juice extraction and pressure release, and reducing the workload of the user when using the product, so as to improve the user experience.
  • a connecting passage in the side wall of the cup body so that one end of the first pressure releasing passage communicating with the outside and one end of the second pressure releasing passage communicating with the outside can be merged into the same passage.
  • one end of the connecting channel is in communication with the first slag opening, so that the connecting channel can communicate with the slag assembly
  • a second through hole is disposed on the side wall of the connecting channel, so that the connecting channel can communicate with the cup body
  • the connecting passage is used as a passage shared by the first pressure relief passage and the second pressure relief passage, so that the cup body and the slag assembly can simultaneously close and depressurize through the connecting passage.
  • the third through hole on the outer side wall of the connecting passage is an air inlet for connecting the connecting passage and the external connecting hole, so that the opening and closing of the third through hole can simultaneously seal or simultaneously release the cup body and the slag assembly device.
  • the utility model comprises an inlet and a two-way outlet pipe, so that the pressure relief of the cup body and the slag device can be simultaneously realized by the branch pipe.
  • the fifth sealing member is a sealing plug
  • the food processor further includes: a valve stem, one end of the valve stem is inserted into the third through hole, And being movable along an axis of the third through hole, the other end of the valve stem is located outside the cup, and the sealing plug is sleeved on one end of the valve stem outside the cup body, and can be a valve stem is sealingly mounted at the third through hole or opening the third through hole; a return spring is disposed in the cup body or in the connecting passage, and is connected to the valve stem for The valve stem is reset after the valve stem is moved.
  • the fifth sealing member can be arranged as a sealing plug, such as a rubber plug and a silicone plug, so that the opening and closing of the third through hole can be realized by a sealing plug, thereby realizing the entire pressure relief passage. Open and close.
  • the valve stem is used to realize the installation of the sealing plug, and the sealing plug is driven along the axial direction of the third through hole, so that the opening and closing of the sealing plug can be realized by the movement of the valve stem.
  • the return spring is used to reset the valve stem after the pressure relief is completed, so that the valve stem and the sealing plug can be automatically reset to the initial position after the pressure is released, so as to achieve the sealing of the third through hole.
  • the valve stem can be automatically reset, so that the user does not need to specifically close the third through hole, thereby simplifying the workload of the user, and also preventing the user from forgetting to reset the valve stem during the next juice extraction, so that the product cannot be sealed, and thus cannot be Vacuum extraction occurs.
  • one end of the valve stem inserted into the third through hole is inserted into the second through hole and protrudes into the cup body, and the inner side wall of the second through hole
  • An internal thread is disposed on the sidewall of the valve stem and the second through hole, and the valve stem is mounted on the second through the cooperation of the external thread and the internal thread Inside the hole.
  • the internal thread may be preferably disposed in the second through hole, and the external thread is correspondingly disposed on the side wall of the valve rod and the second through hole, so that the valve stem can be mounted on the cup by screwing.
  • the screwing and unscrewing of the valve stem can be realized by rotating, so that the axial movement of the valve stem along the axial direction of the third through hole can be realized, and the sealing plug can be realized for the third through hole. Open and close.
  • the valve stem can be easily and conveniently mounted on the cup body by means of screw connection, so that the opening and closing operation of the sealing plug to the third through hole can be realized simply and conveniently, thereby enabling the overall structure of the product. It's simpler.
  • one end of the valve stem inserted into the third through hole is inserted into the second through hole and protrudes into the cup, and the valve stem extends into the a second mounting slot is disposed on an end of one end of the cup body, and a fourth through hole is further disposed on an inner sidewall of the connecting passage,
  • the return spring is a torsion spring
  • the torsion spring sleeve is mounted on the valve a rod extends into one end of the cup body
  • a first torsion spring arm of the torsion spring is mounted in the second mounting groove
  • a second torsion spring arm of the torsion spring is inserted into the fourth pass Inside the hole, and being slidable in the axial direction of the fourth through hole.
  • the valve stem can be inserted into the third through hole and continue to enter the cup through the first through hole, and the return spring is preferably a torsion spring, so that after the valve stem is rotated, the torsion spring can make The valve stem is automatically reset.
  • the torsion spring is sleeved on the end of the valve stem that extends into the cup body, so that the torsion spring can be installed in the cup body, which can more easily realize the installation of the torsion spring.
  • the end of the valve stem is provided with a second mounting groove, so that the rotation of the torsion spring can be achieved by the cooperation of the second mounting groove and the first torsion spring arm, thereby preventing the torsion spring from rotating together with the valve stem, and
  • the four-way hole is used for fixing and guiding the second torsion spring arm, so that when the valve stem is rotated, the torsion spring can be deformed normally, so that the corresponding elastic potential energy can be gathered, so that after the valve stem is released, the valve stem can be Return to the initial position under the action of elastic potential energy.
  • valve stem is disposed at one end of the outer surface of the cup body with a pressure plate capable of pressing the sealing plug at the third through hole, An operating handle is provided on the pressure plate.
  • the sealing plug can be pressed against the third through hole by the pressure plate, so that the sealing plug can reliably seal the third through hole.
  • the operating handle is arranged on the pressure plate, and the valve stem can be rotated directly through the operating handle during use, thereby facilitating the user's operation.
  • the food processor is a juice machine or a juicer.
  • the food processor may also be other structures than the juice machine and the juicer, such as juice. Machine, broken machine, etc.
  • FIG. 1 is a schematic structural view of a food processor provided according to an embodiment of the present invention.
  • FIG. 2 is another schematic structural view of a food processor provided in accordance with an embodiment of the present invention.
  • FIG. 3 is a schematic structural view of a food processor according to an embodiment of the present invention.
  • FIG. 4 is another schematic structural view of a food processor provided in accordance with an embodiment of the present invention.
  • FIG. 5 is a partial structural schematic view of the food processor provided in Figure 4.
  • FIG. 6 is a schematic structural view of a feeding assembly of a food processor according to an embodiment of the present invention.
  • FIG. 7 is another schematic structural view of a feeding assembly of a food processor according to an embodiment of the present invention.
  • Figure 8 is an exploded perspective view of a feed assembly of a food processor according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural view of a first material member of a feeding assembly according to an embodiment of the present invention.
  • Figure 10 is a schematic diagram of still another structure of a feeding assembly of a food processor according to an embodiment of the present invention.
  • FIG. 11 is a schematic structural view of a feeding assembly of a food processor according to an embodiment of the present invention.
  • Figure 12 is a fifth structural schematic view of a feed assembly of a food processor provided in accordance with an embodiment of the present invention.
  • Figure 13 is a schematic structural view of a cross section of a feeding assembly of a food processor according to an embodiment of the present invention.
  • Figure 14 is a fifth schematic structural view of a food processor provided in accordance with an embodiment of the present invention.
  • Figure 15 is a partially enlarged schematic view showing a portion of the food processor of Figure 14;
  • Figure 16 is an exploded perspective view showing a part of the structure of the food processor of Figure 14;
  • FIG 17 is a partial structural schematic view of the feeding assembly of the food processor of Figure 14;
  • Figure 18 is a schematic view showing the structure of the second material member of the food processor of Figure 14;
  • FIG. 19 is a schematic structural diagram of a food processor according to another embodiment of the present invention.
  • FIG. 20 is a schematic exploded view of a third auxiliary feeding device of a food processor according to an embodiment of the present invention.
  • 21 is a schematic structural view of a third auxiliary feeding device of a food processor according to an embodiment of the present invention.
  • FIG. 22 is still another schematic structural view of a third auxiliary feeding device of a food processor according to an embodiment of the present invention.
  • FIG. 23 is another schematic structural view of a third auxiliary feeding device of a food processor according to an embodiment of the present invention.
  • Figure 24 is a schematic structural view of a third auxiliary feeding device of the food processor according to an embodiment of the present invention.
  • Figure 25 is a fifth structural schematic view of a third auxiliary feeding device of the food processor according to an embodiment of the present invention.
  • 26 is a schematic structural view of a storage base of a third auxiliary feeding device of a food processor according to an embodiment of the present invention.
  • Figure 27 is a schematic structural view of a food processing cup of a food processor according to an embodiment of the present invention.
  • FIG. 28 is another schematic structural view of a food processing cup of a food processor according to an embodiment of the present invention.
  • 29 is an exploded perspective view of a food processing cup of a food processor according to an embodiment of the present invention.
  • FIG. 30 is a schematic structural view of a slag splicing device of a food processor according to an embodiment of the present invention.
  • FIG. 31 is a schematic structural view of a feed cylinder cover and a pressure relief device of a food processor according to an embodiment of the present invention
  • FIG. 32 is an exploded perspective view of a base assembly of a food processor according to an embodiment of the present invention.
  • Figure 33 is a sixth structural schematic view of a food processor provided in accordance with an embodiment of the present invention.
  • Figure 34 is a partially enlarged schematic structural view showing a portion B of the food processor of Figure 33;
  • Figure 35 is an exploded perspective view showing a part of the structure of the food processor of Figure 33;
  • Figure 36 is another exploded structural view showing a portion of the structure of the food processor of Figure 33;
  • FIG. 37 is a seventh structural schematic view of a food processor provided in accordance with an embodiment of the present invention.
  • Figure 38 is a diagram showing an eighth structure of a food processor provided in accordance with an embodiment of the present invention.
  • a food processor provided in accordance with an embodiment of the present invention is described below with reference to FIGS. 1 through 38.
  • a first aspect of the present invention provides a food processor including a base assembly 1, a food processing cup 2, a feeding assembly 3, a slag assembly 4, and a suction assembly 5, wherein The food processing cup 2 can be mounted on the base assembly 1.
  • the food processing cup 2 includes a cup 22 and a working screw 24 rotatably mounted in the cup 22, the cup 22 can be used for accommodating food juice, wherein the cup 22
  • the first slag opening 222 is disposed thereon, or the second slag opening is disposed in the cup body 22;
  • the feeding assembly 3 is sealingly mounted on the cup end of the cup body 22;
  • the slag assembly 4 is sealed and connected to the first a slag opening 222 for collecting food slag or slag assembly 4 in the cup body 22, connected to the second slag discharge port for collecting food slag; between the cup body 22, the feed assembly 3 and the slag assembly 4 Forming a mutually sealed sealing chamber;
  • the pumping assembly 5 is connectable to the sealed chamber for drawing air out of the sealed chamber.
  • a food processor includes a base assembly 1, a food processing cup 2, a feeding assembly 3, a slag assembly 4, and a suction assembly 5.
  • the base assembly 1 is used for powering the entire product, controlling the operation of the entire product, and for supporting and mounting the food processing cup 2, the feeding assembly 3, and the slag assembly 4.
  • the food processing cup 2 is used to pulverize the food material by the cooperation of the cup 22 and the working screw 24, and to separate the juice residue of the food material.
  • the feed assembly 3 is used to feed the foodstuff, that is, to feed the foodstuff into the food processing cup 2, and the suction assembly 5 is used to form the entire feed assembly 3, the suction assembly 5, and the slag assembly 4.
  • the sealed chamber is evacuated for vacuuming purposes.
  • the air pumping unit 5 can be activated to extract the air in the product so that the cup body 22 can be substantially vacuumed, and then the working screw 24 can be activated to process the food material, thereby substantially vacuuming.
  • the structure of the cup 22 can be appropriately set, so that the cup 22 can be used to collect the food juice, so that the juice structure can be omitted without additionally providing the structure of the cup 22 and the cost of the product can be reduced.
  • the food juice in the whole process of food processing of the product, can be first stored in the cup body 22, that is, the food juice is discharged without having to squeeze the juice, so that during the whole food processing process, It is not necessary to open the juice outlet 224 out of the juice as in the prior art, so that the outside air cannot enter the cup 22 through the juice outlet 224 during the whole food processing, thereby improving the sealing performance in the cup 22.
  • this arrangement enables the collection of the food juice using the ready-made cup 22 as compared with the case where the juice cup is additionally sealed and mounted on the cup 22, thereby improving the utilization of the cup 22.
  • the rate can simplify the structure of the product and reduce the processing cost of the product.
  • the cup body 22 is used for the collection of the food juice.
  • the oxygen content in the sealed cavity is low, and the preservation effect of the food juice can be better ensured.
  • the food juice needs to be exported when the user needs to drink, so that the drinker can drink the freshest food juice.
  • the slag assembly 4 can be integrally mounted with the food processing cup 2 or can directly set the slag assembly 4 in the cup 22, so that it is not required to be opened during the entire food processing process.
  • the slag mouth, that is, the slag opening 222 can always be sealed during the slagging process of the product.
  • the slag opening is always open during the whole product juice extraction, so that the oxygen of the product can always enter the sealed cavity through the slag outlet. , which in turn causes oxidation of the food juice.
  • the slag assembly 4 that is sealed and installed with the first slag discharge port 222 or the slag assembly 4 is directly disposed in the cup body 22, so that it is not necessary to seal the slag discharge port when the product is in operation.
  • the utility model can also realize the collection of the food slag, that is, the application can seal the slag outlet at all times during the working process of the product, so that the outside air cannot enter the sealing cavity during the working process of the product, and thus can be under vacuum condition
  • the pressing treatment of the ingredients and the collection of the food juice under vacuum can significantly slow down the oxidation of the food juice and ensure the taste of the food after the extraction.
  • the cross-sectional area of the working screw 24 is increased from the end of the working screw 24 near the cup opening of the cup 22 to the other end of the working screw 24, preferably gradually increasing, so that the cup 22 and the working screw 24 can be
  • the gap is gradually reduced from the opening of the cup 22 to the bottom of the food processing cup 2, so that the pressing force of the foodstuff can be sequentially increased, so that the more the material can be crushed, the higher the juice yield can be.
  • the slag device 4 is configured to collect food slag after the juice residue of the food material is separated.
  • the slag assembly 4 may be mounted in the cup 22 as shown in FIG. 37 or may be mounted outside the cup 22 as shown in FIGS. By arranging the slag assembly 4 in the cup 22, the slag assembly 4 can be concealed and mounted in the cup 22 so that it is not attached to the outside of the cup 22, thereby improving the appearance of the product.
  • the slag assembly 4 is installed in the cup 22, which only occupies a part of the space, and other spaces in the cup 22 can be rationally utilized, thereby improving space utilization.
  • the slag assembly 4 is installed in the cup 22, so that the connection structure between the slag assembly 4 and the cup 22 can be omitted, and the structure of the cup 22 and the slag assembly 4 can be further simplified. Further, by mounting the slag assembly 4 in the cup 22, it is not necessary to additionally provide a slag opening on the cup 22, so that the sealing performance of the cup 22 can be improved, and thus the food processor is set to a vacuum. When the food processor is used, the sealing performance of the food processor can be effectively improved, and the oxidation problem of the food material during juice extraction and after juice extraction is remarkably alleviated.
  • a first slag opening may be provided on the cup 22, and the slag assembly 4 is mounted outside the cup 22 and is electrically connected to the cup 22 through the first slag opening. .
  • the base assembly 1 includes a driving device 12 connected to the working screw 24 for driving the rotation of the working screw 24; the control device 14 And connected to the driving device 12 and the pumping assembly 5 for controlling the pumping assembly 5 to pump or control the operation of the driving device 12, and/or for controlling the pumping assembly 5 to pump, and exhausting the pumping assembly 5 After the gas, the control drive unit 12 starts to work.
  • the work screw 24 can be driven by the drive unit 12 to comminute, squash, etc. the food material, and the control unit 14 is used to control the operation of the drive unit 12 and the pumping assembly 5.
  • the control device 14 can separately control the driving device 12 or the pumping assembly 5 to perform separate operations, or can control the pumping assembly 5 to operate for a period of time first, so that the pumping operation can be completed first, and then the driving device 12 is started.
  • Work for food processing. The method of food treatment after the first pumping can be carried out after the pumping is completed, so that all the ingredients are processed under vacuum, so that all the ingredients are not easily oxidized, so that Significantly alleviate food oxidation.
  • the food processor further includes a reservation device coupled to the control device 14 for causing the control device 14 to control the operation of the drive device 12 and the pumping assembly 5 after a predetermined time.
  • a reservation device can be set on the product, so that the reservation function of the product can be realized by the reservation device, thereby reducing the waiting time of the user.
  • the reservation device includes a collection device for collecting the user.
  • the reservation parameter, the timing device is used for timing according to the reservation parameter, and after the timing is completed, the control device 14 starts working.
  • the cup body 22 is provided with a juice outlet 224, and the sealing lid of the juice outlet 224 is provided with a juice cover 26, and the juice cover 26 is used for The juice outlet 224 is opened or closed; wherein a first sealing member 28 is disposed between the juice outlet 224 and the juice outlet cover 26, and the first sealing member 28 is used for sealingly connecting the juice outlet lid 26 to the juice outlet port 224.
  • a juice outlet 224 can be provided on the cup 22, and a first seal 28 and a juice cover 26 are provided at the juice outlet 224, wherein the first seal 28 and the juice cover 26 are used. Sealing of the juice outlet 224 is achieved during product operation.
  • the juice outlet 224 can be opened through the juice cover 26 so that the food juice can be taken through the juice outlet 224, and after the user takes out the desired food juice, The juice outlet 224 can be closed by the juice cover 26 to continue to store the remaining food juice in the cup 22, thereby alleviating the oxidation of the remaining food juice.
  • the juice outlet 224 may not be provided, and after the food processing is finished, the food juice is poured directly through the cup mouth of the cup 22.
  • the cup body 22 is provided with a juice outlet 224 (not shown in the figure), and a valve is provided at the juice outlet 224, and the valve is used to control the opening or closing of the juice outlet 224. .
  • a valve may also be provided at the juice outlet 224 so that opening and closing of the juice outlet 224 may be accomplished by a valve.
  • a valve similar to a faucet can be provided at the juice outlet 224, so that the opening and stopping of the juice opening 224 can be realized like the operation of the faucet, thereby making the access to the food juice more convenient and convenient.
  • the feed assembly 3 includes: a feed cylinder 32, one end of the feed cylinder 32 being sealingly mounted to the cup 22 a mouth end; a feed cover 34, the sealing cover is mounted on the other end of the feed cylinder 32 for opening or closing the feed cylinder 32; an auxiliary feeding device (specifically, the first auxiliary feeding device 36 or the second Auxiliary feed device 38) can be mounted within feed drum 32 for auxiliary feeding, such as an auxiliary feed device rotatably mounted within feed drum 32.
  • the feed barrel 32 is for feeding and the feed cover 34 is for sealing the opening of the feed barrel 32, wherein preferably, it can be placed between the feed barrel 32 and the feed cover 34.
  • a third seal 30 allows the seal between the feed barrel 32 and the feed cover 34 to be achieved by the third seal 30.
  • a turbulent auxiliary feeding device auxiliary feeding device is arranged in the feeding cylinder 32, so that the auxiliary feeding device can assist the rotation of the feeding device to realize the auxiliary feeding, so as to be able to control the feeding speed and prevent the feeding. The food is clogged.
  • the pre-cutting of the foodstuff can be achieved by the auxiliary feeding device auxiliary feeding device, or the feeding material pre-stored in the feeding cylinder 32 can be pushed into the cup 22 by the auxiliary feeding device auxiliary feeding device, etc. operating.
  • the food processor further comprises: a cover body 72, the cover is mounted outside the feed cylinder 32, and one end of the cover body 72 is open at one end. Closed, one end of the opening of the cover body 72 is mounted on the cup body 22; the fourth sealing member 74 is disposed at the joint of the cover body 72 and the cup body 22, and the joint between the cover body 72 and the cup body 22 is sealed; A support structure 27 is disposed on the outer side wall of the cup 22, and one end of the opening of the cover 72 is sealingly mounted on the support structure 27.
  • the cover 72 is disposed outside the feed barrel 32 and sealingly mounted to the cup 22 such that the feed barrel 32 can be sealingly disposed within the cover 72.
  • the cup 22 and the cover 72 can form a tightly sealed enclosed space so that it is not required for vacuum juicing.
  • the opening of the upper end of the feeding cylinder 32 is sealed.
  • this structure is only provided with a cover body 72 on the conventional food processor, so that the structure of the conventional food processor can be retained to reduce the manufacturing difficulty and improve the production efficiency of the product, without vacuum juicing.
  • the cover 72 is removed, and its structure and usage are basically the same as those of the conventional juice machine, so that the food processor can perform vacuum juice extraction and ordinary juice extraction.
  • a support structure 27 can be provided on the side wall of the cup 22 so that the cover body 72 can cover a portion of the cup 22 and be sealingly mounted to the support structure 27 on the side wall of the cup 22.
  • the cover body 72 is sealingly mounted to the support structure 27 so that the end surface of the upper end of the cup 22 can be reserved for the installation of the feed cylinder 32, so that the feed cylinder 32 and the cover body 72 can be fixedly mounted respectively.
  • a gap is provided between the top wall of the cover 72 and the end surface of the feeding cylinder 32 away from the end of the cup 22; and / A gap is provided between the side wall of the cover 72 and the side wall of the feed cylinder 32.
  • a gap is provided between the top wall of the cover 72 and the end face of the end of the feed barrel 32 remote from the cup 22, and/or the side wall of the cover 72 and the side wall of the feed barrel 32.
  • a gap is provided therebetween, so that the top and the side walls of the cover 72 are not in direct contact with the feeding cylinder 32, so that the displacement of the feeding cylinder 32 due to the unbalanced force during pressing is not easily transmitted.
  • the cover 72 is so as not to affect the overall sealing of the product by the cover 72, so that the cover 72 can be reliably sealed with the cup 22 at all times.
  • the outer wall surface of the cup 22 includes a plurality of first planes disposed along the axial direction of the cup 22, and the plurality of first planes are spaced apart from each other in the circumferential direction of the cup 22. Wherein two adjacent first planes are connected by a first curved surface.
  • the outer sidewall surface of the cup 22 includes a plurality of first planes disposed along the axial direction of the cup 22 such that the cup 22 can be formed generally into a polygonal shape, which enables the cup 22 to be closer to a square shape. And the connection between the adjacent two first planes by the first curved surface enables the side wall of the cup 22 to be more smoothly transitioned. While the cup 22 is closer to a square shape, the square cup 22 enables the positioning between the cup 22 and the feed barrel 32 and the cover 72 to be simpler and more convenient than a conventional circular or conical cup.
  • the positioning direction of the cup cannot be quickly recognized during installation, and the user needs to carefully distinguish the direction of positioning, and the square cup can be used as a reference by length and width.
  • the positioning direction can be more quickly and easily determined during positioning, thereby enabling the positioning between the cup 22 and the feeding cylinder 32 and the cover body 72 to be simpler and more intuitive, thereby making the product more convenient to use.
  • the top wall of the cover 72 is curved; and/or the outer surface of the top wall of the cover 72 is provided with an edge.
  • the rounded side; and/or the side wall of the cover 72 includes two second curved faces disposed opposite to each other and uniformly distributed along the circumferential direction of the cover 72, and the four second curved faces are spaced apart from each other. The two adjacent second curved faces are connected by the third curved face.
  • the top wall of the cover 72 may be flat or curved, and preferably curved, because this arrangement can effectively avoid deformation of the cover 72 due to internal negative pressure, specifically
  • the outer wall can resist extrusion and the inner wall resists stretching, so that the deformation of the cover 72 can be reduced during the operation of the product, and the force applied to the cover 72 by the vacuum negative pressure can be reduced.
  • the side walls of the cover body 72 may be arranged in an arc shape.
  • the front, back, left, and right sides of the cover body 72 may be arranged as a second curved surface, and four corners are arranged on the front, rear, left and right corners.
  • the third curved surface can improve the pressure resistance of the side wall of the cover 72 and increase the strength of the side wall of the cover 72.
  • rounding is provided on the edge of the outer surface of the top wall of the cover 72, so that the structure of the cover 72 can be made smoother, so that the overall strength of the cover 72 can be further improved.
  • the top wall of the cover 72 is planar, and the side wall of the cover 72 includes a plurality of second planes spaced apart in the circumferential direction of the cover 72, wherein adjacent two The second planes are connected by a fourth curved surface, and the fourth curved surface is an arcuate surface centered on the center of the top wall of the cover 72.
  • the top of the cover 72 can also be disposed in a plane such that when the cover 72 is disposed to be transparent, it is ensured that light is incident and reflected in parallel, thereby preventing the user from viewing through the cover 72. When the image is distorted, the user's viewing experience can be ensured.
  • several side walls of the cover 72 can also be arranged substantially in a plane to ensure that the sample light can be incident and reflected in parallel from the side wall, thereby preventing the image from being distorted when viewed by the user through the cover 72. .
  • the curved surface enables a smoother connection between the respective planar side walls of the cover 72, so that the structure of the cover 72 can be made smoother, and the curved surface on the side wall is at the center of the top wall of the cover 72.
  • the circular arc of the center can further ensure that the image integrity is not deformed when the internal juicing process is observed through the top of the cover 72.
  • the side wall of the cover body 72 can be preferably provided in an arc shape or an arc-shaped structure, so that the structure of the cover body 72 can be made smoother, and thus the strength and deformation resistance of the cover body 72 can be improved.
  • the cover 72 has the same wall thickness at each position; and/or the cover 72 is a transparent cover; and/or the cover 72 has a wall thickness of 2 mm or more and 4 mm or less; / or the cover body 72 is an axisymmetric structure; and / or the end face of the opening of the cover body 72 is curved or arcuate.
  • the thickness of the cover 72 at each position is equal, so that the force of the cover 72 is uniform everywhere, so that the force can be evenly distributed to prevent the occurrence of weak portions of the force.
  • the equal wall thickness of the cover 72 at various locations also makes the structure of the cover 72 simpler, thereby enabling the cover 72 to be better machined.
  • the cover 72 is preferably a transparent cover 72.
  • a transparent material such as transparent polycarbonate or plexiglass may be used to process the cover 72, so that the user can see the cover through the cover 72 when the product is in operation. The situation inside the body 72, thereby enhancing the user experience.
  • the wall thickness of the cover 72 is greater than or equal to 2 mm and less than or equal to 4 mm, so that the thickness of the cover 72 is not too thick or too thin.
  • the axially symmetrical structure of the cover body 72 can further simplify the structure of the cover body 72, so that the strength of the cover body 72 can be further improved.
  • the end surface of one end of the opening of the cover body 72 has an arc shape or a circular arc shape, so that the end surface of the open end of the cover body 72 is relatively smooth, so that when the cover body 72 is sealed at the end surface, the cover body 72 and the first seal member 28 are attached. It is better to ensure the sealing effect and prevent the cover 72 from piercing the seal.
  • the auxiliary feeding device is drivingly coupled to the working screw 24 and is rotatable by the working screw 24.
  • the auxiliary feeding device can be drivingly coupled to the working screw 24 so that the auxiliary feeding device can be driven by the working screw 24, thereby eliminating the need to additionally provide a mechanism for driving the auxiliary feeding device, thereby enabling Simplify the structure of the product and reduce the cost of the product.
  • the auxiliary feeding device is also not connectable to the working screw 24. At this time, an additional driving member can be provided to drive the auxiliary feeding device.
  • the loading cylinder 32 is provided with a mounting plate 322 and a feeding port 324, and the mounting plate 322 is mounted to the inner side wall of the feeding cylinder 32 for installation.
  • the plate 322 is provided with a first mounting hole 3222, one end of the auxiliary feeding device is located at a side of the mounting plate 322 away from the cup 22, and the working screw 24 is located at a side of the mounting plate 322 near the cup 22, and the second auxiliary feeding device 38 The other end is inserted into the first mounting hole 3222 to be drivingly coupled to the working screw 24; wherein the inlet port 324 is disposed on the mounting plate 322 or the inlet port 324 is surrounded by the mounting plate 322 and the side wall of the feed barrel 32.
  • a mounting plate 322 can be disposed within the feed barrel 32 such that support mounting of the auxiliary feeder can be accomplished by mounting plate 322. On the other hand, a part of the foodstuff can be stored by the mounting plate 322. In addition, the mounting plate 322 can also cut the ingredients together with the auxiliary feeding device to enable the ingredients to be processed into small pieces in advance.
  • the auxiliary feeding device can drive the food together to move during the rotation, and when the processed food is large, the food material will partially enter the feeding port 324, and the auxiliary feeding device will Continue to rotate, so that the food can be squeezed between the auxiliary feeding device and the edge of the feed port 324, so that a pressing force can be applied to the food, so that the food can be extruded into small pieces to Achieve the initial treatment of the ingredients.
  • a cutting edge can be provided on the auxiliary feeding device so that the cutting of the food material can be achieved by the cutting edge.
  • the inlet port 324 may be directly disposed on the mounting plate 322 or may be enclosed by the mounting plate 322 and the side wall of the feeding cylinder 32.
  • the auxiliary feeding device includes a first auxiliary feeding device 36
  • the first auxiliary feeding device 36 includes: a first dispensing member 362 capable of Rotatingly mounted on a side of the mounting plate 322 away from the cup 22; the first transmission shaft 364, one end of the first transmission shaft 364 is drivingly coupled to the working screw 24, and the other end of the first transmission shaft 364 is inserted through the first mounting hole 3222 is drivingly coupled to the first material member 362.
  • a first hopper member 362 capable of rotating the paddle, the lever, and the like may be disposed above the mounting plate 322 and driven to the working screw 24 via the first transmission shaft 364.
  • the working screw 24 rotates, the first material member 362 can be rotated, so that the food material placed in the feeding cylinder 32 can enter the cup from the feeding port 324 under the movement of the first material member 362.
  • the food material will partially enter the feeding port 324, and the first material member 362 will continue to rotate, so that the food material can be squeezed in the first material.
  • a pressing force can be applied to the foodstuff, so that the foodstuff can be extruded into small pieces to achieve preliminary treatment of the foodstuff.
  • a cutting edge may be provided on the first material member 362 so that cutting of the food material can be achieved by the cutting edge.
  • the first material member 362 is provided with a first through hole 3622 , and the first transmission shaft 364 is inserted and worn away from the end of the working screw 24 .
  • the first auxiliary feeding device 36 further includes a cover 366 mounted on one end of the first transmission shaft 364 extending from the first through hole 3622.
  • the first material member 362 can be sleeved through the first through hole 3622 and installed on one end of the first transmission shaft 364 protruding from the first mounting hole 3222, and passed through the first material.
  • the piece 362 can improve the mounting reliability between the first material member 362 and the first transmission shaft 364.
  • the cover 366 By providing the cover 366, the upper end of the first transmission shaft 364 can be restrained on the upper side of the first material member 362, thereby preventing the first transmission shaft 364 from sliding down from the first through hole 3622, thereby further improving The connection reliability between the first material member 362 and the first transmission shaft 364.
  • the first transmission shaft 364 is provided with at least one first driving protrusion 3644 , and the first driving protrusion 3644 can be engaged with the working screw 24 . Rotate under the drive of the working screw 24.
  • one or more first drive protrusions 3644 may be disposed on the lower end surface of the first drive shaft 364 so as to be engageable with the side of the upper end of the work screw 24 by the first drive protrusion 3644.
  • the first drive shaft 364 can also be connected to the working screw 24 by other means.
  • the first material member 362 and the first transmission shaft 364 are of a split structure, or the first material member 362 and the first transmission shaft 364 . It is a one-piece structure.
  • the first material member 362 and the first transmission shaft 364 may be of a split structure, such as two parts, so as to facilitate the separate pairing of the first material member 362 with the first transmission shaft 364. Each part is individually repaired and replaced.
  • the first material member 362 and the first transmission shaft 364 can also be a unitary structure, so that the connection strength between the first material member 362 and the first transmission shaft 364 can be improved.
  • a material member 362 and the first transmission shaft 364 are not easily damaged, and a seamless connection between the first material member 362 and the first transmission shaft 364 can be realized, thereby preventing the first material member 362 and the first transmission member from being detached.
  • a gap is formed between the shafts 364 to facilitate cleaning.
  • the first material member 362 is symmetrically mounted on the first transmission shaft 364. This arrangement makes the structure of the product more reasonable and compact, and also makes the structure of the product simpler.
  • the feed port 324 is surrounded by the mounting plate 322 and the side wall of the feed cylinder 32, and the number of the feed ports 324 is two, two Both the feed port 324 and the mounting plate 322 are symmetrical about the axis of the feed barrel 32.
  • the feed port 324 is preferably enclosed by the mounting plate 322 and the sidewall of the feed barrel 32, which simplifies the construction of the mounting plate 322, thereby reducing cost.
  • the number of feed ports 324 is preferably two, which enables each feed port 324 to be larger, thereby facilitating the product to process some large pieces of food.
  • the two inlet ports 324 and the mounting plate 322 are all symmetrical about the axis of the feed cylinder 32 such that the mounting portion can be mounted just to the center of the working screw 24, thereby also making the interior of the feed cylinder 32 more rational and compact.
  • the mounting plate 322 is composed of a circular plate and two sector plates symmetrically disposed on both sides of the circular plate, wherein the first mounting hole 3222 is disposed in the middle of the circular plate.
  • the feed cylinder 32 has a straight cylindrical shape.
  • the feed barrel 32 is preferably straight cylindrical, i.e., the feed barrel 32 is not bent so that the food material can flow smoothly from top to bottom.
  • the feed cylinder 32 can also be bent.
  • the inner side wall and the outer side wall of the feed cylinder 32 are vertically disposed.
  • the first material member 362 is a skip or a slider.
  • the shape of the first material member 362 can be arbitrarily set, but is preferably a pick rod or a slider.
  • the first transmission shaft 364 is provided with one of a first positioning groove 3642 and a first positioning protrusion 242, which is disposed on the working screw 24 .
  • the first positioning protrusion 3642 and the first positioning protrusion 242 can be inserted into the first positioning groove 3642 to position the working screw 24; wherein the first positioning concave A first wear member 37 is disposed in the groove 3642.
  • a first positioning protrusion 242 or a first positioning groove 3642 or a positioning hole may be disposed on the upper end surface of the working screw 24, and a first one is disposed on the lower end of the first transmission shaft 364. Positioning the protrusion 242 or the first positioning groove 3642 or the positioning hole, so that the positioning of the working screw 24 can be realized by the cooperation of the first positioning protrusion 242 and the positioning hole or the first positioning protrusion 242 and the positioning shaft, and then The stability of the working screw 24 after installation is improved, and the shaking of the working screw 24 is reduced.
  • the first wear-resistant member 37 in the first positioning groove 3642 the wear between the first positioning projection 242 and the first positioning groove 3642 can be reduced.
  • the mounting plate 322 is disposed on one side of the cup 22 with a hollow column 326 open at both ends, and the hollow column 326 is electrically connected to the inlet 324.
  • One end of the working screw 24 extends from the bottom of the feed cylinder 32 into the hollow column 326 and can cooperate with the side wall of the hollow column 326 to pulverize the food material; wherein the hollow column 326 is away from the end of the mounting plate 322 and the feed The side walls of the barrel 32 are connected, or the end of the hollow column 326 away from the mounting plate 322 is suspended.
  • a hollow column 326 that can be electrically connected to the inlet port 324 can be disposed under the mounting plate 322, and the hollow column 326 is sleeved and mounted on the upper end of the working screw 24, so that the ingredients are fed.
  • the inlet 324 After the inlet 324 enters the lower side of the mounting plate 322, it can be squeezed or cut by the side wall of the hollow column 326 and the working screw 24, that is, the food can be fed before the food enters the cup 22.
  • the treatment effect of the product on the foodstuff can be improved to increase the juice yield.
  • the effective inner diameter of the lower end of the feed cylinder 32 can be reduced, and the passage formed between the working screw 24 and the side wall of the lower end of the feed cylinder 32 can be made smaller, thereby increasing the handling of the foodstuff.
  • the end of the hollow column 326 away from the mounting plate 322 is preferably connected to the side wall of the feeding cylinder 32, so that the hollow column 326 can further support the mounting plate 322, so that the strength of the mounting plate 322 can be improved, and in another implementation.
  • the end of the hollow post 326 away from the mounting plate 322 can also be suspended, that is, not connected to the side wall of the feed cylinder 32.
  • the hollow column 326 has a tapered shape.
  • the upper ends of the screw and the like are generally increased from top to bottom, so that the hollow columns 326 are correspondingly arranged in a tapered shape so that the hollow columns 326 can be fitted with the upper ends of the working screws 24, so that the working screws 24 can be combined with the hollow columns. 326 better coordination to achieve the processing of ingredients.
  • the mounting plate 322 is detachably mounted to the inner side wall of the feed cylinder 32, or as shown in FIGS. 1 to 3, FIG. As shown in FIGS. 11 to 17, the mounting plate 322 and the inner side wall of the feed cylinder 32 are of a unitary structure.
  • the mounting plate 322 is removably mounted within the feed barrel 32 such that the storage station 382 can be removed for cleaning of the cup 22 and the storage station 382, and the arrangement can be installed.
  • the plate 322 and the second material member 384 are installed in a single unit for installation, maintenance, and the like.
  • the inner side walls of the mounting plate 322 and the feed cylinder 32 are also of unitary construction, i.e., the mounting plate 322 can also be directly machined onto the feed, which enhances the strength of the connection between the mounting plate 322 and the feed barrel 32.
  • the feed barrel 32 is detachably sealed to the cup end of the cup 22, or as shown in Figures 37 and 38.
  • the feeding cylinder 32 and the cup 22 are of a unitary structure.
  • the feed barrel 32 and the cup 22 are of unitary construction so that the feeding and processing of the foodstuff can be achieved by a large cup, which arrangement does not require additional placement on the cup 22 on the one hand.
  • the structure of a feed cylinder 32 or similar feed cylinder 32 simplifies the number of parts of the product, and in addition, the structure has only one cup 22, so that only the opening of the cup 22 is open and thus sealed. In the case of the cup 22, only the opening of the cup 22 needs to be sealed.
  • the joint between the cup 22 and the feeding cylinder 32 and the opening of the cup 22 need to be sealed, so at least two seals are required. Therefore, such a structure can also reduce the sealing difficulty of the product compared to the prior art.
  • the feeding cylinder 32 and the cup body 22 are detachably connected, so that the pulverization of the food material and the separation of the juice residue of the food material can be realized by the cup body 22, and the food material can be added to the cup body 22 through the feeding cylinder 32, thus
  • the feeding and processing of the foodstuff can be carried out in two cups 22, so that the height of each cup 22 can be reduced to make the product better processed and cleaned.
  • the working screw 24 is provided with a first transmission structure 244, the auxiliary feeding device comprising a second auxiliary feeding device 38, and a second auxiliary feeding
  • the device 38 includes a storage platform 382 installed in the feeding cylinder 32.
  • the storage platform 382 is provided with a feeding passage 3822.
  • the second material member 384 is rotatably mounted in the feeding cylinder 32 at the storage material.
  • the second ejector 384 is disposed on the side of the second hopper 384, and the second transmission structure 3842 is configured to cooperate with the first transmission structure 244 to enable the working screw 24 and the second material 384. Drive connection.
  • the storage station 382 is for mounting within the feed barrel 32 for storing foodstuffs
  • the second material member 384 is rotatably mounted within the feed barrel 32 above the storage station 382.
  • the food stored on the storage table 382 can be pressed, cut, etc., and can be pushed into the feeding channel 3822 after being processed by extrusion, cutting, etc.
  • the food material can be allowed to enter the cup body 22, so that manual feeding can be avoided, so that when the product is actually used, the user can put all the food materials into the feeding cylinder 32 through the cup mouth of the feeding cylinder 32 at one time. And storing it on the storage table 382, after which the food material can be automatically and gradually fed under the action of the second material 384.
  • the first transmission structure 244 is disposed on the second material member 384, and the second transmission structure 3842 is disposed on the working screw 24, so that the first transmission structure 244 and the second transmission structure 3842 can be matched.
  • the two-feed member 384 can be drivingly connected with the working screw 24 so as to be rotatable under the driving of the working screw 24, and the driving method can realize the driving of the second material member 384 through the working screw 24, thereby eliminating the need for An additional mechanism for driving the second material member 384 is provided, thereby simplifying the structure of the product and reducing the cost of the product.
  • the working screw 24 and the second material member 384 are directly driven and connected by two transmission structures, so that the transmission can be made more stable on the one hand, and the other connection shaft and the like are not used on the other hand. Therefore, the structure of the product can be further simplified, and the cost of the product can be reduced.
  • the cup 22 and the feeding cylinder 32 are of a unitary structure, or the cup 22 and the feeding cylinder 32 are of a split structure; the cup 22 and the feeding cylinder 32 are of an integral structure.
  • the storage tray 382 is detachably mounted in the feeding cylinder 32; when the cup 22 and the feeding cylinder 32 are of a split structure, the storage tray 382 can be detachably mounted in the feeding cylinder 32, or the storage tray The 382 and the feed cylinder 32 are of unitary construction.
  • the feed barrel 32 and the cup 22 are of unitary construction, so that the feeding and processing of the food material can be realized by a large cup 22, which does not require additional cups on the one hand.
  • a structure similar to the feed cylinder 32 is provided on the 22, which in turn simplifies the number of parts of the product.
  • the structure has only one cup 22, so that only the opening of the cup 22 is open, so that the cup is sealed. In the case of the body 22, only the opening of the cup 22 needs to be sealed.
  • the connection between the cup 22 and the feeding cylinder 32 and the opening of the cup 22 need to be sealed, so at least two places need to be sealed.
  • the structure can also reduce the sealing difficulty of the product compared to the prior art.
  • the feeding cylinder 32 and the cup body 22 are detachably connected, so that the pulverization of the food material and the separation of the juice residue of the food material can be realized by the cup body 22, and the food material can be added to the cup body 22 through the feeding cylinder 32, thus
  • the feeding and processing of the foodstuff can be carried out in two cups 22, so that the height of each cup 22 can be reduced to make the product better processed and cleaned.
  • the storage tray 382 can be detachably mounted in the feeding cylinder 32 so that the storage tray 382 can be detached to carry out the cup 22 and the storage material. Cleaning of the stage 382.
  • the storage tray 382 can be detachably installed in the feeding cylinder 32, or the storage tray 382 can be integrally installed in the feeding cylinder 32. .
  • the storage platform 382 is provided with a second mounting hole 3824, and the first transmission structure 244 is one of a transmission hole and a second transmission shaft.
  • the second transmission structure 3842 is the other of the transmission hole and the second transmission shaft.
  • the second transmission shaft can be inserted into the transmission hole through the second mounting hole 3824, so that the working screw 24 and the second material member 384 are drivingly connected.
  • a second mounting hole 3824 can be disposed on the storage tray 382 as shown in FIG. 17 so that the working screw 24 and the second material member 384 can be connected to each other through the second mounting hole 3824.
  • a transmission structure 244 is preferably a transmission hole or a second transmission shaft, that is, a transmission hole or a second transmission shaft may be disposed on the second material member 384, and a second transmission is disposed on the working screw 24. a shaft or a transmission hole, so that the cooperation between the transmission hole and the second transmission shaft is achieved, so that the direct drive of the second screw member 384 by the working screw 24 is realized, so that the second material member 384 can be driven in the feeding cylinder 32.
  • the top of the memory table 382 is rotated to realize the processing of cutting, squeezing or pushing the foodstuff, so that automatic feeding can be realized.
  • the storage platform 382 is disposed on one side of the working screw 24 and around the second mounting hole 3824 is provided with a first mounting groove 3826 for food processing.
  • the machine further includes a second wear member mounted in the first mounting groove 3826 and sleeved on the second drive shaft between the surfaces of the working screw 24 and the storage table 382.
  • a first mounting groove 3826 can be disposed around the second mounting hole 3824 on the lower surface of the storage table 382, so that the positioning of the second wear member can be achieved through the first mounting groove 3826.
  • the second wear-resistant member is disposed between the storage table 382 and the upper end surface of the working screw 24, which can reduce mutual wear between the working screw 24 and the storage table 382, thereby improving the working screw 24 and the storage table. The service life of 382.
  • the transmission hole is a polygonal hole
  • the second transmission shaft is a polygonal shaft adapted to the polygonal hole
  • the first transmission structure 244 is the second The drive shaft
  • the second transmission structure 3842 is a transmission hole.
  • the transmission hole is a polygonal hole
  • the second transmission shaft is a polygonal shaft adapted to the polygonal hole, so that the driving between the working screw 24 and the second material 384 can be realized by the non-circular surface.
  • the contact area between the transmission hole and the second transmission shaft can be increased to increase the driving force, thereby improving the transmission efficiency and ensuring the reliability of the transmission.
  • a second drive shaft is disposed on the work screw 24, and a drive hole is disposed on the second feed member 384, so that the work screw 24 and the second feed member 384 can be better matched.
  • the auxiliary feeding device comprises a third auxiliary feeding device 39
  • the third auxiliary feeding device 39 comprises: a storage base 392, installed in the inlet
  • the cartridge 32 is located at a side away from the bottom of the cup 22, and the storage chamber 392 is provided with a storage chamber 3922.
  • the storage chamber 3922 is open away from one end of the working screw 24, and the storage holder 392 is provided with at least a feeding hole 3920, the feeding hole 3920 is electrically connected to the storage chamber 3922 and the cup 22; the third material member 394, the third material member 394 is rotatably installed in the storage chamber 3922, and the third material
  • the piece 394 can be rotated at an angle greater than or equal to 30°; wherein the stock holder 392 is used for storing the foodstuff, and the third material member 394 is used for cutting and/or squeezing the foodstuff in the storage chamber 3922, and for storing the material.
  • the food stored in the chamber 3922 is pushed into the feed hole 3920.
  • the third auxiliary feed device 39 includes a stock holder 392 above the work screw 24 and a third material member 394 rotatably mounted within the stock holder 392.
  • the storage base 392 is further provided with a feeding hole 3920. Therefore, in actual use, the food material can be directly put into the storage base 392, so that the storage material is used to realize the storage of the food material, and the third material is used.
  • the member 394 is rotatably mounted in the storage base 392, and the storage base 392 is further provided with a feeding hole 3920 which is electrically connected to the storage chamber 3922, so that the rotation of the third material member 394 can be pushed and stored.
  • the foodstuff on the storage base 392 is rotated, and the foodstuff can be squeezed by mutual friction between the foodstuff and the foodstuff during the rotation or the mutual friction between the foodstuff and the side wall of the feeding cylinder 32 or the food and the first
  • the preliminary cutting and/or extrusion processing of the food material is achieved by mutual frictional pressing between the three material members 394, and the smaller food material after the preliminary cutting and/or extrusion processing can be in the third material member 394. Under the action, it falls from the feeding hole 3920 to the lower side of the storage base 392, and the larger food material is caught at the feeding hole 3920. At this time, the third material 394 does not stop rotating.
  • the third material member 394 will continue to rotate, so that the third material member 394 can be combined with the feeding hole.
  • the side wall of the 3920 forms a pinching force on the foodstuff, thereby applying a pressing or cutting force to the foodstuff caught in the feeding hole 3920, thereby being able to squeeze or cut the food into smaller pieces, thus
  • the food material can be sequentially pressed or cut into pieces of a certain size, and then sequentially passed through the feeding hole 3920 and into the cup 22 to enter the cup body 22.
  • the inner food material can be crushed or cut under the double action of the working screw 24 and the side wall of the cup body 22, and then the juice residue separation of the food material can be realized by the filter screen or the double cup double screw.
  • the user when the juice is actually juiced, the user can put all the ingredients into the storage base 392 at one time and store them in the storage base 392, after which the ingredients can be in the first
  • the three-feed material 394 realizes automatic step-by-step feeding, so that the user does not need to gradually feed the material when actually juicing, so that one-time feeding can be realized, and in the actual process, all the ingredients can be put into the stock first.
  • the product is controlled by the reservation component and then temporarily not working, but can be started after a fixed period of time, so that the advance reservation processing of the food can be realized, thereby reducing the waiting time of the user and improving the user.
  • the experience that is, the structure provides the possibility for the product to achieve a predetermined juice extraction, so that a reservation component can be set on the food processor to implement the reservation function.
  • this kind of setting can realize automatic feeding under the action of the third material 394 after one-time feeding, so that it is not necessary to use a push rod or the like to realize manual pushing, thereby reducing user operation.
  • the amount of the product is more convenient and simpler, so that the user experience can be improved, and the structure of the push rod can be omitted to avoid a series of problems such as the use of the push rod, such as the placement of the push rod. And the safety hazard problem of using the push rod.
  • such an arrangement enables the food material to enter the cup 22 by cutting or extruding the food material in advance through the third material member 394 when the food material falls into the cup body 22 through the feed hole 3920.
  • the particles are small, so that the difficulty of the working screw 24 can be reduced, the wear of the working screw 24 can be reduced, and the processing effect of the food material can be improved to increase the juice yield.
  • this arrangement can effectively prevent the work screw 24 from being caught and prevent the occurrence of clogging of the slag outlet.
  • the third auxiliary feeding device 39 itself has the function of accommodating the foodstuff, so that when the food material is placed, the third auxiliary feeding device 39 can be moved to the foodstuff.
  • the side wall of the storage chamber 3922 can be directly used to block and squeeze the food material, so that the side wall of the feeding cylinder 32 is not needed, thus correspondingly
  • the side wall portion of the feed cylinder 32 of the holder 392 is not in direct contact with the foodstuff, thereby reducing the processing requirements of the side wall of the feed cylinder 32 to reduce product cost and to ensure that the feed cylinder 32 is here. Clean to reduce the difficulty of cleaning the feed barrel 32.
  • a storage chamber 3922 is provided in the storage base 392, and the food material can be prevented from being caught in the side wall of the storage plate and the feeding cylinder 32 as compared with the arrangement of the storage base 392 as a storage plate. Between, thus preventing food waste.
  • the angle of rotation of the third material member 394 is greater than or equal to 30°, so that the third material member 394 has a reasonable rotation angle, so that the food on the storage base 392 can be fully pulverized and pushed to the feed.
  • the smoothness of the product feeding is improved, and the rotation angle of the third material member 394 is prevented from being too small, resulting in poor feeding.
  • the storage base 392 is further provided with a third mounting hole 39242, and the third auxiliary feeding device 39 further includes: a third transmission shaft 396.
  • One end of the third transmission shaft 396 is located in the storage chamber 3922, and is drivingly connected to the third material member 394.
  • the other end of the third transmission shaft 396 protrudes from the third mounting hole 39242 and is drivingly connected to the working screw 24.
  • a third dial member 394 can be disposed in the storage chamber 3922, such as a plucking paddle, a lever, and the like, and is driven to the working screw 24 through the third drive shaft 396.
  • the third conveying member 394 can be rotated by the third driving shaft 396 to realize the processing of cutting and/or squeezing the food material.
  • the cut and/or extruded food material can be further introduced into the cup 22 from the feed hole 3920 by the third material member 394.
  • the third material member 394 can also be driven to connect to the working screw 24 by other means, or the third material member 394 can also be connected to the working screw 24, but additionally provided with a driving structure that drives its rotation.
  • the outer bottom wall of the storage base 392 is provided with a receiving groove 3926, and one end of the working screw 24 can extend into the receiving groove 3926, and the inner bottom wall of the storage base 392 is disposed.
  • the third mounting hole 39242 extends through the mounting boss 3924 and the receiving groove 3926.
  • One end of the third driving shaft 396 is located in the receiving groove 3926 for driving connection with the working screw 24, and the third driving shaft 396 is further One end protrudes into the storage chamber 3922 through the third mounting hole 39242, and is drivingly connected with the third material member 394.
  • a mounting boss 3924 is disposed on the inner bottom wall surface of the storage base 392.
  • the third feeding member 394 can be mounted higher by the mounting boss 3924, and the setting is further The area of the inner wall of the storage base 392 can be increased, so that the third material member 394 can be engaged with the inner wall of a larger area to realize the cutting and/or squeezing treatment of the foodstuff, thereby increasing the third auxiliary feeding.
  • the pressing force of the foodstuff can further improve the processing effect of the foodstuff.
  • the receiving groove 3926 can be disposed corresponding to the mounting boss 3924, so that the thickness of the bottom wall of the stock holder 392 can be ensured without increasing the thickness of the bottom wall of the stock holder 392.
  • a receiving groove 3926 is disposed on the outer bottom wall surface of the storage base 392, so that the storage base 392 can be disposed on one end of the working screw 24, so that the working screw 24 can also cooperate with the side wall of the receiving groove 3926 to achieve the pair. Further cutting and/or squeezing of the ingredients can further improve the processing effect of the ingredients.
  • the feed hole 3920 extends from the edge of the end face of the mounting boss 3924 away from the end of the storage chamber 3922 to the bottom of the storage holder 392.
  • the feed hole 3920 extends from the edge of the end face of the mounting boss 3924 away from the end of the storage chamber 3922 to the bottom of the storage holder 392, so that the feed hole 3920 is opened larger, thereby improving the advancement. Smoothness of the material.
  • the number of the feeding holes 3920 is one or more, and when the plurality of the feeding holes 3920 are plural, the plurality of feeding holes 3920 are symmetrically disposed.
  • the side wall surface of the mounting boss 3924 is away from the end of the mounting boss 3924 away from the bottom wall of the storage holder 392 to the mounting boss 3924.
  • One end of the bottom wall of the seat 392 is outwardly inclined; and/or the shape of the receiving groove 3926 is adapted to the shape of the end of the working screw 24 that projects into the receiving groove 3926.
  • the outer side wall of the mounting boss 3924 is inclined outwardly from the opening of the storage chamber 3922 to the bottom wall of the storage chamber 3922, so that the food can be processed after cutting and/or squeezing the food.
  • the outer side wall of the mounting boss 3924 flows downward, thereby allowing the food material to be accelerated downward by gravity, thereby enabling the food material to be fed more smoothly through the feed hole 3920.
  • this arrangement also enables the receiving groove 3926 to better fit the upper end of the working screw 24 while also making the structure of the third auxiliary feeder 39 more reasonable.
  • the bottom wall of the storage holder 392 is recessed into the storage chamber 3922 to form the receiving groove 3926 and the mounting boss 3924.
  • the bottom wall of the storage base 392 may be recessed into the storage base 392 to form a mounting boss 3924 on the inner bottom wall surface thereof, and formed on the outer bottom wall surface.
  • the accommodating groove 3926 can quickly and easily process the mounting boss 3924 and the accommodating groove 3926 on the bottom wall of the hopper 392, thereby reducing the processing difficulty and reducing the processing cost.
  • the third material member 394 includes: a fixing base 3942 on the mounting boss 3924 and mounted to the third transmission shaft 396; the material of the material 3944, one end of the material structure 3944 The other end of the material structure 3944 is extended to the bottom wall of the storage chamber 3922; wherein the material structure 3944 is a material sheet, a material bar or a material bar.
  • the third material member 394 includes a base and a material structure 3944, wherein the base is used for connection with the third drive shaft 396, and the installation of the material 3944 is realized, and the material structure 3944 is specifically used.
  • the mounting boss 3924 is disposed in the storage chamber 3922, the third material member 394 can be mounted on the top of the mounting boss 3924, so that one end of the third material member 394 can be mounted at a higher level.
  • the other end of the third material member 394 can be sagged toward the bottom of the storage chamber 3922, so that the third material member 394 can cut and/or squeeze the food materials of different heights in the storage chamber 3922.
  • the treatment effect of the foodstuff can be improved to increase the juice yield.
  • the third material member 394 can only be mounted on the bottom wall of the storage chamber 3922, so that the third material member 394 can process the food.
  • the height is limited by the height of the material structure 3944, so that when the material structure 3944 is set to be short, the processing effect on the food material is reduced, but if the entire material structure 3944 is set higher, in order to ensure the dialing
  • the strength of the material structure 3944 can only be set higher at the same time, which causes the structure of the third material member 394 to be more complicated, and also reduces the connection strength between the third transmission shaft 396 and the same.
  • the material structure 3944 can be in the form of a sheet or a rod or a rod. Specifically, the shape of the material 3944 can be selected according to actual conditions.
  • the third transmission shaft 396 is provided with at least one second driving protrusion 3964, and the second driving protrusion 3964 can be engaged with the working screw 24. Rotate under the drive of the working screw 24.
  • one or more second drive protrusions 3964 may be disposed on the lower end surface of the third drive shaft 396 so as to be engageable with the side of the upper end of the work screw 24 by the second drive protrusion 3964.
  • the third transmission shaft 396 can also realize its driving connection with the working screw 24 by other structures.
  • the third material member 394 and the third transmission shaft 396 are of a split structure, or the third material member 394 and the third transmission shaft 396 are of a unitary structure.
  • the third material member 394 and the third transmission shaft 396 may be of a split structure, such as two parts, so as to facilitate the separate pairing of the third material member 394 and the third power shaft 396. Each part is individually repaired and replaced.
  • the third material member 394 and the third transmission shaft 396 can also be a unitary structure, so that the connection strength between the third material member 394 and the third transmission shaft 396 can be improved.
  • the three-way material member 394 and the third transmission shaft 396 are not easily damaged, and the seamless connection between the third material member 394 and the third transmission shaft 396 can be realized, thereby preventing the third material member 394 and the third transmission portion from being prevented.
  • a gap is formed between the shafts 396 to facilitate cleaning.
  • the third transmission shaft 396 is provided with one of a second positioning groove 3962 and a second positioning protrusion 246, and the working screw 24 is provided with a second positioning groove 3962 and a The other of the two positioning protrusions 246, the second positioning protrusion 246 can be inserted into the second positioning groove 3962 to position the working screw 24; wherein the second positioning groove 3962 is provided with a third wear resistance Item 398.
  • a second positioning protrusion 246 or a second positioning groove 3962 may be disposed on the upper end surface of the working screw 24, and a second positioning protrusion is disposed on the lower end of the third driving shaft 396. 246 or the second positioning groove 3962, so that the positioning of the working screw 24 can be realized by the cooperation of the second positioning protrusion 246 and the second positioning protrusion 246 and the positioning shaft, thereby improving the stability of the working screw 24 after installation. , the shaking of the working screw 24 is reduced.
  • the third wear-resistant member 398 in the second positioning groove 3962 the wear between the second positioning protrusion 246 and the second positioning groove 3962 can be reduced.
  • the third auxiliary feeder 39 is detachably mounted within the feed cylinder 32, or the third auxiliary feeder 39 is located within the feed cylinder 32, and the third auxiliary feed
  • the storage seat 392 of the device 39 is integrally formed with the side wall of the feeding cylinder 32, or the third buckle 228 is disposed on the inner side wall of the feeding cylinder 32, and the fourth buckle is disposed on the outer side wall of the storage base 392.
  • the storage base 392 can be installed in the feeding cylinder 32 through the mating buckle of the third buckle 228 and the fourth buckle 3928; and/or the side wall of the storage chamber 3922 is from the opening of the storage chamber 3922 to the storage
  • the bottom of the chamber 3922 is inclined to the inside of the storage chamber 3922.
  • the third auxiliary feeder 39 is preferably mounted within the feed cylinder 32 above the working screw 24 such that the third auxiliary feeder 39 can be installed through the feed cylinder 32 while By installing it in the feed cylinder 32, it is also possible to prevent the foodstuff in the third auxiliary feeder 39 from splashing out by the feed cylinder 32, thereby preventing waste of the foodstuff.
  • the storage base 392 of the third auxiliary feeding device 39 and the feeding cylinder 32 can be arranged in a unitary structure, and the storage base 392 of the third auxiliary feeding device 39 can also be detachably mounted on the feeding cylinder. 32 inside.
  • the third auxiliary feeding device 39 is preferably detachably mounted in the feed cylinder 32.
  • a fourth buckle 3928 may be disposed on the outer side wall of the storage base 392, and a third buckle 228 is disposed on the inner side wall of the feeding cylinder 32 so as to pass through the third buckle 228 and the fourth With the cooperation of the buckle 3928, the third auxiliary feeding device 39 is snap-fitted in the feeding cylinder 32.
  • This arrangement allows the third auxiliary feeder 39 to be detached from the feed cylinder 32 at will, thereby facilitating the maintenance of the third auxiliary feeder 39 even in the cleaning of the third auxiliary feeder 39.
  • the food processing cup 2 further includes: a sieve 29 disposed between the cup 22 and the working screw 24; wherein, the feeding cylinder 32 An end of the inner side wall corresponding to the filter screen 29 adjacent to the feed cylinder 32 is provided with a positioning step surface 328 for cooperating with the screen 29 to position the screen 29.
  • a filter 29 may be placed between the cup 22 and the working screw 24 when the food processor is a single cup 22 and a single working screw 24 food processor 24 to enable the use of the screen 29
  • the juice residue of the ingredients is separated.
  • a positioning step surface 328 may be provided on the inner side wall of the feed cylinder 32 corresponding to the upper end surface of the screen 29 so as to be able to press the screen 29 with the positioning step surface 328 to achieve axial positioning of the screen 29. Installation makes it possible to improve the installation reliability of the filter screen 29.
  • the food processor further comprises: a pressure relief hole 62 disposed on the cup body 22, Any one or more of the material assembly 3 and the slag assembly 4 can be electrically connected to the sealing chamber; the pressure relief plug 64 can be mounted at the pressure relief hole 62 to open or seal the pressure relief hole 62.
  • a pressure relief hole 62 that is electrically connected to the sealing chamber may be disposed on any one or more of the cup 22, the feed assembly 3, and the slag assembly 4, and is implemented by the pressure relief plug 64.
  • the pressure relief plug 64 can be closed to seal the pressure relief hole 62 before the product is started, so that the inside of the cup 22, the feed assembly 3 and the slag assembly 4 can be completely sealed, thereby enabling evacuation.
  • the assembly 5 is evacuated, so that the processing of the foodstuff can be carried out substantially under vacuum or near vacuum, thereby preventing oxidation of the foodstuff.
  • the pressure relief hole 62 can be opened through the pressure relief plug 64 to conduct the inside of the product to the outside, thereby gradually unloading the negative pressure in the cup 22, the feed assembly 3 and the slag assembly 4. This allows for quick and easy pressure relief.
  • pressure relief may also be performed by other means, such as inward delivery of air through the pumping assembly 5 to achieve pressure relief.
  • the pumping assembly 5 includes: an air pump 52; an air suction passage 54, one end of the air suction passage 54 is connected to the air pump 52, and the other of the air suction passage 54 One end is in communication with the sealed chamber.
  • an air pump 52 can be utilized to effect extraction of air, and an air extraction passage 54 is used to effect gas discharge.
  • the pumping assembly 5 further includes: an exhaust passage 56 connected to the outlet of the air pump 52 for exhausting; and a noise reduction device 58 disposed in the row On the gas passage 56.
  • the exhaust may be performed by providing an exhaust passage 56, which is preferably an exhaust pipe.
  • the noise reducer 58 can reduce the noise of the pumping unit 5 and improve the user experience.
  • the air pump 52 is disposed on any one of the base assembly 1, the cup 22 and the feed assembly 3, or the air pump 52 is opposed to the base assembly 1, the cup The body 22 and the feed assembly 3 are independently arranged.
  • the air pump 52 can be disposed at any location, such as, for example, on the base assembly 1, on the cup 22, or on the feed assembly 3.
  • the air pump 52 can also be coupled to the base assembly 1 and the cup. 22 and the feed assembly 3 are independently arranged, i.e., the air pump 52 can also be peripherally attached to the base assembly 1, the cup 22 and the feed assembly 3.
  • the suction passage 54 is an exhaust pipe.
  • the suction passage 54 is preferably an air extraction duct.
  • the air extraction passage 54 may also be other passage structure disposed on the housing of the food processor.
  • the air pump 52 is an electric pump or a hand pump or a foot pump.
  • the air pump 52 is preferably an electric pump, so that it can be pumped with the electric drive air pump 52, so that manual pumping is not required.
  • the air pump 52 can also be a manual pump or a foot pump.
  • the air pump 52 is a vacuum pump.
  • the air pump 52 is preferably a vacuum pump, because the vacuum pump is relatively common and thus easy to purchase, and in addition, the vacuum pump has a high ability to evacuate, thereby being able to extract a large amount of air inside the food processor to ensure that the ingredients are processed. At the time, the vacuum effect inside the cup 22.
  • the cup body 22 is provided with a first slag opening 222, and when the slag assembly 4 is sealingly connected to the first slag opening 222, the slag assembly 4 includes The slag cup 42 is detachably sealed and mounted on the first slag opening 222.
  • the slag cup 42 is provided with a slag opening 422 on the side wall thereof, and the slag opening 422 and the first slag opening 222 are electrically connected to each other;
  • the slag cover 44 is mounted on the open end of the slag cup 42;
  • the second sealing member is disposed at the joint of the slag cover 44 and the slag cup 42 for the slag cover 44 and the slag cup 42 a sealing joint;
  • one of the slag cup 42 and the cup 22 is provided with a mounting post 226, and the other of the slag cup 42 and the cup 22 is provided with a mounting sleeve 424 through which the slag cup 42 passes
  • the mating with the mounting sleeve 424 is detachably sealably mounted at the first tap opening 222.
  • the first slag opening 222 is disposed on the cup 22, and the slag assembly 4 is sealingly connected to the first slag opening 222, that is, when the slag assembly 4 is installed outside the cup 22, preferably
  • the slag assembly 4 is configured to include a slag cup 42 and a slag cover 44, so that the slag cup 42 can be slag-treated, and the slag cup 42 can be opened and sealed by the slag cover 44.
  • the slag cup 42 and the cup body 22 are detachably connected to facilitate detachment of the slag cup 42 from the cup body 22, and the slag or cleaning treatment is performed.
  • a mounting sleeve 424 can be arranged on one of the slag cup 42 and the cup 22, and a mounting post 226 can be arranged on the other, so that the mounting sleeve 424 and the mounting post 226 can be installed by sockets to realize slag connection.
  • a second seal can be placed between the mounting sleeve 424 and the mounting post 226 to enable the mounting sleeve 424 to be sealingly coupled to the mounting post 226.
  • the slag assembly 4 can also be of other types of construction, such as a slag bag or other cavity structure.
  • the food processor further comprises: a slag pressure adjusting assembly disposed at the first slag opening 222 for adjusting the slag pressure at the first slag opening 222.
  • a slag pressure regulating assembly may be disposed at the first slag opening 222 so that the slag pressure at the first slag opening 222 can be adjusted by the slag pressure regulating assembly so as to be reasonably controlled
  • the slag pressure is applied so that the food slag can be further squeezed before being discharged to make the separation of the juice residue more thorough.
  • the slag pressure regulating component can have only one gear pressure, that is, the slag pressure is a fixed value, and the user cannot change the slag pressure after the product is assembled.
  • the slag pressure regulating component can also have multiple gear pressures, that is, the slag pressure includes a plurality of gear values.
  • the user can operate the slag pressure regulating component to make the product have multiple slag discharges.
  • Pressure so that when processing different ingredients, the slag pressure can be adjusted according to the type of ingredients and the needs of the user, so that on the one hand, it can better meet the various needs of the user, and on the other hand, it can be reasonably adjusted according to the type of the ingredients.
  • Slag pressure which can prevent some softer ingredients, such as grapes, from being crushed, resulting in loss of nutrients, poor taste, etc., and prevent certain crude fiber ingredients such as sugar cane and ginger. Insufficient extrusion of ingredients such as carrots and carrots leads to a low juice yield, which in turn ensures the nutrition and taste of the ingredients and increases the juice yield of the products.
  • the slag pressure can be adjusted by a damping silica gel.
  • the specific structure of the slag pressure regulating component may be a structure for adjusting the slag pressure on the existing juice machine, juicer or the like.
  • one end of the feed assembly 3 is detachably snap-fitted within the open end of the cup 22.
  • the first buckle 320 may be disposed on the lower end of the feed assembly 3, such as the feed cylinder 32, and the inner side wall of the upper end of the cup 22 may be disposed to cooperate with the first buckle 320.
  • the second buckle 220 is configured to sealingly install one end of the feed assembly 3 within the open end of the cup 22 by a snap fit of the first buckle 320 and the second buckle 220.
  • the cup body 22 comprises a pulverizing cup and a pressing cup
  • the sealing assembly of the feeding assembly 3 is mounted on the cup end of the pulverizing cup, and the other end of the pulverizing cup is provided with a communication port, and is squeezed.
  • the pressing cup and the pulverizing cup are connected through the communication port;
  • the working screw 24 includes a pulverizing screw installed in the pulverizing cup and an extrusion screw installed in the squeezing cup; wherein the cup body 22 is provided with a first slag opening 222, When the slag device 4 is sealingly connected to the first slag discharge port 222, the first slag discharge port 222 is disposed on the squeeze cup, and the slag assembly 4 communicates with the squeeze cup through the first slag discharge port 222; wherein, the base assembly 1 is a first drive shaft and a second drive shaft are disposed.
  • the first drive shaft is drivingly connected with the pulverizing screw for driving the pulverizing screw to pulverize the food material
  • the second driving shaft is drivingly connected with the extrusion screw for driving the extrusion screw to extrude the food material. In order to separate the juice residue.
  • the pulverizing screw is driven by the first driving shaft to cooperate with the side wall of the pulverizing cup to pulverize the food, and the pulverized food material enters the squeezing under the action of the pulverizing screw.
  • the extrusion screw presses the foodstuff under the drive of the second drive shaft to separate the juice residue of the foodstuff.
  • the ingredients in the cup can be pulverized by the action of the pulverizing cup and the pulverizing screw, and at the same time, the squeezing screw can be set horizontally in the process of squeezing the slag, and the slag discharging system can be set horizontally. It is very convenient to separate the juice residue of the food. On the one hand, it can ensure the juice extraction rate of the food processor, on the other hand, it can avoid the use of the components such as the filter 29 and the rotating brush, so that the structure of the food processor is simple and easy to install. At the same time, since the filter 29 is eliminated, the user's cleaning difficulty can be reduced, and the user experience can be improved.
  • the axis between the axis of the pressing cup and the axis of the pulverizing cup is at an angle of 75° or more and 180° or less, or between the axis of the pressing cup and the axis of the pulverizing cup.
  • an angle may be set between the pressing cup and the crushing cup as long as the food material can enter the crushing cup from the pressing cup, wherein preferably, the axis of the pressing cup and the axis of the crushing cup Between the angle of 75° or more and 180° or less, that is, the pressing cup is horizontally or obliquely disposed downward, so that the food material enters into the pressing cup or flows into the first slag opening 222 in the pressing cup at least Overcoming the gravity of the foodstuff, thereby making the flow of the food material smoother, wherein, further, the angle between the axis of the pressing cup and the axis of the crushing cup is greater than 90° and less than or equal to 135°, and the food is arranged in addition to being squeezed.
  • this kind of arrangement combines the vertical machine and the horizontal machine, so that the product has the advantages of the vertical machine pulverizing effect and the horizontal machine squeezing sufficient, and thus the food can be eaten. Is sufficiently pulverized, and can be sufficiently pressed, the juice yield can be improved further.
  • the axis of the pressing cup and the axis of the pulverizing cup are at an angle of 90°.
  • an angle between the axis of the extrusion screw and the axis of the pulverizing screw is greater than or equal to 75° and less than or equal to 180°, or between the axis of the extrusion screw and the axis of the pulverizing screw is greater than or equal to 90° or less An angle of 135°.
  • the axis of the extrusion screw is at an angle of 90 with the axis of the pulverizing screw.
  • the base assembly 1 further includes a base 18, a housing assembly 16, and the housing assembly 16 is mounted on the base 18.
  • the cup body 22 is provided with a first slag opening 222, and the slag assembly 4 is sealingly connected to the first slag opening 222 for food processing.
  • the machine further includes: a first pressure relief passage, one end of the first pressure relief passage is in communication with the cup body 22, the other end of the first pressure relief passage is in communication with the outside; and the second pressure relief passage is connected to one end of the second pressure relief passage
  • the slag device 4 is connected, and the other end of the second pressure relief passage is in communication with the outside;
  • the fifth sealing member 84 is mounted on one end of the first pressure relief passage communicating with the outside and the second pressure relief passage communicating with the outside.
  • the first pressure relief channel and the second pressure relief channel are opened or closed.
  • a first pressure relief passage communicating with the cup 22 is provided, and the cup 22 can be performed after the vacuum juicing is completed through the first pressure relief passage.
  • Relieving pressure, and providing a second pressure relief passage communicating with the slag assembly 4 can release the slag device 4 after the vacuum juicing is completed through the second pressure relief passage, and the fifth seal 84 is sealed and connected at the first The end of the pressure relief passage and the second pressure relief passage communicate with the outside, so that the first pressure relief passage and the second pressure relief passage can be connected to the outside through the opening or closing of the fifth sealing member 84, thereby being capable of vacuuming the juice.
  • the first pressure relief passage and the second pressure relief passage are closed to ensure that the cup 22 can be sealed, and after the juice is finished, the fifth seal 84 can be opened to make the first pressure relief passage and the second pressure relief passage. Open, so that the cup 22 and the slag assembly 4 can be simultaneously relieved.
  • the cup body 22 and the slag assembly 4 can be respectively released at the time of pressure relief, so that regardless of the cup body 22 Whether the first slag opening 222 is blocked by the food slag, and the slag removing device 4 can be relieved in time, so that the slag removing device 4 can be easily and conveniently removed after the juice is finished to perform the slag or cleaning treatment, and further
  • the invention can solve a series of problems caused by the slag blocking of the slag device 4 due to the clogging of the food slag, thereby improving the overall performance of the product and improving the user experience.
  • one end of the first pressure relief passage communicating with the outside and one end of the second pressure relief passage communicating with the outside are merged into the same passage; the cup body 22
  • a connecting passage 82 is disposed in the side wall.
  • One end of the connecting passage 82 extends to the first tap opening 222, and communicates with the first tap opening 222.
  • the inner side wall of the connecting passage 82 is provided with a second passage communicating with the cup 22.
  • the hole 822, the outer side wall of the connecting passage 82 is provided with a third through hole 824, and the fifth seal 84 can be opened or sealedly mounted at the third through hole 824.
  • the one end of the first pressure relief passage and the second pressure relief passage that communicates with the outside, that is, the intake end may be merged into one passage, so that only a fifth seal 84 needs to be provided at the same time.
  • the first pressure relief passage and the second pressure relief passage are simultaneously opened or closed at the same time, so that when the cup body 22 and the slag assembly 4 are closed for vacuum juice extraction, only the fifth sealing member 84 needs to be installed in place.
  • only a fifth sealing member 84 needs to be opened, thereby simplifying the operation of the user during juice extraction and pressure relief, and reducing the workload of the user when using the product, so as to improve the user experience.
  • a connecting passage 82 in the side wall of the cup body 22 so that one end of the first pressure releasing passage communicating with the outside and one end of the second pressure releasing passage communicating with the outside can be merged into the same passage.
  • one end of the connecting passage 82 communicates with the first slag opening 222, so that the connecting passage 82 can communicate with the slag assembly 4, and the second through hole 822 is disposed on the side wall of the connecting passage 82, so that the connecting passage 82 can
  • the cup body 22 is connected, so that the connecting passage 82 can serve as a passage shared by the first pressure relief passage and the second pressure relief passage, so that the cup 22 and the slag assembly 4 can simultaneously close and depressurize through the connecting passage 82.
  • the third through hole 824 on the outer side wall of the connecting passage 82 is an air inlet which is connected to the external passage through the connecting passage 82, so that the cup body 22 and the slag assembly 4 can be opened by opening and closing the third through hole 824. Seal at the same time or relieve pressure at the same time.
  • a splitter comprising an inlet and two outlets allows the pressure relief of the cup 22 and the slag assembly 4 to be simultaneously achieved by the splitter.
  • the fifth sealing member 84 is a sealing plug
  • the food processor further includes: a valve stem 86, one end of the valve stem 86 is inserted and installed in the third
  • the through hole 824 is movable along the axis of the third through hole 824, the other end of the valve stem 86 is located outside the cup 22, and the sealing plug is sleeved on one end of the valve stem 86 outside the cup 22, and can be in the valve
  • the rod 86 is sealingly mounted at the third through hole 824 or opening the third through hole 824; the return spring 88 is disposed in the cup 22 or in the connecting passage 82 and is connected to the valve stem 86 for use in the valve stem 86.
  • the valve stem 86 is reset after movement.
  • the fifth sealing member 84 can be provided as a sealing plug, such as a rubber stopper and a silicone plug, so that the opening and closing of the third through hole 824 can be realized by a sealing plug, thereby achieving the entire pressure relief.
  • the channel is opened and closed.
  • the valve stem 86 is used to realize the installation of the sealing plug, and the driving plug is driven along the axial direction of the third through hole 824, so that the opening and closing of the sealing plug can be realized by the movement of the valve stem 86.
  • the return spring 88 is used to reset the valve stem 86 after the pressure relief is completed, so that the valve stem 86 and the sealing plug can be automatically reset to the initial position after the pressure is released to achieve the sealing of the third through hole 824.
  • valve stem 86 can be automatically reset, so that the user does not need to specifically close the third through hole 824, thereby simplifying the workload of the user, and also preventing the user from forgetting to reset the valve stem 86 in the next juice extraction. The result is that the product cannot be sealed and vacuum extraction is not possible.
  • one end of the valve stem 86 inserted into the third through hole 824 is inserted into the second through hole 822 and protrudes into the cup 22, the second pass.
  • the inner side wall of the hole 822 is provided with an internal thread
  • the side wall of the valve rod 86 and the second through hole 822 is provided with an external thread
  • the valve rod 86 is installed in the second through hole 822 by the cooperation of the external thread and the internal thread.
  • the second through hole 822 may be preferably provided with an internal thread, and the external thread is correspondingly disposed on the side wall of the valve rod 86 and the second through hole 822, so that the valve rod 86 can be screwed.
  • the method is mounted on the cup body 22, so that the screwing in and out of the valve rod 86 can be realized by rotating, so that the axial movement of the valve rod 86 along the third through hole 824 can be realized.
  • the sealing plug opens and closes the third through hole 824.
  • the valve stem 86 can be easily and conveniently mounted on the cup body 22 by screwing, so that the opening and closing operation of the sealing plug to the third through hole 824 can be realized simply and conveniently, thereby enabling the product to be made.
  • the overall structure is relatively simple.
  • one end of the valve stem 86 inserted into the third through hole 824 is inserted into the second through hole 822 and protrudes into the cup 22, and the valve stem 86
  • a second mounting groove is disposed on an end of one end extending into the cup 22.
  • the inner side wall of the connecting passage 82 is further provided with a fourth through hole 826.
  • the return spring 88 is a torsion spring, and the torsion spring sleeve is mounted on the valve.
  • the rod 86 extends into one end of the cup body 22.
  • the first torsion spring arm of the torsion spring is mounted in the second mounting groove, and the second torsion spring arm of the torsion spring is inserted into the fourth through hole 826 and can be along The fourth through hole 826 slides in the axial direction.
  • the valve stem 86 can be extended into the third through hole 824 and continue into the cup 22 through the first through hole 3622, and the return spring 88 is preferably a torsion spring, such that the valve stem 86 rotates. After that, the torsion spring can automatically reset the valve stem 86.
  • the torsion spring is sleeved on the end of the valve stem 86 that extends into the cup body 22, so that the torsion spring can be mounted in the cup body 22, which makes it easier to install the torsion spring.
  • the end of the valve stem 86 is provided with a second mounting groove, so that the fixing of the torsion spring can be achieved by the cooperation of the second mounting groove and the first torsion spring arm, thereby preventing the torsion spring from rotating together with the valve stem 86.
  • the fourth through hole 826 is used for fixing and guiding the second torsion spring arm, so that the torsion spring can normally undergo torsional deformation when the valve stem 86 is rotated, so that the corresponding elastic potential energy can be gathered, so that after the valve stem 86 is released The valve stem 86 can return to the initial position under the action of the elastic potential energy.
  • valve stem 86 is disposed at one end of the outer portion of the cup 22 with a pressure plate capable of pressing the sealing plug at the third through hole 824.
  • the operating plate is provided on the pressure plate.
  • the sealing plug can be pressed against the third through hole 824 by the pressure plate to enable the sealing plug to reliably seal the third through hole 824.
  • the operating handle is arranged on the pressure plate, and the rotation of the valve rod 86 can be realized directly by the operating handle during use, thereby facilitating the operation of the user.
  • the food processor is a juice machine or a juicer.
  • the food processor may also be other structures than a juice machine and a juicer, such as a juice machine. Broken machine, etc.
  • connection may be a fixed connection, a detachable connection, or an integral connection; Directly connected, or indirectly through intermediate media.
  • connecting may be a fixed connection, a detachable connection, or an integral connection; Directly connected, or indirectly through intermediate media.
  • the description of the terms “one embodiment”, “some embodiments”, “specific embodiments” and the like means that the specific features, structures, materials, or characteristics described in connection with the embodiments or examples are included in the present invention. At least one embodiment or example.
  • the schematic representation of the above terms does not necessarily refer to the same embodiment or example.
  • the particular features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples.

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  • Food-Manufacturing Devices (AREA)

Abstract

一种食物处理机,包括:底座组件(1);食物处理杯(2),能够安装在底座组件(1)上,包括杯体(22)和转动地安装在杯体(22)内的工作螺杆(24),杯体(22)用于收纳食物汁,杯体(22)上设有第一出渣口(222)或杯体(22)内设有第二出渣口;进料组件(3),密封安装在杯体(22)的杯口端上;接渣装置(4),密封连接至第一出渣口(222),或于杯体(22)内与第二出渣口连接;杯体(2)、进料组件(3)和接渣装置(3)间形成相互导通的密封腔;抽气组件(5),可与密封腔连通,用于将密封腔内的空气抽出。该方案可利用抽气组件(5)将杯体(22)内的空气抽走,从而可大致在真空的状态下实现食材的处理,进而可缓解加工后的食物氧化,防止食物的营养流失,确保食物汁的颜色和口感。同时,食物汁直接存放在杯体(22)内,因而不用额外设置接汁结构。

Description

食物处理机
本申请要求于2018年02月06日提交中国专利局、申请号为201810119388.5、发明名称为“食物处理机”、于2018年02月06日提交中国专利局、申请号为201820207649.4、实用新型名称为“食物处理机”、于2018年02月06日提交中国专利局、申请号为201810118965.9、发明名称为“进料***及食物处理机”、于2018年02月06日提交中国专利局、申请号为201820207651.1、实用新型名称为“进料***及食物处理机”、于2018年02月06日提交中国专利局、申请号为201810119389.X、发明名称为“食物处理杯及食物处理机”、于2018年02月06日提交中国专利局、申请号为201820207014.4、实用新型名称为“食物处理杯及食物处理机”、于2018年02月06日提交中国专利局、申请号为201810119037.4、发明名称为“辅助进料装置、食物处理杯组件及食物处理机”、于2018年02月06日提交中国专利局、申请号为201820207013.X、实用新型名称为“辅助进料装置、食物处理杯组件及食物处理机”、于2018年02月06日提交中国专利局、申请号为201810119036X、发明名称为“食物处理机”、于2018年02月06日提交中国专利局、申请号为201820206536.2、实用新型名称为“食物处理机”、于2018年02月06日提交中国专利局、申请号为201810119391.7、发明名称为“进料装置、食物处理杯及食物处理机”、于2018年02月06日提交中国专利局、申请号为201820207650.7、实用新型名称为“进料装置、食物处理杯及食物处理机”、于2018年05月09日提交中国专利局、申请号为201810438371.6、发明名称为“食物处理机”、于2018年05月09日提交中国专利局、申请号为201820685998.7、实用新型名称为“食物处理机”、于2018年05月09日提交中国专利局、申请号为201810438278.5、发明名称为“食物处理杯组件及食物处理机”、于2018年05月09日提交中国专利局、申请号为201820685982.6、实用新型名称为“食物处理杯组件及食物处理机”、于2018年05月09日提交中国专利局、申请号为201810439192.4、发明名称为“杯体组件及食物处理机”、于2018年05月09日提交中国专利局、申请号为201820686836.5、实用新型名称为“杯体组件 及食物处理机”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及家用电器领域,更具体而言,涉及一种食物处理机。
背景技术
目前原汁机或是慢速榨汁机产品虽然采取办法试图减缓果蔬压榨和榨取后的氧化问题,但在常压下压榨效果都不显著。
因此,如何设计出一种可以显著减缓果蔬压榨和榨取后的氧化问题的原汁机成为目前亟待解决的问题。
发明内容
本发明旨在至少解决现有技术中存在的技术问题之一。
为此,本发明的一个目的在于,提供一种食物处理机。
为实现上述目的,本发明第一方面实施例提供了一种食物处理机,包括:底座组件;食物处理杯,能够安装在所述底座组件上,包括杯体和转动地安装在所述杯体内的工作螺杆,所述杯体能够用于收纳食物汁,其中,所述杯体上设置有第一出渣口或所述杯体内设置有第二出渣口;进料组件,密封安装在所述杯体的杯口端上;接渣装置,密封连接至所述第一出渣口,用于收集食物渣,或所述接渣装置位于所述杯体内,与所述第二出渣口连接,用于收集食物渣;所述杯体、所述进料组件和所述接渣装置之间形成一相互导通的密封腔;抽气组件,能够与所述密封腔连通,用于将所述密封腔内的空气抽出。
根据本发明的实施例提供的食物处理机,包括底座组件、食物处理杯、进料组件、接渣装置和抽气组件。其中,底座组件用于为整个产品供电、控制整个产品的工作以及用于对食物处理杯、进料组件和接渣装置等进行支撑安装。而食物处理杯用于通过杯体与工作螺杆的配合粉碎食材,以及使食材的汁渣分离。而进料组件用于实现食材的进料,即用于将食材投入 到食物处理杯内,而抽气组件用于对整个进料组件、抽气组件以及接渣装置形成的密封腔进行抽气,以实现抽真空的目的。该种设置,可先启动抽气组件以将产品内的空气抽出,以使杯体内能够大致形成真空状态,此后便可启动工作螺杆以对食材进行处理,从而即可大致在真空的状态下实现对食材的处理,进而即可缓解加工后的食物氧化,以防止食物的营养流失,确保食物汁的颜色和口感等。同时,本申请中,可通过合理设置杯体的结构,从而可利用杯体来收集食物汁,这样便不用额外设置接汁结构,从而便能够简化杯体的结构,降低产品的成本。此外,该种设置在产品的整个对食物处理的工作过程中,可先将食物汁储存在杯体内,即不必边榨汁边将食物汁排出,从而在整个食物处理的过程中,便不需要像现有技术中那样,打开出汁口出汁,从而外界的空气在整个食物处理的过程中都无法通过出汁口进入到杯体内,进而即可提高杯体内的密封性能,以便能够始终维持杯体的内部真空状态。此外,该种设置,相比于在杯体上再额外密封安装一个接汁杯的方案而言,其能够利用现成的杯体进行食物汁的收集,因而即能够提高杯体的利用率,又能够简化产品的结构,降低产品的加工成本,同时,利用杯体进行食物汁的收集,在压榨完成后,密封腔内氧气含量低,能更好的保证食物汁的保鲜效果,在使用者需要饮用时才需导出食物汁,保证饮用者能喝到最新鲜的食物汁。而通过设置接渣装置,从而使得接渣装置能够与食物处理杯安装成整体或直接将接渣装置4设置在杯体22内,从而在整个食物处理过程中,不需要敞开出渣口,即能够在产品排渣过程中,始终使出渣口密封。而现有技术中,由于都是在产品外额外设置接渣件,因此,在整个产品榨汁的过程中,出渣口始终敞开,因而产品的氧气始终能够通过出渣口进入到密封腔内,进而导致食物汁氧化。而本申请,通过设置与第一出渣口密封安装的接渣装置或直接将接渣装置设置在杯体内,从而在产品工作时,既不需要对出渣口进行密封,又能够实现食物渣的收集,即本申请能够在产品的工作过程中,使出渣口始终密封,从而外界的空气在产品的工作过程中无法进入到密封腔内,进而即可在真空状态下实现食材的压榨处理,以及在真空状态下实现对食物汁的收集,因而即可显著减缓食物汁的氧化,确保榨取后的食物的口感。
其中,优选地,工作螺杆的横截面积从工作螺杆靠近杯体的杯口的一端至工作螺杆的另一端增大,优选为逐渐增大,这样能够使杯体与工作螺杆之间的间隙从杯体的开口至食物处理杯的底部逐渐减小,因而能够依次加大对食材的挤压力度,以便能够将食材越挤压越碎,因而即可提高出汁率。
其中,接渣装置用于在食材的汁渣分离后,收集食物渣。而接渣装置即可安装在杯体内,也可安装在杯体外。而通过将接渣装置设置在杯体内,能够将接渣装置隐藏安装在杯体内,从而其不会突兀地安装在杯体外,因而能够提高产品的美观,此外,将接渣装置安装在杯体内,其仅仅只会占用一部分空间,而杯体内的其它空间均能够被合理利用,因此,可提高空间利用率。还有,接渣装置安装在杯体内,可省去接渣装置与杯体之间的连接结构,因而还能够使杯体和接渣装置的结构更加简单。此外,通过将接渣装置安装在杯体内,从而不需要在杯体上在额外设置出渣口,从而可提高杯体的密封性能,因而在将食物处理机设置成真空的食物处理机时,能够有效地提高食物处理机的密封性能,显著地缓解食材在榨汁时以及榨汁后的氧化问题。当然,在其它实施例中,也可在杯体上设置一个第一出渣口,并将接渣装置安装在杯体外,并通过第一出渣口与杯体内导通。
另外,根据本发明上述实施例提供的食物处理机还具有如下附加技术特征:
在上述技术方案中,优选地,所述底座组件包括:驱动装置,与所述工作螺杆连接,用于驱动所述工作螺杆转动;控制装置,与所述驱动装置和所述抽气组件连接,用于控制所述抽气组件抽气或控制所述驱动装置的工作,和/或用于控制所述抽气组件抽气,并在所述抽气组件抽完气后,控制所述驱动装置开始工作。
在该些技术方案中,可通过驱动装置来驱动工作螺杆,以对食材进行粉碎、挤压等处理,而控制装置用于控制驱动装置和抽气组件的工作。具体地,控制装置即可单独控制驱动装置或抽气组件进行单独工作,也可先控制抽气组件先工作一段时间,以便能够先完成抽气操作,然后在启动驱动装置进行工作,以进行食物处理。而先抽气后食物处理的方式,能够在 抽气完成后再进行食材的汁渣分离,这样所有的食材均是大致在真空状态下进行处理的,因而所有的食材均不易被氧化,从而可显著缓解食物氧化。反之若在抽完气之前,就进行食材的处理的话,由于杯体内还残留一些空气,因此,先被处理的食材极易被残留的空气氧化,因而会导致部分食材被氧化,进而无法显著缓解食物汁等的氧化。
在上述任一技术方案中,优选地,食物处理机还包括预约装置,与所述控制装置连接,用于在预设时间后,使所述控制装置控制所述驱动装置和所述抽气组件的工作。
在该些技术方案中,可在产品上设置一个预约装置,从而可通过预约装置实现产品的预约功能,进而可减少用户的等待时间,具体地,比如,预约装置包括采集装置,用于采集用户的预约参数,计时装置,用于根据预约参数进行计时,并在计时完成后,控制装置开始工作。
在上述任一技术方案中,优选地,所述杯体上设置有出汁口,所述出汁口处密封盖装有一出汁盖,所述出汁盖用于打开或封闭所述出汁口;其中,所述出汁口和所述出汁盖之间还设置有第一密封件,所述第一密封件用于使所述出汁盖与出汁口密封连接。
在该些技术方案中,可在杯体上设置一个出汁口,并在出汁口处设置一个第一密封件和出汁盖,其中,第一密封件和出汁盖用于在产品工作过程中实现对出汁口的密封。而在食物处理完成后,用户想取用食物汁时,可通过出汁盖打开出汁口,以便能够通过出汁口取用食物汁,而在用户取用掉所需的食物汁后,又可通过出汁盖关闭出汁口,以将剩余的食物汁继续密封储存在杯体内,从而即可缓解剩余的食物汁氧化。
当然,在其它实施例中,也可不设置出汁口,而在食物处理结束后,直接通过杯体的杯口将食物汁倒出。
在上述任一技术方案中,优选地,所述杯体上设置有出汁口,所述出汁口处设置有阀门,所述阀门用于控制所述出汁口的打开或封闭。
在该些技术方案中,也可在出汁口处设置一个阀门,从而可通过阀门来实现出汁口的打开和封闭。具体地,比如可在出汁口处设置一个类似水龙头的阀门,这样便可像操作水龙头那样,实现出汁口的即开即停,因而 使得食物汁的取用更加快捷方便。
在上述任一技术方案中,优选地,所述进料组件包括:进料筒,所述进料筒的一端密封安装至所述杯体的杯口端;进料盖,密封盖装在所述进料筒的另一端上,用于打开或封闭所述进料筒;辅助进料装置,能够安装在所述进料筒内,用于辅助进料,比如辅助进料装置能够转动地安装在进料筒内。
在该些技术方案中,进料筒用于进料,而进料盖用于密封进料筒的开口,其中,优选地,可在进料筒和进料盖之间设置一第三密封件,从而可通过第三密封件来实现进料筒与进料盖之间的密封。而在进料筒内设置一个能够转动地的辅助进料装置,从而可通过辅助进料装置的转动来实现辅助进料,以便能够控制进料的速度,防止食物堵塞。具体地,比如可通过辅助进料装置来实现食材的预先切削,或者利用辅助进料装置将预先储存在进料筒内的食材推入到杯体内等操作。
在上述任一技术方案中,优选地,食物处理机还包括:罩体,罩设安装在所述进料筒外,所述罩体的一端开口一端封闭,所述罩体开口的一端安装在所述杯体上;第四密封件,设置在所述罩体与所述杯体的连接处,并使所述罩体与所述杯体的连接处为密封连接;所述杯体的外侧壁上设置有支撑结构,所述罩体开口的一端密封安装在所述支撑结构上。
在该些技术方案中,罩体罩设在进料筒外,并密封安装至杯体,这样便能够将进料筒密封地罩设在罩体内,该种设置在对整个产品进行密封以进行真空榨汁时,只要罩体与杯体处密封连接,那杯体与罩体便能够形成一个严格密封的封闭空间,这样在真空榨汁时便不需要对进料筒上端的开口进行密封,在进料筒与杯体为分体式结构时,也不需要对进料筒与杯体的连接处进行密封,这样便可减少需要密封的地方,降低密封难度,提高密封效果,从而能够更加显著地提高真空榨汁的效果,进而可更加显著地减缓食物汁的氧化,确保榨取后的食物的口感。此外,该种结构,只是在传统的食物处理机上额外设置了一个罩体,从而可以保留传统食物处理机的结构形式,以降低制造难度,提高产品生产效率,而在不需要真空榨汁时,拿掉罩体,其结构和使用方法基本与传统原汁机使用方式一致,这样 便使得食物处理机即可进行真空榨汁,又可进行普通的榨汁。
同时,可在杯体的侧壁上设置一个支撑结构,这样便可将罩体罩住部分杯体,并密封安装至杯体的侧壁上的支撑结构上。该种设置罩体密封安装至支撑结构,从而可将杯体上端的端面预留出来,以进行进料筒的安装,这样便可将进料筒和罩体分别固定安装在杯体的不同部位上,从而可防止进料筒和罩体发生干涉等情况,从而能够使产品的整体结构布局的更加合理紧凑。
在上述任一技术方案中,优选地,所述罩体的顶壁与所述进料筒远离所述杯体的一端的端面之间设置有间隙;和/或所述罩体的侧壁与所述进料筒的侧壁之间设置有间隙。
在该些技术方案中,罩体的顶壁与进料筒远离杯体的一端的端面之间设置有间隙,和/或罩体的侧壁与进料筒的侧壁之间设置有间隙,能够使罩体的顶部与侧壁均不与进料筒直接接触,这样在压榨时进料筒由于受力不平衡而发生的位移情况,便不会轻易地传递到罩体,从而不会影响到罩体对产品的整体密封,进而使得罩体能够始终与杯体可靠密封。
在上述任一技术方案中,优选地,所述杯体的外侧壁面包括多个沿所述杯体的轴向方向设置的第一平面,多个所述第一平面沿所述杯体的周向方向相互间隔设置;其中,相邻两个所述第一平面之间通过第一弧形面连接。
在该些技术方案中,杯体的外侧壁面包括多个沿杯体的轴向方向设置的第一平面,使得杯体能够大致形成为多边形,这样能够使杯体更接近为方形,而相邻两个第一平面之间通过第一弧形面连接,能够使杯体的侧壁能够更加平滑过渡的连接。而杯体更接近为方形,相比于传统的圆形或圆锥形杯而言,方形的杯体能够使杯体与进料筒和罩体之间的定位更简单方便,因为圆形或圆锥形为对称结构,这样在安装时便无法快速地辨认出杯的定位方向,需要用户仔细分辨才能够找准定位的方向,而方形杯由于能够通过长度和宽度作为参照,因此,在定位时能够更快更容易地找准定位方向,进而能够使杯体与进料筒和罩体之间的定位更简单直观,从而使得产品使用起来能够更加方便。
在上述任一技术方案中,优选地,所述罩体的顶壁呈弧形;和/或所述罩体的顶壁的外表面的边缘上设置有倒圆角;和/或所述罩体的侧壁包括两两相对设置的并沿所述罩体的周向方向均匀分布的4个第二弧形面,且所述4个第二弧形面相互间隔设置,相邻两个所述第二弧形面通过第三弧形面连接。
在该些技术方案中,罩体的顶壁即可呈平面也可呈弧面,而优选呈弧面设计,因为该种设置可有效避免罩体因内部负压而引起的变形,具体地,比如可通过外壁抵抗挤压,而通过内壁抵抗拉伸,从而能够在产品工作时减小罩体的变形,减少真空负压施加到罩体上的力。同理,也可将罩体的侧壁设置成弧形,比如可将罩体的前后左右四个面均设置成第二弧形面,并在前后左右的四个角上设置四个第三弧形面,这样便能提高罩体侧壁的抗压能力,提高罩体侧壁的强度。而在罩体的顶壁的外表面的边缘上设置倒圆角,能够使罩体的结构更加平滑,因而能够进一步提高罩体的整体强度。
在上述任一技术方案中,优选地,所述罩体的顶壁呈平面,所述罩体的侧壁包括多个沿所述罩体的周向方向间隔设置的第二平面,其中,相邻两个所述第二平面之间通过第四弧形面连接,且所述第四弧形面为以所述罩体的顶壁的中心为圆心的圆弧面。
在该些技术方案中,也可将罩体的顶部设置成平面,这样在将罩体设置成透明时,能够确保光线平行射入和反射出,从而可避免用户在通过罩体观看时,图像变形失真,进而能够确保用户的观看体验。同理,也可将罩体的几个侧壁也大致设置成平面,以确保样光线能够从侧壁平行射入和反射出,进而可避免用户在通过罩体观看时,图像变形失真。而设置弧面能够使罩体的各个平面侧壁之间能够更加光滑的连接,从而可使罩体的结构更加平滑,而侧壁上的弧面为以罩体的顶壁的中心为圆心的圆弧,能够进一步确保透过罩体的顶部观察内部榨汁过程时图像完整不会变形。而此时,罩体的侧壁可优选设置成弧形或类型弧形的结构,从而能够使罩体的结构更加平滑,因而也能够提高罩体的强度和抗变形能力。
在上述任一技术方案中,优选地,所述罩体在各个位置处的壁厚相等; 和/或所述罩体为透明罩;和/或所述罩体的壁厚大于等于2mm小于等于4mm;和/或所述罩体为轴对称结构;和/或所述罩体开口的一端的端面呈弧形或圆弧形。
在该些技术方案中,罩体在各个位置处的壁厚相等,使得罩体在各处的受力能力一致,从而可使受力均匀,防止出现受力薄弱部的情况发生,同时,罩体在各个位置处的壁厚相等还使得罩体的结构更简单,从而使得罩体能够更好地进行加工。而罩体优选为透明罩体,具体地,比如可采用透明聚碳酸酯、有机玻璃等透明材料来加工出罩体,这样在产品工作时,使得用户能够通过罩体看到罩体内部的情况,从而能够增强用户的使用体验。而罩体的壁厚大于等于2mm小于等于4mm,使得罩体的厚度不会过厚也不会过薄。而罩体为轴对称结构能够进一步使罩体的结构简单,因而能够进一步提高罩体的强度。而罩体开口的一端的端面呈弧形或圆弧形,使得罩体开口一端的端面比较光滑,从而能够对罩体进行端面密封时,使得罩体与第一密封件贴合的更好,从而即可确保密封效果,又可防止罩体刺破密封件的情况发生。
在上述任一技术方案中,优选地,所述辅助进料装置与所述工作螺杆驱动连接,能够在所述工作螺杆的作用下转动。
在该些技术方案中,可将辅助进料装置驱动连接至工作螺杆,从而可通过工作螺杆来实现辅助进料装置的驱动,从而便不用额外设置驱动辅助进料装置的机构,因而能够简化产品的结构,降低产品的成本。当然,辅助进料装置也不可与工作螺杆连接,此时,可额外设置一个驱动件来实现辅助进料装置的驱动。
在上述任一技术方案中,优选地,所述进料筒内设置有安装板和进料口,所述安装板安装至所述进料筒的内侧壁,所述安装板上设置有第一安装孔,所述辅助进料装置的一端位于所述安装板远离所述杯体的一方,所述工作螺杆位于所述安装板靠近所述杯体的一方,所述辅助进料装置的另一端***到所述第一安装孔内,与所述工作螺杆驱动连接;其中,所述进料口设置在所述安装板上或所述进料口由所述安装板与所述进料筒的侧壁围成。
在该些技术方案中,可在进料筒内设置一个安装板,从而一方面可通过安装板实现辅助进料装置的支撑安装。另一方面,可通过安装板来存放一部分食材。此外,安装板还可与辅助进料装置一起对食材进行切削,以便能够提前将食材加工成小碎块。具体地,比如,辅助进料装置在转动的过程中,便可带动食材一起运动,而在加工的食材较大时,食材便会部分卡入到进料口处,而辅助进料装置会继续转动,因此,便可将食材挤压在辅助进料装置和进料口的边缘之间,这样便可对食材施加一个挤压力,从而便可将食材挤压成小碎块,以实现对食材的初步处理。此外,还可在辅助进料装置上设置切削刃,以便能够通过切削刃实现食材的切削。其中,进料口即可直接设置在安装板上,也可通过安装板与进料筒的侧壁围成。
在上述任一技术方案中,优选地,所述辅助进料装置包括第一辅助进料装置,所述第一辅助进料装置包括:第一拨料件,能够转动地安装在所述安装板远离所述杯体的一方;第一传动轴,所述第一传动轴的一端与所述工作螺杆驱动连接,所述第一传动轴的另一端***并穿过所述第一安装孔与所述第一拨料件驱动连接。
在该些技术方案中,可在安装板的上方设置一个能够转动地拨片、拨杆等第一拨料件,并通过第一传动轴将其驱动连接至工作螺杆,这样,工作螺杆转动时,即可带动第一拨料件转动,从而被放入进料筒内的食材,便可在第一拨料件的拨动下从进料口进入到杯体内,而在加工的食材较大时,食材便会部分卡入到进料口处,而第一拨料件会继续转动,因此,便可将食材挤压在第一拨料件和进料口的边缘之间,这样便可对食材施加一个挤压力,从而便可将食材挤压成小碎块,以实现对食材的初步处理。此外,还可在第一拨料件上设置切削刃,以便能够通过切削刃实现食材的切削。这样通过设置第一拨料件便可实现对食材的切削拨动等处理,进而即可提高食材的进料速度,防止进料筒堵塞,以及提高食材的处理效率。
在上述任一技术方案中,优选地,所述第一拨料件上设置有第一通孔,所述第一传动轴远离所述工作螺杆的一端依次***并穿过所述第一安装孔、所述第一通孔,所述第一辅助进料装置还包括:封盖,安装在所述第一传动轴伸出所述第一通孔的一端上。
在该些技术方案中,可将第一拨料件通过第一通孔套设安装在第一传动轴伸出第一安装孔的一端上,并使其穿过第一拨料件,这样即可提高第一拨料件与第一传动轴之间的安装可靠性。而通过设置封盖,可将第一传动轴的上端限位在第一拨料件的上侧,从而可防止第一传动轴从第一通孔中滑落,进而能够进一步提高第一拨料件与第一传动轴之间的连接可靠性。
在上述任一技术方案中,优选地,所述第一传动轴上设置有至少一个驱动凸起,所述驱动凸起能够与所述工作螺杆配合,以在所述工作螺杆的驱动下转动。
在该些技术方案中,可在第一传动轴的下端面上设置一个或多个第一驱动凸起,从而可通过第一驱动凸起与工作螺杆的上端的侧部配合,以实现与工作螺杆之间的驱动连接,当然,第一传动轴也可通过其它结构实现与工作螺杆之间的驱动连接。
在上述任一技术方案中,优选地,所述第一拨料件与所述第一传动轴为分体式结构,或所述第一拨料件与所述第一传动轴为一体式结构。
在该些技术方案中,第一拨料件与第一传动轴即可为分体式结构,比如为两个零件,这样便于单独对第一拨料件与第一传动轴中的每一个零件进行单独维修和更换。当然,在其它技术方案中,第一拨料件与第一传动轴也可为一体式结构,这样即能够提高第一拨料件与第一传动轴的连接强度,以使第一拨料件与第一传动轴不易损坏,又能够实现第一拨料件与第一传动轴之间的无缝连接,从而能够防止在第一拨料件与第一传动轴之间形成缝隙,进而便于清洗。
其中,优选地,所述第一拨料件对称地安装在所述第一传动轴上。该种设置能够使产品的结构更加合理紧凑,且也能够使产品的结构更加简单。
在上述任一技术方案中,优选地,所述进料口由所述安装板与所述进料筒的侧壁围成,所述进料口的数量为两个,两个所述进料口和所述安装板均关于所述进料筒的轴线对称。
在该些技术方案中,进料口优选由安装板与进料筒的侧壁围成,这样能够简化安装板的结构,从而降低成本。而进料口的数量优选为两个,这样能够使每个进料口较大,因而便于产品处理一些大块的食材。而两个进 料口和安装板均关于进料筒的轴线对称,这样使得安装部能够刚好安装至工作螺杆的中心,因而也能够使进料筒的内部更加合理紧凑。
其中,优选地,所述安装板由一圆形板和对称设置在圆形板的两侧的两块扇形板组成,其中,第一安装孔设置在圆形板的中部。
在上述任一技术方案中,优选地,所述进料筒为直筒形。
在该些技术方案中,进料筒优选为直筒形,即是说进料筒并不弯折设置,这样使得食材能够从上至下顺畅的流动。当然进料筒也可弯折设置。其中,优选地,进料筒的内侧壁和外侧壁均竖直设置。
在上述任一技术方案中,优选地,所述第一拨料件为拨料杆或拨料片。
在该些技术方案中,第一拨料件的形状可任意设置,但优选为拨料杆或拨料片。
在上述任一技术方案中,优选地,所述第一传动轴上设置有第一定位凹槽和第一定位凸起中的一个,所述工作螺杆上设置有第一定位凹槽和第一定位凸起中的另一个,所述第一定位凸起能够***到所述第一定位凹槽内,以对所述工作螺杆进行定位;其中,所述第一定位凹槽内设置有第一耐磨件。
在该些技术方案中,可在工作螺杆的上端面上设置一个第一定位凸起或第一定位凹槽或定位孔,而在第一传动轴的下端上对应设置一第一定位凸起或第一定位凹槽或定位孔,这样便能够通过第一定位凸起与定位孔或第一定位凸起与定位轴的配合实现对工作螺杆的定位,进而可提高工作螺杆安装后的稳定性,减少工作螺杆的晃动。而通过在第一定位凹槽内设置第一耐磨件,能够减少第一定位凸起与第一定位凹槽之间的磨损。
在上述任一技术方案中,优选地,所述安装板靠近所述杯体的一面上设置有两端开口的空心柱,所述空心柱与所述进料口导通;所述工作螺杆的一端从所述进料筒的底部伸入到所述空心柱内,并能够与所述空心柱的侧壁配合,以粉碎食材;其中,所述空心柱远离所述安装板的一端与所述进料筒的侧壁连接,或所述空心柱远离所述安装板的一端悬空。
在该些技术方案中,可在安装板的下方设置一个能与进料口导通的空心柱,并将该空心柱,套设安装在工作螺杆的上端,这样食材从进料口进 入到安装板的下方后,便可在空心柱的侧壁和工作螺杆的作用下被挤压处理或被切削处理,即能够在食材进入到杯体之前,对食材多进行一道粉碎处理工序,因而能够提高产品对食材的处理效果,以提高出汁率。而通过设置空心柱,能够降低进料筒下端的有效内径,进而能够使工作螺杆与进料筒的下端的侧壁之间形成的通道更小,因而能够加大对食材的处理力度。其中,空心柱远离安装板的一端优选与进料筒的侧壁连接,这样空心柱还能够对安装板进行进一步支撑,从而能够提高安装板的强度,而在另一技术方案中,空心柱远离安装板的一端也可悬空设置,即不与进料筒的侧壁连接。
其中,优选地,空心柱呈锥形。而螺杆等结构的上端大致从上至下会依次增大,因此将空心柱对应设置成锥形使得空心柱能够与工作螺杆的上端相互适配,进而使得工作螺杆能够与空心柱更好的配合,以实现食材的处理。
在上述任一技术方案中,优选地,所述安装板能够拆卸地安装至所述进料筒的内侧壁,或所述安装板与所述进料筒的内侧壁为一体式结构。
在该些技术方案中,将安装板能够拆卸地安装在进料筒内,这样使得存料台能够拆卸下来进行杯体和存料台的清洗,同时该种设置可将安装板和拨料件等安装成一个整体进行安装、维修销售等。当然,安装板与进料筒的内侧壁也为一体式结构,即安装板也可直接加工在进料上,这样可增强安装板与进料筒的连接强度。
在上述任一技术方案中,优选地,所述进料筒能够拆卸地密封安装至所述杯体的杯口端,或所述进料筒与所述杯体为一体式结构。
在该些技术方案中,进料筒与杯体为一体式结构,这样即可通过一个大杯子实现食材的进料和处理,该种设置,一方面不需要额外在杯体上设置一个进料筒或类似进料筒的结构,进而能够简化产品的零件个数,此外该种结构,只有一个杯体,因此,只有杯体的开口这一个敞口,因而在密封该杯体时,只需要密封杯体的开口处即可,而现有技术中,杯体与进料筒的连接处以及杯体的开口均需要密封,因此至少需要密封两处,从而该种结构相对现有技术而言还能够降低产品的密封难度。同时,现有技术中, 杯体与进料筒的连接处以及杯体的开口处均有泄漏的可能性,而本申请由于去掉了进料筒的使用,因此,整个杯体的侧壁位置处一定能够严格密封,从而便相对增强了产品的密封性能,进而使得产品在实现真空榨汁时,能够更有效地缓解氧化。而进料筒与杯体能够拆卸地连接,这样可通过杯体来实现食材的粉碎以及食材的汁渣分离,同时可通过进料筒来向杯体内添加食材,这样使得食材的进料和处理能够分两个杯体进行,从而能够减小每一个杯体的高度,以使产品比较好加工和清洗。
在上述任一技术方案中,优选地,所述工作螺杆上设置有第一传动结构,所述辅助进料装置包括第二辅助进料装置,所述第二辅助进料装置包括:存料台,安装在所述进料筒内,所述存料台上设置有进料通道;第二拨料件,能够转动地安装在所述进料筒内,位于所述存料台远离所述工作螺杆的一侧,所述第二拨料件上设置有第二传动结构,所述第二传动结构能够与所述第一传动结构配合,使所述工作螺杆与所述第二拨料件驱动连接。
在该些技术方案中,存料台用于安装在进料筒内用于存放食材,而第二拨料件能够转动地安装在进料筒内,存料台的上方,其中,第二拨料件转动时,能够对存料台上存放的食材进行挤压、切削等处理,并能够在挤压、切削等处理后将其推送到进料通道内,以使食材能够进入到杯体内,这样即可避免手动进料,这样在实际使用产品时,用户可一次性的将所有的食材通过进料筒的杯口放入到进料筒内,并使其存放在存料台上,此后食材便可在第二拨料件的作用下实现自动逐步进料。而通过在第二拨料件上设置第一传动结构,并在工作螺杆上设置第二传动结构,这样便可通过第一传动结构与第二传动结构的配合,使得第二拨料件能够与工作螺杆进行驱动连接,从而能够在工作螺杆的驱动下转动,该种驱动方式一方面可通过工作螺杆来实现第二拨料件的驱动,从而便不用额外设置驱动第二拨料件的机构,因而能够简化产品的结构,降低产品的成本。另一方面,该种驱动方式,工作螺杆与第二拨料件通过两个传动结构直接驱动连接,从而一方面能够使传动更加平稳,另一方面不用借助其它任何的连接轴等结构,因而能够进一步简化产品的结构,降低产品的成本。
在上述任一技术方案中,优选地,所述杯体与所述进料筒为一体式结构,或所述杯体与所述进料筒为分体式结构;所述杯体与所述进料筒为一体式结构时,所述存料台能够拆卸地安装在所述进料筒内;所述杯体与所述进料筒为分体式结构时,所述存料台能够拆卸地安装在所述进料筒内,或所述存料台与所述进料筒为一体式结构。
在该些技术方案中,进料筒与杯体为一体式结构,这样即可通过一个大的杯体实现食材的进料和处理,该种设置,一方面不需要额外在杯体上设置一个类似进料筒的结构,进而能够简化产品的零件个数,此外该种结构,只有一个杯体,因此,只有杯体的开口这一个敞口,因而在密封该杯体时,只需要密封杯体的开口处即可,而现有技术中,杯体与进料筒的连接处以及杯体的开口均需要密封,因此至少需要密封两处,从而该种结构相对现有技术而言还能够降低产品的密封难度。同时,现有技术中,杯体与进料筒的连接处以及杯体的开口处均有泄漏的可能性,而本申请由于去掉了进料筒的使用,因此,整个杯体的侧壁位置处一定能够严格密封,从而便相对增强了产品的密封性能,进而使得产品在实现真空榨汁时,能够更有效地缓解氧化。而进料筒与杯体能够拆卸地连接,这样可通过杯体来实现食材的粉碎以及食材的汁渣分离,同时可通过进料筒来向杯体内添加食材,这样使得食材的进料和处理能够分两个杯体进行,从而能够减小每一个杯体的高度,以使产品比较好加工和清洗。
同时,在进料筒与杯体设置成一个大杯子时,可将存料台能够拆卸地安装在进料筒内,以便存料台能够拆卸下来进行杯体和存料台的清洗。而在进料筒与杯体设置成两个杯子时,既可将存料台能够拆卸地安装在进料筒内,也可将存料台一体安装在进料筒内。
在上述任一技术方案中,优选地,所述存料台上设置有第二安装孔,所述第一传动结构为传动孔和第二传动轴中的一个,所述第二传动结构为所述传动孔和所述第二传动轴中的另一个,所述第二传动轴能够通过所述第二安装孔***到所述传动孔内,使所述工作螺杆与所述第二拨料件驱动连接。
在该些技术方案中,可在存料台上设置一个第二安装孔,以便工作螺 杆与拨料件能够通过第二安装孔相互连接,而第一传动结构优选为一传动孔或第二传动轴,也就是说既可在拨料件上设置一个传动孔或一个第二传动轴,而在工作螺杆上设置一个第二传动轴或传动孔,这样便可通过传动孔与第二传动轴的配合,以实现工作螺杆对拨料件的直接驱动,从而便可驱动拨料件在进料筒内存料台上方进行转动,进而实现对食材的切削、挤压或推送等处理,因而即可实现自动进料。
在上述任一技术方案中,优选地,所述存料台靠近所述工作螺杆的一面上、所述第二安装孔的周围设置有一圈第一安装槽,所述食物处理机还包括:第二耐磨件,安装在所述第一安装槽内,套设在所述第二传动轴上,位于所述工作螺杆与所述存料台相接触的面之间。
在该些技术方案中,可在存料台的下表面上绕第二安装孔设置一圈第一安装槽,这样便可通过第一安装槽实现对第二耐磨件的定位安装,而第二耐磨件设置在存料台与工作螺杆的上端面之间,可减少工作螺杆与存料台之间的相互磨损,从而可提高工作螺杆和存料台的使用寿命。
在上述任一技术方案中,优选地,所述传动孔为多边形孔,所述第二传动轴为与所述多边形孔相适配的多边形轴;和/或所述第一传动结构为所述第二传动轴,所述第二传动结构为所述传动孔。
在该些技术方案中,传动孔为多边形孔,第二传动轴为与多边形孔相适配的多边形轴,这样便可通过非圆弧面实现工作螺杆与拨料件之间的驱动,从而能够增大传动孔与第二传动轴之间的接触面积,以提高驱动力度,从而可提高传动效率,以及确保传动的可靠性。且优选地,在工作螺杆上设置一个第二传动轴,而在拨料件上对应设置一个传动孔,这样能够使工作螺杆与拨料件能够更好地配合。
在上述任一技术方案中,优选地,所述辅助进料装置包括第三辅助进料装置,所述第三辅助进料装置包括:存料座,安装在所述进料筒内,位于所述工作螺杆远离所述杯体的底部的一方,所述存料座内设置有存料腔,所述存料腔远离所述工作螺杆的一端开口,所述存料座上设置有至少一个进料孔,所述进料孔与所述存料腔和所述杯体导通;第三拨料件,所述第三拨料件能够转动地安装在所述存料腔内,所述第三拨料件能够转动的角 度大于等于30°;其中,所述存料座用于存放食材,所述第三拨料件用于切削和/或挤压所述存料腔内的食材,以及用于将所述存料腔内存放的食材推送到所述进料孔内。
在该些技术方案中,第三辅助进料装置包括位于工作螺杆上方的存料座,以及能够转动地安装在存料座内的第三拨料件。而存料座上还设置有进料孔,因此,在实际使用时,可直接将食材投放到存料座内,以实利用存料座实现食材的存放,而第三拨料件能够转动地安装在存料座内,且存料座上还设置有与存料腔导通的进料孔,从而通过第三拨料件的转动便能够推动存放在存料座上的食材进行转动,而食材在转动过程中便能够通过食材与食材之间的相互摩擦挤压或食材与进料筒的侧壁之间的相互摩擦挤压或食材与第三拨料件之间的相互摩擦挤压而实现食材的初步切削和/或挤压加工,而初步切削和/或挤压加工后的较小的食材便能够在第三拨料件的作用下,从进料孔落入到存料座的下方,而较大一点的食材则会被卡在进料孔处,此时,第三拨料件并不会停止转动,即第三拨料件会继续转动,从而第三拨料件便能够与进料孔的侧壁之间对食材形成一个夹击力,进而能够对卡在进料孔处的食材施加一个挤压或切削力,进而便能够将食材挤压或切削成更小的碎块,这样通过第三拨料件的不断转动,便能够依次将食材挤压或切削成一定大小的碎块后,使其依次通过进料孔并进入到杯体内,而进入到杯体内的食材则可在工作螺杆与杯体的侧壁的双重作用下被挤压碎或切削碎,此后便可通过滤网或双杯体双螺杆的方式实现食材的汁渣分离。该种第三辅助进料装置,在实际榨汁时,用户可一次性的将所有的食材投放到存料座内,并使其存放在存料座内,此后食材便可在第三拨料件的作用下实现自动逐步进料,从而在实际榨汁时并不需要用户逐步投料,因而能够实现一次性投料,进而在实际过程中,便可先将食材全部投入到存料座内,然后再通过预约组件等控制产品先暂时不工作,而是在固定时间段后才可开始工作,这样即可实现食材的提前预约处理,从而便可减少用户的等待时间,提升用户体验,即该种结构为产品实现预约榨汁提供了可能性,从而可在食物处理机上设置预约组件,以实现预约功能。同时,该种设置能够在一次性投料后,能够在第三拨料件的作用下实现自动 进料,因而并不需要使用推料棒等来实现手动推料,从而即可减少用户的操作量,以使产品的榨汁功能更加方便简单,因而即可提高用户体验,又可省去推料棒等结构,以避免使用推料棒而存在的一系列问题,比如推料棒的安放问题和使用推料棒的安全隐患问题。此外,该种设置由于能够在食材通过进料孔落入到杯体内时,通过第三拨料件提前对食材进行切削或挤压加工,因而使得进入到杯体内的食材的颗粒都较小,因而能够降低工作螺杆的难度,以减少工作螺杆的磨损,提高食材的处理加工效果,以提高出汁率。此外,该种设置还能够有效防止工作螺杆被卡死,防止出渣口堵塞等情况的发生。此外,通过在存料座内设置存料腔,从而使得第三辅助进料装置自身就具有容纳食材的作用,因此在投放食材时,可移动第三辅助进料装置至食材的位置,而不一定非要将食材移动至产品处而进行投料,因而使得投放食材的操作更加方便快捷。此外,该种设置在切削和/或挤压食材时,可直接利用存料腔的侧壁实现对食材的阻挡和挤压,因而不需要借助进料筒的侧壁,这样,对应存料座的进料筒的侧壁部分便不会与食材直接接触,因而即可降低进料筒此处侧壁的加工要求,以降低产品成本,以及确保进料筒此处的干净,以降低进料筒的清洗难度。还有在存料座内设置存料腔,相比于将存料座设置成存料板的方案而言,还能够防止食材卡入到存料板与进料筒的侧壁之间,从而即可防止食材浪费。
其中,第三拨料件能够转动的角度大于等于30°,使得第三拨料件具有一较为合理的转动角度,从而能够将存料座上的食材进行充分粉碎并推送到进料孔处,以提高产品进料的顺畅性,进而可防止第三拨料件转动角度过小,而导致进料不畅的情况发生。
在上述任一技术方案中,优选地,所述存料座上还设置有第三安装孔,所述第三辅助进料装置还包括:第三传动轴,所述第三传动轴的一端位于所述存料腔内,与所述第三拨料件驱动连接,所述第三传动轴的另一端从所述第三安装孔内伸出,并与所述工作螺杆驱动连接。
在该些技术方案中,可在存料腔内设置一个能够转动地拨片、拨杆等第三拨料件,并通过第三传动轴将其驱动连接至工作螺杆,这样工作螺杆转动时,即可通过第三传动轴带动第三拨料件转动,以实现对食材的切削 和/或挤压等处理。而切削和/或挤压后的食材又可进一步在第三拨料件的作用下从进料孔进入到杯体内。当然,第三拨料件也可通过其它方式驱动连接至工作螺杆,或第三拨料件也可不连接至工作螺杆,而是额外在设置一个驱动其转动的驱动结构。
在上述任一技术方案中,优选地,所述存料座的外底壁上设置有容纳槽,所述工作螺杆的一端能够伸入到所述容纳槽内,所述存料座的内底壁上设置有安装凸台,所述第三安装孔贯穿所述安装凸台以及所述容纳槽,所述第三传动轴的一端位于所述容纳槽内,用于与所述工作螺杆驱动连接,所述第三传动轴的另一端通过所述第三安装孔伸入到所述存料腔内,并与所述第三拨料件驱动连接。
在该些技术方案中,在存料座的内底壁面上设置安装凸台,一方面能够利用该安装凸台将第三拨料件安装的较高,另外,该种设置还能够增大存料座的内壁的面积,从而第三拨料件能够与更大面积的内壁配合,以实现对食材的切削和/或挤压处理,进而可加大第三辅助进料装置在工作时,对食材的挤压力度,进而能够提高食材的处理效果。同时,设置安装凸台后,可将容纳槽对应安装凸台设置,从而即能够不增加存料座的底壁的厚度,又能够确保存料座的底壁的去强度。而在存料座的外底壁面上设置容纳槽,能够使存料座罩设在工作螺杆的一端上,这样使得工作螺杆还能够与容纳槽的侧壁配合以实现对食材的进一步切削和/或挤压处理,因而能够进一步提高食材的处理效果。
在上述任一技术方案中,优选地,所述进料孔从所述安装凸台远离所述存料腔的一端的端面的边缘延伸至所述存料座的底部。
在该些技术方案中,进料孔从安装凸台远离存料腔的一端的端面的边缘延伸至存料座的底部,使得进料孔开设的较大,因而能够提高进料的顺畅性。
其中,优选地,进料孔的数量为一个或多个,进料孔为多个时,多个进料孔对称设置。
在上述任一技术方案中,优选地,所述安装凸台的侧壁面从所述安装凸台远离所述存料座的底壁的一端至所述安装凸台靠近所述存料座的底壁 的一端向外倾斜设置;和/或所述容纳槽的形状与所述工作螺杆伸入至所述容纳槽内的一端的形状相适配。
在该些技术方案中,安装凸台的外侧壁从存料腔的开口至存料腔的底壁向外倾斜设置,这样在将食材切削和/或挤压后,食材便能够顺着安装凸台的外侧壁向下流动,因而使得食材还能够在重力的作用下向下加速运动,因而使得食材能够更顺畅地通过进料孔实现进料。此外,该种设置也使得容纳槽与工作螺杆的上端能够更好地配合,同时也使得第三辅助进料装置的结构更加合理。
在上述任一技术方案中,优选地,所述存料座的底壁向所述存料腔内凹陷,以形成所述容纳槽和所述安装凸台。
在该些技术方案中,在该些技术方案中,可将存料座的底壁向存料座内凹陷,以在其内底壁面上形成安装凸台,以及在外底壁面上形成容纳槽,该种结构能够快速简单地在存料座的底壁上加工出安装凸台和容纳槽,因而即能够降低加工难度,又能够降低加工成本。
在上述任一技术方案中,优选地,所述第三拨料件包括:固定座,位于所述安装凸台上,并安装至所述第三传动轴;拨料结构,所述拨料结构的一端与所述固定座连接,所述拨料结构的另一端向所述存料腔的底壁延伸;其中,所述拨料结构为拨料片、拨料杆或拨料棒。
在该些技术方案中,第三拨料件包括底座和拨料结构,其中,底座用于与第三传动轴连接,并实现拨料结构的安装,而拨料结构具体用于切削和/或挤压食材以及拨动食材。而在存料腔内设置有安装凸台时,可将第三拨料件安装在安装凸台的顶部,这样便能够将第三拨料件的一端安装的较高,同时可将第三拨料件的另一端向存料腔的底部下垂,这样第三拨料件便能够对存料腔内不同高度的食材均进行切削和/或挤压等处理,从而能够提高食材的处理效果,以提高出汁率。反之,若存料腔的底壁没有设置安装凸台,则第三拨料件只能够安装在存料腔的底壁上,这样第三拨料件能够对食材进行处理的高度会受到拨料结构的高度的限制,从而在拨料结构设置的较矮时,便会降低其对食材的处理效果,但若将整个拨料结构设置的较高,为了确保拨料结构的强度,也只能同时将固定座设置的较高,这 样会导致第三拨料件的结构比较复杂,且也降低第三传动轴与其之间的连接强度。
其中,拨料结构即可成片状,也可呈棒状或杆状,具体地,拨料结构的形状可根据实际情况进行选择。
在上述任一技术方案中,优选地,所述第三传动轴上设置有至少一个第二驱动凸起,所述第二驱动凸起能够与所述工作螺杆配合,以在所述工作螺杆的驱动下转动。
在该些技术方案中,可在第三传动轴的下端面上设置一个或多个第二驱动凸起,从而可通过第二驱动凸起与工作螺杆的上端的侧部配合,以实现第三传动轴与工作螺杆之间的驱动连接,当然,第三传动轴也可通过其它结构实现其与工作螺杆之间的驱动连接。
在上述任一技术方案中,优选地,所述第三拨料件与所述第三传动轴为分体式结构,或所述第三拨料件与所述第三传动轴为一体式结构。
在该些技术方案中,第三拨料件与第三传动轴即可为分体式结构,比如为两个零件,这样便于单独对第三拨料件与第三传动轴中的每一个零件进行单独维修和更换。当然,在其它技术方案中,第三拨料件与第三传动轴也可为一体式结构,这样即能够提高第三拨料件与第三传动轴的连接强度,以使第三拨料件与第三传动轴不易损坏,又能够实现第三拨料件与第三传动轴之间的无缝连接,从而能够防止在第三拨料件与第三传动轴之间形成缝隙,进而便于清洗。
在上述任一技术方案中,优选地,所述第三传动轴上设置有第二定位凹槽和第二定位凸起中的一个,所述工作螺杆上设置有第二定位凹槽和第二定位凸起中的另一个,所述第二定位凸起能够***到所述第二定位凹槽内,以对所述工作螺杆进行定位;其中,所述第二定位凹槽内设置有第三耐磨件。
在该些技术方案中,可在工作螺杆的上端面上设置一个第二定位凸起或第二定位凹槽,而在第三传动轴的下端上对应设置一第二定位凸起或第二定位凹槽,这样便能够通过第二定位凸起与第二定位凸起与定位轴的配合实现对工作螺杆的定位,进而可提高工作螺杆安装后的稳定性,减少工 作螺杆的晃动。而通过在第二定位凹槽内设置第三耐磨件,能够减少第二定位凸起与第二定位凹槽之间的磨损。
在上述任一技术方案中,优选地,所述第三辅助进料装置能够拆卸地安装在所述进料筒内,或所述第三辅助进料装置位于所述进料筒内,且所述第三辅助进料装置的存料座与所述进料筒的侧壁为一体式结构,或所述进料筒的内侧壁上设置第三卡扣,所述存料座的外侧壁上设置有第四卡扣,所述存料座能够通过所述第三卡扣和所述第四卡扣的配合卡扣安装在所述进料筒内;和/或所述存料腔的侧壁从所述存料腔的开口至所述存料腔的底部向所述存料腔内倾斜设置。
在该些技术方案中,优选将第三辅助进料装置安装在进料筒内、工作螺杆的上方,这样便能够通过进料筒实现第三辅助进料装置的安装,同时,将其安装在进料筒内,还能够利用进料筒来防止第三辅助进料装置内的食材飞溅出来,因而可防止食材的浪费。同时,第三辅助进料装置的存料座与进料筒即可设置成一体式结构,也可将第三辅助进料装置的存料座能够拆卸地安装在进料筒内。而在进料筒和杯体合成一个大杯时,优选将第三辅助进料装置能够拆卸地安装在进料筒内。
进一步,优选地,可在存料座的外侧壁上设置第四卡扣,并在进料筒的内侧壁上设置第三卡扣,从而可通过第三卡扣与第四卡扣的配合,将第三辅助进料装置卡扣安装在进料筒内。该种设置使得第三辅助进料装置能够随意地从进料筒内拆卸下来,从而即便于第三辅助进料装置的清洗,又便于第三辅助进料装置的维修。
在上述任一技术方案中,优选地,所述食物处理杯还包括:滤网,设置在所述杯体与所述工作螺杆之间;其中,所述进料筒的内侧壁上对应所述滤网靠近所述进料筒的一端设置有定位阶梯面,所述定位阶梯面用于与所述滤网配合,以对所述滤网进行定位。
在该些技术方案中,在食物处理机为单杯体和单工作螺杆的食物处理机时,可在杯体与工作螺杆之间设置一个滤网,以便能够利用滤网在食材被粉碎后,实现食材的汁渣分离。此外,可在进料筒的内侧壁上对应滤网的上端面设置一个定位阶梯面,以便能够利用定位阶梯面来压住滤网,以 实现对滤网的轴向定位安装,这样便能够提高滤网的安装可靠性。
在上述任一技术方案中,优选地,食物处理机还包括:泄压孔,设置在所述杯体、所述进料组件和所述接渣装置中的任意一个或多个上,能够与所述密封腔导通;泄压塞,能够安装在所述泄压孔处,以打开或密封所述泄压孔。
在该些技术方案中,可在杯体、进料组件和接渣装置中的任意一个或多个上设置与密封腔导通的泄压孔,并通过泄压塞来实现泄压孔的打开或密封。该种设置,在产品启动之前可关闭泄压塞,以密封泄压孔,这样便能够使杯体内、进料组件和接渣装置内完全密封,从而便能够通过抽气组件实行抽真空,进而即可大致在真空或接近真空的状态下实现对食材的处理,因而即可防止食材氧化。而在食材处理结束后,可通过泄压塞打开泄压孔,以使产品内部与外界导通,进而能够逐渐将杯体、进料组件和接渣装置内的负压卸载掉,这样便能够简单快速地实现泄压。当然,在其它实施例中,也可通过其它方式进行泄压,比如通过抽气组件向内输送空气,以实现泄压。
在上述任一技术方案中,优选地,所述抽气组件包括:抽气泵;抽气通道,所述抽气通道的一端与所述抽气泵连接,所述抽气通道的另一端与所述密封腔连通。
在该些技术方案中,可利用一个抽气泵来实现空气的抽出,而抽气通道用于实现气体的排出。
在上述任一技术方案中,优选地,所述抽气组件还包括:排气通道,与所述抽气泵的出口连接,用于排气;降噪装置,设置在所述排气通道上。
在该些技术方案中,可通过设置一个排气通道来进行排气,其中,排气通道优选为一排气管。而降噪装置能够降低抽气组件的噪音,提高用户体验。
在上述任一技术方案中,优选地,所述抽气泵设置在所述底座组件、所述杯体和所述进料组件中的任意一个上,或所述抽气泵相对所述底座组件、所述杯体和所述进料组件独立设置。
在该些技术方案中,抽气泵可设置在任意位置,具体地,比如底座组 件上、杯体上或进料组件上,当然,抽气泵也可相对底座组件、杯体和进料组件独立设置,即抽气泵也可外设于底座组件、杯体和进料组件。
在上述任一技术方案中,优选地,所述抽气通道为抽气管。
在该些技术方案中,抽气通道优选为抽气管,当然,抽气通道也可为设置在食物处理机的壳体上的其它通道结构。
在上述任一技术方案中,优选地,所述抽气泵为电动泵或手动泵或脚踏泵。
在该些技术方案中,抽气泵优选为电动泵,这样可同电力驱动抽气泵进行抽气,从而不需要手动抽气,当然,抽气泵也可为手动泵或脚踏泵。
在上述任一技术方案中,优选地,所述抽气泵为真空泵。
在该些技术方案中,抽气泵优选为真空泵,因为真空泵比较常见,因而易于采购,此外真空泵抽真空的能力较强,因而能够将食物处理机的内部的大量空气抽出,以确保在处理食材时,杯体内的真空效果。
在上述任一技术方案中,优选地,所述杯体上设置有第一出渣口,所述接渣装置密封连接至所述第一出渣口时,所述接渣装置包括:接渣杯,能够拆卸地密封安装在所述第一出渣口处,所述接渣杯的侧壁上设置有进渣口,所述进渣口与所述第一出渣口相互导通;接渣盖,密封盖装在所述接渣杯的开口端上;第二密封件,设置在所述接渣盖与所述接渣杯的连接处,用于使所述接渣盖与所述接渣杯密封连接;其中,所述接渣杯和所述杯体中的一个上设置有安装柱,所述接渣杯和所述杯体中的另一个上设置有安装套,所述接渣杯通过所述安装柱与所述安装套的配合能够拆卸地密封安装在所述第一出渣口处。
在该些技术方案中,在杯体上设置有第一出渣口,接渣装置安装在杯体外时,可优选将接渣装置设置成包括接渣杯和接渣盖的结构,这样即可通过接渣杯进行接渣处理,并通过接渣盖实现接渣杯的打开和密闭。而接渣杯与杯体能够拆卸地连接,便于将接渣杯从杯体上拆卸下来,进行倒渣或清洗等处理。同时,可在接渣杯和杯体中的一个上设置安装套,并在另一上设置安装柱,这样便可通过安装套与安装柱的套设安装,实现接渣杯和杯体之间的可拆卸安装。同时,可在安装套与安装柱之间设置第二密封 件,以使安装套与安装柱能够密封连接。
当然,接渣装置也还可以是其它类型的结构,比如接渣袋、或者是其它腔体结构。
在上述任一技术方案中,优选地,食物处理机还包括:出渣压力调节组件,设置在所述第一出渣口处,用于调节所述第一出渣口处的出渣压力。
在该些技术方案中,可在第一出渣口处设置一个出渣压力调节组件,从而可通过出渣压力调节组件来调节第一出渣口处的出渣压力,以便能够合理控制出渣压力,从而使得食物渣在被排出前能够被进一步挤压,以使汁渣分离的更加彻底。其中,具体地,出渣压力调节组件即可只有一个档位压力,即出渣压力为固定值,在产品组装好后,用户不可更改出渣压力。当然,出渣压力调节组件也可具有多个档位压力,即出渣压力包括多个档位值,在实际过程中,用户可通过操作出渣压力调节组件,来使产品具有多个出渣压力,从而在处理不同的食材时,可根据食材的种类、用户的需要随意调节出渣压力,从而一方面能够更好地满足用户的多种需求,另一方面能够根据食材的种类合理调节出渣压力,从而即可防止某些较软的食材,比如葡萄,被挤压的过碎,而导致营养流失、口感不好等情况的发生,又可防止某些粗纤维食材,比如甘蔗、生姜、胡萝卜等食材挤压不充分,而导致出汁率低的情况发生,进而即可确保食材的营养和口感,又可提高产品的出汁率。其中,优选地,可通过一阻尼硅胶来调节出渣压力。而出渣压力调节组件的具体结构可为目前现有的原汁机、榨汁机等上的用于调节出渣压力的结构。
在上述任一技术方案中,优选地,所述进料组件的一端能够拆卸地卡扣安装在所述杯体的开口端内。
在该些技术方案中,可在进料组件,比如进料筒的下端上设置第一卡扣,而在杯体的上端的内侧壁上设置能够与第一卡扣配合的第二卡扣,从而能够通过第一卡扣与第二卡扣的卡扣配合将进料组件的一端密封地安装在杯体的开口端内。
在上述任一技术方案中,优选地,所述杯体包括粉碎杯和挤压杯,所述进料组件密封盖装在所述粉碎杯的杯口端上,所述粉碎杯的另一端上设 置有连通口,所述挤压杯与所述粉碎杯通过所述连通口连通;所述工作螺杆包括安装在所述粉碎杯内的粉碎螺杆和安装在所述挤压杯内的挤压螺杆;其中,所述杯体上设置有第一出渣口,所述接渣装置密封连接至所述第一出渣口时,所述第一出渣口设置在所述挤压杯上,所述接渣装置与所述挤压杯通过所述第一出渣口连通;其中,所述底座组件上设置有第一驱动轴和第二驱动轴,所述第一驱动轴与所述粉碎螺杆驱动连接,用于驱动所述粉碎螺杆粉碎食材,所述第二驱动轴与所述挤压螺杆驱动连接,用于驱动所述挤压螺杆挤压食材以使食材汁渣分离。
在该些技术方案中,食材进入到粉碎杯内后,粉碎螺杆在第一驱动轴的驱动下与粉碎杯的侧壁配合以将食物粉碎,粉碎后的食材在粉碎螺杆的作用下进入到挤压杯内,而挤压螺杆在第二驱动轴的驱动下挤压食材,以使食材的汁渣分离。该技术方案将食材的粉碎过程和挤汁排渣过程分开进行,而在粉碎过程中,由于不需要挤汁排渣,因此,粉碎杯内不用设置滤网以及旋转刷等部件,从而使得粉碎杯内的食材能够在粉碎杯与粉碎螺杆的共同作用下被粉碎,同时在挤汁排渣过程中可将挤压螺杆大致水平设置,即可将挤汁排渣***设置成卧式,从而可非常便于将食物的汁渣分离,该种设置一方面能够确保食物处理机的出汁率,另一方面能够避免使用滤网、旋转刷等零部件,从而使得食物处理机的结构简单且易于安装,同时由于取消了滤网,因而能够降低用户的清洗难度,进而能够提升用户体验。
在上述任一技术方案中,优选地,所述挤压杯的轴线与所述粉碎杯的轴线之间呈大于等于75°小于等于180°的夹角,或所述挤压杯的轴线与所述粉碎杯的轴线之间呈大于等于90°小于等于135°的夹角。
在该技术方案中,挤压杯和粉碎杯之间可设置一夹角,只要食材能够从挤压杯进入到粉碎杯内即可,其中,优选地,挤压杯的轴线与粉碎杯的轴线之间呈大于等于75°小于等于180°的夹角,即挤压杯水平或倾斜向下设置,从而食材进入到挤压杯内或在挤压杯内向第一出渣口流动时至少不用克服食材的重力,进而使得食材的流动更加顺畅,其中,更进一步地,挤压杯的轴线与粉碎杯的轴线之间呈大于90°小于等于135°的夹角,该种设置食材除了靠挤压螺杆的挤压力流出之外,还能够依靠食材的重力流出, 因而一方面能够加快食材的流动速率,以提高出汁速度,另一方面还能够对食材进行充分挤压,以提高出汁率,同时,该种设置将立式机和卧式机相结合,因而能够使得产品既具有立式机粉碎效果好的优点,又具有卧式机挤压充分的优点,进而即能够使食材被充分粉碎,又能够被充分挤压,进而能够提高出汁率。
其中,进一步,优选地,挤压杯的轴线与粉碎杯的轴线之间呈90°的夹角。
其中,优选地,所述挤压螺杆的轴线与所述粉碎螺杆的轴线之间呈大于等于75°小于等于180°的夹角,或所述挤压螺杆的轴线与所述粉碎螺杆的轴线之间呈大于等于90°小于等于135°的夹角。该种设置能够使挤压杯水平或倾斜向下设置,从而食材进入到挤压杯内或在挤压杯内向第一出渣口流动时至少不用克服食材的重力,进而使得食材的流动更加顺畅。
其中,进一步,优选地,所述挤压螺杆的轴线与所述粉碎螺杆的轴线之间呈90°的夹角。
其中,优选地,底座组件还包括底座、壳体组件,所述壳体组件安装在所述底座上。
在上述任一技术方案中,优选地,所述杯体上设置有第一出渣口,所述接渣装置密封连接至所述第一出渣口时,食物处理机还包括:第一泄压通道,所述第一泄压通道的一端与所述杯体连通,所述第一泄压通道的另一端与外界连通;第二泄压通道,所述第二泄压通道的一端与所述接渣装置连通,所述第二泄压通道的另一端与外界连通;第五密封件,安装在所述第一泄压通道与外界连通的一端上和所述第二泄压通道与外界连通的一端上,用于打开或关闭所述第一泄压通道和所述第二泄压通道。
在该些技术方案中,在接渣装置设置在杯体外时,设置与杯体连通的第一泄压通道,能够通过第一泄压通道在真空榨汁结束后对杯体进行泄压,而设置与接渣装置接渣装置连通的第二泄压通道,能够通过第二泄压通道在真空榨汁结束后对接渣装置接渣装置进行泄压,而第五密封件密封连接在第一泄压通道和第二泄压通道与外界连通的一端,这样可以通过第五密封件的开启或关闭,控制第一泄压通道和第二泄压通道是否连通外部,从 而能够在真空榨汁时,使第一泄压通道和第二泄压通道关闭,以确保杯体能够密封,而在榨汁结束后,可打开第五密封件使第一泄压通道和第二泄压通道打开,这样便能够对杯体和接渣装置接渣装置进行同时泄压。该种设置,由于针对杯体和接渣装置接渣装置均设置了对应的泄压通道,因此,可在泄压时,分别对杯体和接渣装置接渣装置进行泄压,这样不管杯体的第一出渣口出渣口是否被食物渣堵塞,接渣装置接渣装置均能够及时地泄压,从而能够在榨汁结束后轻松便利地拆卸掉接渣装置接渣装置以进行倒渣或清洗等处理,进而可解决接渣装置接渣装置因食物渣的堵塞而无法及时泄压而导致的一系列问题,进而可提高产品的整体性能,以提高用户体验。
在上述任一技术方案中,优选地,所述第一泄压通道与外界连通的一端与所述第二泄压通道与外界连通的一端合并成同一通道;所述杯体的侧壁内设置有一连接通道,所述连接通道的一端延伸至所述第一出渣口,与所述第一出渣口连通,所述连接通道的内侧壁上设置有与所述杯体连通的第二通孔,所述连接通道的外侧壁上设置有第三通孔,所述第五密封件能够打开或密封地安装在所述第三通孔处。
在该些技术方案中,可优选将第一泄压通道和第二泄压通道与外界连通的一端,也即进气端合并成一个通道,这样只需要设置一个第五密封件即可同时实现第一泄压通道和第二泄压通道的同时打开或同时关闭,从而在封闭杯体和接渣装置而进行真空榨汁时,只需要将第五密封件安装到位即可,而在泄压时,也只需要打开一个第五密封件,从而可简化用户在榨汁和泄压时操作,降低用户使用产品时的工作量,以提高用户体验。
同时,可优选在杯体的侧壁内设置一个连接通道,以使第一泄压通道与外界连通的一端和第二泄压通道与外界连通的一端能够合并成同一通道。具体地而连接通道一端与第一出渣口连通,使得连接通道能够与接渣装置能够连通,在连接通道的侧壁上设置第二通孔,使得连接通道能够与杯体连通,这样便可将连接通道作为第一泄压通道和第二泄压通道共用的通道,以使杯体和接渣装置能够通过该连接通道进行同时封闭和泄压。而连接通道的外侧壁上的第三通孔为连接通道与外接导通的进气口,这样通 过第三通孔的打开和封闭,便可使杯体和接渣装置同时密封或同时泄压。
当然,也可通过其它结构来实现将第一泄压通道与外界连通的一端与第二泄压通道与外界连通的一端合并成同一通道的目的,比如可在杯体的侧壁内预埋一个包括一个入口和两个出口的分流管,这样便可通过该分流管同时实现杯体和接渣装置的泄压。
在上述任一技术方案中,优选地,所述第五密封件为一密封塞,所述食物处理机还包括:阀杆,所述阀杆的一端***安装在所述第三通孔内,并能够沿所述第三通孔的轴线移动,所述阀杆的另一端位于所述杯体外,所述密封塞套设在所述阀杆位于所述杯体外的一端上,并能够在所述阀杆的作用下密封安装在所述第三通孔处或打开所述第三通孔;复位弹簧,设置在所述杯体内或所述连接通道内,与所述阀杆连接,用于在所述阀杆移动后使所述阀杆复位。
在该些技术方案中,可将第五密封件设置成一密封塞,比如橡胶塞和硅胶塞,这样便可通过一密封塞实现第三通孔的打开和封闭,从而能够实现整个泄压通道的打开和关闭。而阀杆用于实现密封塞的安装,以及实现密封塞沿第三通孔的轴向上的带动,这样便可通过阀杆的移动实现密封塞的打开和封闭。而复位弹簧用于在泄压完成后使阀杆复位,从而使得阀杆和密封塞能够在泄压后自动复位到初始位置,以实现对第三通孔的密封,这种设置在泄压后,阀杆能够自动复位,因而不需要用户专门去封闭第三通孔,从而可简化用户的工作量,同时也能够防止用户在下次榨汁时忘记使阀杆复位而导致产品无法密封,因而无法进行真空榨汁的情况发生。
在上述任一技术方案中,优选地,所述阀杆***所述第三通孔内的一端***所述第二通孔并伸入到所述杯体内,所述第二通孔的内侧壁上设置有内螺纹,所述阀杆与所述第二通孔配合的侧壁上设置有外螺纹,所述阀杆通过所述外螺纹和所述内螺纹的配合安装在所述第二通孔内。
在该些技术方案中,可优选在第二通孔设置内螺纹,而在阀杆与第二通孔配合的侧壁上对应设置外螺纹,这样阀杆便可通过螺纹连接的方式安装在杯体上,进而便可通过旋转的方式实现阀杆的旋入与旋出,进而便可实现阀杆沿第三通孔的轴向的来回移动,并以此实现密封塞对第三通孔的 打开和封闭。该种结构,通过螺纹连接的方式可简单方便地将阀杆安装在杯体上,从而能够简单方便地以此实现密封塞对第三通孔的打开和封闭操作,因而能够使产品的整体结构较为简单。
在上述任一技术方案中,优选地,所述阀杆***所述第三通孔内的一端***所述第二通孔并伸入到所述杯体内,所述阀杆伸入到所述杯体内的一端的端部上设置有第二安装槽,所述连接通道的内侧壁上还设置有第四通孔,所述复位弹簧为扭簧,所述扭簧套设安装在所述阀杆伸入到所述杯体内的一端上,所述扭簧的第一扭簧臂安装在所述第二安装槽内,所述扭簧的第二扭簧臂***安装在所述第四通孔内,并能够沿所述第四通孔的轴向方向滑动。
在该些技术方案中,可将阀杆伸入第三通孔,并继续穿过第一通孔进入杯体内,而复位弹簧优选为扭簧,这样在阀杆转动后,扭簧便可使阀杆自动复位。而扭簧套设在阀杆伸入杯体内的那一端上,这样便可将扭簧安装在杯体内,这样能够更方便地实现扭簧的安装。而阀杆的端部上设置有第二安装槽,从而可通过该第二安装槽与第一扭簧臂的配合实现对扭簧的固定,从而可防止扭簧随阀杆一起转动,而第四通孔用于固定和引导第二扭簧臂,从而使得阀杆在转动时,扭簧能够正常发生扭转变形,从而能够聚集相应的弹性势能,这样在松开阀杆后,阀杆能够在弹性势能的作用下回归初始位置。
在上述任一技术方案中,优选地,所述阀杆位于所述杯体外的一端上设置有压板,所述压板能够将所述密封塞压紧安装在所述第三通孔处,所述压板上设置有操作手柄。
在该些技术方案中,通过在阀杆的末端设置压板,可通过压板将密封塞压紧在第三通孔处,以使密封塞能够对第三通孔进行可靠密封。而在压板上设置操作手柄,使用时可以直接通过操作手柄实现阀杆的旋转,从而能够方便用户的操作。
在上述任一技术方案中,优选地,所述食物处理机为原汁机或榨汁机,当然,食物处理机也还可以是除原汁机和榨汁机之外的其它结构,比如果汁机,破壁机等。
根据本发明的附加方面和优点将在下面的描述部分中给出,部分将从下面的描述中变得明显,或通过本发明的实践了解到。
附图说明
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是根据本发明的实施例提供的食物处理机的结构示意图;
图2是根据本发明的实施例提供的食物处理机的另一结构示意图;
图3是根据本发明的实施例提供的食物处理机的再一结构示意图;
图4是根据本发明的实施例提供的食物处理机的又一结构示意图;
图5是图4中提供的食物处理机的部分结构示意图;
图6是根据本发明的实施例提供的食物处理机的进料组件的结构示意图;
图7是根据本发明的实施例提供的食物处理机的进料组件的另一结构示意图;
图8是根据本发明的实施例提供的食物处理机的进料组件的分解结构示意图;
图9是根据本发明的实施例提供的进料组件的第一拨料件的结构示意图;
图10是根据本发明的实施例提供的食物处理机的进料组件的又一结构示意图;
图11是根据本发明的实施例提供的食物处理机的进料组件的再一结构示意图;
图12是根据本发明的实施例提供的食物处理机的进料组件的第五个结构示意图;
图13是根据本发明的实施例提供的食物处理机的进料组件的一截面的结构示意图;
图14是根据本发明的实施例提供的食物处理机的第五个结构示意图;
图15是图14中的食物处理机的A处的局部放大结构示意图;
图16是图14中的食物处理机的部分结构的分解结构示意图;
图17是图14中的食物处理机的进料组件的部分结构示意图;
图18是图14中的食物处理机的第二拨料件的结构示意图;
图19是根据本发明的另一实施例提供的食物处理机的结构示意图;
图20是根据本发明的实施例提供的食物处理机的第三辅助进料装置的分解结构示意图;
图21是根据本发明的实施例提供的食物处理机的第三辅助进料装置的一结构示意图;
图22是根据本发明的实施例提供的食物处理机的第三辅助进料装置的又一结构示意图;
图23是根据本发明的实施例提供的食物处理机的第三辅助进料装置的另一结构示意图;
图24是根据本发明的实施例提供的食物处理机的第三辅助进料装置的再一结构示意图;
图25是根据本发明的实施例提供的食物处理机的第三辅助进料装置的第五个结构示意图;
图26是根据本发明的实施例提供的食物处理机的第三辅助进料装置的存料座的结构示意图;
图27是根据本发明的实施例提供的食物处理机的食物处理杯的结构示意图;
图28是根据本发明的实施例提供的食物处理机的食物处理杯的另一结构示意图;
图29是根据本发明的实施例提供的食物处理机的食物处理杯的分解结构示意图;
图30是根据本发明的实施例提供的食物处理机的接渣装置的结构示意图;
图31是根据本发明的实施例提供的食物处理机的进料筒盖和泄压装置的结构示意图;
图32是根据本发明的实施例提供的食物处理机的底座组件的分解结构示意图;
图33是根据本发明的实施例提供的食物处理机的第六个结构示意图;
图34是图33中的食物处理机的B处的局部放大结构示意图;
图35是图33中的食物处理机的部分结构的分解结构示意图;
图36是图33中的食物处理机的部分结构的另一分解结构示意图;
图37是根据本发明的实施例提供的食物处理机的第七个结构示意图;
图38是根据本发明的实施例提供的食物处理机的第八个结构示意图。
其中,图1至图38中附图标记与部件名称之间的对应关系为:
1底座组件,12驱动装置,14控制装置,16壳体组件,18底座,2食物处理杯,22杯体,220第二卡扣,222第一出渣口,224出汁口,226安装柱,228第三卡扣,24工作螺杆,242第一定位凸起,244第一传动结构,246第二定位凸起,26出汁盖,27支撑结构,28第一密封件,29滤网,3进料组件,30第三密封件,32进料筒,320第一卡扣,322安装板,3222第一安装孔,324进料口,326空心柱,328定位阶梯面,34进料盖,36第一辅助进料装置,362第一拨料件,3622第一通孔,364第一传动轴,3642第一定位凹槽,3644第一驱动凸起,366封盖,37第一耐磨件,38第二辅助进料装置,382存料台,3822进料通道,3824第二安装孔,3826第一安装槽,384第二拨料件,3842第二传动结构,39第三辅助进料装置,392存料座,3920进料孔,3922存料腔,3924安装凸台,39242第三安装孔,3926容纳槽,3928第四卡扣,394第三拨料件,3942固定座,3944拨料结构,396第三传动轴,3962第二定位凹槽,3964第二驱动凸起,398第三耐磨件,4接渣装置,42接渣杯,422进渣口,424安装套,44接渣盖,5抽气组件,52抽气泵,54抽气通道,56排气通道,58降噪装置,62泄压孔,64泄压塞,72罩体,74第四密封件,82连接通道,822第二通孔,824第三通孔,826第四通孔,84第五密封件,86阀杆,88复位弹簧。
具体实施方式
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是, 本发明还可以采用其他不同于在此描述的方式来实施,因此,本发明的保护范围并不受下面公开的具体实施例的限制。
下面参照图1至图38来描述根据本发明的实施例提供的食物处理机。
如图1至图38所示,本发明第一方面实施例提供了一种食物处理机,包括底座组件1、食物处理杯2、进料组件3、接渣装置4和抽气组件5,其中,食物处理杯2能够安装在底座组件1上,食物处理杯2包括杯体22和转动地安装在杯体22内的工作螺杆24,杯体22能够用于收纳食物汁,其中,杯体22上设置有第一出渣口222,或杯体22内设置有第二出渣口;进料组件3,密封安装在杯体22的杯口端上;接渣装置4,密封连接至第一出渣口222,用于收集食物渣或接渣装置4位于杯体22内,与第二出渣口连接,用于收集食物渣;杯体22、进料组件3和接渣装置4之间形成一相互导通的密封腔;抽气组件5,能够与密封腔连通,用于将密封腔内的空气抽出。
根据本发明的实施例提供的食物处理机,包括底座组件1、食物处理杯2、进料组件3、接渣装置4和抽气组件5。其中,底座组件1用于为整个产品供电、控制整个产品的工作以及用于对食物处理杯2、进料组件3和接渣装置4等进行支撑安装。而食物处理杯2用于通过杯体22与工作螺杆24的配合粉碎食材,以及使食材的汁渣分离。而进料组件3用于实现食材的进料,即用于将食材投入到食物处理杯2内,而抽气组件5用于对整个进料组件3、抽气组件5以及接渣装置4形成的密封腔进行抽气,以实现抽真空的目的。该种设置,可先启动抽气组件5以将产品内的空气抽出,以使杯体22内能够大致形成真空状态,此后便可启动工作螺杆24以对食材进行处理,从而即可大致在真空的状态下实现对食材的处理,进而即可缓解加工后的食物氧化,以防止食物的营养流失,确保食物汁的颜色和口感等。同时,本申请中,可通过合理设置杯体22的结构,从而可利用杯体22来收集食物汁,这样便不用额外设置接汁结构,从而便能够简化杯体22的结构,降低产品的成本。此外,该种设置在产品的整个对食物处理的工作过程中,可先将食物汁储存在杯体22内,即不必边榨汁边将食物汁排出,从而在整个食物处理的过程中,便不需要像现有技术中那样,打开出汁口 224出汁,从而外界的空气在整个食物处理的过程中都无法通过出汁口224进入到杯体22内,进而即可提高杯体22内的密封性能,以便能够始终维持杯体22的内部真空状态。此外,该种设置,相比于在杯体22上再额外密封安装一个接汁杯的方案而言,其能够利用现成的杯体22进行食物汁的收集,因而即能够提高杯体22的利用率,又能够简化产品的结构,降低产品的加工成本,同时,利用杯体22进行食物汁的收集,在压榨完成后,密封腔内氧气含量低,能更好的保证食物汁的保鲜效果,在使用者需要饮用时才需导出食物汁,保证饮用者能喝到最新鲜的食物汁。而通过设置接渣装置4,从而使得接渣装置4能够与食物处理杯2安装成整体或能够直接将接渣装置4设置在杯体22内,从而在整个食物处理过程中,不需要敞开出渣口,即能够在产品排渣过程中,始终使出渣口222密封。而现有技术中,由于都是在产品外额外设置接渣件,因此,在整个产品榨汁的过程中,出渣口始终敞开,因而产品的氧气始终能够通过出渣口进入到密封腔内,进而导致食物汁氧化。而本申请,通过设置与第一出渣口222密封安装的接渣装置4或直接将接渣装置4设置在杯体22内,从而在产品工作时,既不需要对出渣口进行密封,又能够实现食物渣的收集,即本申请能够在产品的工作过程中,使出渣口始终密封,从而外界的空气在产品的工作过程中无法进入到密封腔内,进而即可在真空状态下实现食材的压榨处理,以及在真空状态下实现对食物汁的收集,因而即可显著减缓食物汁的氧化,确保榨取后的食物的口感。
其中,工作螺杆24的横截面积从工作螺杆24靠近杯体22的杯口的一端至工作螺杆24的另一端增大,优选为逐渐增大,这样能够使杯体22与工作螺杆24之间的间隙从杯体22的开口至食物处理杯2的底部逐渐减小,因而能够依次加大对食材的挤压力度,以便能够将食材越挤压越碎,因而即可提高出汁率。
其中,接渣装置4用于在食材的汁渣分离后,收集食物渣。而接渣装置4即可如图37所示,安装在杯体22内,也可如图1至图3所示,安装在杯体22外。而通过将接渣装置4设置在杯体22内,能够将接渣装置4隐藏安装在杯体22内,从而其不会突兀地安装在杯体22外,因而能够提 高产品的美观,此外,将接渣装置4安装在杯体22内,其仅仅只会占用一部分空间,而杯体22内的其它空间均能够被合理利用,因此,可提高空间利用率。还有,接渣装置4安装在杯体22内,可省去接渣装置4与杯体22之间的连接结构,因而还能够使杯体22和接渣装置4的结构更加简单。此外,通过将接渣装置4安装在杯体22内,从而不需要在杯体22上在额外设置出渣口,从而可提高杯体22的密封性能,因而在将食物处理机设置成真空的食物处理机时,能够有效地提高食物处理机的密封性能,显著地缓解食材在榨汁时以及榨汁后的氧化问题。当然,在其它实施例中,也可在杯体22上设置一个第一出渣口,并将接渣装置4安装在杯体22外,并通过第一出渣口与杯体22内导通。
在上述实施例中,优选地,如图1至图4、图32和图33所示,底座组件1包括:驱动装置12,与工作螺杆24连接,用于驱动工作螺杆24转动;控制装置14,与驱动装置12和抽气组件5连接,用于控制抽气组件5抽气或控制驱动装置12的工作,和/或用于控制抽气组件5抽气,并在抽气组件5抽完气后,控制驱动装置12开始工作。
在该些实施例中,可通过驱动装置12来驱动工作螺杆24,以对食材进行粉碎、挤压等处理,而控制装置14用于控制驱动装置12和抽气组件5的工作。具体地,控制装置14即可单独控制驱动装置12或抽气组件5进行单独工作,也可先控制抽气组件5先工作一段时间,以便能够先完成抽气操作,然后在启动驱动装置12进行工作,以进行食物处理。而先抽气后食物处理的方式,能够在抽气完成后再进行食材的汁渣分离,这样所有的食材均是大致在真空状态下进行处理的,因而所有的食材均不易被氧化,从而可显著缓解食物氧化。反之若在抽完气之前,就进行食材的处理的话,由于杯体22内还残留一些空气,因此,先被处理的食材极易被残留的空气氧化,因而会导致部分食材被氧化,进而无法显著缓解食物汁等的氧化。
在上述任一实施例中,优选地,食物处理机还包括预约装置,与控制装置14连接,用于在预设时间后,使控制装置14控制驱动装置12和抽气组件5的工作。
在该些实施例中,可在产品上设置一个预约装置,从而可通过预约装 置实现产品的预约功能,进而可减少用户的等待时间,具体地,比如,预约装置包括采集装置,用于采集用户的预约参数,计时装置,用于根据预约参数进行计时,并在计时完成后,控制装置14开始工作。
在上述任一实施例中,优选地,如图3、图16和图29所示,杯体22上设置有出汁口224,出汁口224处密封盖装有一出汁盖26,出汁盖26用于打开或封闭出汁口224;其中,出汁口224和出汁盖26之间还设置有第一密封件28,第一密封件28用于使出汁盖26与出汁口224密封连接。
在该些实施例中,可在杯体22上设置一个出汁口224,并在出汁口224处设置一个第一密封件28和出汁盖26,其中,第一密封件28和出汁盖26用于在产品工作过程中实现对出汁口224的密封。而在食物处理完成后,用户想取用食物汁时,可通过出汁盖26打开出汁口224,以便能够通过出汁口224取用食物汁,而在用户取用掉所需的食物汁后,又可通过出汁盖26关闭出汁口224,以将剩余的食物汁继续密封储存在杯体22内,从而即可缓解剩余的食物汁氧化。
当然,在其它实施例中,也可不设置出汁口224,而在食物处理结束后,直接通过杯体22的杯口将食物汁倒出。
在上述任一实施例中,优选地,(该实施例图中未示出)杯体22上设置有出汁口224,出汁口224处设置有阀门,阀门用于控制出汁口224的打开或封闭。
在该些实施例中,也可在出汁口224处设置一个阀门,从而可通过阀门来实现出汁口224的打开和封闭。具体地,比如可在出汁口224处设置一个类似水龙头的阀门,这样便可像操作水龙头那样,实现出汁口224的即开即停,因而使得食物汁的取用更加快捷方便。
在上述任一实施例中,优选地,如图1至图8以及图14至图18所示,进料组件3包括:进料筒32,进料筒32的一端密封安装至杯体22的杯口端;进料盖34,密封盖装在进料筒32的另一端上,用于打开或封闭进料筒32;辅助进料装置(具体可为第一辅助进料装置36或第二辅助进料装置38),能够安装在进料筒32内,用于辅助进料,比如辅助进料装置能够转动地安装在进料筒32内。
在该些实施例中,进料筒32用于进料,而进料盖34用于密封进料筒32的开口,其中,优选地,可在进料筒32和进料盖34之间设置一第三密封件30,从而可通过第三密封件30来实现进料筒32与进料盖34之间的密封。而在进料筒32内设置一个能够转动地的辅助进料装置辅助进料装置,从而可通过辅助进料装置辅助进料装置的转动来实现辅助进料,以便能够控制进料的速度,防止食物堵塞。具体地,比如可通过辅助进料装置辅助进料装置来实现食材的预先切削,或者利用辅助进料装置辅助进料装置将预先储存在进料筒32内的食材推入到杯体22内等操作。
在上述任一实施例中,优选地,如图4、图5和图33所示,食物处理机还包括:罩体72,罩设安装在进料筒32外,罩体72的一端开口一端封闭,罩体72开口的一端安装在杯体22上;第四密封件74,设置在罩体72与杯体22的连接处,并使罩体72与杯体22的连接处为密封连接;杯体22的外侧壁上设置有支撑结构27,罩体72开口的一端密封安装在支撑结构27上。
在该些实施例中,罩体72罩设在进料筒32外,并密封安装至杯体22,这样便能够将进料筒32密封地罩设在罩体72内,该种设置在对整个产品进行密封以进行真空榨汁时,只要罩体72与杯体22处密封连接,那杯体22与罩体72便能够形成一个严格密封的封闭空间,这样在真空榨汁时便不需要对进料筒32上端的开口进行密封,在进料筒32与杯体22为分体式结构时,也不需要对进料筒32与杯体22的连接处进行密封,这样便可减少需要密封的地方,降低密封难度,提高密封效果,从而能够更加显著地提高真空榨汁的效果,进而可更加显著地减缓食物汁的氧化,确保榨取后的食物的口感。此外,该种结构,只是在传统的食物处理机上额外设置了一个罩体72,从而可以保留传统食物处理机的结构形式,以降低制造难度,提高产品生产效率,而在不需要真空榨汁时,拿掉罩体72,其结构和使用方法基本与传统原汁机使用方式一致,这样便使得食物处理机即可进行真空榨汁,又可进行普通的榨汁。
同时,可在杯体22的侧壁上设置一个支撑结构27,这样便可将罩体72罩住部分杯体22,并密封安装至杯体22的侧壁上的支撑结构27上。该 种设置罩体72密封安装至支撑结构27,从而可将杯体22上端的端面预留出来,以进行进料筒32的安装,这样便可将进料筒32和罩体72分别固定安装在杯体22的不同部位上,从而可防止进料筒32和罩体72发生干涉等情况,从而能够使产品的整体结构布局的更加合理紧凑。
在上述任一实施例中,优选地,如图4、图5和图33所示,罩体72的顶壁与进料筒32远离杯体22的一端的端面之间设置有间隙;和/或罩体72的侧壁与进料筒32的侧壁之间设置有间隙。
在该些实施例中,罩体72的顶壁与进料筒32远离杯体22的一端的端面之间设置有间隙,和/或罩体72的侧壁与进料筒32的侧壁之间设置有间隙,能够使罩体72的顶部与侧壁均不与进料筒32直接接触,这样在压榨时进料筒32由于受力不平衡而发生的位移情况,便不会轻易地传递到罩体72,从而不会影响到罩体72对产品的整体密封,进而使得罩体72能够始终与杯体22可靠密封。
在上述任一实施例中,优选地,杯体22的外侧壁面包括多个沿杯体22的轴向方向设置的第一平面,多个第一平面沿杯体22的周向方向相互间隔设置;其中,相邻两个第一平面之间通过第一弧形面连接。
在该些实施例中,杯体22的外侧壁面包括多个沿杯体22的轴向方向设置的第一平面,使得杯体22能够大致形成为多边形,这样能够使杯体22更接近为方形,而相邻两个第一平面之间通过第一弧形面连接,能够使杯体22的侧壁能够更加平滑过渡的连接。而杯体22更接近为方形,相比于传统的圆形或圆锥形杯而言,方形的杯体22能够使杯体22与进料筒32和罩体72之间的定位更简单方便,因为圆形或圆锥形为对称结构,这样在安装时便无法快速地辨认出杯的定位方向,需要用户仔细分辨才能够找准定位的方向,而方形杯由于能够通过长度和宽度作为参照,因此,在定位时能够更快更容易地找准定位方向,进而能够使杯体22与进料筒32和罩体72之间的定位更简单直观,从而使得产品使用起来能够更加方便。
在上述任一实施例中,优选地,如图4、图5和图33所示,罩体72的顶壁呈弧形;和/或罩体72的顶壁的外表面的边缘上设置有倒圆角;和/或罩体72的侧壁包括两两相对设置的并沿罩体72的周向方向均匀分布的 4个第二弧形面,且4个第二弧形面相互间隔设置,相邻两个第二弧形面通过第三弧形面连接。
在该些实施例中,罩体72的顶壁即可呈平面也可呈弧面,而优选呈弧面设计,因为该种设置可有效避免罩体72因内部负压而引起的变形,具体地,比如可通过外壁抵抗挤压,而通过内壁抵抗拉伸,从而能够在产品工作时减小罩体72的变形,减少真空负压施加到罩体72上的力。同理,也可将罩体72的侧壁设置成弧形,比如可将罩体72的前后左右四个面均设置成第二弧形面,并在前后左右的四个角上设置四个第三弧形面,这样便能提高罩体72侧壁的抗压能力,提高罩体72侧壁的强度。而在罩体72的顶壁的外表面的边缘上设置倒圆角,能够使罩体72的结构更加平滑,因而能够进一步提高罩体72的整体强度。
在上述任一实施例中,优选地,罩体72的顶壁呈平面,罩体72的侧壁包括多个沿罩体72的周向方向间隔设置的第二平面,其中,相邻两个第二平面之间通过第四弧形面连接,且第四弧形面为以罩体72的顶壁的中心为圆心的圆弧面。
在该些实施例中,也可将罩体72的顶部设置成平面,这样在将罩体72设置成透明时,能够确保光线平行射入和反射出,从而可避免用户在通过罩体72观看时,图像变形失真,进而能够确保用户的观看体验。同理,也可将罩体72的几个侧壁也大致设置成平面,以确保样光线能够从侧壁平行射入和反射出,进而可避免用户在通过罩体72观看时,图像变形失真。而设置弧面能够使罩体72的各个平面侧壁之间能够更加光滑的连接,从而可使罩体72的结构更加平滑,而侧壁上的弧面为以罩体72的顶壁的中心为圆心的圆弧,能够进一步确保透过罩体72的顶部观察内部榨汁过程时图像完整不会变形。而此时,罩体72的侧壁可优选设置成弧形或类型弧形的结构,从而能够使罩体72的结构更加平滑,因而也能够提高罩体72的强度和抗变形能力。
在上述任一实施例中,优选地,罩体72在各个位置处的壁厚相等;和/或罩体72为透明罩;和/或罩体72的壁厚大于等于2mm小于等于4mm;和/或罩体72为轴对称结构;和/或罩体72开口的一端的端面呈弧形或圆弧 形。
在该些实施例中,罩体72在各个位置处的壁厚相等,使得罩体72在各处的受力能力一致,从而可使受力均匀,防止出现受力薄弱部的情况发生,同时,罩体72在各个位置处的壁厚相等还使得罩体72的结构更简单,从而使得罩体72能够更好地进行加工。而罩体72优选为透明罩体72,具体地,比如可采用透明聚碳酸酯、有机玻璃等透明材料来加工出罩体72,这样在产品工作时,使得用户能够通过罩体72看到罩体72内部的情况,从而能够增强用户的使用体验。而罩体72的壁厚大于等于2mm小于等于4mm,使得罩体72的厚度不会过厚也不会过薄。而罩体72为轴对称结构能够进一步使罩体72的结构简单,因而能够进一步提高罩体72的强度。而罩体72开口的一端的端面呈弧形或圆弧形,使得罩体72开口一端的端面比较光滑,从而能够对罩体72进行端面密封时,使得罩体72与第一密封件28贴合的更好,从而即可确保密封效果,又可防止罩体72刺破密封件的情况发生。
在上述任一实施例中,优选地,如图1至图17所示,辅助进料装置与工作螺杆24驱动连接,能够在工作螺杆24的作用下转动。
在该些实施例中,可将辅助进料装置驱动连接至工作螺杆24,从而可通过工作螺杆24来实现辅助进料装置的驱动,从而便不用额外设置驱动辅助进料装置的机构,因而能够简化产品的结构,降低产品的成本。当然,辅助进料装置也不可与工作螺杆24连接,此时,可额外设置一个驱动件来实现辅助进料装置的驱动。
在上述任一实施例中,优选地,如图6至图13所示,进料筒32内设置有安装板322和进料口324,安装板322安装至进料筒32的内侧壁,安装板322上设置有第一安装孔3222,辅助进料装置的一端位于安装板322远离杯体22的一方,工作螺杆24位于安装板322靠近杯体22的一方,第二辅助进料装置38的另一端***到第一安装孔3222内,与工作螺杆24驱动连接;其中,进料口324设置在安装板322上或进料口324由安装板322与进料筒32的侧壁围成。
在该些实施例中,可在进料筒32内设置一个安装板322,从而一方面 可通过安装板322实现辅助进料装置的支撑安装。另一方面,可通过安装板322来存放一部分食材。此外,安装板322还可与辅助进料装置一起对食材进行切削,以便能够提前将食材加工成小碎块。具体地,比如,辅助进料装置在转动的过程中,便可带动食材一起运动,而在加工的食材较大时,食材便会部分卡入到进料口324处,而辅助进料装置会继续转动,因此,便可将食材挤压在辅助进料装置和进料口324的边缘之间,这样便可对食材施加一个挤压力,从而便可将食材挤压成小碎块,以实现对食材的初步处理。此外,还可在辅助进料装置上设置切削刃,以便能够通过切削刃实现食材的切削。其中,进料口324即可直接设置在安装板322上,也可通过安装板322与进料筒32的侧壁围成。
在上述任一实施例中,优选地,如图6至图13所示,辅助进料装置包括第一辅助进料装置36,第一辅助进料装置36包括:第一拨料件362,能够转动地安装在安装板322远离杯体22的一方;第一传动轴364,第一传动轴364的一端与工作螺杆24驱动连接,第一传动轴364的另一端***并穿过第一安装孔3222与第一拨料件362驱动连接。
在该些实施例中,可在安装板322的上方设置一个能够转动地拨片、拨杆等第一拨料件362,并通过第一传动轴364将其驱动连接至工作螺杆24,这样,工作螺杆24转动时,即可带动第一拨料件362转动,从而被放入进料筒32内的食材,便可在第一拨料件362的拨动下从进料口324进入到杯体22内,而在加工的食材较大时,食材便会部分卡入到进料口324处,而第一拨料件362会继续转动,因此,便可将食材挤压在第一拨料件362和进料口324的边缘之间,这样便可对食材施加一个挤压力,从而便可将食材挤压成小碎块,以实现对食材的初步处理。此外,还可在第一拨料件362上设置切削刃,以便能够通过切削刃实现食材的切削。这样通过设置第一拨料件362便可实现对食材的切削拨动等处理,进而即可提高食材的进料速度,防止进料筒32堵塞,以及提高食材的处理效率。
在上述任一实施例中,优选地,如图6至图13所示,第一拨料件362上设置有第一通孔3622,第一传动轴364远离工作螺杆24的一端依次***并穿过第一安装孔3222、第一通孔3622,第一辅助进料装置36还包括: 封盖366,安装在第一传动轴364伸出第一通孔3622的一端上。
在该些实施例中,可将第一拨料件362通过第一通孔3622套设安装在第一传动轴364伸出第一安装孔3222的一端上,并使其穿过第一拨料件362,这样即可提高第一拨料件362与第一传动轴364之间的安装可靠性。而通过设置封盖366,可将第一传动轴364的上端限位在第一拨料件362的上侧,从而可防止第一传动轴364从第一通孔3622中滑落,进而能够进一步提高第一拨料件362与第一传动轴364之间的连接可靠性。
在上述任一实施例中,优选地,如图6至图13所示,第一传动轴364上设置有至少一个第一驱动凸起3644,第一驱动凸起3644能够与工作螺杆24配合,以在工作螺杆24的驱动下转动。
在该些实施例中,可在第一传动轴364的下端面上设置一个或多个第一驱动凸起3644,从而可通过第一驱动凸起3644与工作螺杆24的上端的侧部配合,以实现与工作螺杆24之间的驱动连接,当然,第一传动轴364也可通过其它结构实现与工作螺杆24之间的驱动连接。
在上述任一实施例中,优选地,如图6至图13所示,第一拨料件362与第一传动轴364为分体式结构,或第一拨料件362与第一传动轴364为一体式结构。
在该些实施例中,第一拨料件362与第一传动轴364即可为分体式结构,比如为两个零件,这样便于单独对第一拨料件362与第一传动轴364中的每一个零件进行单独维修和更换。当然,在其它实施例中,第一拨料件362与第一传动轴364也可为一体式结构,这样即能够提高第一拨料件362与第一传动轴364的连接强度,以使第一拨料件362与第一传动轴364不易损坏,又能够实现第一拨料件362与第一传动轴364之间的无缝连接,从而能够防止在第一拨料件362与第一传动轴364之间形成缝隙,进而便于清洗。
其中,优选地,第一拨料件362对称地安装在第一传动轴364上。该种设置能够使产品的结构更加合理紧凑,且也能够使产品的结构更加简单。
在上述任一实施例中,优选地,如图6至图13所示,进料口324由安装板322与进料筒32的侧壁围成,进料口324的数量为两个,两个进料口 324和安装板322均关于进料筒32的轴线对称。
在该些实施例中,进料口324优选由安装板322与进料筒32的侧壁围成,这样能够简化安装板322的结构,从而降低成本。而进料口324的数量优选为两个,这样能够使每个进料口324较大,因而便于产品处理一些大块的食材。而两个进料口324和安装板322均关于进料筒32的轴线对称,这样使得安装部能够刚好安装至工作螺杆24的中心,因而也能够使进料筒32的内部更加合理紧凑。
其中,优选地,安装板322由一圆形板和对称设置在圆形板的两侧的两块扇形板组成,其中,第一安装孔3222设置在圆形板的中部。
在上述任一实施例中,优选地,如图12所示,进料筒32为直筒形。
在该些实施例中,进料筒32优选为直筒形,即是说进料筒32并不弯折设置,这样使得食材能够从上至下顺畅的流动。当然进料筒32也可弯折设置。其中,优选地,进料筒32的内侧壁和外侧壁均竖直设置。
在上述任一实施例中,优选地,如图6至图13所示,第一拨料件362为拨料杆或拨料片。
在该些实施例中,第一拨料件362的形状可任意设置,但优选为拨料杆或拨料片。
在上述任一实施例中,优选地,如图6至图13所示,第一传动轴364上设置有第一定位凹槽3642和第一定位凸起242中的一个,工作螺杆24上设置有第一定位凹槽3642和第一定位凸起242中的另一个,第一定位凸起242能够***到第一定位凹槽3642内,以对工作螺杆24进行定位;其中,第一定位凹槽3642内设置有第一耐磨件37。
在该些实施例中,可在工作螺杆24的上端面上设置一个第一定位凸起242或第一定位凹槽3642或定位孔,而在第一传动轴364的下端上对应设置一第一定位凸起242或第一定位凹槽3642或定位孔,这样便能够通过第一定位凸起242与定位孔或第一定位凸起242与定位轴的配合实现对工作螺杆24的定位,进而可提高工作螺杆24安装后的稳定性,减少工作螺杆24的晃动。而通过在第一定位凹槽3642内设置第一耐磨件37,能够减少第一定位凸起242与第一定位凹槽3642之间的磨损。
在上述任一实施例中,优选地,如图6至图13所示,安装板322靠近杯体22的一面上设置有两端开口的空心柱326,空心柱326与进料口324导通;工作螺杆24的一端从进料筒32的底部伸入到空心柱326内,并能够与空心柱326的侧壁配合,以粉碎食材;其中,空心柱326远离安装板322的一端与进料筒32的侧壁连接,或空心柱326远离安装板322的一端悬空。
在该些实施例中,可在安装板322的下方设置一个能与进料口324导通的空心柱326,并将该空心柱326,套设安装在工作螺杆24的上端,这样食材从进料口324进入到安装板322的下方后,便可在空心柱326的侧壁和工作螺杆24的作用下被挤压处理或被切削处理,即能够在食材进入到杯体22之前,对食材多进行一道粉碎处理工序,因而能够提高产品对食材的处理效果,以提高出汁率。而通过设置空心柱326,能够降低进料筒32下端的有效内径,进而能够使工作螺杆24与进料筒32的下端的侧壁之间形成的通道更小,因而能够加大对食材的处理力度。其中,空心柱326远离安装板322的一端优选与进料筒32的侧壁连接,这样空心柱326还能够对安装板322进行进一步支撑,从而能够提高安装板322的强度,而在另一实施例中,空心柱326远离安装板322的一端也可悬空设置,即不与进料筒32的侧壁连接。
其中,优选地,空心柱326呈锥形。而螺杆等结构的上端大致从上至下会依次增大,因此将空心柱326对应设置成锥形使得空心柱326能够与工作螺杆24的上端相互适配,进而使得工作螺杆24能够与空心柱326更好的配合,以实现食材的处理。
在上述任一实施例中,优选地,如图1、图37和图38所示,安装板322能够拆卸地安装至进料筒32的内侧壁,或如图1至图3、图7、图11至图17所示,安装板322与进料筒32的内侧壁为一体式结构。
在该些实施例中,将安装板322能够拆卸地安装在进料筒32内,这样使得存料台382能够拆卸下来进行杯体22和存料台382的清洗,同时该种设置可将安装板322和第二拨料件384等安装成一个整体进行安装、维修销售等。当然,安装板322与进料筒32的内侧壁也为一体式结构,即安装 板322也可直接加工在进料上,这样可增强安装板322与进料筒32的连接强度。
在上述任一实施例中,优选地,如图1、图3和图4所示,进料筒32能够拆卸地密封安装至杯体22的杯口端,或如图37和图38所示,进料筒32与杯体22为一体式结构。
在该些实施例中,进料筒32与杯体22为一体式结构,这样即可通过一个大杯子实现食材的进料和处理,该种设置,一方面不需要额外在杯体22上设置一个进料筒32或类似进料筒32的结构,进而能够简化产品的零件个数,此外该种结构,只有一个杯体22,因此,只有杯体22的开口这一个敞口,因而在密封该杯体22时,只需要密封杯体22的开口处即可,而现有技术中,杯体22与进料筒32的连接处以及杯体22的开口均需要密封,因此至少需要密封两处,从而该种结构相对现有技术而言还能够降低产品的密封难度。同时,现有技术中,杯体22与进料筒32的连接处以及杯体22的开口处均有泄漏的可能性,而本申请由于去掉了进料筒32的使用,因此,整个杯体22的侧壁位置处一定能够严格密封,从而便相对增强了产品的密封性能,进而使得产品在实现真空榨汁时,能够更有效地缓解氧化。而进料筒32与杯体22能够拆卸地连接,这样可通过杯体22来实现食材的粉碎以及食材的汁渣分离,同时可通过进料筒32来向杯体22内添加食材,这样使得食材的进料和处理能够分两个杯体22进行,从而能够减小每一个杯体22的高度,以使产品比较好加工和清洗。
在上述任一实施例中,优选地,如图15至图18所示,工作螺杆24上设置有第一传动结构244,辅助进料装置包括第二辅助进料装置38,第二辅助进料装置38包括:存料台382,安装在进料筒32内,存料台382上设置有进料通道3822;第二拨料件384,能够转动地安装在进料筒32内,位于存料台382远离工作螺杆24的一侧,第二拨料件384上设置有第二传动结构3842,第二传动结构3842能够与第一传动结构244配合,使工作螺杆24与第二拨料件384驱动连接。
在该些实施例中,存料台382用于安装在进料筒32内用于存放食材,而第二拨料件384能够转动地安装在进料筒32内,存料台382的上方,其 中,第二拨料件384转动时,能够对存料台382上存放的食材进行挤压、切削等处理,并能够在挤压、切削等处理后将其推送到进料通道3822内,以使食材能够进入到杯体22内,这样即可避免手动进料,这样在实际使用产品时,用户可一次性的将所有的食材通过进料筒32的杯口放入到进料筒32内,并使其存放在存料台382上,此后食材便可在第二拨料件384的作用下实现自动逐步进料。而通过在第二拨料件384上设置第一传动结构244,并在工作螺杆24上设置第二传动结构3842,这样便可通过第一传动结构244与第二传动结构3842的配合,使得第二拨料件384能够与工作螺杆24进行驱动连接,从而能够在工作螺杆24的驱动下转动,该种驱动方式一方面可通过工作螺杆24来实现第二拨料件384的驱动,从而便不用额外设置驱动第二拨料件384的机构,因而能够简化产品的结构,降低产品的成本。另一方面,该种驱动方式,工作螺杆24与第二拨料件384通过两个传动结构直接驱动连接,从而一方面能够使传动更加平稳,另一方面不用借助其它任何的连接轴等结构,因而能够进一步简化产品的结构,降低产品的成本。
在上述任一实施例中,优选地,杯体22与进料筒32为一体式结构,或杯体22与进料筒32为分体式结构;杯体22与进料筒32为一体式结构时,存料台382能够拆卸地安装在进料筒32内;杯体22与进料筒32为分体式结构时,存料台382能够拆卸地安装在进料筒32内,或存料台382与进料筒32为一体式结构。
在该些实施例中,进料筒32与杯体22为一体式结构,这样即可通过一个大的杯体22实现食材的进料和处理,该种设置,一方面不需要额外在杯体22上设置一个类似进料筒32的结构,进而能够简化产品的零件个数,此外该种结构,只有一个杯体22,因此,只有杯体22的开口这一个敞口,因而在密封该杯体22时,只需要密封杯体22的开口处即可,而现有技术中,杯体22与进料筒32的连接处以及杯体22的开口均需要密封,因此至少需要密封两处,从而该种结构相对现有技术而言还能够降低产品的密封难度。同时,现有技术中,杯体22与进料筒32的连接处以及杯体22的开口处均有泄漏的可能性,而本申请由于去掉了进料筒32的使用,因此,整 个杯体22的侧壁位置处一定能够严格密封,从而便相对增强了产品的密封性能,进而使得产品在实现真空榨汁时,能够更有效地缓解氧化。而进料筒32与杯体22能够拆卸地连接,这样可通过杯体22来实现食材的粉碎以及食材的汁渣分离,同时可通过进料筒32来向杯体22内添加食材,这样使得食材的进料和处理能够分两个杯体22进行,从而能够减小每一个杯体22的高度,以使产品比较好加工和清洗。
同时,在进料筒32与杯体22设置成一个大杯子时,可将存料台382能够拆卸地安装在进料筒32内,以便存料台382能够拆卸下来进行杯体22和存料台382的清洗。而在进料筒32与杯体22设置成两个杯子时,既可将存料台382能够拆卸地安装在进料筒32内,也可将存料台382一体安装在进料筒32内。
在上述任一实施例中,优选地,如图15至图18所示,存料台382上设置有第二安装孔3824,第一传动结构244为传动孔和第二传动轴中的一个,第二传动结构3842为传动孔和第二传动轴中的另一个,第二传动轴能够通过第二安装孔3824***到传动孔内,使工作螺杆24与第二拨料件384驱动连接。
在该些实施例中,可如图17所示在存料台382上设置一个第二安装孔3824,以便工作螺杆24与第二拨料件384能够通过第二安装孔3824相互连接,而第一传动结构244优选为一传动孔或第二传动轴,也就是说既可在第二拨料件384上设置一个传动孔或一个第二传动轴,而在工作螺杆24上设置一个第二传动轴或传动孔,这样便可通过传动孔与第二传动轴的配合,以实现工作螺杆24对第二拨料件384的直接驱动,从而便可驱动第二拨料件384在进料筒32内存料台382上方进行转动,进而实现对食材的切削、挤压或推送等处理,因而即可实现自动进料。
在上述任一实施例中,优选地,如图15至图18所示,存料台382靠近工作螺杆24的一面上、第二安装孔3824的周围设置有一圈第一安装槽3826,食物处理机还包括:第二耐磨件,安装在第一安装槽3826内,套设在第二传动轴上,位于工作螺杆24与存料台382相接触的面之间。
在该些实施例中,可在存料台382的下表面上绕第二安装孔3824设置 一圈第一安装槽3826,这样便可通过第一安装槽3826实现对第二耐磨件的定位安装,而第二耐磨件设置在存料台382与工作螺杆24的上端面之间,可减少工作螺杆24与存料台382之间的相互磨损,从而可提高工作螺杆24和存料台382的使用寿命。
在上述任一实施例中,优选地,如图15至图18所示,传动孔为多边形孔,第二传动轴为与多边形孔相适配的多边形轴;和/或第一传动结构244为第二传动轴,第二传动结构3842为传动孔。
在该些实施例中,传动孔为多边形孔,第二传动轴为与多边形孔相适配的多边形轴,这样便可通过非圆弧面实现工作螺杆24与第二拨料件384之间的驱动,从而能够增大传动孔与第二传动轴之间的接触面积,以提高驱动力度,从而可提高传动效率,以及确保传动的可靠性。且优选地,在工作螺杆24上设置一个第二传动轴,而在第二拨料件384上对应设置一个传动孔,这样能够使工作螺杆24与第二拨料件384能够更好地配合。
在上述任一实施例中,优选地,如图19至图27所示,辅助进料装置包括第三辅助进料装置39,第三辅助进料装置39包括:存料座392,安装在进料筒32内,位于工作螺杆24远离杯体22的底部的一方,存料座392内设置有存料腔3922,存料腔3922远离工作螺杆24的一端开口,存料座392上设置有至少一个进料孔3920,进料孔3920与存料腔3922和杯体22导通;第三拨料件394,第三拨料件394能够转动地安装在存料腔3922内,第三拨料件394能够转动的角度大于等于30°;其中,存料座392用于存放食材,第三拨料件394用于切削和/或挤压存料腔3922内的食材,以及用于将存料腔3922内存放的食材推送到进料孔3920内。
在该些实施例中,第三辅助进料装置39包括位于工作螺杆24上方的存料座392,以及能够转动地安装在存料座392内的第三拨料件394。而存料座392上还设置有进料孔3920,因此,在实际使用时,可直接将食材投放到存料座392内,以实利用存料座392实现食材的存放,而第三拨料件394能够转动地安装在存料座392内,且存料座392上还设置有与存料腔3922导通的进料孔3920,从而通过第三拨料件394的转动便能够推动存放在存料座392上的食材进行转动,而食材在转动过程中便能够通过食材与 食材之间的相互摩擦挤压或食材与进料筒32的侧壁之间的相互摩擦挤压或食材与第三拨料件394之间的相互摩擦挤压而实现食材的初步切削和/或挤压加工,而初步切削和/或挤压加工后的较小的食材便能够在第三拨料件394的作用下,从进料孔3920落入到存料座392的下方,而较大一点的食材则会被卡在进料孔3920处,此时,第三拨料件394并不会停止转动,即第三拨料件394会继续转动,从而第三拨料件394便能够与进料孔3920的侧壁之间对食材形成一个夹击力,进而能够对卡在进料孔3920处的食材施加一个挤压或切削力,进而便能够将食材挤压或切削成更小的碎块,这样通过第三拨料件394的不断转动,便能够依次将食材挤压或切削成一定大小的碎块后,使其依次通过进料孔3920并进入到杯体22内,而进入到杯体22内的食材则可在工作螺杆24与杯体22的侧壁的双重作用下被挤压碎或切削碎,此后便可通过滤网或双杯体双螺杆的方式实现食材的汁渣分离。该种第三辅助进料装置39,在实际榨汁时,用户可一次性的将所有的食材投放到存料座392内,并使其存放在存料座392内,此后食材便可在第三拨料件394的作用下实现自动逐步进料,从而在实际榨汁时并不需要用户逐步投料,因而能够实现一次性投料,进而在实际过程中,便可先将食材全部投入到存料座392内,然后再通过预约组件等控制产品先暂时不工作,而是在固定时间段后才可开始工作,这样即可实现食材的提前预约处理,从而便可减少用户的等待时间,提升用户体验,即该种结构为产品实现预约榨汁提供了可能性,从而可在食物处理机上设置预约组件,以实现预约功能。同时,该种设置能够在一次性投料后,能够在第三拨料件394的作用下实现自动进料,因而并不需要使用推料棒等来实现手动推料,从而即可减少用户的操作量,以使产品的榨汁功能更加方便简单,因而即可提高用户体验,又可省去推料棒等结构,以避免使用推料棒而存在的一系列问题,比如推料棒的安放问题和使用推料棒的安全隐患问题。此外,该种设置由于能够在食材通过进料孔3920落入到杯体22内时,通过第三拨料件394提前对食材进行切削或挤压加工,因而使得进入到杯体22内的食材的颗粒都较小,因而能够降低工作螺杆24的难度,以减少工作螺杆24的磨损,提高食材的处理加工效果,以提高出汁率。此外,该种设置还能够有 效防止工作螺杆24被卡死,防止出渣口堵塞等情况的发生。此外,通过在存料座392内设置存料腔3922,从而使得第三辅助进料装置39自身就具有容纳食材的作用,因此在投放食材时,可移动第三辅助进料装置39至食材的位置,而不一定非要将食材移动至产品处而进行投料,因而使得投放食材的操作更加方便快捷。此外,该种设置在切削和/或挤压食材时,可直接利用存料腔3922的侧壁实现对食材的阻挡和挤压,因而不需要借助进料筒32的侧壁,这样,对应存料座392的进料筒32的侧壁部分便不会与食材直接接触,因而即可降低进料筒32此处侧壁的加工要求,以降低产品成本,以及确保进料筒32此处的干净,以降低进料筒32的清洗难度。还有在存料座392内设置存料腔3922,相比于将存料座392设置成存料板的方案而言,还能够防止食材卡入到存料板与进料筒32的侧壁之间,从而即可防止食材浪费。
其中,第三拨料件394能够转动的角度大于等于30°,使得第三拨料件394具有一较为合理的转动角度,从而能够将存料座392上的食材进行充分粉碎并推送到进料孔3920处,以提高产品进料的顺畅性,进而可防止第三拨料件394转动角度过小,而导致进料不畅的情况发生。
在上述任一实施例中,优选地,如图19至图27所示,存料座392上还设置有第三安装孔39242,第三辅助进料装置39还包括:第三传动轴396,第三传动轴396的一端位于存料腔3922内,与第三拨料件394驱动连接,第三传动轴396的另一端从第三安装孔39242内伸出,并与工作螺杆24驱动连接。
在该些实施例中,可在存料腔3922内设置一个能够转动地拨片、拨杆等第三拨料件394,并通过第三传动轴396将其驱动连接至工作螺杆24,这样工作螺杆24转动时,即可通过第三传动轴396带动第三拨料件394转动,以实现对食材的切削和/或挤压等处理。而切削和/或挤压后的食材又可进一步在第三拨料件394的作用下从进料孔3920进入到杯体22内。当然,第三拨料件394也可通过其它方式驱动连接至工作螺杆24,或第三拨料件394也可不连接至工作螺杆24,而是额外在设置一个驱动其转动的驱动结构。
在上述任一实施例中,优选地,存料座392的外底壁上设置有容纳槽3926,工作螺杆24的一端能够伸入到容纳槽3926内,存料座392的内底壁上设置有安装凸台3924,第三安装孔39242贯穿安装凸台3924以及容纳槽3926,第三传动轴396的一端位于容纳槽3926内,用于与工作螺杆24驱动连接,第三传动轴396的另一端通过第三安装孔39242伸入到存料腔3922内,并与第三拨料件394驱动连接。
在该些实施例中,在存料座392的内底壁面上设置安装凸台3924,一方面能够利用该安装凸台3924将第三拨料件394安装的较高,另外,该种设置还能够增大存料座392的内壁的面积,从而第三拨料件394能够与更大面积的内壁配合,以实现对食材的切削和/或挤压处理,进而可加大第三辅助进料装置39在工作时,对食材的挤压力度,进而能够提高食材的处理效果。同时,设置安装凸台3924后,可将容纳槽3926对应安装凸台3924设置,从而即能够不增加存料座392的底壁的厚度,又能够确保存料座392的底壁的去强度。而在存料座392的外底壁面上设置容纳槽3926,能够使存料座392罩设在工作螺杆24的一端上,这样使得工作螺杆24还能够与容纳槽3926的侧壁配合以实现对食材的进一步切削和/或挤压处理,因而能够进一步提高食材的处理效果。
在上述任一实施例中,优选地,如图19至图27所示,进料孔3920从安装凸台3924远离存料腔3922的一端的端面的边缘延伸至存料座392的底部。
在该些实施例中,进料孔3920从安装凸台3924远离存料腔3922的一端的端面的边缘延伸至存料座392的底部,使得进料孔3920开设的较大,因而能够提高进料的顺畅性。
其中,优选地,进料孔3920的数量为一个或多个,进料孔3920为多个时,多个进料孔3920对称设置。
在上述任一实施例中,优选地,如图19至图27所示,安装凸台3924的侧壁面从安装凸台3924远离存料座392的底壁的一端至安装凸台3924靠近存料座392的底壁的一端向外倾斜设置;和/或容纳槽3926的形状与工作螺杆24伸入至容纳槽3926内的一端的形状相适配。
在该些实施例中,安装凸台3924的外侧壁从存料腔3922的开口至存料腔3922的底壁向外倾斜设置,这样在将食材切削和/或挤压后,食材便能够顺着安装凸台3924的外侧壁向下流动,因而使得食材还能够在重力的作用下向下加速运动,因而使得食材能够更顺畅地通过进料孔3920实现进料。此外,该种设置也使得容纳槽3926与工作螺杆24的上端能够更好地配合,同时也使得第三辅助进料装置39的结构更加合理。
在上述任一实施例中,优选地,如图19至图27所示,存料座392的底壁向存料腔3922内凹陷,以形成容纳槽3926和安装凸台3924。
在该些实施例中,在该些实施例中,可将存料座392的底壁向存料座392内凹陷,以在其内底壁面上形成安装凸台3924,以及在外底壁面上形成容纳槽3926,该种结构能够快速简单地在存料座392的底壁上加工出安装凸台3924和容纳槽3926,因而即能够降低加工难度,又能够降低加工成本。
在上述任一实施例中,优选地,第三拨料件394包括:固定座3942,位于安装凸台3924上,并安装至第三传动轴396;拨料结构3944,拨料结构3944的一端与固定座3942连接,拨料结构3944的另一端向存料腔3922的底壁延伸;其中,拨料结构3944为拨料片、拨料杆或拨料棒。
在该些实施例中,第三拨料件394包括底座和拨料结构3944,其中,底座用于与第三传动轴396连接,并实现拨料结构3944的安装,而拨料结构3944具体用于切削和/或挤压食材以及拨动食材。而在存料腔3922内设置有安装凸台3924时,可将第三拨料件394安装在安装凸台3924的顶部,这样便能够将第三拨料件394的一端安装的较高,同时可将第三拨料件394的另一端向存料腔3922的底部下垂,这样第三拨料件394便能够对存料腔3922内不同高度的食材均进行切削和/或挤压等处理,从而能够提高食材的处理效果,以提高出汁率。反之,若存料腔3922的底壁没有设置安装凸台3924,则第三拨料件394只能够安装在存料腔3922的底壁上,这样第三拨料件394能够对食材进行处理的高度会受到拨料结构3944的高度的限制,从而在拨料结构3944设置的较矮时,便会降低其对食材的处理效果,但若将整个拨料结构3944设置的较高,为了确保拨料结构3944的强度,也只 能同时将固定座3942设置的较高,这样会导致第三拨料件394的结构比较复杂,且也降低第三传动轴396与其之间的连接强度。
其中,拨料结构3944即可成片状,也可呈棒状或杆状,具体地,拨料结构3944的形状可根据实际情况进行选择。
在上述任一实施例中,优选地,如图19至图27所示,第三传动轴396上设置有至少一个第二驱动凸起3964,第二驱动凸起3964能够与工作螺杆24配合,以在工作螺杆24的驱动下转动。
在该些实施例中,可在第三传动轴396的下端面上设置一个或多个第二驱动凸起3964,从而可通过第二驱动凸起3964与工作螺杆24的上端的侧部配合,以实现第三传动轴396与工作螺杆24之间的驱动连接,当然,第三传动轴396也可通过其它结构实现其与工作螺杆24之间的驱动连接。
在上述任一实施例中,优选地,第三拨料件394与第三传动轴396为分体式结构,或第三拨料件394与第三传动轴396为一体式结构。
在该些实施例中,第三拨料件394与第三传动轴396即可为分体式结构,比如为两个零件,这样便于单独对第三拨料件394与第三传动轴396中的每一个零件进行单独维修和更换。当然,在其它实施例中,第三拨料件394与第三传动轴396也可为一体式结构,这样即能够提高第三拨料件394与第三传动轴396的连接强度,以使第三拨料件394与第三传动轴396不易损坏,又能够实现第三拨料件394与第三传动轴396之间的无缝连接,从而能够防止在第三拨料件394与第三传动轴396之间形成缝隙,进而便于清洗。
在上述任一实施例中,优选地,第三传动轴396上设置有第二定位凹槽3962和第二定位凸起246中的一个,工作螺杆24上设置有第二定位凹槽3962和第二定位凸起246中的另一个,第二定位凸起246能够***到第二定位凹槽3962内,以对工作螺杆24进行定位;其中,第二定位凹槽3962内设置有第三耐磨件398。
在该些实施例中,可在工作螺杆24的上端面上设置一个第二定位凸起246或第二定位凹槽3962,而在第三传动轴396的下端上对应设置一第二定位凸起246或第二定位凹槽3962,这样便能够通过第二定位凸起246与 第二定位凸起246与定位轴的配合实现对工作螺杆24的定位,进而可提高工作螺杆24安装后的稳定性,减少工作螺杆24的晃动。而通过在第二定位凹槽3962内设置第三耐磨件398,能够减少第二定位凸起246与第二定位凹槽3962之间的磨损。
在上述任一实施例中,优选地,第三辅助进料装置39能够拆卸地安装在进料筒32内,或第三辅助进料装置39位于进料筒32内,且第三辅助进料装置39的存料座392与进料筒32的侧壁为一体式结构,或进料筒32的内侧壁上设置第三卡扣228,存料座392的外侧壁上设置有第四卡扣3928,存料座392能够通过第三卡扣228和第四卡扣3928的配合卡扣安装在进料筒32内;和/或存料腔3922的侧壁从存料腔3922的开口至存料腔3922的底部向存料腔3922内倾斜设置。
在该些实施例中,优选将第三辅助进料装置39安装在进料筒32内、工作螺杆24的上方,这样便能够通过进料筒32实现第三辅助进料装置39的安装,同时,将其安装在进料筒32内,还能够利用进料筒32来防止第三辅助进料装置39内的食材飞溅出来,因而可防止食材的浪费。此外,第三辅助进料装置39的存料座392与进料筒32即可设置成一体式结构,也可将第三辅助进料装置39的存料座392能够拆卸地安装在进料筒32内。而在进料筒32和杯体22合成一个大杯时,优选将第三辅助进料装置39能够拆卸地安装在进料筒32内。
进一步,优选地,可在存料座392的外侧壁上设置第四卡扣3928,并在进料筒32的内侧壁上设置第三卡扣228,从而可通过第三卡扣228与第四卡扣3928的配合,将第三辅助进料装置39卡扣安装在进料筒32内。该种设置使得第三辅助进料装置39能够随意地从进料筒32内拆卸下来,从而即便于第三辅助进料装置39的清洗,又便于第三辅助进料装置39的维修。
在上述任一实施例中,优选地,如图27至图30所示,食物处理杯2还包括:滤网29,设置在杯体22与工作螺杆24之间;其中,进料筒32的内侧壁上对应滤网29靠近进料筒32的一端设置有定位阶梯面328,定位阶梯面328用于与滤网29配合,以对滤网29进行定位。
在该些实施例中,在食物处理机为单杯体22和单工作螺杆24的食物处理机时,可在杯体22与工作螺杆24之间设置一个滤网29,以便能够利用滤网29在食材被粉碎后,实现食材的汁渣分离。此外,可在进料筒32的内侧壁上对应滤网29的上端面设置一个定位阶梯面328,以便能够利用定位阶梯面328来压住滤网29,以实现对滤网29的轴向定位安装,这样便能够提高滤网29的安装可靠性。
在上述任一实施例中,优选地,如图1、图2、图31、图33、图37和图38所示,食物处理机还包括:泄压孔62,设置在杯体22、进料组件3和接渣装置4中的任意一个或多个上,能够与密封腔导通;泄压塞64,能够安装在泄压孔62处,以打开或密封泄压孔62。
在该些实施例中,可在杯体22、进料组件3和接渣装置4中的任意一个或多个上设置与密封腔导通的泄压孔62,并通过泄压塞64来实现泄压孔62的打开或密封。该种设置,在产品启动之前可关闭泄压塞64,以密封泄压孔62,这样便能够使杯体22内、进料组件3和接渣装置4内完全密封,从而便能够通过抽气组件5实行抽真空,进而即可大致在真空或接近真空的状态下实现对食材的处理,因而即可防止食材氧化。而在食材处理结束后,可通过泄压塞64打开泄压孔62,以使产品内部与外界导通,进而能够逐渐将杯体22、进料组件3和接渣装置4内的负压卸载掉,这样便能够简单快速地实现泄压。当然,在其它实施例中,也可通过其它方式进行泄压,比如通过抽气组件5向内输送空气,以实现泄压。
在上述任一实施例中,优选地,如图32所示,抽气组件5包括:抽气泵52;抽气通道54,抽气通道54的一端与抽气泵52连接,抽气通道54的另一端与密封腔连通。
在该些实施例中,可利用一个抽气泵52来实现空气的抽出,而抽气通道54用于实现气体的排出。
在上述任一实施例中,优选地,如图32所示,抽气组件5还包括:排气通道56,与抽气泵52的出口连接,用于排气;降噪装置58,设置在排气通道56上。
在该些实施例中,可通过设置一个排气通道56来进行排气,其中,排 气通道56优选为一排气管。而降噪装置58能够降低抽气组件5的噪音,提高用户体验。
在上述任一实施例中,优选地,如图32所示,抽气泵52设置在底座组件1、杯体22和进料组件3中的任意一个上,或抽气泵52相对底座组件1、杯体22和进料组件3独立设置。
在该些实施例中,抽气泵52可设置在任意位置,具体地,比如底座组件1上、杯体22上或进料组件3上,当然,抽气泵52也可相对底座组件1、杯体22和进料组件3独立设置,即抽气泵52也可外设于底座组件1、杯体22和进料组件3。
在上述任一实施例中,优选地,抽气通道54为抽气管。
在该些实施例中,抽气通道54优选为抽气管,当然,抽气通道54也可为设置在食物处理机的壳体上的其它通道结构。
在上述任一实施例中,优选地,如图32所示,抽气泵52为电动泵或手动泵或脚踏泵。
在该些实施例中,抽气泵52优选为电动泵,这样可同电力驱动抽气泵52进行抽气,从而不需要手动抽气,当然,抽气泵52也可为手动泵或脚踏泵。
在上述任一实施例中,优选地,抽气泵52为真空泵。
在该些实施例中,抽气泵52优选为真空泵,因为真空泵比较常见,因而易于采购,此外真空泵抽真空的能力较强,因而能够将食物处理机的内部的大量空气抽出,以确保在处理食材时,杯体22内的真空效果。
在上述任一实施例中,优选地,如图30所示,杯体22上设置有第一出渣口222,接渣装置4密封连接至第一出渣口222时,接渣装置4包括:接渣杯42,能够拆卸地密封安装在第一出渣口222处,接渣杯42的侧壁上设置有进渣口422,进渣口422与第一出渣口222相互导通;接渣盖44,密封盖装在接渣杯42的开口端上;第二密封件,设置在接渣盖44与接渣杯42的连接处,用于使接渣盖44与接渣杯42密封连接;其中,接渣杯42和杯体22中的一个上设置有安装柱226,接渣杯42和杯体22中的另一个上设置有安装套424,接渣杯42通过安装柱226与安装套424的配合能 够拆卸地密封安装在第一出渣口222处。
在该些实施例中,在杯体22上设置有第一出渣口222,接渣装置4密封连接至第一出渣口222,即接渣装置4安装在杯体22外时,可优选将接渣装置4设置成包括接渣杯42和接渣盖44的结构,这样即可通过接渣杯42进行接渣处理,并通过接渣盖44实现接渣杯42的打开和密闭。而接渣杯42与杯体22能够拆卸地连接,便于将接渣杯42从杯体22上拆卸下来,进行倒渣或清洗等处理。同时,可在接渣杯42和杯体22中的一个上设置安装套424,并在另一上设置安装柱226,这样便可通过安装套424与安装柱226的套设安装,实现接渣杯42和杯体22之间的可拆卸安装。同时,可在安装套424与安装柱226之间设置第二密封件,以使安装套424与安装柱226能够密封连接。
当然,接渣装置4也还可以是其它类型的结构,比如接渣袋、或者是其它腔体结构。
在上述任一实施例中,优选地,食物处理机还包括:出渣压力调节组件,设置在第一出渣口222处,用于调节第一出渣口222处的出渣压力。
在该些实施例中,可在第一出渣口222处设置一个出渣压力调节组件,从而可通过出渣压力调节组件来调节第一出渣口222处的出渣压力,以便能够合理控制出渣压力,从而使得食物渣在被排出前能够被进一步挤压,以使汁渣分离的更加彻底。其中,具体地,出渣压力调节组件即可只有一个档位压力,即出渣压力为固定值,在产品组装好后,用户不可更改出渣压力。当然,出渣压力调节组件也可具有多个档位压力,即出渣压力包括多个档位值,在实际过程中,用户可通过操作出渣压力调节组件,来使产品具有多个出渣压力,从而在处理不同的食材时,可根据食材的种类、用户的需要随意调节出渣压力,从而一方面能够更好地满足用户的多种需求,另一方面能够根据食材的种类合理调节出渣压力,从而即可防止某些较软的食材,比如葡萄,被挤压的过碎,而导致营养流失、口感不好等情况的发生,又可防止某些粗纤维食材,比如甘蔗、生姜、胡萝卜等食材挤压不充分,而导致出汁率低的情况发生,进而即可确保食材的营养和口感,又可提高产品的出汁率。其中,优选地,可通过一阻尼硅胶来调节出渣压力。 而出渣压力调节组件的具体结构可为目前现有的原汁机、榨汁机等上的用于调节出渣压力的结构。
在上述任一实施例中,优选地,进料组件3的一端能够拆卸地卡扣安装在杯体22的开口端内。
在该些实施例中,可在进料组件3,比如进料筒32的下端上设置第一卡扣320,而在杯体22的上端的内侧壁上设置能够与第一卡扣320配合的第二卡扣220,从而能够通过第一卡扣320与第二卡扣220的卡扣配合将进料组件3的一端密封地安装在杯体22的开口端内。
在上述任一实施例中,优选地,杯体22包括粉碎杯和挤压杯,进料组件3密封盖装在粉碎杯的杯口端上,粉碎杯的另一端上设置有连通口,挤压杯与粉碎杯通过连通口连通;工作螺杆24包括安装在粉碎杯内的粉碎螺杆和安装在挤压杯内的挤压螺杆;其中,杯体22上设置有第一出渣口222,接渣装置4密封连接至第一出渣口222时,第一出渣口222设置在挤压杯上,接渣装置4与挤压杯通过第一出渣口222连通;其中,底座组件1上设置有第一驱动轴和第二驱动轴,第一驱动轴与粉碎螺杆驱动连接,用于驱动粉碎螺杆粉碎食材,第二驱动轴与挤压螺杆驱动连接,用于驱动挤压螺杆挤压食材以使食材汁渣分离。
在该些实施例中,食材进入到粉碎杯内后,粉碎螺杆在第一驱动轴的驱动下与粉碎杯的侧壁配合以将食物粉碎,粉碎后的食材在粉碎螺杆的作用下进入到挤压杯内,而挤压螺杆在第二驱动轴的驱动下挤压食材,以使食材的汁渣分离。该实施例将食材的粉碎过程和挤汁排渣过程分开进行,而在粉碎过程中,由于不需要挤汁排渣,因此,粉碎杯内不用设置滤网29以及旋转刷等部件,从而使得粉碎杯内的食材能够在粉碎杯与粉碎螺杆的共同作用下被粉碎,同时在挤汁排渣过程中可将挤压螺杆大致水平设置,即可将挤汁排渣***设置成卧式,从而可非常便于将食物的汁渣分离,该种设置一方面能够确保食物处理机的出汁率,另一方面能够避免使用滤网29、旋转刷等零部件,从而使得食物处理机的结构简单且易于安装,同时由于取消了滤网29,因而能够降低用户的清洗难度,进而能够提升用户体验。
在上述任一实施例中,优选地,挤压杯的轴线与粉碎杯的轴线之间呈大于等于75°小于等于180°的夹角,或挤压杯的轴线与粉碎杯的轴线之间呈大于等于90°小于等于135°的夹角。
在该实施例中,挤压杯和粉碎杯之间可设置一夹角,只要食材能够从挤压杯进入到粉碎杯内即可,其中,优选地,挤压杯的轴线与粉碎杯的轴线之间呈大于等于75°小于等于180°的夹角,即挤压杯水平或倾斜向下设置,从而食材进入到挤压杯内或在挤压杯内向第一出渣口222流动时至少不用克服食材的重力,进而使得食材的流动更加顺畅,其中,更进一步地,挤压杯的轴线与粉碎杯的轴线之间呈大于90°小于等于135°的夹角,该种设置食材除了靠挤压螺杆的挤压力流出之外,还能够依靠食材的重力流出,因而一方面能够加快食材的流动速率,以提高出汁速度,另一方面还能够对食材进行充分挤压,以提高出汁率,同时,该种设置将立式机和卧式机相结合,因而能够使得产品既具有立式机粉碎效果好的优点,又具有卧式机挤压充分的优点,进而即能够使食材被充分粉碎,又能够被充分挤压,进而能够提高出汁率。
其中,进一步,优选地,挤压杯的轴线与粉碎杯的轴线之间呈90°的夹角。
其中,优选地,挤压螺杆的轴线与粉碎螺杆的轴线之间呈大于等于75°小于等于180°的夹角,或挤压螺杆的轴线与粉碎螺杆的轴线之间呈大于等于90°小于等于135°的夹角。该种设置能够使挤压杯水平或倾斜向下设置,从而食材进入到挤压杯内或在挤压杯内向第一出渣口222流动时至少不用克服食材的重力,进而使得食材的流动更加顺畅。
其中,进一步,优选地,挤压螺杆的轴线与粉碎螺杆的轴线之间呈90°的夹角。
其中,优选地,如图32所示,底座组件1还包括底座18、壳体组件16,壳体组件16安装在底座18上。
在上述任一实施例中,优选地,如图33和图34所示,杯体22上设置有第一出渣口222,接渣装置4密封连接至第一出渣口222时,食物处理机还包括:第一泄压通道,第一泄压通道的一端与杯体22连通,第一泄压 通道的另一端与外界连通;第二泄压通道,第二泄压通道的一端与接渣装置4连通,第二泄压通道的另一端与外界连通;第五密封件84,安装在第一泄压通道与外界连通的一端上和第二泄压通道与外界连通的一端上,用于打开或关闭第一泄压通道和第二泄压通道。
在该些实施例中,在接渣装置设置在杯体22外时,设置与杯体22连通的第一泄压通道,能够通过第一泄压通道在真空榨汁结束后对杯体22进行泄压,而设置与接渣装置4连通的第二泄压通道,能够通过第二泄压通道在真空榨汁结束后对接渣装置4进行泄压,而第五密封件84密封连接在第一泄压通道和第二泄压通道与外界连通的一端,这样可以通过第五密封件84的开启或关闭,控制第一泄压通道和第二泄压通道是否连通外部,从而能够在真空榨汁时,使第一泄压通道和第二泄压通道关闭,以确保杯体22能够密封,而在榨汁结束后,可打开第五密封件84使第一泄压通道和第二泄压通道打开,这样便能够对杯体22和接渣装置4进行同时泄压。该种设置,由于针对杯体22和接渣装置4均设置了对应的泄压通道,因此,可在泄压时,分别对杯体22和接渣装置4进行泄压,这样不管杯体22的第一出渣口222是否被食物渣堵塞,接渣装置4均能够及时地泄压,从而能够在榨汁结束后轻松便利地拆卸掉接渣装置4以进行倒渣或清洗等处理,进而可解决接渣装置4因食物渣的堵塞而无法及时泄压而导致的一系列问题,进而可提高产品的整体性能,以提高用户体验。
在上述任一实施例中,优选地,如图33和图34所示,第一泄压通道与外界连通的一端与第二泄压通道与外界连通的一端合并成同一通道;杯体22的侧壁内设置有一连接通道82,连接通道82的一端延伸至第一出渣口222,与第一出渣口222连通,连接通道82的内侧壁上设置有与杯体22连通的第二通孔822,连接通道82的外侧壁上设置有第三通孔824,第五密封件84能够打开或密封地安装在第三通孔824处。
在该些实施例中,可优选将第一泄压通道和第二泄压通道与外界连通的一端,也即进气端合并成一个通道,这样只需要设置一个第五密封件84即可同时实现第一泄压通道和第二泄压通道的同时打开或同时关闭,从而在封闭杯体22和接渣装置4而进行真空榨汁时,只需要将第五密封件84 安装到位即可,而在泄压时,也只需要打开一个第五密封件84,从而可简化用户在榨汁和泄压时操作,降低用户使用产品时的工作量,以提高用户体验。
同时,可优选在杯体22的侧壁内设置一个连接通道82,以使第一泄压通道与外界连通的一端和第二泄压通道与外界连通的一端能够合并成同一通道。具体地而连接通道82一端与第一出渣口222连通,使得连接通道82能够与接渣装置4能够连通,在连接通道82的侧壁上设置第二通孔822,使得连接通道82能够与杯体22连通,这样便可将连接通道82作为第一泄压通道和第二泄压通道共用的通道,以使杯体22和接渣装置4能够通过该连接通道82进行同时封闭和泄压。而连接通道82的外侧壁上的第三通孔824为连接通道82与外接导通的进气口,这样通过第三通孔824的打开和封闭,便可使杯体22和接渣装置4同时密封或同时泄压。
当然,也可通过其它结构来实现将第一泄压通道与外界连通的一端与第二泄压通道与外界连通的一端合并成同一通道的目的,比如可在杯体22的侧壁内预埋一个包括一个入口和两个出口的分流管,这样便可通过该分流管同时实现杯体22和接渣装置4的泄压。
在上述任一实施例中,优选地,如图33至图36所示,第五密封件84为一密封塞,食物处理机还包括:阀杆86,阀杆86的一端***安装在第三通孔824内,并能够沿第三通孔824的轴线移动,阀杆86的另一端位于杯体22外,密封塞套设在阀杆86位于杯体22外的一端上,并能够在阀杆86的作用下密封安装在第三通孔824处或打开第三通孔824;复位弹簧88,设置在杯体22内或连接通道82内,与阀杆86连接,用于在阀杆86移动后使阀杆86复位。
在该些实施例中,可将第五密封件84设置成一密封塞,比如橡胶塞和硅胶塞,这样便可通过一密封塞实现第三通孔824的打开和封闭,从而能够实现整个泄压通道的打开和关闭。而阀杆86用于实现密封塞的安装,以及实现密封塞沿第三通孔824的轴向上的带动,这样便可通过阀杆86的移动实现密封塞的打开和封闭。而复位弹簧88用于在泄压完成后使阀杆86复位,从而使得阀杆86和密封塞能够在泄压后自动复位到初始位置,以实 现对第三通孔824的密封,这种设置在泄压后,阀杆86能够自动复位,因而不需要用户专门去封闭第三通孔824,从而可简化用户的工作量,同时也能够防止用户在下次榨汁时忘记使阀杆86复位而导致产品无法密封,因而无法进行真空榨汁的情况发生。
在上述任一实施例中,优选地,如图33至图36所示,阀杆86***第三通孔824内的一端***第二通孔822并伸入到杯体22内,第二通孔822的内侧壁上设置有内螺纹,阀杆86与第二通孔822配合的侧壁上设置有外螺纹,阀杆86通过外螺纹和内螺纹的配合安装在第二通孔822内。
在该些实施例中,可优选在第二通孔822设置内螺纹,而在阀杆86与第二通孔822配合的侧壁上对应设置外螺纹,这样阀杆86便可通过螺纹连接的方式安装在杯体22上,进而便可通过旋转的方式实现阀杆86的旋入与旋出,进而便可实现阀杆86沿第三通孔824的轴向的来回移动,并以此实现密封塞对第三通孔824的打开和封闭。该种结构,通过螺纹连接的方式可简单方便地将阀杆86安装在杯体22上,从而能够简单方便地以此实现密封塞对第三通孔824的打开和封闭操作,因而能够使产品的整体结构较为简单。
在上述任一实施例中,优选地,如图33至图36所示,阀杆86***第三通孔824内的一端***第二通孔822并伸入到杯体22内,阀杆86伸入到杯体22内的一端的端部上设置有第二安装槽,连接通道82的内侧壁上还设置有第四通孔826,复位弹簧88为扭簧,扭簧套设安装在阀杆86伸入到杯体22内的一端上,扭簧的第一扭簧臂安装在第二安装槽内,扭簧的第二扭簧臂***安装在第四通孔826内,并能够沿第四通孔826的轴向方向滑动。
在该些实施例中,可将阀杆86伸入第三通孔824,并继续穿过第一通孔3622进入杯体22内,而复位弹簧88优选为扭簧,这样在阀杆86转动后,扭簧便可使阀杆86自动复位。而扭簧套设在阀杆86伸入杯体22内的那一端上,这样便可将扭簧安装在杯体22内,这样能够更方便地实现扭簧的安装。而阀杆86的端部上设置有第二安装槽,从而可通过该第二安装槽与第一扭簧臂的配合实现对扭簧的固定,从而可防止扭簧随阀杆86一起转 动,而第四通孔826用于固定和引导第二扭簧臂,从而使得阀杆86在转动时,扭簧能够正常发生扭转变形,从而能够聚集相应的弹性势能,这样在松开阀杆86后,阀杆86能够在弹性势能的作用下回归初始位置。
在上述任一实施例中,优选地,如图33至图36所示,阀杆86位于杯体22外的一端上设置有压板,压板能够将密封塞压紧安装在第三通孔824处,压板上设置有操作手柄。
在该些实施例中,通过在阀杆86的末端设置压板,可通过压板将密封塞压紧在第三通孔824处,以使密封塞能够对第三通孔824进行可靠密封。而在压板上设置操作手柄,使用时可以直接通过操作手柄实现阀杆86的旋转,从而能够方便用户的操作。
在上述任一实施例中,优选地,食物处理机为原汁机或榨汁机,当然,食物处理机也还可以是除原汁机和榨汁机之外的其它结构,比如果汁机,破壁机等。
在本说明书的描述中,术语“连接”、“安装”、“固定”等均应做广义理解,例如,“连接”可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是直接相连,也可以通过中间媒介间接相连。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本发明中的具体含义。
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或实例。而且,描述的具体特征、结构、材料或特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
以上仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (39)

  1. 一种食物处理机,其特征在于,包括:
    底座组件;
    食物处理杯,能够安装在所述底座组件上,包括杯体和转动地安装在所述杯体内的工作螺杆,所述杯体能够用于收纳食物汁,其中,所述杯体上设置有第一出渣口或所述杯体内设置有第二出渣口;
    进料组件,密封安装在所述杯体的杯口端上;
    接渣装置,密封连接至所述第一出渣口,用于收集食物渣,或所述接渣装置位于所述杯体内,与所述第二出渣口连接,用于收集食物渣;
    所述杯体、所述进料组件和所述接渣装置之间形成一相互导通的密封腔;
    抽气组件,能够与所述密封腔连通,用于将所述密封腔内的空气抽出。
  2. 根据权利要求1所述的食物处理机,其特征在于,所述底座组件包括:
    驱动装置,与所述工作螺杆连接,用于驱动所述工作螺杆转动;
    控制装置,与所述驱动装置和所述抽气组件连接,用于控制所述抽气组件抽气或控制所述驱动装置的工作,和/或用于控制所述抽气组件抽气,并在所述抽气组件抽完气后,控制所述驱动装置开始工作。
  3. 根据权利要求1所述的食物处理机,其特征在于,
    所述杯体上设置有出汁口,所述出汁口处密封盖装有一出汁盖,所述出汁盖用于打开或封闭所述出汁口;
    其中,所述出汁口和所述出汁盖之间还设置有第一密封件,所述第一密封件用于使所述出汁盖与出汁口密封连接。
  4. 根据权利要求1所述的食物处理机,其特征在于,所述进料组件包括:
    进料筒,所述进料筒的一端密封安装至所述杯体的杯口端;
    进料盖,密封盖装在所述进料筒的另一端上,用于打开或封闭所述进料筒;
    辅助进料装置,能够安装在所述进料筒内,用于辅助进料。
  5. 根据权利要求4所述的食物处理机,其特征在于,还包括:
    罩体,罩设安装在所述进料筒外,所述罩体的一端开口一端封闭,所述罩体开口的一端安装在所述杯体上;
    第四密封件,设置在所述罩体与所述杯体的连接处,并使所述罩体与所述杯体的连接处为密封连接;
    所述杯体的外侧壁上设置有支撑结构,所述罩体开口的一端密封安装在所述支撑结构上。
  6. 根据权利要求5所述的食物处理机,其特征在于,
    所述罩体的顶壁与所述进料筒远离所述杯体的一端的端面之间设置有间隙;和/或
    所述罩体的侧壁与所述进料筒的侧壁之间设置有间隙。
  7. 根据权利要求5所述的食物处理机,其特征在于,
    所述罩体的顶壁呈弧形;和/或
    所述罩体的顶壁的外表面的边缘上设置有倒圆角;和/或
    所述罩体的侧壁包括两两相对设置的并沿所述罩体的周向方向均匀分布的4个第二弧形面,且所述4个第二弧形面相互间隔设置,相邻两个所述第二弧形面通过第三弧形面连接。
  8. 根据权利要求5所述的食物处理机,其特征在于,
    所述罩体的顶壁呈平面,所述罩体的侧壁包括多个沿所述罩体的周向方向间隔设置的第二平面,其中,相邻两个所述第二平面之间通过第四弧形面连接,且所述第四弧形面为以所述罩体的顶壁的中心为圆心的圆弧面。
  9. 根据权利要求4所述的食物处理机,其特征在于,
    所述辅助进料装置与所述工作螺杆驱动连接,能够在所述工作螺杆的作用下转动。
  10. 根据权利要求9所述的食物处理机,其特征在于,
    所述进料筒内设置有安装板和进料口,所述安装板安装至所述进料筒的内侧壁,所述安装板上设置有第一安装孔,所述辅助进料装置的一端位于所述安装板远离所述杯体的一方,所述工作螺杆位于所述安装板靠近所 述杯体的一方,所述辅助进料装置的另一端***到所述第一安装孔内,与所述工作螺杆驱动连接;
    其中,所述进料口设置在所述安装板上或所述进料口由所述安装板与所述进料筒的侧壁围成。
  11. 根据权利要求10所述的食物处理机,其特征在于,所述辅助进料装置包括第一辅助进料装置,所述第一辅助进料装置包括:
    第一拨料件,能够转动地安装在所述安装板远离所述杯体的一方;
    第一传动轴,所述第一传动轴的一端与所述工作螺杆驱动连接,所述第一传动轴的另一端***并穿过所述第一安装孔与所述第一拨料件驱动连接;
    所述第一拨料件上设置有第一通孔,所述第一传动轴远离所述工作螺杆的一端依次***并穿过所述第一安装孔、所述第一通孔,所述第一辅助进料装置还包括:
    封盖,安装在所述第一传动轴伸出所述第一通孔的一端上。
  12. 根据权利要求11所述的食物处理机,其特征在于,
    所述第一传动轴上设置有至少一个驱动凸起,所述驱动凸起能够与所述工作螺杆配合,以在所述工作螺杆的驱动下转动;和/或
    所述第一拨料件与所述第一传动轴为分体式结构,或所述第一拨料件与所述第一传动轴为一体式结构;和/或
    所述第一拨料件对称地安装在所述第一传动轴上;和/或
    所述进料口由所述安装板与所述进料筒的侧壁围成,所述进料口的数量为两个,两个所述进料口和所述安装板均关于所述进料筒的轴线对称。
  13. 根据权利要求11所述的食物处理机,其特征在于,
    所述第一传动轴上设置有第一定位凹槽和第一定位凸起中的一个,所述工作螺杆上设置有第一定位凹槽和第一定位凸起中的另一个,所述第一定位凸起能够***到所述第一定位凹槽内,以对所述工作螺杆进行定位;
    其中,所述第一定位凹槽内设置有第一耐磨件。
  14. 根据权利要求11所述的食物处理机,其特征在于,
    所述安装板靠近所述杯体的一面上设置有两端开口的空心柱,所述空 心柱与所述进料口导通;
    所述工作螺杆的一端从所述进料筒的底部伸入到所述空心柱内,并能够与所述空心柱的侧壁配合,以粉碎食材;
    其中,所述空心柱远离所述安装板的一端与所述进料筒的侧壁连接,或所述空心柱远离所述安装板的一端悬空。
  15. 根据权利要求10所述的食物处理机,其特征在于,
    所述安装板能够拆卸地安装至所述进料筒的内侧壁,或所述安装板与所述进料筒的内侧壁为一体式结构。
  16. 根据权利要求4所述的食物处理机,其特征在于,
    所述进料筒能够拆卸地密封安装至所述杯体的杯口端,或所述进料筒与所述杯体为一体式结构。
  17. 根据权利要求4所述的食物处理机,其特征在于,所述工作螺杆上设置有第一传动结构,所述辅助进料装置包括第二辅助进料装置,所述第二辅助进料装置包括:
    存料台,安装在所述进料筒内,所述存料台上设置有进料通道;
    第二拨料件,能够转动地安装在所述进料筒内,位于所述存料台远离所述工作螺杆的一侧,所述第二拨料件上设置有第二传动结构,所述第二传动结构能够与所述第一传动结构配合,使所述工作螺杆与所述第二拨料件驱动连接。
  18. 根据权利要求17所述的食物处理机,其特征在于,
    所述杯体与所述进料筒为一体式结构,或所述杯体与所述进料筒为分体式结构;
    所述杯体与所述进料筒为一体式结构时,所述存料台能够拆卸地安装在所述进料筒内;
    所述杯体与所述进料筒为分体式结构时,所述存料台能够拆卸地安装在所述进料筒内,或所述存料台与所述进料筒为一体式结构。
  19. 根据权利要求17所述的食物处理机,其特征在于,
    所述存料台上设置有第二安装孔,所述第一传动结构为传动孔和第二传动轴中的一个,所述第二传动结构为所述传动孔和所述第二传动轴中的 另一个,所述第二传动轴能够通过所述第二安装孔***到所述传动孔内,使所述工作螺杆与所述第二拨料件驱动连接。
  20. 根据权利要求19所述的食物处理机,其特征在于,
    所述存料台靠近所述工作螺杆的一面上、所述第二安装孔的周围设置有一圈第一安装槽,所述食物处理机还包括:
    第二耐磨件,安装在所述第一安装槽内,套设在所述第二传动轴上,位于所述工作螺杆与所述存料台相接触的面之间。
  21. 根据权利要求4所述的食物处理机,其特征在于,所述辅助进料装置包括第三辅助进料装置,所述第三辅助进料装置包括:
    存料座,安装在所述进料筒内,位于所述工作螺杆远离所述杯体的底部的一方,所述存料座内设置有存料腔,所述存料腔远离所述工作螺杆的一端开口,所述存料座上设置有至少一个进料孔,所述进料孔与所述存料腔和所述杯体导通;
    第三拨料件,所述第三拨料件能够转动地安装在所述存料腔内,所述第三拨料件能够转动的角度大于等于30°;
    其中,所述存料座用于存放食材,所述第三拨料件用于切削和/或挤压所述存料腔内的食材,以及用于将所述存料腔内存放的食材推送到所述进料孔内。
  22. 根据权利要求21所述的食物处理机,其特征在于,所述存料座上还设置有第三安装孔,所述第三辅助进料装置还包括:
    第三传动轴,所述第三传动轴的一端位于所述存料腔内,与所述第三拨料件驱动连接,所述第三传动轴的另一端从所述第三安装孔内伸出,并与所述工作螺杆驱动连接。
  23. 根据权利要求22所述的食物处理机,其特征在于,
    所述存料座的外底壁上设置有容纳槽,所述工作螺杆的一端能够伸入到所述容纳槽内,所述存料座的内底壁上设置有安装凸台,所述第三安装孔贯穿所述安装凸台以及所述容纳槽,所述第三传动轴的一端位于所述容纳槽内,用于与所述工作螺杆驱动连接,所述第三传动轴的另一端通过所述第三安装孔伸入到所述存料腔内,并与所述第三拨料件驱动连接。
  24. 根据权利要求23所述的食物处理机,其特征在于,
    所述进料孔从所述安装凸台远离所述存料腔的一端的端面的边缘延伸至所述存料座的底部;和/或
    所述安装凸台的侧壁面从所述安装凸台远离所述存料座的底壁的一端至所述安装凸台靠近所述存料座的底壁的一端向外倾斜设置;和/或
    所述容纳槽的形状与所述工作螺杆伸入至所述容纳槽内的一端的形状相适配;和/或
    所述存料座的底壁向所述存料腔内凹陷,以形成所述容纳槽和所述安装凸台。
  25. 根据权利要求23所述的食物处理机,其特征在于,所述第三拨料件包括:
    固定座,位于所述安装凸台上,并安装至所述第三传动轴;
    拨料结构,所述拨料结构的一端与所述固定座连接,所述拨料结构的另一端向所述存料腔的底壁延伸;
    其中,所述拨料结构为拨料片、拨料杆或拨料棒。
  26. 根据权利要求22所述的食物处理机,其特征在于,
    所述第三传动轴上设置有至少一个第二驱动凸起,所述第二驱动凸起能够与所述工作螺杆配合,以在所述工作螺杆的驱动下转动;和/或
    所述第三拨料件与所述第三传动轴为分体式结构,或所述第三拨料件与所述第三传动轴为一体式结构;和/或
    所述第三传动轴上设置有第二定位凹槽和第二定位凸起中的一个,所述工作螺杆上设置有第二定位凹槽和第二定位凸起中的另一个,所述第二定位凸起能够***到所述第二定位凹槽内,以对所述工作螺杆进行定位;
    其中,所述第二定位凹槽内设置有第三耐磨件。
  27. 根据权利要求21所述的食物处理机,其特征在于,
    所述第三辅助进料装置能够拆卸地安装在所述进料筒内,或所述第三辅助进料装置位于所述进料筒内,且所述第三辅助进料装置的存料座与所述进料筒的侧壁为一体式结构,或所述进料筒的内侧壁上设置第三卡扣,所述存料座的外侧壁上设置有第四卡扣,所述存料座能够通过所述第三卡 扣和所述第四卡扣的配合卡扣安装在所述进料筒内;和/或
    所述存料腔的侧壁从所述存料腔的开口至所述存料腔的底部向所述存料腔内倾斜设置。
  28. 根据权利要求4所述的食物处理机,其特征在于,所述食物处理杯还包括:
    滤网,设置在所述杯体与所述工作螺杆之间;
    其中,所述进料筒的内侧壁上对应所述滤网靠近所述进料筒的一端设置有定位阶梯面,所述定位阶梯面用于与所述滤网配合,以对所述滤网进行定位。
  29. 根据权利要求1至28中任一项所述的食物处理机,其特征在于,还包括:
    泄压孔,设置在所述杯体、所述进料组件和所述接渣装置中的任意一个或多个上,能够与所述密封腔导通;
    泄压塞,能够安装在所述泄压孔处,以打开或密封所述泄压孔。
  30. 根据权利要求1至28中任一项所述的食物处理机,其特征在于,所述抽气组件包括:
    抽气泵;
    抽气通道,所述抽气通道的一端与所述抽气泵连接,所述抽气通道的另一端与所述密封腔连通。
  31. 根据权利要求30所述的食物处理机,其特征在于,所述抽气组件还包括:
    排气通道,与所述抽气泵的出口连接,用于排气;
    降噪装置,设置在所述排气通道上。
  32. 根据权利要求30所述的食物处理机,其特征在于,
    所述抽气泵设置在所述底座组件、所述杯体和所述进料组件中的任意一个上,或所述抽气泵相对所述底座组件、所述杯体和所述进料组件独立设置;和/或
    所述抽气通道为抽气管;和/或
    所述抽气泵为电动泵或手动泵或脚踏泵;和/或
    所述抽气泵为真空泵。
  33. 根据权利要求1至28中任一项所述的食物处理机,其特征在于,所述杯体上设置有第一出渣口,所述接渣装置密封连接至所述第一出渣口时,所述接渣装置包括:
    接渣杯,能够拆卸地密封安装在所述第一出渣口处,所述接渣杯的侧壁上设置有进渣口,所述进渣口与所述第一出渣口相互导通;
    接渣盖,密封盖装在所述接渣杯的开口端上;
    第二密封件,设置在所述接渣盖与所述接渣杯的连接处,用于使所述接渣盖与所述接渣杯密封连接;
    其中,所述接渣杯和所述杯体中的一个上设置有安装柱,所述接渣杯和所述杯体中的另一个上设置有安装套,所述接渣杯通过所述安装柱与所述安装套的配合能够拆卸地密封安装在所述第一出渣口处。
  34. 根据权利要求1至28中任一项所述的食物处理机,其特征在于,还包括:
    出渣压力调节组件,设置在所述第一出渣口处,用于调节所述第一出渣口处的出渣压力。
  35. 根据权利要求1至28中任一项所述的食物处理机,其特征在于,
    所述杯体包括粉碎杯和挤压杯,所述进料组件密封盖装在所述粉碎杯的杯口端上,所述粉碎杯的另一端上设置有连通口,所述挤压杯与所述粉碎杯通过所述连通口连通;
    所述工作螺杆包括安装在所述粉碎杯内的粉碎螺杆和安装在所述挤压杯内的挤压螺杆;
    其中,所述杯体上设置有第一出渣口,所述接渣装置密封连接至所述第一出渣口时,所述第一出渣口设置在所述挤压杯上,所述接渣装置与所述挤压杯通过所述第一出渣口连通;
    所述底座组件上设置有第一驱动轴和第二驱动轴,所述第一驱动轴与所述粉碎螺杆驱动连接,用于驱动所述粉碎螺杆粉碎食材,所述第二驱动轴与所述挤压螺杆驱动连接,用于驱动所述挤压螺杆挤压食材以使食材汁渣分离。
  36. 根据权利要求1至28中任一项所述的食物处理机,其特征在于,所述杯体上设置有第一出渣口,所述接渣装置密封连接至所述第一出渣口时,所述食物处理机还包括:
    第一泄压通道,所述第一泄压通道的一端与所述杯体连通,所述第一泄压通道的另一端与外界连通;
    第二泄压通道,所述第二泄压通道的一端与所述接渣装置连通,所述第二泄压通道的另一端与外界连通;
    第五密封件,安装在所述第一泄压通道与外界连通的一端上和所述第二泄压通道与外界连通的一端上,用于打开或关闭所述第一泄压通道和所述第二泄压通道。
  37. 根据权利要求36所述的食物处理机,其特征在于,
    所述第一泄压通道与外界连通的一端与所述第二泄压通道与外界连通的一端合并成同一通道;
    所述杯体的侧壁内设置有一连接通道,所述连接通道的一端延伸至所述第一出渣口,与所述第一出渣口连通,所述连接通道的内侧壁上设置有与所述杯体连通的第二通孔,所述连接通道的外侧壁上设置有第三通孔,所述第五密封件能够打开或密封地安装在所述第三通孔处。
  38. 根据权利要求37所述的食物处理机,其特征在于,所述第五密封件为一密封塞,所述食物处理机还包括:
    阀杆,所述阀杆的一端***安装在所述第三通孔内,并能够沿所述第三通孔的轴线移动,所述阀杆的另一端位于所述杯体外,所述密封塞套设在所述阀杆位于所述杯体外的一端上,并能够在所述阀杆的作用下密封安装在所述第三通孔处或打开所述第三通孔;
    复位弹簧,设置在所述杯体内或所述连接通道内,与所述阀杆连接,用于在所述阀杆移动后使所述阀杆复位。
  39. 根据权利要求38所述的食物处理机,其特征在于,
    所述阀杆***所述第三通孔内的一端***所述第二通孔并伸入到所述杯体内,所述第二通孔的内侧壁上设置有内螺纹,所述阀杆与所述第二通孔配合的侧壁上设置有外螺纹,所述阀杆通过所述外螺纹和所述内螺纹的 配合安装在所述第二通孔内;和/或
    所述阀杆***所述第三通孔内的一端***所述第二通孔并伸入到所述杯体内,所述阀杆伸入到所述杯体内的一端的端部上设置有第二安装槽,所述连接通道的内侧壁上还设置有第四通孔,所述复位弹簧为扭簧,所述扭簧套设安装在所述阀杆伸入到所述杯体内的一端上,所述扭簧的第一扭簧臂安装在所述第二安装槽内,所述扭簧的第二扭簧臂***安装在所述第四通孔内,并能够沿所述第四通孔的轴向方向滑动;和/或
    所述阀杆位于所述杯体外的一端上设置有压板,所述压板能够将所述密封塞压紧安装在所述第三通孔处,所述压板上设置有操作手柄。
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113729460A (zh) * 2021-09-06 2021-12-03 张家港江苏科技大学产业技术研究院 一种具有加热功能的破碎助食装置
CN113876175A (zh) * 2020-07-01 2022-01-04 杭州九阳小家电有限公司 一种随行原汁机
CN114711647A (zh) * 2019-12-26 2022-07-08 九阳股份有限公司 一种食品加工机
CN114747957A (zh) * 2019-12-26 2022-07-15 九阳股份有限公司 一种食品加工机
US20220240708A1 (en) * 2019-10-22 2022-08-04 Hurom Co., Ltd. Juicer
CN115057212A (zh) * 2022-06-30 2022-09-16 成都市科农动物无害化处置有限公司 一种病死及病害动物无害化输送设备

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
USD958611S1 (en) * 2020-07-13 2022-07-26 Midea Group Co., Ltd. Electric fruit juice extractor
USD957207S1 (en) * 2020-07-13 2022-07-12 Midea Group Co., Ltd. Electric fruit juice extractor
CN114311802B (zh) * 2021-11-15 2023-11-21 青岛市市立医院 一种医用药液过滤设备
CN114797205B (zh) * 2022-04-20 2023-07-07 烟台东洁环保机械工程有限公司 一种可预除渣的污水处理设备及使用方法
CN114734218B (zh) * 2022-04-25 2023-01-17 安徽汇蔚新型环保包装材料有限公司 一种分子筛装配装置的量杯装置
KR20230002201U (ko) * 2022-05-11 2023-11-20 주식회사 휴롬 착즙기
WO2023219333A1 (ko) * 2022-05-12 2023-11-16 주식회사 휴롬 착즙기
CN115213402B (zh) * 2022-07-18 2023-08-11 北京赛亿科技有限公司 一种硬质合金粉末供料接口组件

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4428014A1 (de) * 1994-08-06 1996-02-08 Braun Ag Entsafter
CN102613873A (zh) * 2012-04-25 2012-08-01 王晓东 带抽气功能的榨汁机
CN103110333A (zh) * 2012-12-06 2013-05-22 孙立峰 真空榨汁机
CN203676816U (zh) * 2013-12-12 2014-07-02 中山市安品电器有限公司 一种原汁机
CN205234236U (zh) * 2015-12-07 2016-05-18 刘捷 榨汁机
CN206423954U (zh) * 2016-11-22 2017-08-22 广东美的生活电器制造有限公司 榨汁杯组件和原汁机

Family Cites Families (75)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS58500699A (ja) 1981-05-07 1983-05-06 ハント ア−サ− ジエイ 連続傾斜供給スクリユウを有するねじ形プレス
JPH0425054Y2 (zh) * 1985-04-26 1992-06-15
US5613430A (en) 1995-01-09 1997-03-25 Lee; Mun-Hyon Grinder-type juicer
KR100307281B1 (ko) 1999-04-17 2001-09-24 김종부 살균 전기 녹즙기
CN2868100Y (zh) 2005-12-20 2007-02-14 劳计元 果汁机
CN2904869Y (zh) 2006-03-14 2007-05-30 罗顺恒 一种榨汁机渣桶结构
CN201230809Y (zh) 2008-05-15 2009-05-06 谢宗钦 双轴式果菜机
CN201260596Y (zh) 2008-09-11 2009-06-24 林冠志 果汁机切刀结构
WO2010115306A1 (zh) 2009-04-09 2010-10-14 Peng Weijie 榨汁机
CN201530138U (zh) 2009-09-17 2010-07-21 九阳股份有限公司 榨汁机用粉碎装置及其榨汁机
US9066618B2 (en) 2011-03-07 2015-06-30 Tongyang Magic Inc. Apparatus for extracting juice
CN202312788U (zh) 2011-11-22 2012-07-11 江苏顺发电器有限公司 一种低噪音的榨汁机
CN103202654B (zh) * 2012-01-17 2015-07-15 唐锋机电科技(深圳)有限公司 一种榨汁机
CN202653867U (zh) 2012-02-22 2013-01-09 美的集团有限公司 一种榨汁机
CN102631153B (zh) 2012-03-28 2015-04-08 王晓东 带电动抽气泵的食品处理机及抽真空制取食料液的方法
KR101336733B1 (ko) 2012-04-19 2013-12-04 (주)모닉스동양 탈수겸용 믹서기
CN202537099U (zh) 2012-04-25 2012-11-21 王晓东 带抽气功能的榨汁机
CN202760966U (zh) 2012-08-22 2013-03-06 江门市贝尔斯顿电器有限公司 一种改进型榨汁机
KR20170016021A (ko) 2012-10-05 2017-02-10 데스고무 덴키 가부시키가이샤 조리기
CN103767046B (zh) 2012-10-19 2016-08-10 浙江养生堂实业发展有限公司 用于加工高花青素含量的果蔬的装置和方法
CN203074248U (zh) 2013-01-30 2013-07-24 宁波霈宸电器有限公司 挤压式慢速榨汁机
CN103976630B (zh) 2013-02-08 2016-11-02 陈建荣 渣汁分离装置
CN103976632A (zh) 2013-02-08 2014-08-13 郑文达 减缓果汁氧化的方法及其果汁机的抽气结构
KR101373608B1 (ko) * 2013-05-27 2014-03-12 김재원 찌꺼기 개폐기구가 구비된 주스기
CN104274057A (zh) 2013-07-09 2015-01-14 亚弘电科技股份有限公司 负压果菜汁机
CN103393339B (zh) 2013-08-17 2015-07-22 张若玮 旋转式榨汁机
CN203693241U (zh) 2013-12-17 2014-07-09 亚弘电科技股份有限公司 食物调理器压力调节结构
CN204015918U (zh) 2014-06-06 2014-12-17 九阳股份有限公司 一种螺杆挤压式榨汁机
CN204683294U (zh) 2014-06-16 2015-10-07 深圳市联创三金电器有限公司 定量投料的慢速榨汁***
KR101618729B1 (ko) 2014-06-18 2016-05-09 씨티엠(주) 진공 믹서기 및 그 작동 방법
WO2016017949A1 (ko) 2014-07-30 2016-02-04 코웨이 주식회사 펄프배출 조절장치를 구비한 드럼 조립체 및 이를 포함하는 주서기
JP6383259B2 (ja) 2014-11-07 2018-08-29 株式会社テスコム 電動調理器
CN204274098U (zh) 2014-12-03 2015-04-22 胡秋雷 立式榨汁机
CN204260499U (zh) 2014-12-03 2015-04-15 宁波凯迪利电器有限公司 一种挤压式榨汁机
CN104367169A (zh) 2014-12-12 2015-02-25 徐丽君 一种挤压切割式大口径榨汁机
CN204336595U (zh) 2014-12-17 2015-05-20 陶志江 一种原汁机
CN204635938U (zh) 2015-03-18 2015-09-16 九阳股份有限公司 一种立式螺杆挤压榨汁机
CN104825045B (zh) 2015-05-20 2017-03-29 北京市农林科学院 果蔬榨汁机
CN204839065U (zh) 2015-06-09 2015-12-09 艾美特电器(深圳)有限公司 一种真空果汁机
CN204698307U (zh) 2015-06-19 2015-10-14 浙江爱仕达生活电器有限公司 一种大口径原汁机的进料结构
CN205162705U (zh) 2015-10-13 2016-04-20 广东新宝电器股份有限公司 一种榨汁机
CN105902131B (zh) * 2015-11-02 2018-07-27 九阳股份有限公司 一种安全的大口径螺杆挤压榨汁机
CN205162707U (zh) 2015-11-02 2016-04-20 九阳股份有限公司 一种具有储料功能的螺杆挤压榨汁机
CN205306700U (zh) 2015-12-04 2016-06-15 莱克电气绿能科技(苏州)有限公司 无刷电机驱动的慢速榨汁机
CN205338553U (zh) 2015-12-16 2016-06-29 九阳股份有限公司 一种安全的大口径螺杆挤压榨汁机
CN108430279A (zh) * 2015-12-22 2018-08-21 金煐麒 榨汁机
CN205568612U (zh) 2016-01-04 2016-09-14 九阳股份有限公司 一种安全的螺杆挤压榨汁机
CN106955009A (zh) 2016-01-12 2017-07-18 浙江绍兴苏泊尔生活电器有限公司 料理机
CN205457985U (zh) 2016-01-29 2016-08-17 李骏 手摇式果蔬榨汁机
CN107115002A (zh) 2016-02-24 2017-09-01 浙江绍兴苏泊尔生活电器有限公司 料理机
CN205903152U (zh) 2016-03-31 2017-01-25 广东艾诗凯奇智能科技有限公司 一种原汁机
CN205866572U (zh) 2016-05-06 2017-01-11 广东美的生活电器制造有限公司 螺杆式预切结构及具有其的适于压榨甘蔗的慢榨机
CN205866577U (zh) 2016-05-13 2017-01-11 广东美的生活电器制造有限公司 榨汁螺杆组件和榨汁机
CN205923686U (zh) 2016-06-08 2017-02-08 宁波霈宸电器有限公司 一种具有研磨和分离残渣功能的榨汁机
EP3459401B1 (en) 2016-07-06 2021-01-27 Guangdong Midea Consumer Electrics Manufacturing Co. Ltd. Drive component and food processor
CN206102351U (zh) 2016-07-19 2017-04-19 宁波泰尔斯电子实业有限公司 高速食物料理机及其真空搅拌杯
CN105962750A (zh) 2016-07-21 2016-09-28 江门市恒通高科有限公司 一种抽真空随行料理机
CN206565833U (zh) 2016-09-05 2017-10-20 广东美的生活电器制造有限公司 隔音罩及食物料理机
CN106377181A (zh) 2016-10-30 2017-02-08 佛山市顺德区好生活电子科技有限公司 搅拌机
CN206491640U (zh) 2016-11-01 2017-09-15 浙江绍兴苏泊尔生活电器有限公司 挤压组件、杯体组件和食物料理机
CN206612693U (zh) 2016-11-02 2017-11-07 广东美的生活电器制造有限公司 螺杆及食物料理机
CN206354850U (zh) 2016-11-02 2017-07-28 广东美的生活电器制造有限公司 组合推料棒及食物处理机
CN206354851U (zh) 2016-11-02 2017-07-28 广东美的生活电器制造有限公司 螺杆及食物处理机
CN206423953U (zh) 2016-11-21 2017-08-22 广东美的生活电器制造有限公司 一种原汁机
CN107296474A (zh) 2016-11-30 2017-10-27 广东美的生活电器制造有限公司 食物处理机
CN206761314U (zh) 2016-11-30 2017-12-19 广东美的生活电器制造有限公司 螺旋头、粉碎桶及食物处理机
CN107569081B (zh) 2016-12-20 2020-11-24 九阳股份有限公司 一种排渣可调的榨汁机
CN106667227B (zh) 2016-12-28 2019-08-13 圆融健康科技(深圳)有限公司 榨汁机及其榨汁方法
CN107212771A (zh) 2017-06-27 2017-09-29 佛山市云米电器科技有限公司 静音型食物处理机
CN107213962A (zh) 2017-07-18 2017-09-29 成都言行果科技有限公司 一种果汁榨取装置
CN107374302A (zh) 2017-07-19 2017-11-24 珠海格力电器股份有限公司 一种原汁机
CN107440465B (zh) 2017-07-31 2020-06-02 九江华辰食品有限公司 一种安全卫生的液体食品加工装置
CN107319904B (zh) 2017-09-05 2019-10-11 重庆文理学院 一种猕猴桃压榨榨汁装置
CN208905521U (zh) 2018-05-09 2019-05-28 广东美的生活电器制造有限公司 食物处理机
CN208371479U (zh) 2018-02-06 2019-01-15 广东美的生活电器制造有限公司 辅助进料装置、食物处理杯组件及食物处理机

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4428014A1 (de) * 1994-08-06 1996-02-08 Braun Ag Entsafter
CN102613873A (zh) * 2012-04-25 2012-08-01 王晓东 带抽气功能的榨汁机
CN103110333A (zh) * 2012-12-06 2013-05-22 孙立峰 真空榨汁机
CN203676816U (zh) * 2013-12-12 2014-07-02 中山市安品电器有限公司 一种原汁机
CN205234236U (zh) * 2015-12-07 2016-05-18 刘捷 榨汁机
CN206423954U (zh) * 2016-11-22 2017-08-22 广东美的生活电器制造有限公司 榨汁杯组件和原汁机

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20220240708A1 (en) * 2019-10-22 2022-08-04 Hurom Co., Ltd. Juicer
US11564523B2 (en) * 2019-10-22 2023-01-31 Hurom Co., Ltd. Juicer
CN114711647A (zh) * 2019-12-26 2022-07-08 九阳股份有限公司 一种食品加工机
CN114747957A (zh) * 2019-12-26 2022-07-15 九阳股份有限公司 一种食品加工机
CN114794920A (zh) * 2019-12-26 2022-07-29 九阳股份有限公司 一种食品加工机
CN114747957B (zh) * 2019-12-26 2023-09-05 九阳股份有限公司 一种食品加工机
CN114794920B (zh) * 2019-12-26 2023-09-05 九阳股份有限公司 一种食品加工机
CN114711647B (zh) * 2019-12-26 2023-09-05 九阳股份有限公司 一种食品加工机
CN113876175A (zh) * 2020-07-01 2022-01-04 杭州九阳小家电有限公司 一种随行原汁机
CN113729460A (zh) * 2021-09-06 2021-12-03 张家港江苏科技大学产业技术研究院 一种具有加热功能的破碎助食装置
CN115057212A (zh) * 2022-06-30 2022-09-16 成都市科农动物无害化处置有限公司 一种病死及病害动物无害化输送设备
CN115057212B (zh) * 2022-06-30 2023-12-08 成都市科农动物无害化处置有限公司 一种病死及病害动物无害化输送设备

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