CN210043842U - Air exhaust and pressure relief assembly, vacuum head assembly, cup cover assembly and food processor - Google Patents

Air exhaust and pressure relief assembly, vacuum head assembly, cup cover assembly and food processor Download PDF

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Publication number
CN210043842U
CN210043842U CN201920600911.6U CN201920600911U CN210043842U CN 210043842 U CN210043842 U CN 210043842U CN 201920600911 U CN201920600911 U CN 201920600911U CN 210043842 U CN210043842 U CN 210043842U
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China
Prior art keywords
assembly
air
pressure relief
cup
vacuum head
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CN201920600911.6U
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Chinese (zh)
Inventor
廖平
阮浩翔
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Application filed by Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd filed Critical Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
Priority to CN201920600911.6U priority Critical patent/CN210043842U/en
Application granted granted Critical
Publication of CN210043842U publication Critical patent/CN210043842U/en
Priority to EP20798481.6A priority patent/EP3962333A4/en
Priority to PCT/CN2020/087255 priority patent/WO2020221208A1/en
Priority to KR1020217038349A priority patent/KR20220002464A/en
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Abstract

The application provides an air exhaust and pressure release assembly, a vacuum head assembly, a cup cover assembly and a food processor. The utility model provides an air exhaust and pressure release subassembly, it can carry out evacuation and pressure release to the cup, air exhaust and pressure release subassembly including take out air cover, air exhaust device and with inlet port and the air vent of the space intercommunication in the cup, take out air cover include with the air inlet of inlet port intercommunication and with the gas outlet of air vent intercommunication, air exhaust device with the gas outlet intercommunication, during the evacuation, air exhaust device handle air in the cup passes through the air vent and the gas outlet is taken out, during the pressure release, the external air via can the air inlet and the inlet port gets into the cup, simple structure.

Description

Air exhaust and pressure relief assembly, vacuum head assembly, cup cover assembly and food processor
Technical Field
The application relates to the field of small household appliances, in particular to an air exhaust and pressure relief assembly, a vacuum head assembly, a cup cover assembly and a food processor.
Background
With the increasing living standard of people, many different types of food processors appear on the market. The functions of the food processor mainly include, but are not limited to, functions of making soybean milk, squeezing fruit juice, making rice paste, mincing meat, shaving ice, making coffee and/or blending facial masks and the like. The food processor can comprise a soybean milk machine, a stirrer or a wall breaking food processor and other machines for crushing and stirring food. Relevant cooking machine can carry out the evacuation to the space in the stirring cup subassembly, keeps fresh and anti-oxidant to eating the material. The air exhaust and pressure relief assembly structure of the related food processor is complex.
SUMMERY OF THE UTILITY MODEL
The application provides a simple structure bleed and pressure release subassembly, vacuum head subassembly, bowl cover subassembly and cooking machine.
An aspect of the application provides an aspect of bleeding and pressure release subassembly, it can carry out evacuation and pressure release to the cup, bleed and pressure release subassembly including bleed cover, air exhaust device and with the inlet port and the air vent of space intercommunication in the cup, bleed cover include with the air inlet of inlet port intercommunication and with the gas outlet of air vent intercommunication, air exhaust device with the gas outlet intercommunication, during the evacuation, air exhaust device will air in the cup passes through the air vent and the gas outlet is taken out, during the pressure release, the external air through can the air inlet and the inlet port gets into the cup.
Above-mentioned technical scheme bleed and pressure release subassembly through bleed cover set up with the air inlet of external intercommunication and with the gas outlet of air exhaust device intercommunication to carry out evacuation and pressure release, simple structure.
Further, the air exhaust cover comprises a containing part, the air outlet is communicated with the containing part, and when the vacuum is exhausted, air in the cup body is exhausted through the vent hole, the containing part and the air outlet.
Further, the air exhaust and pressure relief assembly comprises a one-way valve, the one-way valve comprises a blocking piece located in the storage portion, and the blocking piece can be opened by suction force of the air exhaust device, so that air enters the storage portion through the vent hole.
According to the technical scheme, the air exhaust and pressure relief assembly is provided with the one-way valve, so that external air is prevented from entering the air vent, and the accommodating part can accommodate the blocking piece of the one-way valve, so that the space is saved.
Further, the air exhaust cover comprises a top wall, a side wall extending from the top wall, and a first fixing column and a second fixing column extending from the side wall, the top wall and the side wall enclose the accommodating part, the air outlet penetrates through the first fixing column, and the air inlet penetrates through the second fixing column.
Above-mentioned technical scheme's extraction cover is through setting up first fixed column and the fixed first trachea of second fixed column and second trachea, the convenient equipment first trachea and second trachea.
Further, the air exhaust and pressure relief assembly comprises a cover plate, the air inlet and the vent hole are formed in the cover plate, and the cover plate and the air exhaust cover enclose the accommodating part.
Further, the air exhaust and pressure relief assembly comprises a button assembly, the button assembly comprises an exhaust button and an exhaust valve body, the exhaust valve body comprises an accommodating part and an exhaust channel communicated with the accommodating part, the exhaust channel is communicated with the air inlet, and the exhaust button moves relative to the exhaust valve body to enable outside air to enter the accommodating part.
According to the technical scheme, the button assembly is pressed to release pressure, and the operation is simple and convenient.
Furthermore, the button assembly comprises a sealing ring and an elastic piece, the sealing ring is assembled to the exhaust button, the exhaust button drives the sealing ring to move so that outside air can enter the accommodating part, and the elastic force of the elastic piece drives the sealing ring to move so as to isolate the accommodating part from an outside space.
Above-mentioned technical scheme's button assembly passes through the exhaust button and drives the sealing member and remove with the pressure release, simple structure.
Further, the button assembly further comprises an activation button and a circuit board, the circuit board including a contact, the activation button pressing the contact to activate the air evacuation device.
The button assembly of the technical scheme comprises the starting button to start the air extracting device, and the button assembly is simple in structure and easy to operate.
Further, the air exhaust and pressure relief assembly comprises a first air pipe communicated with the air outlet and the air exhaust device and a second air pipe communicated with the air inlet and the exhaust channel.
Another aspect of the application provides a vacuum head subassembly, including the aforesaid bleed and pressure release subassembly, base and upper cover, the base with the upper cover encloses into the space, bleed and pressure release subassembly are located in the space, the apron set up in the base.
The vacuum head assembly of the technical scheme is simple in structure and can be vacuumized and decompressed by arranging the air inlet communicated with the outside and the air outlet communicated with the air exhaust device on the air exhaust cover.
Further, the base includes the bottom plate and from the lateral wall that the bottom plate extends, the bottom plate, the lateral wall and the upper cover encloses into the space, the apron is the bottom plate.
Another aspect of the application provides a vacuum head assembly, including the aforesaid bleed and pressure release subassembly, bottom plate and upper cover, the bottom plate with the upper cover encloses into the space, bleed and pressure release subassembly are located in the space, inlet port and vent hole set up in the bottom plate.
Further, the vacuum head assembly includes a sidewall extending from the floor, the sidewall, and the upper cover enclosing the space.
The vacuum head assembly of the technical scheme is convenient to assemble the button assembly.
Yet another aspect of the application provides a cup cover assembly, including the bowl cover and the above-mentioned and pressure release assembly of bleeding, inlet port and air vent set up in the bowl cover.
The application also provides a cup cover assembly, including bowl cover and above-mentioned vacuum head assembly, the vacuum head assembly assemble extremely the bowl cover.
Above-mentioned technical scheme's bowl cover subassembly is through setting up pump assembly and pressure release subassembly are in order to carry out evacuation and pressure release, simple structure.
Further, the lid assembly includes a seal connecting the vacuum head assembly and the lid.
The vacuum head assembly and the cup cover are connected through the sealing piece, so that the vacuum head assembly is easy to assemble and good in sealing effect.
Further, the bowl cover includes equipment portion and certainly spacing muscle that the equipment portion extends, the sealing member including can be used for with spacing muscle laminating sealed first sealing portion and can be used for with equipment portion laminating sealed second sealing portion.
The sealing element, the limiting rib and the assembling part are sealed simultaneously, and the sealing effect is good.
Further, the sealing member includes a main body portion used for being attached to the assembling portion, and a first limiting portion and a second limiting portion extending from the main body portion, the second limiting portion is located between the first sealing portion and the first limiting portion, the vacuum head assembly includes a second extending portion located between the first limiting portion and the second limiting portion, and the first limiting portion and the second limiting portion are attached to the second extending portion in a sealing mode.
The sealing element of the technical scheme is attached to and sealed with the first limiting part and the second limiting part of the vacuum head assembly, and the sealing effect is good.
Furthermore, the vacuum head assembly comprises a third extending part which is positioned on one side of the first limiting part and is attached and sealed with the first limiting part.
The first spacing portion of sealing member of above-mentioned technical scheme with the laminating of the third extension of vacuum head subassembly is sealed, and is sealed effectual.
Further, the vacuum head assembly comprises a first extension part, and the limiting rib is located between the first extension part and the first sealing part.
According to the technical scheme, the first extending portion of the vacuum head assembly is located on one side of the limiting rib so as to limit the vacuum head assembly and prevent the vacuum head assembly from shaking.
The application also provides a cooking machine, including above-mentioned bowl cover subassembly and equipment extremely the cup of bowl cover subassembly.
Above-mentioned technical scheme's cooking machine carries out evacuation and pressure release, simple structure through bleeding and pressure release subassembly.
The application still provides a cooking machine, including cup and above-mentioned vacuum head subassembly, the vacuum head subassembly equipment extremely the cup.
Drawings
Fig. 1 is a perspective view of the food processor of the present application.
Figure 2 is an exploded view of the vacuum head assembly of the present application.
Fig. 3 is a perspective view of a lower cover of the vacuum head assembly shown in fig. 2.
Fig. 4 is a perspective view of the suction cap shown in fig. 2.
Fig. 5 is a cross-sectional schematic view of a button assembly of the vacuum head assembly shown in fig. 2.
Fig. 6 is a schematic cross-sectional view of the lid assembly of the present application.
Fig. 7 is an enlarged view at B of the sectional view shown in fig. 6.
Fig. 8 is a perspective view of a seal of the lid assembly of the present application.
Fig. 9 is an enlarged view at a of the sectional view shown in fig. 6.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. Unless otherwise defined, technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this application belongs. The use of "first," "second," and similar terms in the description and in the claims does not indicate any order, quantity, or importance, but rather is used to distinguish one element from another. Also, the use of the terms "a" or "an" and the like do not denote a limitation of quantity, but rather denote the presence of at least one. "plurality" or "a number" means two or more. Unless otherwise indicated, "front", "rear", "lower" and/or "upper" and the like are for convenience of description and are not limited to one position or one spatial orientation. The word "comprising" or "comprises", and the like, means that the element or item listed as preceding "comprising" or "includes" covers the element or item listed as following "comprising" or "includes" and its equivalents, and does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect. As used in this specification and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
Referring to fig. 1 to 9, the food processor of the present application can be a soymilk maker, a juice extractor, a wall breaking machine, etc. The cooking machine comprises a machine base assembly 1, a cup body assembly 2 and a cup cover assembly 3. The stand assembly 1 includes a housing 10 and a motor (not shown) disposed within the housing 10. A stirring blade assembly (not shown) is provided in the cup body assembly 2. The motor drives the stirring knife assembly to rotate so as to stir the food materials.
Referring now to fig. 1 with emphasis on the illustration, the cup assembly 2 is removably mounted to the base assembly 1. Food materials are contained in the cup body component 2 and are stirred in the cup body component. The cup body assembly 2 comprises a cup body 21, a cup body handle 22 arranged on one side of the cup body 21 and a base 24 positioned at one end of the cup body 21. The cup 21 may be made of glass, metal (e.g., stainless steel), or the like, and includes a rim (not shown). In the illustrated embodiment, the base 24 can be clamped or screwed onto the base assembly 1, and the cup assembly 2 is mounted on the base assembly 1 through the assembly of the base 24 and the housing 10 of the base assembly 1.
Referring now to FIG. 6, the lid assembly 3 is removably assembled to the cup 21. The cap assembly 3 includes a vacuum head assembly 32, a seal 31 and a cap 30 assembled together. The lid 30 is assembled to the cup 21. The seal 31 is attached to the lid to secure the vacuum head assembly 32 with the lid 30. The cup cover 30 comprises an assembling portion 301 provided with a channel 3010, a limiting rib 302 extending from the assembling portion 301 and an installation portion 303. The mounting portion 303 is assembled to a rim of the cup body 21. The channel 3010 is for adding food material. The limiting rib 302 and the mounting portion 303 extend in opposite directions.
Referring now to FIG. 2, the vacuum head assembly 32 includes a base 320, a sealing ring 321, a one-way valve 322, a pump and pressure relief assembly, a circuit board 325, and a top cover 327. The air pumping and pressure releasing assembly comprises a cover plate, a pumping cover 323, an air pumping device 324, a button assembly 326, a first air pipe 328 connecting the pumping cover 323 and the air pumping device 324, and a second air pipe 329 connecting the pumping cover 323 and the button assembly 326.
Referring to fig. 3, the base 320 includes a bottom plate 3201, a side wall 3202 extending from the bottom plate 3201, and a mounting hole 3203, a vent hole 3204 and an air inlet hole 3205 disposed on the bottom plate 3201. The vent hole 3204 and the intake hole 3205 communicate with the space inside the cup body 21. The bottom plate 3201, the side walls 3202, and the top cover 327 enclose a space 3206. The air extractor 324, the circuit board 325, the button assembly 326, the first air tube 328 and the second air tube 329 are located in the space 3206. In the illustrated embodiment, the cover plate is the base plate 3201.
In the illustrated embodiment, the side walls 3202 extend from the bottom plate 3201 to facilitate assembly of the button assembly 326 with the top cover 327, although the present application is not limited thereto. The side wall 3202 may be disposed on the upper cover 327, and the base 320 may be disposed only on the bottom plate 3201.
Referring to fig. 6 to 7, the check valve 322 includes a mounting portion 3220 assembled to the mounting hole 3203 and a stopper 3221 extending from the mounting portion 3220. The suction force of the suction device 324 causes the baffle 3221 to open the vent hole 3204 to perform a vacuum pumping operation, and the baffle 3221 may be used to seal the vent hole 3204 to prevent external air from entering through the vent hole.
Referring to fig. 4, the suction cover 323 includes a top wall 3230, a side wall 3231 extending from the top wall 3230, and a first fixing post 3232 and a second fixing post 3233 extending from the side wall 3231. The top wall 3230, the side walls 3231 and the bottom plate 3201 form a receiving portion 3234. The first fixing post 3232 includes an air outlet port 3236 communicating with the receiving portion 3234. The second fixing post 3233 includes an air inlet port 3235 communicating with the air inlet port 3205. The first air tube 328 is fixed to the first fixing post 3232, and the second air tube 329 is fixed to the second fixing post 3233, so that the first air tube 328 and the second air tube 329 are easily assembled. The sealing ring 321 is located between the pumping cover 323 and the bottom plate 3201 of the base 320, so as to prevent air leakage between the pumping cover 323 and the bottom plate 3201 of the base 320.
In the illustrated embodiment, the pump and pressure relief assembly is disposed on the vacuum head assembly 32, and the vacuum head assembly 32 is assembled to a cup cover 30, but the present application is not limited thereto. The positions of the air exhaust and pressure relief assembly can be set according to actual needs. For example, the vacuum head assembly can be directly assembled to a cup body, and can be assembled and fixed by means of screwing or screwing in the cup mouth of the cup body.
In the illustrated embodiment, the bottom plate 3201 of the vacuum head assembly 32 and the suction cover 323 enclose the receiving portion 3234, but the present application is not limited thereto. As shown in fig. 6, the channel 3010 and the bottom plate 3201 of the vacuum head assembly 32 may be eliminated, the assembling portion is designed to cover the plate-shaped portion of the cup body 21, and the cover plate of the air suction and pressure release assembly is the assembling portion. The mounting holes 3203, the vent holes 3204, and the air inlet holes 3205 are disposed in the assembly portion.
The first air tube 328 is communicated with the air suction device 324 and the air outlet 3236 of the air suction cover 323. When the air extractor 324 is operated, the suction force of the air extractor 324 causes the stopper 3221 to open the vent 3204, and the air in the cup 21 is extracted through the vent 3204 and the air outlet 3236. When the air extractor 324 stops working, the stop 3221 seals the vent 3204 to prevent outside air from entering the cup body 21. In the illustrated embodiment, the gas-withdrawal device 324 is a vacuum pump.
Referring to fig. 5, the button assembly 326 includes a support 3260, an actuating button 3261 assembled to the support 3260, a venting button 3263 and a venting valve body 3262, a sealing ring 3264 assembled to the venting button 3263, and an elastic member 3265. The activation button 3261, when pressed, abuts a contact 3251 on the circuit board 325 to activate the air extractor 324, which is simple in structure and easier to operate than an activation button provided on the base assembly 1.
The exhaust valve body 3262 includes a receiving portion 32620 and an exhaust passage 32621 communicating with the receiving portion 32620. The second air pipe 329 communicates the exhaust passage 32621 with the air inlet 3235 of the suction cover 323. When the exhaust button 3263 is pressed, the exhaust button 3263 drives the sealing ring 3264 to move into the accommodating portion 32620 of the exhaust valve body 3262, so that the accommodating portion 32620 is communicated with the outside, outside air can enter the accommodating portion 32620, and further enters the cup body 21 through the second air pipe 329, the air inlet 3235 of the suction cover 323 and the air inlet 3205 of the base 320, so as to perform pressure relief, and the operation is simple and convenient. When the exhaust button 3263 is pressed, the exhaust button 3263 can compress the elastic member 3265, and when the exhaust button 3263 is released, the elastic force of the elastic member 3265 drives the exhaust button 3263 to reset, so as to further drive the sealing ring 3264 to reset, so that the outside air cannot enter the accommodating portion 32620 of the exhaust valve body 3262, that is, cannot enter the cup body 21, and the vacuum degree in the cup body 21 is effectively ensured.
In the illustrated embodiment, the exhaust valve body 3262 is fixed to the support 3260 by a screw 3266, but the present application is not limited thereto. The exhaust valve body 3262 can be secured to the support 3260 by snap-fit, threaded engagement, or welding, among other methods. The exhaust valve body 3262 may also be integrally formed with the support 3260.
The upper cover 327 is fixed to the base 320. The upper cover 327 includes a first pressing portion 3270 corresponding to the activation button 3261 and a second pressing portion 3271 corresponding to the exhaust button 3263, the activation button 3261 can be pressed by pressing the first pressing portion 3270, and the exhaust button 3263 can be pressed by pressing the second pressing portion 3271, so as to protect the activation button 3261 and the exhaust button 3263.
Referring to fig. 8-9, the base 320 of the vacuum head assembly 32 includes a first extension 3207, a second extension 3208, and a third extension 3209 extending from the base plate 3201.
The sealing member 31 includes a main body 310, a first position-limiting portion 311 extending upward from the main body 310, a second position-limiting portion 312, a first sealing portion 313 extending upward from the second position-limiting portion 312, and a second sealing portion 314 extending downward from the main body 310, so that the sealing member 31 has better sealing effect and better strength, and the joints between the first sealing portion 313 and the second position-limiting portion 312 and between the second sealing portion 314 and the main body 310 are prevented from being broken. The present invention is not limited thereto, and the first sealing portion 313 and the second sealing portion 314 may be formed to extend from the main body portion 310 or from the second stopper portion 311.
The thicknesses of the first sealing part 313 and the second sealing part 314 are smaller than that of the first limiting part 311, and the first sealing part 313 and the second sealing part 314 are easy to deform, so that a better sealing effect is achieved. The main body portion 310, the first stopper portion 312, the second stopper portion 312, the first seal portion 313, and the second seal portion 314 are substantially annular.
The first limiting portion 311 is attached to and sealed with the first extending portion 3207 and the second extending portion 3208, the second limiting portion 312 is attached to and sealed with the second extending portion 3208, the first sealing portion 313 is attached to and sealed with the limiting rib 302 of the cup cover 30, and the main body portion 310 and the second sealing portion 314 are attached to and sealed with the assembling portion 301 of the cup cover 30, so that the sealing element 31 has a good sealing effect. The third extension part 3209 is located outside the limiting rib 302 of the cap 30 to limit the vacuum head assembly 32. The second seal portion 314 vacuum-adheres with the assembly portion 301 of the cap 30 to secure the seal 31 to the cap 30. When the pressure in the cup 21 is less than atmospheric pressure, the vacuum head assembly 32 is securely positioned to the lid 30 due to the atmospheric pressure. When the vacuum head assembly 32 needs to be taken down, the vacuum head assembly 32 can be taken down by pressing the exhaust button 3263 for pressure relief.
In the illustrated embodiment, the vent 3204 and the inlet 3205 are disposed on the vacuum head assembly 32, but the present application is not limited thereto. The vent hole 3204 and the air inlet hole 3205 may be disposed on the assembling portion 301 of the cup cover 30, that is, the assembling portion 301 is equivalent to the bottom plate 3201.
In the illustrated embodiment, the cap 30 includes a limiting rib 302, and the first sealing portion 313 of the sealing member 31 is in close sealing contact with the limiting rib 302 of the cap 30, but the application is not limited thereto. When the cap 30 is not provided with the limiting rib 302, the second sealing portion 314 of the sealing element 31 can be only used for being attached and sealed with the assembling portion 301 of the cap 30.
In the illustrated embodiment, the main body portion 310 of the sealing member 31 is in close sealing contact with the assembling portion 301 of the cap 30, but the present application is not limited thereto. The main body 310 may not be attached to the assembly portion 301.
According to the air suction and pressure relief assembly, the air suction cover 323 is provided with the air inlet 3235 communicated with the button assembly 326 and the air outlet 3236 communicated with the air suction device 324, so that the vacuum pumping and pressure relief are performed, and the structure is simple.
Although the present application has been described with reference to a preferred embodiment, it should be understood that various changes, substitutions and alterations can be made herein without departing from the spirit and scope of the application, and all changes, substitutions and alterations that fall within the spirit and scope of the application are to be understood as being covered by the following claims.

Claims (22)

1. The air exhaust and pressure relief assembly is characterized by comprising an air exhaust cover (323), an air exhaust device (324), an air inlet hole (3205) and a vent hole (3204), wherein the air inlet hole (3205) and the vent hole (3204) are communicated with the space in the cup body (21), the air exhaust cover (323) comprises an air inlet (3235) communicated with the air inlet hole (3205) and an air outlet (3236) communicated with the vent hole (3204), the air exhaust device (324) is communicated with the air outlet (3236), when the air exhaust assembly (324) exhausts air in the cup body (21) through the vent hole (3204) and the air outlet (3236), and when the pressure relief is carried out, external air can enter the cup body (21) through the air inlet hole (3235) and the air inlet hole (3205).
2. The air evacuation and pressure relief assembly according to claim 1, wherein the air evacuation lid (323) includes a receptacle (3234), the air outlet (3236) communicating with the receptacle (3234), and wherein air within the cup (21) is evacuated through the vent hole (3204), the receptacle (3234), and the air outlet (3236) during evacuation.
3. The pump down and pressure relief assembly of claim 2 including a one-way valve (322), said one-way valve (322) including a flap (3221) located within said housing (3234), suction from said pump down device (324) opening said flap (3221) to allow gas to enter said housing (3234) through said vent hole (3204).
4. The air bleed and pressure relief assembly of claim 2 wherein the air bleed cap (323) includes a top wall (3230), a side wall (3231) extending from the top wall (3230), and first and second securing posts (3232, 3233) extending from the side wall (3231), the top wall (3230) and the side wall (3231) enclosing the receptacle (3234), the air outlet port (3236) extending through the first securing post (3232), and the air inlet port (3235) extending through the second securing post (3233).
5. The air evacuation and pressure relief assembly according to claim 3, comprising a cover plate, wherein the air inlet hole (3205) and the vent hole (3204) are disposed on the cover plate, and the cover plate and the air evacuation cover (323) enclose the receiving portion (3234).
6. The pump down and pressure relief assembly of any of claims 1-4 including a button assembly (326), said button assembly (326) including a vent button (3263) and a vent valve body (3262), said vent valve body (3262) including a receiving portion (32620) and a vent passage (32621) in communication with said receiving portion (32620), said vent passage (32621) being in communication with said air inlet (3235), said vent button (3263) being movable relative to said vent valve body (3262) to allow ambient air to enter said receiving portion (32620).
7. The pump down and pressure relief assembly of claim 6 wherein said button assembly (326) includes a sealing ring (3264) and a resilient member (3265) assembled to said venting button (3263), said venting button (3263) moving said sealing ring (3264) to allow ambient air to enter said housing portion (32620), said resilient member (3265) moving said sealing ring (3264) to isolate said housing portion (32620) from an ambient space.
8. The suction and pressure relief assembly of claim 6 wherein said button assembly (326) further comprises an activation button (3261) and a circuit board (325), said circuit board (325) comprising a contact (3251), said activation button (3261) pressing said contact (3251) to activate said suction device (324).
9. The air evacuation and pressure relief assembly of claim 6, wherein the air evacuation and pressure relief assembly comprises a first air tube (328) communicating the air outlet port (3236) with the air evacuation device (324) and a second air tube (329) communicating the air inlet port (3235) with the exhaust channel (32621).
10. A vacuum head assembly, comprising a base (320), an upper cover (327) and the pump down and pressure relief assembly of claim 5, wherein the base (320) and the upper cover (327) enclose a space (3206), the pump down and pressure relief assembly is located in the space (3206), and the cover plate is disposed on the base (320).
11. The vacuum head assembly as recited in claim 10, wherein the base (320) includes a floor (3201) and sidewalls (3202) extending from the floor (3201), the sidewalls (3202), and the top cover (327) enclose the space (3206), and the cover plate is the floor (3201).
12. A vacuum head assembly, comprising a base plate (3201), an upper cover (327) and the air evacuation and pressure release assembly according to any one of claims 1 to 4 and 6 to 9, wherein the base plate (3201) and the upper cover (327) enclose a space (3206), the air evacuation and pressure release assembly is located in the space (3206), and the air inlet opening (3205) and the air vent opening (3204) are disposed in the base plate (3201).
13. The vacuum head assembly as recited in claim 12, comprising side walls (3202) extending from the base plate (3201), the side walls (3202), and the top cover (327) enclosing the space (3206).
14. A lid assembly comprising a lid (30) and the pump and pressure relief assembly of any of claims 1-4 and 6-9, the air inlet (3205) and vent (3204) being disposed in the lid (30).
15. A lid assembly comprising a lid (30) and a vacuum head assembly as claimed in any one of claims 10 to 12 assembled to the lid (30).
16. The lid assembly of claim 15, including a seal (31) connecting the vacuum head assembly and the lid (30).
17. The lid assembly of claim 16, wherein the lid (30) includes an assembly portion (301) and a retention bead (302) extending from the assembly portion (301), the seal (31) including a first seal portion (313) operable to form a snug seal with the retention bead (302) and a second seal portion (314) operable to form a snug seal with the assembly portion (301).
18. The cup lid assembly of claim 17, wherein the seal (31) includes a main body portion (310) adapted to engage the assembly portion (301), and a first limiting portion (311) and a second limiting portion (312) extending from the main body portion (310), the second limiting portion (312) being located between the first sealing portion (313) and the first limiting portion (311), the vacuum head assembly including a second extending portion (3208) located between the first limiting portion (311) and the second limiting portion (312), the first limiting portion (311) and the second limiting portion (312) engaging and sealing with the second extending portion (3208).
19. The cup lid assembly of claim 18, wherein the vacuum head assembly includes a third extension (3207) positioned on a side of the first retainer portion (311) and in sealing engagement with the first retainer portion (311).
20. The lid assembly of claim 19, wherein the vacuum head assembly includes a first extension (3209), the retention rib (302) being located between the first extension (3209) and the first seal (313).
21. A food processor including a lid assembly as claimed in any one of claims 14 to 20 and a cup (21) assembled to the lid assembly.
22. Food processor characterized in that it comprises a cup (21) and a vacuum head assembly according to any one of claims 10 to 13, assembled to said cup (21).
CN201920600911.6U 2019-04-28 2019-04-28 Air exhaust and pressure relief assembly, vacuum head assembly, cup cover assembly and food processor Active CN210043842U (en)

Priority Applications (4)

Application Number Priority Date Filing Date Title
CN201920600911.6U CN210043842U (en) 2019-04-28 2019-04-28 Air exhaust and pressure relief assembly, vacuum head assembly, cup cover assembly and food processor
EP20798481.6A EP3962333A4 (en) 2019-04-28 2020-04-27 Air extraction and pressure release assembly, vacuum head assembly, jar lid assembly and food processor
PCT/CN2020/087255 WO2020221208A1 (en) 2019-04-28 2020-04-27 Air extraction and pressure release assembly, vacuum head assembly, jar lid assembly and food processor
KR1020217038349A KR20220002464A (en) 2019-04-28 2020-04-27 Air extraction and pressure relief assembly, vacuum head assembly, container lid assembly and food processor

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020221208A1 (en) * 2019-04-28 2020-11-05 Zhejiang Shaoxing Supor Domestic Electrical Appliance Co., Ltd. Air extraction and pressure release assembly, vacuum head assembly, jar lid assembly and food processor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020221208A1 (en) * 2019-04-28 2020-11-05 Zhejiang Shaoxing Supor Domestic Electrical Appliance Co., Ltd. Air extraction and pressure release assembly, vacuum head assembly, jar lid assembly and food processor

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