WO2022105906A1 - 煲体组件和烹饪器具 - Google Patents

煲体组件和烹饪器具 Download PDF

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Publication number
WO2022105906A1
WO2022105906A1 PCT/CN2021/132006 CN2021132006W WO2022105906A1 WO 2022105906 A1 WO2022105906 A1 WO 2022105906A1 CN 2021132006 W CN2021132006 W CN 2021132006W WO 2022105906 A1 WO2022105906 A1 WO 2022105906A1
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WO
WIPO (PCT)
Prior art keywords
water
pot body
fluid control
flow channel
waterway
Prior art date
Application number
PCT/CN2021/132006
Other languages
English (en)
French (fr)
Inventor
王天水
杨保民
何新华
吴育权
付厚潮
李家孔
Original Assignee
佛山市顺德区美的电热电器制造有限公司
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
Application filed by 佛山市顺德区美的电热电器制造有限公司 filed Critical 佛山市顺德区美的电热电器制造有限公司
Priority to JP2023531065A priority Critical patent/JP2023550509A/ja
Publication of WO2022105906A1 publication Critical patent/WO2022105906A1/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
    • A47J27/00Cooking-vessels
    • 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
    • A47J36/00Parts, details or accessories of cooking-vessels

Definitions

  • the present application relates to the field of household electrical appliances, and in particular, to a pot body assembly and a cooking utensil.
  • the main purpose of the present application is to propose a pot body assembly, which aims to simplify the structure of the pot body assembly and improve the performance stability of the pot body assembly.
  • the pot body assembly proposed in the present application is used for cooking utensils, and the pot body assembly includes a pot body and a waterway module;
  • a cooking cavity is defined in the pot
  • a waterway module is installed on the boiler body, and the waterway module includes a waterway box and a fluid control device, and a water flow channel and/or an air flow channel are arranged in the waterway box, and the fluid control device is installed in the waterway box to use For regulating the flow rate and/or flow direction of the water flow channel and the air flow channel.
  • the fluid control device includes one or more of an air pump, a water pump, a flow meter and a control valve, the water pump communicates with the water flow channel, the air pump communicates with the air flow channel, so The flow meter communicates with the water pump, and the control valve communicates with the air pump.
  • the water circuit module further includes a pump body bracket, and the air pump and the water pump are mounted on the water circuit box through the pump body bracket.
  • the fluid control device includes a first fluid control component and a second fluid control component, and the first fluid control component and the second fluid control component are respectively disposed on two sides of the waterway box.
  • the first fluid control assembly and the second fluid control assembly are disposed on both sides of the waterway box in the width direction.
  • the first fluid control assembly includes at least one of an air pump, a water pump, and a flow meter
  • the second fluid control assembly includes a control valve
  • the water channel module further includes a mounting bracket mounted on the boiler body, and the water channel box is mounted on the mounting bracket.
  • the mounting bracket is detachably mounted on the pot body.
  • the pot body includes an outer cover, and the mounting bracket is detachably mounted on the outer cover.
  • an end of the mounting bracket away from the waterway box is provided with a wire clamping structure, and the wire clamping structure is used to fix the connection terminals and/or cables of the fluid control device.
  • the waterway box includes a front cover and a rear cover connected by welding.
  • the front cover and/or the rear cover is provided with a pipe joint communicating with the water flow channel, and the cross-sectional area of the water flow channel is larger than the cross-sectional area of the pipe joint.
  • the width of the water flow channel is greater than or equal to 8 mm and less than or equal to 10 mm, and the depth of the water flow channel is greater than or equal to 8 mm and less than or equal to 10 mm.
  • the front cover is provided with a first welding rib
  • the rear cover is provided with a second welding rib corresponding to the first welding rib
  • the width of the first welding rib is greater than or equal to 3.5mm , and less than or equal to 4.5mm
  • the width of the second welding rib is greater than or equal to 3.5mm and less than or equal to 4.5mm.
  • a welding area is formed between the first welding rib and the second welding rib, and the depth of the welding area is greater than or equal to 2 mm and less than or equal to 3 mm.
  • the pot body has a first side and a second side disposed opposite to the cooking cavity, and the first side is used for installing a water tank; the pot body assembly further includes a control board, the control board Installed on the second side of the pot body, the water channel module is located between the first side and the second side of the pot body.
  • the present application also provides a cooking utensil, including a pot body assembly, wherein the pot body assembly includes a pot body and a waterway module;
  • a cooking cavity is defined in the pot
  • a waterway module is installed on the boiler body, and the waterway module includes a waterway box and a fluid control device, and a water flow channel and/or an air flow channel are arranged in the waterway box, and the fluid control device is installed in the waterway box to use For regulating the flow rate and/or flow direction of the water flow channel and the air flow channel.
  • the boiler body assembly of the present application is provided with a water flow channel and/or an air flow channel in the water box, so that a fluid control device is installed in the water box, and the fluid control device is used to regulate the flow and/or flow of the water flow channel and the air flow channel. or flow.
  • a fluid control device is installed in the water box, and the fluid control device is used to regulate the flow and/or flow of the water flow channel and the air flow channel. or flow.
  • the connection of pipelines and wires can be simplified, and the overall layout can be compact and the space occupied is small.
  • the installation of the fluid control device on the waterway box can further shorten and simplify the connecting pipelines and lines, which can improve the overall performance stability and reduce the risk of air pressure and water pressure leakage attenuation.
  • FIG. 1 is a partial exploded structural schematic diagram of an embodiment of a pot body assembly of the present application
  • Fig. 2 is the top-view structure schematic diagram after the pot body assembly in Fig. 1 is assembled;
  • FIG. 3 is a top-view structural schematic diagram of another embodiment of the pot body assembly of the present application.
  • FIG. 4 is a schematic front view of the structure of another embodiment of the pot body assembly of the present application.
  • Fig. 5 is the structural representation of the waterway module of the boiler body assembly in Fig. 4;
  • FIG. 6 is a schematic structural diagram of another angle of the waterway module in FIG. 5;
  • FIG. 7 is a schematic structural diagram of an embodiment of a waterway box of the application.
  • Fig. 8 is the sectional structure schematic diagram of the waterway box in Fig. 7;
  • FIG. 9 is a schematic structural diagram of an embodiment of the front cover in FIG. 7;
  • FIG. 10 is a schematic structural diagram of an embodiment of the rear cover in FIG. 7;
  • FIG. 11 is a schematic structural diagram of an embodiment of the cooking appliance of the present application.
  • the directional indications are only used to explain the relationship between the various components in a certain posture If the specific posture changes, the directional indication also changes accordingly.
  • the present application proposes a cooker body assembly for a cooking utensil.
  • the cooking utensil may be an electric rice cooker, an electric pressure cooker, an electric stew pot, a cooking machine, etc.
  • the cooking utensil is an electric rice cooker as an example for illustrative description.
  • the pot body assembly 100 includes a pot body 110 and a water channel module 120 .
  • a cooking cavity 111 is defined in the pot body 110 .
  • the water circuit module 120 is installed on the boiler body 110, and the water circuit module 120 includes a water circuit box 121 and a fluid control device 122.
  • the water circuit box 121 is provided with a water flow channel 1211 and/or an air flow channel 1212.
  • the fluid control device 122 is installed in the water circuit box 121 to use It is used to regulate the flow rate and/or flow direction of the water flow channel 1211 and the air flow channel 1212 .
  • the pot body 110 constitutes the frame and appearance of the entire cooking utensil.
  • the pot body 110 may include an outer shell and an outer cover 112 that are connected to each other.
  • the horizontal cross-sectional shape of the pot body 110 may be a circle, an ellipse, or a rectangle. , rectangle-like, etc., which can be selected and designed according to the actual use requirements, and are not specifically limited here.
  • the cooking cavity 111 defined in the pot body 110 is used for installing the inner pot, and the inner cavity of the inner pot is used for holding food and cooking.
  • the water channel module 120 can be detachably installed on the pot body 110 or fixedly installed on the pot body 110 . In order to facilitate maintenance and replacement, the water channel module 120 is usually detachably installed on the pot body 110 .
  • the water flow channel 1211 provided in the waterway box 121 may be one, two, three or more than three. Then, one of the water flow channels 1211 can be a cooking water inlet channel, and a water inlet and a water outlet communicated with the cooking water inlet channel are provided on the water box 121, the water inlet communicates with the water tank 130, and the water outlet communicates with the inner pot. In this way, rice washing water and rice cooking water can be injected into the inner pot through the cooking water inlet channel.
  • Another water flow channel 1211 can also be a drainage channel, and the waterway box 121 is provided with a drainage inlet and a drainage outlet communicating with the drainage channel, the drainage inlet communicates with the inner pot, and the drainage outlet communicates with the drainage pipe or drainage cavity.
  • the water in the inner pot can be pumped out of the inner pot through the drainage channel.
  • the rice washing water can be drained after rice washing is completed, or the water can be pumped out when there is too much water in the inner pot, and the cleaning water in the inner pot can also be pumped out.
  • one of the water flow channels 1211 may also be a clean water channel. Then, the cleaning agent can be injected into the inner pot through the cleaning water channel, so as to realize the cleaning of the inner pot.
  • the water box 121 can be provided with an air inlet and an air outlet that communicate with the airflow channel 1212.
  • the air inlet can be communicated with the air pump 1221 or the fan through a pipeline, and the air outlet is communicated with the inner pot, and then the inner pot is blown through the air pump 1221 or the fan.
  • the fluid control device 122 is used to adjust and control the flow rate and/or flow direction of the water flow channel 1211 and the air flow channel 1212, so as to realize the steps of water injection, drainage, air blowing, and air deflation in the inner pot, and can control the water intake, drainage, and air intake.
  • the fluid control device 122 may specifically include one or more of an air pump 1221 , a water pump 1222 , a flow meter 1223 and a control valve 1224 .
  • the water flow channel 1211 and/or the air flow channel 1212 are arranged in the water box 121, so that the fluid control device 122 is installed in the water box 121, and the fluid control device 122 is used for regulating the water flow channel 1211 and the air flow channel 1212. flow and/or direction of flow.
  • the connection of pipelines and wires can be simplified, and the overall layout can be compact and the space occupied is small.
  • the installation of the fluid control device 122 on the waterway box 121 can further shorten and simplify the connecting pipelines and lines, thereby improving the overall performance stability and reducing the risk of air pressure and water pressure leakage attenuation.
  • the fluid control device 122 includes one or more of an air pump 1221, a water pump 1222, a flow meter 1223, and a control valve 1224.
  • the water pump 1222 communicates with the water flow channel 1211
  • the air pump 1221 communicates with the airflow channel 1212
  • the flow meter 1223 communicates with the water pump 1222
  • the control valve 1224 communicates with the air pump 1221 .
  • the pot body 110 may also be provided with a rice box and a quantitative cavity that are connected to each other, and rice is injected into the inner pot through the cooperation of the fan and the quantitative cavity.
  • the control valve 1224 may specifically be a solenoid valve, and there may be multiple control valves 1224, so that one of the control valves 1224 can be connected to the water flow channel 1211, and then the water flow channel 1211 is controlled by the control valve 1224 and the flow meter 1223 to inject a certain amount into the inner pot. rice water.
  • the control valve 1224 switches the air pump 1221 to communicate with the air flow channel 1212, so that air can be blown into the inner pot, and the rice water can be stirred to simulate the effect of rubbing and washing rice by human hands.
  • the water pump 1222 is communicated with the water flow channel 1211, so that the rice washing water or clean water in the inner pot can be pumped out of the inner pot, and the flow meter 1223 is used for precise control, and then a certain amount of cooking water is injected through the water flow channel 1211 to achieve Cook rice with precision. In this way, the comprehensive intelligence of rice washing and cooking is realized, and the user experience is further improved.
  • the air pump 1221, water pump 1222, flow meter 1223 and control valve 1224 and other devices are integrated and modularized, and they are all installed on the waterway box 121, which greatly shortens and simplifies the connection pipeline and connection line, making the overall structure more compact and occupying less space. , easy to maintain and replace, and improve performance stability, reduce the risk of air pressure and water pressure leakage attenuation.
  • the fluid control device 122 includes a first fluid control component and a second fluid control component, and the first fluid control component and the second fluid control component are respectively disposed on two sides of the waterway box 121 .
  • the specific structures of the first fluid control assembly and the second fluid control assembly may be the same or different, and generally, the specific structures of the first fluid control assembly and the second fluid control assembly are different.
  • the first fluid control assembly may include a part of the air pump 1221 , the water pump 1222 , the flow meter 1223 and the control valve 1224
  • the second fluid control assembly includes another part of the air pump 1221 , the water pump 1222 , the flow meter 1223 and the control valve 1224 .
  • the air pump 1221 , the water pump 1222 , the flow meter 1223 and the control valve 1224 may all be arranged on the same side of the waterway box 121 .
  • the first control assembly and the second control assembly are respectively disposed on both sides of the waterway box 121 in the width direction.
  • the space in the width direction of the waterway box 121 can be fully utilized to make the overall structure more compact, and the air pump 1221 , the water pump 1222 , the flowmeter 1223 and the control valve 1224 are installed on the large surface of the waterway box 121 , so that the overall installation More stable and convenient.
  • the first fluid control assembly includes at least one of an air pump 1221 , a water pump 1222 and a flow meter 1223
  • the second fluid control assembly includes a control valve 1224 .
  • the air pump 1221 , the water pump 1222 and the flow meter 1223 are arranged on the same side of the waterway box 121, and the control valve 1224 is arranged on the other side of the waterway box 121, the water and electricity can be separated, thereby ensuring the operation stability of the whole cooking appliance.
  • the air pump 1221 , the water pump 1222 and the flow meter 1223 are arranged on the side of the waterway box 121 close to the control board 140 . In this way, the connection between the air pump 1221, the water pump 1222 and the flow meter 1223 and the control board 140 is made shorter, which simplifies the wiring and facilitates the wiring.
  • the pot body assembly 100 further includes a water tank 130, a rice box and a conveying component.
  • the rice box and the water tank 130 are installed on the same side of the pot body 110, and the pot body 110 is provided with the rice box.
  • the quantitative cavity communicated with the inner pot, the conveying member is formed with a fluid channel that communicates with the water tank 130 and the inner pot, the conveying member injects fluid into the inner pot through the fluid channel and/or through the fluid channel The fluid of the inner pot is drawn out of the inner pot .
  • the fluid channel communicates with the water flow channel 1211 and the air flow channel 1212 of the water box 121 .
  • a certain amount of rice can be injected into the inner pot through the cooperation of the fan and the quantitative cavity, and the water in the water tank 130 can be injected into the inner pot through the fluid channel of the conveying component, so that the air pump 1221 is switched through the valve, and the air pump 1221 is blown into the inner pot through the fluid channel.
  • the rice washing water is also discharged from the fluid channel through the conveying part. After the rice washing water is discharged, the cooking water is then injected to realize the whole cooking.
  • the process of automatic rice adding, washing and cooking of the appliance makes the whole cooking appliance more intelligent and improves the user experience.
  • the conveying part can also input high temperature steam into the inner pot or extract high temperature steam, or input cleaning liquid or extract cleaning liquid, so as to realize the cleaning of the inner pot and the fluid channel.
  • the delivery member includes a telescoping assembly and a delivery tube connected to the telescoping assembly, the delivery tube being formed with a fluid channel.
  • the conveying part has a telescopic function.
  • the telescopic assembly can extend into the liquid in the inner pot.
  • the telescopic assembly can be retracted. This arrangement can prevent the telescopic assembly from being damaged due to prolonged contact with high-temperature liquid or disinfectant, and prolong the service life of the telescopic assembly.
  • the telescopic assembly may specifically include a plurality of telescopic elements, and the plurality of telescopic elements are all hollow structures.
  • the telescopic assembly may not have the function of extending and shortening itself, so that the telescopic assembly can be movably arranged on the cooking utensil as a whole to adjust the distance between the end of the telescopic assembly and the bottom of the inner pot.
  • the water circuit module 120 further includes a pump body bracket 123 , and the air pump 1221 and the water pump 1222 are mounted on the water circuit box 121 through the pump body bracket 123 .
  • the air pump 1221 and the water pump 1222 can be fixed on the pump body bracket 123 by way of clip connection, screw connection, socket connection, interference fit, welding and the like.
  • the air pump 1221 and the water pump 1222 are detachably mounted on the pump body bracket 123 . It is convenient to repair and replace the air pump 1221 and the water pump 1222 .
  • the pump body bracket 123 can be installed on the waterway box 121 by means of socket connection, screw connection, snap connection and the like.
  • the air pump 1221 and the water pump 1222 are integrated, which facilitates the overall installation and disassembly, and can improve the connection stability of the air pump 1221 and the water pump 1222.
  • the pump body bracket 123 can be a sleeve-like structure or other shapes, as long as the air pump 1221 and the water pump 1222 can be stably installed to the waterway box 121 , which is not specifically limited here.
  • the water pump 1222 and the air pump 1221 are sealedly connected to the waterway box 121 through the sealing silicone parts, so as to improve the overall air tightness, thereby improving the overall performance of the product.
  • the water channel module 120 further includes a mounting bracket 124 mounted on the pot body 110 , and the water channel box 121 is mounted on the mounting bracket 124 .
  • the mounting bracket 124 is detachably mounted on the pot body 110 .
  • the mounting bracket 124 can be detachably mounted on the pot body 110 by means of screws, snaps, plugs, sockets, or the like.
  • the mounting bracket 124 may also be fixedly mounted on the pot body 110 , or the mounting bracket 124 and the pot body 110 may be integrally formed.
  • the pot body 110 includes an outer cover 112 , and the mounting bracket 124 is detachably mounted on the outer cover 112 .
  • the pot body 110 specifically further includes an outer casing connected with the outer casing 112 .
  • the end of the mounting bracket 124 away from the waterway box 121 is provided with a wire clip structure 1241 , and the wire clip structure 1241 is used to fix the connection terminals and/or cables of the fluid control device 122 .
  • the wire clip structure 1241 can specifically include a plurality of clips.
  • the wire clip structure 1241 can fix the terminals and cables of the fluid control device 122, so that the connection lines can be combed, thereby making the entire line more tidy and convenient for maintenance personnel to overhaul.
  • the wire clip structure 1241 can also be used to fix the connection terminals and cables of the control board 140 .
  • the air pump 1221 , the water pump 1222 , and the flow meter 1223 are installed on one side of the waterway box 121 close to the wire clamping structure 1241 , and the control valve 1224 is installed on the other side of the waterway box 121 . Then, the water connection line can be further shortened.
  • the waterway box 121 includes a front cover 1213 and a rear cover 1214 which are connected by welding.
  • the front cover 1213 and the rear cover 1214 may be sealed by a structural seal or a rubber ring.
  • the front cover 1213 and the rear cover 1214 are connected by ultrasonic heat fusion welding, so as to ensure the connection stability of the front cover 1213 and the rear cover 1214, and improve the sealing performance between the two.
  • the waterway box 121 is formed by the front cover 1213 and the rear cover 1214, which facilitates the design of the flow channel and facilitates the overall ejection.
  • the front cover 1213 and/or the rear cover 1214 is provided with a pipe joint 1215 communicating with the water flow channel 1211 , and the cross-sectional area of the water flow channel 1211 is larger than that of the pipe joint 1215 .
  • the pipe joint 1215 can be a two-port pipe or a three-port pipe.
  • the front cover 1213 is provided with a water inlet and a water outlet communicating with the water flow channel 1211 .
  • a pipe joint 1215 is provided at each of the water inlet and the water outlet.
  • the pipe joint 1215 may specifically include a two-point joint fixing seat, a two-point joint and a sealing ring. The two-point joint is installed on the water inlet or the water outlet through the two-point joint fixing seat, and is sealed with the water inlet or the water outlet through the sealing ring.
  • the cross-sectional area of the water flow channel 1211 By making the cross-sectional area of the water flow channel 1211 larger than the cross-sectional area of the pipe joint 1215 , that is, the cross-sectional area of the water flow channel 1211 is larger than the inner hole area of the two-way or three-way pipe, the corresponding water system flow requirements of the cooking appliance can be guaranteed.
  • a check valve can also be set in the water flow channel 1211 to prevent backflow of the water circuit.
  • the width of the water flow channel 1211 is greater than or equal to 8 mm and less than or equal to 10 mm, and the depth of the water flow channel 1211 is greater than or equal to 8 mm and less than or equal to 10 mm.
  • the width of the water flow channel 1211 may be 8mm, 8.5mm, 9mm, 9.5mm, 10mm, etc., and the depth of the water flow channel 1211 may be 8mm, 8.5mm, 9mm, 9.5mm, 10mm, and the like. If the width of the water flow channel 1211 is less than 8mm and the depth of the water flow channel 1211 is less than 8mm, the flow demand of the water system cannot be met. It is easy to cause excessive local pressure, which is prone to the risk of water leakage.
  • the width of the water flow channel 1211 greater than or equal to 8 mm and less than or equal to 10 mm, and the depth of the water flow channel 1211 greater than or equal to 8 mm and less than or equal to 10 mm, large-area flow can be avoided while meeting the flow requirements of the water system.
  • the local pressure is too high, and there is a risk of water leakage.
  • the bottom of the water flow channel 1211 can be properly rounded to further avoid excessive local pressure in the flow channel.
  • the front cover 1213 is provided with the first welding rib 10
  • the rear cover 1214 corresponds to the first welding rib 10 is provided with a second welding rib 20
  • the width of the first welding rib 10 is greater than or equal to 3.5mm, and less than or equal to 4.5mm
  • the width of the second welding rib 20 is greater than or equal to 3.5mm, and less than or equal to 4.5mm.
  • the width of the first welding rib 10 may specifically be 4 mm
  • the width of the second welding rib 20 may specifically be 4 mm. If the width of the first welding rib 10 is less than 3.5 mm and the width of the second welding rib 20 is less than 3.5 mm, the welding strength cannot be guaranteed, and the risk of water leakage is likely to occur. If the width of the first welding rib 10 is greater than 4.5 mm and the width of the second welding rib 20 is greater than 4.5 mm, the cross-sectional area of the water flow channel 1211 will be reduced, and the flow demand of the water system cannot be guaranteed.
  • the width of the first welding rib 10 greater than or equal to 3.5 mm and less than or equal to 4.5 mm, and the width of the second welding rib 20 being greater than or equal to 3.5 mm and less than or equal to 4.5 mm, the flow rate of the water system can be guaranteed.
  • the welding strength of the front cover 1213 and the rear cover 1214 can be ensured, thereby reducing or avoiding water leakage.
  • the first welding rib 10 and the second welding rib 20 can be properly rounded to fill the welding flash.
  • a welding area 1216 is formed between the first welding rib 10 and the second welding rib 20 , and the depth of the welding area 1216 is greater than or equal to 2 mm and less than or equal to 3 mm. If the depth of the welding area 1216 is made less than 2 mm, the welding strength cannot be guaranteed, and the risk of water leakage is likely to occur. If the depth of the welding area 1216 is made larger than 3 mm, the cross-sectional area of the water flow channel 1211 will be increased, and the large-area flow channel is likely to cause excessive local pressure and a risk of water leakage.
  • the depth of the welding area 1216 is greater than or equal to 2 mm and less than or equal to 3 mm, the welding strength of the front cover 1213 and the rear cover 1214 can be ensured, and the local pressure caused by the large-area flow channel can be avoided, and the front cover 1213 can be further avoided. There is a risk of water leakage between it and the back cover 1214.
  • the pot body 110 has a first side 113 and a second side 114 disposed opposite to the cooking cavity 111 , and the first side 113 is used for installing the water tank 130 ; the pot body assembly 100 also The control board 140 is included.
  • the control board 140 is installed on the second side 114 of the pot body 110 , and the water channel module 120 is located between the first side 113 and the second side 114 of the pot body 110 .
  • the control board 140 may specifically be a main control board of a cooking appliance.
  • the control board 140 may be detachably mounted on the pot body 110 through a board box.
  • the water tank 130 is used to provide cooking water, for example, rice washing water can be provided into the inner pot, cooking water can also be provided, and of course, cleaning water can also be provided, which is not specifically limited herein.
  • the first side 113 and the second side 114 of the pot body 110 relative to the cooking cavity 111 refer to the two opposite peripheral sides of the pot body 110 , that is, when the cooking utensil is in use, it is horizontally opposite to cooking. Both sides of cavity 111 .
  • the first side 113 and the second side 114 may specifically be the front and rear sides of the pot body 110 , or may be the left and right sides of the pot body 110 .
  • the water tank 130 is placed on the left side of the boiler body 110 .
  • the first side 113 of the pot body 110 is used to install the water tank 130
  • the control board 140 is installed on the second side 114 of the pot body 110 , that is, the water tank 130 and the control board 140 are disposed on opposite sides of the cooking cavity 111 .
  • the control board 140 is arranged on the opposite side of the water tank 130 , and is farthest away from the water tank 130 , that is, away from the water source, so as to protect the performance of the circuit board and effectively improve the waterproof effect of the control board 140 .
  • the waterproofing of the control board 140 can be realized, and there is no need to provide an additional waterproof structure, thereby simplifying the overall structure and easier to implement.
  • the water channel module 120 is located between the first side 113 and the second side 114 of the boiler body 110, so that the water tank 130, the water channel module 120, the control board 140, and the circumference of the boiler body 110 are arranged in sequence.
  • the structure It is more compact, on the other hand, the connection pipeline between the waterway module 120 and the water tank 130 is shortened, thereby simplifying the pipeline, and the connection line between the control board 140 and the waterway module 120 is the shortest, thereby avoiding electromagnetic interference affecting EMC performance, effectively improving Overall EMC performance.
  • the application also proposes a cooking utensil, please refer to FIG. 11 , the cooking utensil includes an upper cover assembly and a pot body assembly 100 that are connected to each other.
  • the specific structure of the pot body assembly 100 refers to the above-mentioned embodiment. All the technical solutions of all the embodiments have at least all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, and will not be repeated here.

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  • Food Science & Technology (AREA)
  • Cookers (AREA)

Abstract

一种煲体组件(100)和烹饪器具,其中,煲体组件(100)包括煲体(110)及水路模块(120);煲体(110)内限定出烹饪腔(111);水路模块(120)安装于煲体(110),水路模块(120)包括水路盒(121)及流体控制装置(122),水路盒(121)内设有水流通道和/或气流通道,流体控制装置(122)安装于水路盒(121),以用于调控水流通道及气流通道的流量和/或流向。煲体组件(100)能够简化管路及导线连接,且使得整体布局紧凑、占用空间小,且可提高整体性能稳定性,减小气压及水压泄露衰减的风险性。

Description

煲体组件和烹饪器具
本申请要求于2020年11月23日申请的、申请号为202022746406.8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
本申请涉及生活电器领域,特别涉及一种煲体组件和烹饪器具。
背景技术
目前有能够实现自动加水、洗米的智能电饭煲,然而智能电饭煲涉及的气泵、水泵、流量计等产品一般为独立的模块,各自分开布局,中间通过各种管路及导线连接,则使得整体结构布局占用空间较大,连接复杂,性能不稳定,同时由于管路连接较多,气压、水压泄露及衰减的风险性增大。
上述内容仅用于辅助理解申请的技术方案,并不代表承认上述内容是现有技术。
技术问题
本申请的主要目的是提出一种煲体组件,旨在简化煲体组件的结构,提高煲体组件的性能稳定性。
技术解决方案
为实现上述目的,本申请提出的煲体组件用于烹饪器具,该煲体组件包括煲体及水路模块;
所述煲体内限定出烹饪腔;
水路模块安装于所述煲体,所述水路模块包括水路盒及流体控制装置,所述水路盒内设有水流通道和/或气流通道,所述流体控制装置安装于所述水路盒,以用于调控所述水流通道及所述气流通道的流量和/或流向。
在一实施例中,所述流体控制装置包括气泵、水泵、流量计及控制阀中的一种或多种,所述水泵与所述水流通道连通,所述气泵与所述气流通道连通,所述流量计与所述水泵连通,所述控制阀与所述气泵连通。
在一实施例中,所述水路模块还包括泵体支架,所述气泵及所述水泵通过所述泵体支架安装于所述水路盒。
在一实施例中,所述流体控制装置包括第一流体控制组件及第二流体控制组件,所述第一流体控制组件及所述第二流体控制组件分设于所述水路盒的两侧。
在一实施例中,所述第一流体控制组件及所述第二流体控制组件分设于所述水路盒宽度方向上的两侧。
在一实施例中,所述第一流体控制组件包括气泵、水泵和流量计中的至少一种,所述第二流体控制组件包括控制阀。
在一实施例中,所述水路模块还包括安装于所述煲体的安装支架,所述水路盒安装于所述安装支架。
在一实施例中,所述安装支架可拆卸地安装于所述煲体。
在一实施例中,所述煲体包括外壳罩,所述安装支架可拆卸地安装于所述外壳罩。
在一实施例中,所述安装支架远离所述水路盒的一端设有卡线结构,所述卡线结构用于固定所述流体控制装置的接线端子和/或线缆。
在一实施例中,所述水路盒包括通过焊接连接的前盖和后盖。
在一实施例中,所述前盖和/或后盖上设有与所述水流通道连通的管接头,所述水流通道的横截面积大于所述管接头的横截面积。
在一实施例中,所述水流通道的宽度大于或等于8mm,且小于或等于10mm,所述水流通道的深度大于或等于8mm,且小于或等于10mm。
在一实施例中,所述前盖上设有第一焊筋,所述后盖上对应所述第一焊筋设有第二焊筋,所述第一焊筋的宽度大于或等于3.5mm,且小于或等于4.5mm;和/或,所述第二焊筋的宽度大于或等于3.5mm,且小于或等于4.5mm。
在一实施例中,所述第一焊筋与所述第二焊筋之间形成焊接区,所述焊接区的深度大于或等于2mm,且小于或等于3mm。
在一实施例中,所述煲体具有相对所述烹饪腔设置的第一侧及第二侧,所述第一侧用于安装水箱;所述煲体组件还包括控制板,所述控制板安装于所述煲体的第二侧,所述水路模块位于所述煲体的第一侧与第二侧之间。
本申请还提出一种烹饪器具,包括煲体组件,其中,煲体组件包括煲体及水路模块;
所述煲体内限定出烹饪腔;
水路模块安装于所述煲体,所述水路模块包括水路盒及流体控制装置,所述水路盒内设有水流通道和/或气流通道,所述流体控制装置安装于所述水路盒,以用于调控所述水流通道及所述气流通道的流量和/或流向。
有益效果
本申请煲体组件通过在水路盒内设置水流通道和/或气流通道,使得流体控制装置安装于所述水路盒,且流体控制装置用于调控所述水流通道及所述气流通道的流量和/或流向。如此,将流体控制装置集成一体化,则能够简化管路及导线连接,且使得整体布局紧凑、占用空间小。而将流体控制装置安装在水路盒上,能够进一步缩短和简化连接管路及线路,则可提高整体性能稳定性,减小气压及水压泄露衰减的风险性。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。
图1为本申请煲体组件一实施例的部分分解结构示意图;
图2为图1中煲体组件装配后的俯视结构示意图;
图3为本申请煲体组件另一实施例的俯视结构示意图;
图4为本申请煲体组件另一实施例的主视结构示意图;
图5为图4中煲体组件的水路模块的结构示意图;
图6为图5中水路模块另一角度的结构示意图;
图7为本申请水路盒一实施例的结构示意图;
图8为图7中水路盒的剖视结构示意图;
图9为图7中前盖一实施例的结构示意图;
图10为图7中后盖一实施例的结构示意图;
图11为本申请烹饪器具一实施例的结构示意图。
附图标号说明:
标号 名称 标号 名称 标号 名称
100 煲体组件 1212 气流通道 1222 水泵
110 煲体 1213 前盖 1223 流量计
111 烹饪腔 10 第一焊筋 1224 控制阀
112 外壳罩 1214 后盖 123 泵体支架
113 第一侧 20 第二焊筋 124 安装支架
114 第二侧 1215 管接头 1241 卡线结构
120 水路模块 1216 焊接区 130 水箱
121 水路盒 122 流体控制装置 140 控制板
1211 水流通道 1221 气泵    
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请的一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,若本申请实施例中有涉及方向性指示(诸如上、下、左、右、前、后……),则该方向性指示仅用于解释在某一特定姿态下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
另外,若本申请实施例中有涉及“第一”、“第二”等的描述,则该“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B”为例,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种煲体组件,用于烹饪器具,该烹饪器具具体可以为电饭煲、电压力锅、电炖锅、料理机等,以下以该烹饪器具为电饭煲为例进行示例性说明。
在本申请实施例中,如图1至图9所示,该煲体组件100包括煲体110及水路模块120。煲体110内限定出烹饪腔111。水路模块120安装于煲体110,水路模块120包括水路盒121及流体控制装置122,水路盒121内设有水流通道1211和/或气流通道1212,流体控制装置122安装于水路盒121,以用于调控水流通道1211及气流通道1212的流量和/或流向。
在本实施例中,煲体110构成整个烹饪器具的框架和外观,煲体110具体可以包括相互连接的外壳及外壳罩112,煲体110的水平横截面形状可以呈圆形、椭圆形、矩形、类矩形等,具体可根据实际使用需求进行选择和设计,在此不做具体限定。煲体110内限定出的烹饪腔111用于安装内锅,内锅的内腔用于盛放食物并进行烹饪。水路模块120可以可拆卸地安装于煲体110,也可以固定安装于煲体110,为了便于维护和更换,通常使得水路模块120可拆卸地安装于煲体110。
可以理解的是,水路盒121内设置的水流通道1211可以为一条、也可以为两条、三条或三条以上。则可使得其中一条水流通道1211为烹饪进水通道,在水路盒121上设置与烹饪进水通道连通的进水口和出水口,进水口与水箱130连通,出水口与内锅连通。如此,通过烹饪进水通道能够向内锅注入洗米水和煮饭用水。还可使得另一条水流通道1211为排水通道,在水路盒121上设置与排水通道连通的排水进口和排水出口,排水进口与内锅连通,排水出口与排水管或排水腔连通。如此,通过排水通道能够将内锅中的水抽出至内锅外,例如在洗米完成后将洗米水排出,或在内锅水量过多时将水抽出,还可以将内锅中的清洁用水抽出。当让,也可以使得其中一条水流通道1211为清洁用水通道。则通过该清洁用水通道能够将清洁剂注入内锅中,以实现对内锅的清洗。
水路盒121上可设置与气流通道1212连通的进气口和出气口,进气口可通过管道与气泵1221或风机连通,出气口与内锅连通,则通过气泵1221或风机向内锅鼓气,以实现内锅中的米水搅动来模拟人手的揉搓洗米效果。流体控制装置122用于调节和控制水流通道1211及气流通道1212的流量和/或流向,以实现对内锅进行注水、排水、鼓气、泄气等步骤,且能够控制进水量、排水量、进气量及泄气量,进而保证烹饪器具进行精确的烹饪步骤,以提升烹饪质量。流体控制装置122具体可以包括气泵1221、水泵1222、流量计1223及控制阀1224中的一种或多种。
本申请煲体组件100通过在水路盒121内设置水流通道1211和/或气流通道1212,使得流体控制装置122安装于水路盒121,且流体控制装置122用于调控水流通道1211及气流通道1212的流量和/或流向。如此,将流体控制装置122集成一体化,则能够简化管路及导线连接,且使得整体布局紧凑、占用空间小。而将流体控制装置122安装在水路盒121上,能够进一步缩短和简化连接管路及线路,则可提高整体性能稳定性,减小气压及水压泄露衰减的风险性。
具体而言,请参照图1、图4至图6,流体控制装置122包括气泵1221、水泵1222、流量计1223及控制阀1224中的一种或多种,水泵1222与水流通道1211连通,气泵1221与气流通道1212连通,流量计1223与水泵1222连通,控制阀1224与气泵1221连通。
在本实施例中,煲体110内还可以设置相互连通的米箱和定量腔,通过风机和定量腔等配合向内锅注入米。控制阀1224具体可以为电磁阀,控制阀1224可以设置为多个,则可以使得其中一个控制阀1224水流通道1211连通,然后通过控制阀1224和流量计1223控制水流通道1211向内锅中注入定量的洗米水。控制阀1224切换气泵1221与气流通道1212连通,则可向内锅中鼓气,实现米水搅动以模拟人手的揉搓洗米效果。水泵1222与水流通道1211连通,则可实现将内锅中的洗米水或清洁水抽出至内锅外,并通过流量计1223进行精确控制,随后通过水流通道1211注入定量的煮饭水,以实现精确煮饭。如此,实现洗米、煮饭的全面智能化,进一步提升用户使用体验。且将气泵1221、水泵1222、流量计1223及控制阀1224等装置均集成模块化,均安装至水路盒121上,大大缩短和简化连接管路和连接线路,使得整体结构更加紧凑、占用空间小,便于维修和更换,且提高性能稳定性,减小气压及水压泄露衰减的风险性。
在一实施例中,所述流体控制装置122包括第一流体控制组件及第二流体控制组件,所述第一流体控制组件及所述第二流体控制组件分设于所述水路盒121的两侧。可以理解的是,第一流体控制组件与第二流体控制组件的具体结构可以相同,也可以不同,通常,使得第一流体控制组件与第二流体控制组件的具体结构不同。则第一流体控制组件可以包括气泵1221、水泵1222、流量计1223及控制阀1224中的一部分,第二流体控制组件包括气泵1221、水泵1222、流量计1223及控制阀1224中的另一部分。通过使得气泵1221、水泵1222、流量计1223及控制阀1224分别设置在水路盒121的两侧,相比于全部设置于水路盒121的同一侧,使得整个水路模块111的布局更为合理,结构更加紧凑,更有利于产品小型化。当然,在一些实施例中,也可以使得气泵1221、水泵1222、流量计1223及控制阀1224均设置在水路盒121的同一侧。具体地,所述第一控制组件及所述第二控制组件分设于所述水路盒121宽度方向上的两侧。如此,能够充分利用水路盒121宽度方向上的空间,使得整体结构更加紧凑,且将气泵1221、水泵1222、流量计1223及控制阀1224安装于水路盒121的大板面上,使得整体的安装更加稳固和便捷。
进一步地,所述第一流体控制组件包括气泵1221、水泵1222和流量计1223中的至少一种,所述第二流体控制组件包括控制阀1224。如此,将气泵1221、水泵1222和流量计1223设置在水路盒121的同一侧,将控制阀1224设置在水路盒121的另一侧,则能够使得水电分离,进而保证整个烹饪器具的运行稳定性。具体地,气泵1221、水泵1222和流量计1223设置在水路盒121靠近控制板140的一侧。如此,使得气泵1221、水泵1222和流量计1223与控制板140的连接更短,简化线路和方便接线。
实际而言,请再次参照图1及图2,煲体组件100还包括水箱130、米箱及输送部件,米箱及水箱130安装于煲体110的同一侧,煲体110设有与米箱及内锅连通的定量腔,输送部件内形成有与水箱130及内锅连通的流体通道,输送部件通过流体通道向内锅注入流体和/或通过流体通道将内锅的流体抽出至内锅外。
在本实施例中,流体通道与水路盒121的水流通道1211和气流通道1212连通。具体可通过风机和定量腔等配合向内锅中注入定量的米,通过输送部件的流体通道将水箱130中的水注入内锅中,使得气泵1221通过阀门切换,通过流体通道向内锅中鼓气,以实现内锅中的米水搅动来模拟人手的揉搓洗米效果,洗米结束后,也通过输送部件将洗米水由流体通道排出,排出洗米水之后,接着注入煮饭水,以实现整个烹饪器具的自动加米、洗米、煮饭的过程。使得整个烹饪器具更加智能化,提升用户使用体验。当然,输送部件也可以实现向内锅中输入高温蒸汽或抽出高温蒸汽,或者输入清洁液体或抽出清洁液体,以实现内锅和流体通道的清洁。
在一些实施例中,输送部件包括伸缩组件和连接伸缩组件的输送管,输送管形成有流体通道。输送部件具有伸缩功能。在一个例子中,在内锅需要将水抽出时,伸缩组件可以伸入至内锅的液体中。在内锅不需要抽水时,伸缩组件可以缩回,如此设置,能够避免出现伸缩组件长时间与高温液体或消毒液接触导致伸缩组件损坏的情况,提升伸缩组件的使用年限。伸缩组件可以具体可以包括多个伸缩件,多个伸缩件均为中空结构。当然,在其他实施例中,伸缩组件也可以不具备自身可伸长和缩短的功能,则使得伸缩组件通过整体可活动地设置在烹饪器具来调整伸缩组件的末端与内锅底部的距离。
在一实施例中,如图1及图6所示,水路模块120还包括泵体支架123,气泵1221及水泵1222通过泵体支架123安装于水路盒121。
在本实施中,气泵1221与水泵1222具体可通过卡接、螺钉连接、套接、过盈配合、焊接等方式固定在泵体支架123上。具体地,气泵1221及水泵1222可拆卸地安装于泵体支架123。则便于对气泵1221和水泵1222进行检修和更换。泵体支架123可通过套接、螺钉连接、卡接等方式安装在水路盒121上。通过使得气泵1221和水泵1222均通过泵体支架123安装在水路盒121上,使得气泵1221和水泵1222集成一体化,便于整体的安装和拆卸,且能够提高气泵1221和水泵1222的连接稳固性。泵体支架123可以呈套筒状结构,也可以为其他形状的结构,只需能够实现将气泵1221和水泵1222稳固安装至水路盒121即可,在此不做具体限定。进一步地,水泵1222和气泵1221通过密封硅胶件与水路盒121实现密封连接,以提高整体气密性,进而提升产品的整体性能。
在一实施例中,请参照图1至图6,水路模块120还包括安装于煲体110的安装支架124,水路盒121安装于安装支架124。具体地,安装支架124可拆卸地安装于煲体110。则安装支架124可通过螺钉、卡扣、插接、套接等方式实现可拆卸地安装于煲体110。通过使得水路盒121安装在安装支架124上,然后安装至煲体110上,相比于水路盒121直接安装至煲体110上,可避免损坏水路盒121,进而能够延长水路盒121的使用寿命,且通过安装支架124安装至煲体110上,可提高水路模块120的整体连接稳固性。当然,在其他实施例中,安装支架124也可以固定安装在煲体110上,或使得安装支架124与煲体110一体成型设置。
进一步地,如图1至图4所示,煲体110包括外壳罩112,安装支架124可拆卸地安装于外壳罩112。煲体110具体还包括与外壳罩112连接的外壳。通过将安装支架124安装至外壳罩112上,可使得整体结构更加紧凑、连接稳固性更佳的同时避免破坏外壳的整体一致性。
在一实施例中,请参照图1至图3,安装支架124远离水路盒121的一端设有卡线结构1241,卡线结构1241用于固定流体控制装置122的接线端子和/或线缆。卡线结构1241具体可包括多个卡扣,通过卡线结构1241能够固定流体控制装置122的接线端子和线缆,则可实现梳理连接线路,进而使得整个线路更加整齐,便于维修人员的检修。当然,卡线结构1241也可以用于固定控制板140的连接端子和线缆。可选地,气泵1221、水泵1222、流量计1223安装于水路盒121靠近卡线结构1241的一侧,控制阀1224安装于水路盒121的另一侧。则能够进一步缩短水路连接线路。
在一实施例中,如图7至图10所示,水路盒121包括通过焊接连接的前盖1213和后盖1214。前盖1213和后盖1214具体可通过结构密封或橡胶圈密封。具体地,前盖1213与后盖1214通过超声波热熔焊接连接,则在保证前盖1213与后盖1214连接稳固性的同时,提升两者之间密封性。使得水路盒121由前盖1213和后盖1214形成,便于流道的设计,且便于整体的出模。
进一步地,请参照图7至图10,前盖1213和/或后盖1214上设有与水流通道1211连通的管接头1215,水流通道1211的横截面积大于管接头1215的横截面积。
在本实施例中,该管接头1215可以为二分管或三分管。具体而言,前盖1213上设有与水流通道1211连通的进水口和出水口。进水口及出水口处各设置有一管接头1215。管接头1215具体可包括二分接头固定座、二分接头及密封圈,二分接头通过二分接头固定座安装于进水口或出水口,且通过密封圈与进水口或出水口实现密封对接。通过使得水流通道1211的横截面积大于管接头1215的横截面积,也即水流通道1211的横截面积大于二分管或三分管内孔面积,则能够保证烹饪器具相应的水***流量需求。还可以在水流通道1211内设置止回阀,以防止水路回流。
进一步地,水流通道1211的宽度大于或等于8mm,且小于或等于10mm,水流通道1211的深度大于或等于8mm,且小于或等于10mm。
在本实施例中,水流通道1211的宽度具体可以为8mm、8.5mm、9mm、9.5mm、10mm等,水流通道1211的深度具体可以为8mm、8.5mm、9mm、9.5mm、10mm等。若水流通道1211的宽度小于8mm,水流通道1211的深度小于8mm,则不能满足水***的流量需求,若水流通道1211的宽度大于10mm,水流通道1211的深度大于或等于10mm,则大面积的流道容易造成局部压力过大,易出现漏水风险。通过使得水流通道1211的宽度大于或等于8mm,且小于或等于10mm,水流通道1211的深度大于或等于8mm,且小于或等于10mm,在满足水***的流量需求的同时,可避免大面积的流道造成局部压力过大,而出现漏水风险。可使得水流通道1211的底部做适当的圆角处理,以进一步避免流道出现局部压力过大。
结合水路盒121包括通过焊接连接的前盖1213和后盖1214的上述实施例,进一步地,请参照图8,前盖1213上设有第一焊筋10,后盖1214上对应第一焊筋10设有第二焊筋20,第一焊筋10的宽度大于或等于3.5mm,且小于或等于4.5mm;和/或,第二焊筋20的宽度大于或等于3.5mm,且小于或等于4.5mm。
在本实施例中,第一焊筋10的宽度具体可以为4mm,第二焊筋20的宽度具体可以为4mm。若使得第一焊筋10的宽度小于3.5mm,第二焊筋20的宽度小于3.5mm,则不能够保证焊接强度,易出现漏水风险。若使得第一焊筋10的宽度大于4.5mm,第二焊筋20的宽度大于4.5mm,则会减小水流通道1211的横截面积,进而不能够保证水***的流量需求。而通过使得第一焊筋10的宽度大于或等于3.5mm,且小于或等于4.5mm,第二焊筋20的宽度大于或等于3.5mm,且小于或等于4.5mm,在能够保证水***的流量需求的同时,可保证前盖1213和后盖1214的焊接强度,进而减小或避免出现漏水现象。可使得第一焊筋10及第二焊筋20做适当的圆角处理,以填补焊接溢料。
进一步地,请再次参照图8,第一焊筋10与第二焊筋20之间形成焊接区1216,焊接区1216的深度大于或等于2mm,且小于或等于3mm。若使得焊接区1216的深度小于2mm,则不能够保证焊接强度,易出现漏水风险。若使得焊接区1216的深度大于3mm,则会增大水流通道1211的横截面积,大面积的流道容易造成局部压力过大,易出现漏水风险。而通过使得焊接区1216的深度大于或等于2mm,且小于或等于3mm,能够在保证前盖1213和后盖1214的焊接强度,同时避免大面积流道造成局部压力过大,进一步避免前盖1213和后盖1214之间出现漏水风险。
在一实施例中,如图1至图3所示,煲体110具有相对烹饪腔111设置的第一侧113及第二侧114,第一侧113用于安装水箱130;煲体组件100还包括控制板140,控制板140安装于煲体110的第二侧114,水路模块120位于煲体110的第一侧113与第二侧114之间。
在本实施例中,该控制板140具体可以为烹饪器具的主控板。控制板140可通过板盒可拆卸地安装在煲体110上。水箱130用于提供烹饪用水,例如可以向内锅中提供洗米水,也可以提供蒸煮用水,当然,还可以提供清洁用水,在此不做具体限定。可以理解的是,煲体110相对烹饪腔111设置的第一侧113和第二侧114,指的是煲体110两相对的周侧,也即在烹饪器具使用时,在水平方向上相对烹饪腔111的两周侧。则第一侧113和第二侧114具体可以为煲体110的前后两侧,也可以为煲体110的左右两侧。可选地,为了便于用户操作界面,将水箱130放置在煲体110的左侧。
煲体110的第一侧113用于安装水箱130,控制板140安装于煲体110的第二侧114,也即使得水箱130与控制板140设置在烹饪腔111的相对两侧。如此,使得控制板140设置在水箱130的对立面,最大程度的远离水箱130,也即远离水源,进而能够保护电路板的性能,有效提升控制板140的防水效果。且仅通过布局控制板140及水箱130的安装位置,便可实现控制板140的防水,不必设置额外的防水结构,从而简化整体结构,且更加易于实现。
此外,使得水路模块120位于煲体110的第一侧113与第二侧114之间,则使得水箱130、水路模块120、控制板140、围绕煲体110的周向依次设置,一方面使得结构更加紧凑,另一方面使得水路模块120与水箱130的连接管路最短,进而简化管路,且使得控制板140与水路模块120的连接线路最短,进而能够避免因电磁干扰影响EMC性能,有效提升整体的EMC性能。
本申请还提出一种烹饪器具,请参照图11,该烹饪器具包括相互连接的上盖组件及煲体组件100,该煲体组件100的具体结构参照上述实施例,由于本烹饪器具采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。
以上仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的发明构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。

Claims (17)

  1. 一种煲体组件,用于烹饪器具,其中,所述煲体组件包括:
    煲体,所述煲体内限定出烹饪腔;以及
    水路模块,安装于所述煲体,所述水路模块包括水路盒及流体控制装置,所述水路盒内设有水流通道和/或气流通道,所述流体控制装置安装于所述水路盒,以用于调控所述水流通道及所述气流通道的流量和/或流向。
  2. 如权利要求1所述的煲体组件,其中,所述流体控制装置包括气泵、水泵、流量计及控制阀中的一种或多种,所述水泵与所述水流通道连通,所述气泵与所述气流通道连通,所述流量计与所述水泵连通,所述控制阀与所述气泵连通。
  3. 如权利要求2所述的煲体组件,其中,所述水路模块还包括泵体支架,所述气泵及所述水泵通过所述泵体支架安装于所述水路盒。
  4. 如权利要求1所述的煲体组件,其中,所述流体控制装置包括第一流体控制组件及第二流体控制组件,所述第一流体控制组件及所述第二流体控制组件分设于所述水路盒的两侧。
  5. 如权利要求4所述的煲体组件,其中,所述第一流体控制组件及所述第二流体控制组件分设于所述水路盒宽度方向上的两侧。
  6. 如权利要求4所述的煲体组件,其中,所述第一流体控制组件包括气泵、水泵和流量计中的至少一种,所述第二流体控制组件包括控制阀。
  7. 如权利要求1至6中任意一项所述的煲体组件,其中,所述水路模块还包括安装于所述煲体的安装支架,所述水路盒安装于所述安装支架。
  8. 如权利要求7所述的煲体组件,其中,所述安装支架可拆卸地安装于所述煲体。
  9. 如权利要求8所述的煲体组件,其中,所述煲体包括外壳罩,所述安装支架可拆卸地安装于所述外壳罩。
  10. 如权利要求7所述的煲体组件,其中,所述安装支架远离所述水路盒的一端设有卡线结构,所述卡线结构用于固定所述流体控制装置的接线端子和/或线缆。
  11. 如权利要求1所述的煲体组件,其中,所述水路盒包括通过焊接连接的前盖和后盖。
  12. 如权利要求11所述的煲体组件,其中,所述前盖和/或后盖上设有与所述水流通道连通的管接头,所述水流通道的横截面积大于所述管接头的横截面积。
  13. 如权利要求11所述的煲体组件,其中,所述水流通道的宽度大于或等于8mm,且小于或等于10mm,所述水流通道的深度大于或等于8mm,且小于或等于10mm。
  14. 如权利要求11所述的煲体组件,其中,所述前盖上设有第一焊筋,所述后盖上对应所述第一焊筋设有第二焊筋,所述第一焊筋的宽度大于或等于3.5mm,且小于或等于4.5mm;和/或,所述第二焊筋的宽度大于或等于3.5mm,且小于或等于4.5mm。
  15. 如权利要求14所述的煲体组件,其中,所述第一焊筋与所述第二焊筋之间形成焊接区,所述焊接区的深度大于或等于2mm,且小于或等于3mm。
  16. 如权利要求1所述的煲体组件,其中,所述煲体具有相对所述烹饪腔设置的第一侧及第二侧,所述第一侧用于安装水箱;所述煲体组件还包括控制板,所述控制板安装于所述煲体的第二侧,所述水路模块位于所述煲体的第一侧与第二侧之间。
  17. 一种烹饪器具,其中,所述烹饪器具包括如权利要求1至16中任意一项所述的煲体组件。
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