CN219895492U - Cooking cup and cooking machine - Google Patents

Cooking cup and cooking machine Download PDF

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Publication number
CN219895492U
CN219895492U CN202321138868.9U CN202321138868U CN219895492U CN 219895492 U CN219895492 U CN 219895492U CN 202321138868 U CN202321138868 U CN 202321138868U CN 219895492 U CN219895492 U CN 219895492U
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CN
China
Prior art keywords
air outlet
cup
outlet channel
piece
wall
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Active
Application number
CN202321138868.9U
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Chinese (zh)
Inventor
周忠建
唐路蒙
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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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Priority to CN202321138868.9U priority Critical patent/CN219895492U/en
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Publication of CN219895492U publication Critical patent/CN219895492U/en
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Abstract

The utility model provides a cooking cup and a cooking machine. The cooking cup comprises a crushing cup, a cup cover and an air outlet piece which is detachably assembled to the cup cover. The cup cover is arranged at the cup mouth of the crushing cup. The cup cover includes a top wall and an assembly portion extending downwardly from the top wall. The bottom end of the assembling part is assembled to the crushing cup. The assembly part is provided with an assembly hole. The air outlet piece is assembled to the assembly hole. The air outlet piece is provided with an air outlet channel. The air outlet channel is communicated with the space in the crushing cup and the external space. The air outlet piece is detachably assembled to the cup cover, can be detached for cleaning, and is convenient for cleaning.

Description

Cooking cup and cooking machine
Technical Field
The utility model relates to the field of small household appliances, in particular to a cooking cup and a cooking machine.
Background
With the increasing level of living of people, many different types of food processing machines appear on the market. The functions of the food processor mainly include, but are not limited to, the functions of making soybean milk, squeezing juice, making rice paste, mincing meat, shaving ice, making coffee, and/or preparing a facial mask. The food processor can comprise a soymilk machine, a stirrer, a broken wall food processor and other machines for crushing and stirring food. The related cooking machine comprises a host machine and a cooking cup. The host comprises a machine head positioned above the cooking cup. The cooking cup comprises a crushing cup and a cup cover arranged on the crushing cup. The cup cover is provided with an exhaust hole. The exhaust hole is easily stained and inconvenient to clean.
Disclosure of Invention
The utility model provides a cooking cup and a cooking machine, which are convenient for cleaning a cup cover.
The utility model provides a cooking cup which comprises a crushing cup, a cup cover and an air outlet piece detachably assembled to the cup cover, wherein the cup cover is covered on a cup mouth of the crushing cup, the cup cover comprises a top wall and an assembling part extending downwards from the top wall, the bottom end of the assembling part is assembled to the crushing cup, the assembling part is provided with an assembling hole, the air outlet piece is assembled to the assembling hole, the air outlet piece is provided with an air outlet channel, and the air outlet channel is communicated with a space in the crushing cup and an external space.
In some embodiments, the air outlet member in the above technical solution is detachably assembled to the cup cover, and can be detached for cleaning, so that cleaning is convenient; the air outlet piece is assembled to the assembly part of the cup cover, the cooking cup is laterally air-discharged, when the cooking cup is applied to a host machine provided with a machine head, steam discharged through an air outlet channel or overflowed food materials can be prevented from being sprayed to the host machine, and the host machine is easy to clean, so that the use experience of a user is improved.
Further, the air outlet channel comprises a first air outlet channel, a second air outlet channel and a third air outlet channel which are sequentially communicated, and an inlet of the first air outlet channel and an outlet of the third air outlet channel are both arranged downwards.
In some embodiments, the air outlet channel of the above technical solution is configured, when the liquid level reaches the inlet of the first air outlet channel, the air outlet member can defoam and make the liquid level drop, so as to improve the anti-overflow effect; meanwhile, when the food is stirred by the food processing cup, the stirred food can be prevented from being directly sprayed to the air outlet channel, so that the anti-overflow effect is improved; furthermore, when the food materials are whipped, the rising liquid level seals the inlet of the air outlet channel, so that the noise can be prevented from being discharged through the air outlet channel, and the noise generated when the food processor works is reduced.
Further, the air outlet piece comprises a retaining wall located in the air outlet channel, the first air outlet channel and the third air outlet channel are located on two sides of the retaining wall respectively, and the second air outlet channel is located above the retaining wall.
In some embodiments, the air outlet member of the above technical solution prolongs the path of the steam when discharging, and reduces the temperature of the steam when discharging, so as not to cause scalding; furthermore, the path of noise discharge is prolonged, and the noise of the food processor during operation is reduced.
Further, the air outlet piece comprises a top plate part, a plurality of side plate parts and a connecting wall, wherein the side plate parts extend from the top plate part, two of the side plate parts are respectively connected with two ends of the connecting wall, the top plate part, the side plate parts and the connecting wall enclose an air outlet channel, and the retaining wall extends from the connecting wall to the air outlet channel.
Further, the air outlet piece comprises a first retaining wall and a second retaining wall which are arranged on the top plate portion, and at least part of the assembling portion is located between the first retaining wall and the second retaining wall.
In some embodiments, the air outlet member of the above technical solution is stably positioned.
Further, the first retaining wall is located on the inner side of the assembly part and is annular.
In some embodiments, the first blocking wall of the above technical solution not only increases the stability of the air outlet member; meanwhile, when the liquid level reaches the inlet of the first exhaust channel, the first blocking wall can be used for defoaming and enabling the liquid level to drop so as to improve the anti-overflow effect.
Further, the crushing cup comprises a handle part, a plurality of air outlet pieces are arranged, and the air outlet pieces are respectively positioned at two sides of the handle part.
In some embodiments, the number of the air outlet pieces in the above technical solution is more than one, and the air outlet pieces are less prone to overflow without changing the total air outlet area; the air outlet pieces are respectively positioned at two sides of the handle part, so that operators can be prevented from being scalded by steam.
The embodiment of the utility model also provides a food processor, which comprises a host machine and the food processing cup, wherein the host machine comprises a motor, the food processing cup comprises a stirring piece positioned in the crushing cup, and the motor is arranged to drive the stirring piece to rotate so as to stir food materials.
Further, the host computer includes supporting part, aircraft nose and base, the aircraft nose is located the top of base, cooking cup is placed on the base, the motor set up in the aircraft nose, the host computer still including set up in the last adsorption piece of aircraft nose, the motor drive go up the adsorption piece and rotate, cooking cup include the arbor and set up in the lower adsorption piece of arbor, the stirring piece set up in the arbor, go up the adsorption piece with lean on the magnetic attraction drive of both down between the adsorption piece the stirring piece rotates.
In some embodiments, the food processor in the above technical scheme drives the stirring piece to rotate through the magnetic attraction between the upper adsorption piece and the lower adsorption piece, the rotation of the stirring piece is stopped and cannot be influenced by the rotation of the motor, and the motor can idle, so that even if the stirring piece is blocked and cannot rotate, the motor can still rotate normally, the damage of the motor caused by the too high temperature rise due to the blocked rotation is effectively prevented, the motor is effectively protected, the concentricity requirement on the stirring piece is low, and the position can be automatically corrected during high-speed operation; furthermore, the upper clutch and the lower clutch are not arranged, so that noise is effectively reduced.
Further, the host machine further comprises a coil arranged on the machine head, the machine can be switched between a first state and a second state, the upper suction part and the lower suction part drive the stirring part to rotate by the magnetic attraction force of the upper suction part and the lower suction part in the first state, and the coil is electrified to reduce or eliminate the magnetic attraction force between the upper suction part and the lower suction part in the second state.
In some embodiments, the magnetic attraction force of the upper suction member and the lower suction member in the first state is greater than the magnetic attraction force in the second state, and in the second state, the magnetic attraction force between the upper suction member and the lower suction member is smaller or even not, so that the upper suction member and the lower suction member are easier to push into or pull out of the cooking cup.
Drawings
Fig. 1 is an exploded view of a cuisine cup of an exemplary embodiment of the present utility model.
Fig. 2 is a schematic view of the air outlet of the serving cup of fig. 1.
Fig. 3 is a schematic cross-sectional view of the serving cup of fig. 1, wherein the serving cup is in a whipped condition.
Fig. 4 is an enlarged view of the circled portion at a of the cross-sectional schematic view shown in fig. 3.
Fig. 5 is another cross-sectional schematic view of the cuisine cup shown in fig. 1.
Fig. 6 is a schematic cross-sectional view of the cuisine cup shown in fig. 1, wherein the air outlet member is in an air-discharging state, and the direction of an arrow in the figure is air-discharging.
Fig. 7 is an enlarged view of the circled portion at B of the cross-sectional schematic view shown in fig. 6.
Fig. 8 is a schematic view of a cooking cup of the cooking machine according to the embodiment of the present utility model after being assembled to a host.
Fig. 9 is a schematic view of the food processor shown in fig. 8, wherein the food cup is not assembled to the main machine.
Fig. 10 is a schematic cross-sectional view of the food processor shown in fig. 8.
Fig. 11 is an enlarged view of the circled portion at C of the cross-sectional schematic view shown in fig. 10.
Fig. 12 is a schematic cross-sectional view of another embodiment of the food processor shown in fig. 8.
Detailed Description
Reference will now be made in detail to exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, the same numbers in different drawings refer to 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 utility model. Rather, they are merely examples of apparatus consistent with aspects of the utility model as detailed in the accompanying claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model. Unless defined otherwise, technical or scientific terms used herein should be given the ordinary meaning as understood by one of ordinary skill in the art to which this utility model belongs. The terms "first," "second," and the like in the description and in the claims, are not used for any order, quantity, or importance, but are used for distinguishing between different elements. Likewise, 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 "plurality" means two or more. Unless otherwise indicated, the terms "front," "rear," "lower," and/or "upper" and the like are merely for convenience of description and are not limited to one location or one spatial orientation. The word "comprising" or "comprises", and the like, means that elements or items appearing before "comprising" or "comprising" are encompassed by the element or item recited after "comprising" or "comprising" and equivalents thereof, and that other elements or items are not excluded. The terms "connected" or "connected," and the like, are not limited 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 or all possible combinations of one or more of the associated listed items.
The cooking cup 2 according to the embodiment of the present utility model may be assembled to a main machine 1 of a cooking machine for processing food materials, such as making soybean milk or juice or rice paste.
Referring to fig. 1 to 7, the cuisine cup 2 includes a pulverizing cup 21, a cup cover 22, and a gas outlet 23 detachably assembled to the cup cover 22. The cup cover 22 covers the cup mouth of the crushing cup 21. The cap 22 includes a top wall 221 and an assembly 222 extending downwardly from the top wall 221. The bottom end of the assembling portion 222 is assembled to the pulverizing cup 21. The assembly portion 222 is provided with an assembly hole 2221. The air outlet 23 is assembled to the assembly hole 2221. The air outlet member 23 is provided with an air outlet channel 231. The air outlet passage 231 communicates the space in the pulverizing cup 21 with the external space.
In some embodiments, the air outlet member 23 of the above technical solution is detachably assembled to the cup cover 22, and can be detached for cleaning, so as to facilitate cleaning; the air outlet member 23 is assembled to the assembling portion 222 of the cup cover 22, and the cooking cup 2 is laterally air-discharged, as shown in fig. 8, when the cooking cup 2 is applied to the main machine 1 provided with the machine head 11, steam discharged through the air outlet channel 231 or overflowed food is prevented from being sprayed to the main machine 1, the main machine 1 is easy to clean, and the use experience of a user is improved.
The air outlet member 23 may be made of plastic, and has a sealing member (not shown) thereon to seal the assembly hole 2221; the air outlet member 23 may also be made of soft material, such as silica gel or rubber, and the air outlet member 23 is sealed against the assembly portion 222 to seal the assembly hole 2221.
The air outlet channel 231 includes a first air outlet channel 2311, a second air outlet channel 2312 and a third air outlet channel 2313, which are sequentially communicated. The inlet of the first exhaust channel 2311 and the outlet of the third exhaust channel 2313 are all disposed downward. When the liquid level reaches the inlet of the first exhaust passage 2311, the air outlet member 23 can remove foam and lower the liquid level to improve the anti-overflow effect; meanwhile, when the cooking cup 2 is in a whipping state, the whipped food materials can be prevented from being directly sprayed to the air outlet channel 231, so that the anti-overflow effect is improved; furthermore, when the cooking cup 2 is in a whipping state, the rising liquid level seals the inlet of the air outlet channel 231, so that noise can be prevented from being discharged through the air outlet channel 231, and the noise generated when the cooking machine works can be reduced.
The gas outlet 23 includes a retaining wall 232 positioned within the gas outlet channel 231. The first exhaust channel 2311 and the third exhaust channel 2313 are respectively located at two sides of the retaining wall 232, and the second exhaust channel 2312 is located above the retaining wall 232. When the cooking cup 2 is in the exhaust state, the air outlet piece 23 prolongs the path of the steam during the exhaust, and reduces the temperature during the exhaust of the steam so as not to cause scalding; furthermore, the path of noise discharge is prolonged, and the noise of the food processor during operation is reduced.
The air outlet member 23 includes a top plate 233, a plurality of side plate 234, and a connecting wall 235. The plurality of side plate portions 234 are formed to extend from the top plate portion 233. Two ends of the connecting wall 235 are respectively connected to two of the side plate portions 234. The top plate 233, the side plates 234, and the connecting wall 235 define the outlet channel 231. The retaining wall 232 extends from the connecting wall 235 into the outlet channel 231.
The air outlet member 23 includes a first blocking wall 236 and a second blocking wall 237 provided on the top plate 233. At least a portion of the assembly 222 is positioned between the first wall 236 and the second wall 237 to increase the stability of positioning the air outlet 23.
When the air outlet member 23 is made of a soft material, it can be assembled into the assembly hole 2221 by a tight fit manner, and the first blocking wall 236 and the second blocking wall 237 can be omitted.
The first blocking wall 236 is located inside the assembly portion 222 and has a ring shape. The first blocking wall 236 not only increases the stability of the air outlet 23; meanwhile, when the liquid level is at the inlet of the first exhaust passage 2311, the first blocking wall 236 may defoam and lower the liquid level to improve the anti-overflow effect.
The pulverizing cup 21 includes a handle portion 211. The number of the air outlet pieces 23 is plural. The air outlet members 23 are respectively located at both sides of the handle portion 211. The number of the air outlet pieces 23 is more than one, so that the air outlet pieces 23 are less prone to overflow under the condition of not changing the total air outlet area; the air outlet members 23 are respectively located at two sides of the handle 211, so as to prevent the operator from being scalded by the steam.
Referring to fig. 6 and 8 to 11, the food processing machine according to the embodiment of the present utility model includes a main body 1 and the food processing cup 2. The host 1 comprises a motor 111. The cuisine cup 2 comprises a stirring piece 24 positioned in the crushing cup 21. The motor 111 is configured to drive the stirring member 24 to rotate so as to stir the food material.
The main unit 1 includes a support portion 10, a head 11, and a base 12. The handpiece 11 is positioned above the base 12. The cuisine cup 2 is placed on the base 12. The motor 111 is provided to the head 11. The host 1 further includes an upper suction member 112 provided to the head 11. The motor 111 drives the upper suction member 112 to rotate. The cooking cup 2 comprises a cutter shaft 25 and a lower adsorption piece 26 arranged on the cutter shaft 25. The stirring member 24 is provided on the cutter shaft 25. The stirring member 24 is driven to rotate by the magnetic attraction between the upper absorbing member 112 and the lower absorbing member 26.
The rotation of the motor 111 is not affected by stopping the rotation of the stirring piece 24, and the motor 111 can idle, so that even if the stirring piece 24 is blocked and cannot rotate, the motor 111 can still rotate normally, the damage of the motor 111 caused by too high temperature rise due to locked rotation is effectively prevented, and the motor 111 is effectively protected; meanwhile, the concentricity requirement on the stirring piece 24 is not high, and the position can be automatically corrected during high-speed operation; furthermore, the upper clutch and the lower clutch are not arranged, so that noise is effectively reduced.
When the motor 111 drives the stirring member 24 to rotate, the lower absorbing member 26 and the upper absorbing member 112 are absorbed together. Optionally, a gap may also exist between the lower absorbent member 26 and the upper absorbent member 112.
The main body 1 or the cooking cup 2 further comprises a heating device 121 for heating the food material in the pulverizing cup 21. Optionally, the heating device 121 is provided to the pulverizing cup 21. Alternatively, the heating device 121 may also be disposed on the base 12. When the heating device 121 is arranged on the crushing cup 21, the cooking cup 2 and the host 1 can be inserted through a coupler to supply power to the heating device 121.
The base 12 may be integrally provided with the support portion 10, or may be separately provided. The head 11 may be integrally provided with the support portion 10, or may be separately provided.
The main unit 1 further includes a coil (not shown) provided to the handpiece 11. The machine may be switched between a first state in which the upper suction member 112 and the lower suction member 26 are driven by the magnetic attraction between them to rotate the stirring member 24, and a second state in which the coil is energized to reduce or eliminate the magnetic attraction between the upper suction member 112 and the lower suction member 26.
The magnetic attraction force between the upper suction member 112 and the lower suction member 26 in the first state is greater than that in the second state, and in the second state, the magnetic attraction force between the upper suction member 112 and the lower suction member 26 is smaller or even not, so that the cooking cup 2 can be pushed in or pulled out easily.
When the cooking cup 2 is assembled to the host 1, the coil can be electrified to reduce or eliminate the magnetic attraction between the upper suction piece 112 and the lower suction piece 26 so as to facilitate pushing the cooking cup; when the cup is required to be taken after the food material is processed, the coil can be electrified to reduce or eliminate the magnetic attraction between the upper adsorption piece 112 and the lower adsorption piece 26 so as to facilitate pulling out the cooking cup 2.
The magnetic force between the upper absorbing member 112 and the lower absorbing member 26 satisfies the torque of 0.05n.m or more when rotating, so as to ensure that the motor 111 can drive the stirring member 24 to rotate, so as to stir the food. Because the torque between the upper suction member 112 and the lower suction member 26 is relatively large, when the cooking cup 2 needs to be pushed in or pulled out, the magnetic attraction between the upper suction member 112 and the lower suction member 26 needs to be reduced or eliminated, so that the cooking cup 2 can be pushed in or pulled out relatively easily.
The coil may be located in the upper suction member 112, or may be enclosed to the periphery of the upper suction member 112.
Optionally, the upper absorbing member 112 and the lower absorbing member 26 are electromagnets or magnets or made of materials that can be magnetically absorbed.
Alternatively, the energization time of the coil may be programmed to prevent the coil from being energized for a long time to protect the coil. Alternatively, the coil may be controlled to be energized by providing a control key or a detection device.
Referring to fig. 12, in another embodiment, the cuisine cup 2 includes an upper clutch 27 provided to the cutter shaft 25. The main unit 1 includes a lower clutch 14 provided to a motor shaft of the motor 111. When the cooking cup 2 is assembled to the main machine 1, the lower clutch 14 is assembled with the upper clutch 27, so that the motor 111 drives the stirring member 24 to rotate.
Alternatively, the pulverizing cup 21 is integrally provided with the main machine 1, the motor shaft of the motor 111 extends into the pulverizing cup 21, and the stirring member 24 is disposed on the motor shaft of the motor 111.
The present utility model is not limited to the above-mentioned embodiments, but is not limited to the above-mentioned embodiments, and any person skilled in the art can make some changes or modifications to the above-mentioned embodiments without departing from the scope of the present utility model.

Claims (10)

1. The utility model provides a cooking cup, its characterized in that, including smashing cup (21), bowl cover (22) and detachably assemble to air outlet piece (23) of bowl cover (22), bowl cover (22) lid establish to smash the rim of a cup of cup (21), bowl cover (22) include roof (221) and from roof (221) downwardly extending's equipment portion (222), the bottom equipment of equipment portion (222) extremely smash cup (21), equipment portion (222) are equipped with equipment hole (2221), air outlet piece (23) assemble to equipment hole (2221), air outlet piece (23) are equipped with air outlet channel (231), air outlet channel (231) intercommunication smash space and outside space in cup (21).
2. The cuisine cup according to claim 1, wherein the air outlet channel (231) comprises a first air outlet channel (2311), a second air outlet channel (2312) and a third air outlet channel (2313) which are sequentially communicated, and an inlet of the first air outlet channel (2311) and an outlet of the third air outlet channel (2313) are respectively arranged downwards.
3. The cuisine cup according to claim 2, wherein the air outlet piece (23) comprises a retaining wall (232) positioned in the air outlet channel (231), the first air outlet channel (2311) and the third air outlet channel (2313) are respectively positioned at two sides of the retaining wall (232), and the second air outlet channel (2312) is positioned above the retaining wall (232).
4. A cuisine cup according to claim 3, wherein the air outlet piece (23) comprises a top plate (233), a plurality of side plate parts (234) and a connecting wall (235), the side plate parts (234) are formed by extending from the top plate (233), two side plate parts (234) are respectively connected with two ends of the connecting wall (235), the top plate (233), the side plate parts (234) and the connecting wall (235) enclose an air outlet channel (231), and the retaining wall (232) is formed by extending from the connecting wall (235) into the air outlet channel (231).
5. The serving cup according to claim 4, wherein the air outlet (23) comprises a first baffle wall (236) and a second baffle wall (237) disposed on the top plate (233), and at least a portion of the assembly portion (222) is located between the first baffle wall (236) and the second baffle wall (237).
6. The serving cup according to claim 5, wherein the first blocking wall (236) is located inside the assembly portion (222) and is annular.
7. A cuisine cup according to any one of claims 1 to 6, wherein the crushing cup (21) comprises a handle part (211), a plurality of air outlet pieces (23) are arranged, and the plurality of air outlet pieces (23) are respectively arranged at two sides of the handle part (211).
8. A food processor comprising a main machine (1) and a food processing cup according to any one of claims 1 to 7, the main machine (1) comprising a motor (111), the food processing cup comprising a stirring member (24) located in the comminuting cup (21), the motor (111) being arranged to drive the stirring member (24) in rotation to whip food.
9. The food processor according to claim 8, wherein the host machine (1) comprises a supporting part (10), a machine head (11) and a base (12), the machine head (11) is located above the base (12), the food processing cup is placed on the base (12), the motor (111) is arranged on the machine head (11), the host machine (1) further comprises an upper adsorption piece (112) arranged on the machine head (11), the motor (111) drives the upper adsorption piece (112) to rotate, the food processing cup comprises a cutter shaft (25) and a lower adsorption piece (26) arranged on the cutter shaft (25), and the stirring piece (24) is arranged on the cutter shaft (25) and is driven to rotate by magnetic attraction between the upper adsorption piece (112) and the lower adsorption piece (26).
10. The food processor according to claim 9, wherein the main machine (1) further comprises a coil arranged on the machine head (11), the food processor is switchable between a first state in which the upper suction member (112) and the lower suction member (26) are driven to rotate by magnetic attraction between the two members, and a second state in which the coil is energized to reduce or eliminate the magnetic attraction between the upper suction member (112) and the lower suction member (26).
CN202321138868.9U 2023-05-09 2023-05-09 Cooking cup and cooking machine Active CN219895492U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321138868.9U CN219895492U (en) 2023-05-09 2023-05-09 Cooking cup and cooking machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321138868.9U CN219895492U (en) 2023-05-09 2023-05-09 Cooking cup and cooking machine

Publications (1)

Publication Number Publication Date
CN219895492U true CN219895492U (en) 2023-10-27

Family

ID=88437504

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321138868.9U Active CN219895492U (en) 2023-05-09 2023-05-09 Cooking cup and cooking machine

Country Status (1)

Country Link
CN (1) CN219895492U (en)

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