CN217161888U - Throw material mechanism and cooking equipment - Google Patents

Throw material mechanism and cooking equipment Download PDF

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Publication number
CN217161888U
CN217161888U CN202220240062.XU CN202220240062U CN217161888U CN 217161888 U CN217161888 U CN 217161888U CN 202220240062 U CN202220240062 U CN 202220240062U CN 217161888 U CN217161888 U CN 217161888U
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magnetic conductive
magnet
conductive sheet
tray
material box
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CN202220240062.XU
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Chinese (zh)
Inventor
谭永
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Shenzhen Topband Co Ltd
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Shenzhen Topband Co Ltd
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Priority to CN202220240062.XU priority Critical patent/CN217161888U/en
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Abstract

The utility model discloses be suitable for cooking equipment technical field, provide a throw material mechanism and cooking equipment, should throw material mechanism and include: a tray; at least one material box placed on the tray, wherein the side surface of the material box is provided with a first magnetic conductive sheet; the feeding arm is rotatably arranged on one side of the tray; the magnet assembly is arranged on the feeding arm and comprises at least one magnet module, and the magnet module comprises a magnet and a second magnetic conductive sheet adsorbed to the magnet; the driving device is in transmission connection with the feeding arm and can drive the feeding arm to rotate around a rotation axis so as to enable the second magnetic conductive sheet to be adsorbed to the first magnetic conductive sheet to drive the material box to overturn and feed or enable the second magnetic conductive sheet to be separated from the first magnetic conductive sheet to drive the material box to reset. The utility model provides a throw material mechanism and need not to set up the electro-magnet and adsorb the magazine, simplified the structure of throwing material mechanism, and realize with low costs.

Description

Feeding mechanism and cooking equipment
Technical Field
The utility model relates to a cooking equipment technical field, concretely relates to throw material mechanism and cooking equipment.
Background
The cost of the catering industry, particularly the cost of a chef, accounts for a considerable proportion of the total cost, so that the further improvement and the growth of the quality and the service of the catering industry are restricted to a certain extent, and meanwhile, as the physical labor intensity of the chef is high, the chef can easily suffer from the professional diseases of the chef, such as scapulohumeral periarthritis, lumbar muscle strain and the like after working for a long time. Therefore, the labor can be reduced, the labor cost is reduced, the product discharging speed is increased, the working environment of a chef is improved, the energy is saved, and the intelligent cooking equipment with consistent taste can effectively improve the problems.
In the prior art, a feeding mechanism of a cooking device mainly comprises a tray, a material box placed on the tray, a feeding arm arranged on one side of the material box, an electromagnet arranged on the feeding arm and a feeding motor, wherein iron sheets are arranged on the side surface of the material box; when the feeding mechanism of the cooking equipment cooks and feeds materials, the electromagnet is electrified to generate magnetic attraction, the electromagnet is adsorbed with an iron sheet on the side surface of the material box, and the feeding motor drives the feeding arm to rotate so as to drive the material box to overturn and feed the materials. Because the feeding mechanism of the cooking equipment adopts the electromagnet to adsorb the material box so as to drive the overturning and feeding, the electromagnet needs to be controlled, so that the feeding mechanism of the cooking equipment has a complex structure and high realization cost.
SUMMERY OF THE UTILITY MODEL
The utility model provides a throw material mechanism, the material mechanism of throwing that aims at solving prior art's cooking equipment has the structure complicacy, and realizes problem with high costs.
The utility model discloses a realize like this, provide a throw material mechanism for cooking equipment, include:
a tray;
the side surface of the material box is provided with a first magnetic conductive sheet;
the feeding arm is rotatably arranged on one side of the tray;
the magnet assembly is arranged on the feeding arm and comprises at least one magnet module, and the magnet module comprises a magnet and a second magnetic conductive sheet adsorbed to the magnet;
and the driving device is in transmission connection with the feeding arm and can drive the feeding arm to rotate around a rotating axis so as to enable the second magnetic conductive sheet to be adsorbed with the first magnetic conductive sheet to drive the material box to overturn and feed or enable the second magnetic conductive sheet to be separated with the first magnetic conductive sheet to drive the material box to reset.
Preferably, the magnet assembly further comprises a magnetic plate fixed on the feeding arm, and the magnet module is fixed on the magnetic plate in a magnetic adsorption mode.
Preferably, each magnet module includes two second magnetic conductive plates and one magnet, and the magnet is clamped between the two second magnetic conductive plates.
Preferably, the number of the magnet modules is at least two, and the magnet modules are sequentially arranged on the magnetic plate.
Preferably, the number of the material boxes is multiple, and the material boxes are sequentially placed on the tray along the horizontal direction; the feeding mechanism further comprises:
the horizontal moving device is connected with the tray and used for driving the tray to move along the horizontal direction, and the tray can drive the plurality of material boxes to move along the horizontal direction, so that the first magnetic conductive sheets on each material box can be opposite to the magnet module in sequence.
Preferably, the magazine comprises a magazine main body, a clamping groove is formed in the side face of the magazine main body, and the first magnetic conductive sheet is clamped in the clamping groove and fixed on the magazine main body through a fastener.
Preferably, the difference between the maximum distance from the rotating axis to the edge of the profile of the charging arm and the distance from the rotating axis to the first magnetic conductive sheet is greater than 0 and less than or equal to 10.
Preferably, the horizontal moving device is a screw rod module.
Preferably, the tray is provided with an isolation rib for isolating two adjacent material boxes; and or, the periphery of the tray is convexly provided with a limiting bulge used for limiting the material box.
The utility model also provides a cooking device, including foretell material mechanism of throwing.
The utility model provides a feeding mechanism sets up the magnet subassembly through throwing the material arm, the magnet subassembly includes at least one magnet module, the magnet module includes magnet, and with the second magnetic conductive piece that the magnet adsorbs, throw the material arm and can drive second magnetic conductive piece and adsorb or separate with the first magnetic conductive piece on the magazine mutually to realize magazine upset material feeding or realize magazine reset; and, utilize second magnetic conductive plate and first magnetic conductive plate to adsorb mutually or separate, avoid magnet and first magnetic conductive plate direct adsorption, be convenient for control magnetic force, both can make throw the material arm and stably drive the magazine upset and throw the material, and be convenient for throw the material arm and realize the magazine with the magazine separation and reset, cooking equipment's the mechanism of throwing need not to set up the electro-magnet and adsorbs the magazine, the structure of cooking equipment's the mechanism of throwing the material has been simplified, and magnet adds magnetic conductive plate magnetic attraction reinforce, the upset is thrown and is expected compact structure, and is efficient, and realize with low costs.
Drawings
Fig. 1 is a three-dimensional structure diagram of a feeding mechanism provided in the embodiment of the present invention;
fig. 2 is another three-dimensional structure diagram of the feeding mechanism provided by the embodiment of the present invention;
fig. 3 is an exploded perspective view of a feeding mechanism provided in an embodiment of the present invention;
fig. 4 is an exploded perspective view of a feeding arm and a magnet assembly of a feeding mechanism according to an embodiment of the present invention;
fig. 5 is a schematic side view of a feeding mechanism provided in an embodiment of the present invention;
fig. 6 is a three-dimensional structure diagram of a material box of the feeding mechanism provided by the embodiment of the invention;
fig. 7 is an exploded perspective view of a magazine of a feeding mechanism according to an embodiment of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The feeding mechanism provided by the embodiment of the utility model is provided with the magnet assembly through the feeding arm, the magnet assembly comprises at least one magnet module, the magnet module comprises a magnet and a second magnetic conductive sheet adsorbed with the magnet, and the feeding arm can drive the second magnetic conductive sheet to be adsorbed or separated with the first magnetic conductive sheet on the material box, so as to realize overturning feeding of the material box or realize resetting of the material box; and the second magnetic conductive sheet and the first magnetic conductive sheet are adsorbed or separated, so that direct adsorption of the magnet and the first magnetic conductive sheet is avoided, magnetic force is convenient to control, the feeding arm can stably drive the material box to overturn and feed materials, the feeding arm is convenient to separate from the material box to realize resetting of the material box, the feeding mechanism of the cooking equipment does not need to be provided with an electromagnet to adsorb the material box, the structure of the feeding mechanism of the cooking equipment is simplified, and the realization cost is low.
Referring to fig. 1 to 5, an embodiment of the present invention provides a feeding mechanism for a cooking apparatus, including:
a tray 1;
at least one material box 2 placed on the tray 1, wherein the side surface of the material box 2 is provided with a first magnetic conductive sheet 21;
a feeding arm 3 rotatably arranged at one side of the tray 1;
the magnet assembly 4 is arranged on the feeding arm 3, the magnet assembly 4 comprises at least one magnet module 41, and the magnet module 41 comprises a magnet 411 and a second magnetic conductive sheet 412 adsorbed to the magnet 411;
the driving device 5 is in transmission connection with the feeding arm 3, and the driving device 5 can drive the feeding arm 3 to rotate around a rotation axis o, so that the second magnetic conductive sheet 412 is adsorbed to the first magnetic conductive sheet 21 to drive the material box 2 to turn over for feeding or the second magnetic conductive sheet 412 is separated from the first magnetic conductive sheet 21 to drive the material box 2 to reset.
In the embodiment of the utility model provides an in, tray 1 is used for placing magazine 2. The feeding mechanism of the cooking device further comprises a control device connected with the driving device 5, and the control device is used for controlling the driving device 5 to drive the feeding arm 3 to rotate around a rotation axis o, so that the feeding arm 3 drives the material box 2 to turn over for feeding or the feeding arm 3 drives the material box 2 to reset. The driving device 5 can also drive the feeding arm 3 to rotate around the first direction so as to realize that the feeding arm 3 drives the material box 2 to overturn for feeding; the driving device 5 drives the feeding arm 3 to rotate around the second direction, so that the feeding arm 3 drives the material box 2 to reset, and the first direction is opposite to the second direction, namely the first direction is clockwise, the second direction is anticlockwise, or the first direction is anticlockwise, and the second direction is clockwise. The driving device 5 can also drive the feeding arm 3 to rotate around one direction, and the feeding arm 3 can drive the material box 2 to overturn and feed materials or the feeding arm 3 can drive the material box 2 to reset.
As an embodiment of the utility model, tray 1 is provided with the isolation rib 11 that is used for keeping apart two adjacent magazine 2, utilizes isolation rib 11 to keep apart adjacent magazine 2, makes two adjacent magazine 2 work influence each other.
As an embodiment of the present invention, the periphery of the tray 1 is convexly provided with a limiting protrusion 12 for limiting the magazine 2. On one hand, the material box 2 can be stably placed on the tray 1 by utilizing the limiting bulges 12; on the other hand, when the feeding arm 3 is separated from the material box 2, the limiting bulge 12 has a blocking effect on the material box 2, so that the feeding arm 3 is conveniently separated from the material box 2, and the material box 2 reliably falls on the tray 1.
As an embodiment of the present invention, the driving device 5 is a motor connected to the feeding arm 3. The control device controls the motor to rotate around the first direction, so that the feeding arm 3 is driven to rotate around the first direction, and the feeding arm 3 drives the material box 2 to turn over and feed materials; the control device controls the motor to rotate around the second direction, so that the feeding arm 3 is driven to rotate around the second direction, and the feeding arm 3 drives the material box 2 to reset.
The embodiment of the utility model provides an in, this cooking equipment throw material mechanism when throwing the material, drive arrangement 5 drive is thrown material arm 3 and is rotated around the first direction to make second magnetic conductive plate 412 on throwing material arm 3 adsorb mutually with the first magnetic conductive plate 21 of a magazine 2 on the tray 1, throw material arm 3 and continue to rotate around the first direction, so that throw material arm 3 and drive magazine 2 upset and throw the material. After the material box 2 finishes the turnover feeding, the driving device 5 controls the material feeding arm 3 to rotate around the second direction, so that the second magnetic conductive sheet 412 is separated from the first magnetic conductive sheet 21 of the material box 2, the material box 2 is driven to fall on the tray 1 again, the material box 2 is reset, and the turnover feeding action of the material box 2 is finished.
As an embodiment of the present invention, the number of the material boxes 2 is plural, and the plural material boxes 2 are sequentially placed on the tray 1 along the horizontal direction; the feeding mechanism further comprises:
the horizontal moving device 6 is connected with the tray 1 and used for driving the tray 1 to move along the horizontal direction, and the tray 1 can drive the plurality of material boxes 2 to move along the horizontal direction, so that the first magnetic conductive sheet 21 on each material box 2 can be opposite to the magnet module 41 in sequence. Of these, three magazines 2 are shown in fig. 1. Of course, the number of cartridges 2 may be set according to actual needs.
In this embodiment, the plurality of material boxes 2 are respectively used for containing different food materials. When the feeding mechanism of the cooking device feeds, the horizontal moving device drives the tray 1 to move along the horizontal direction so as to enable the plurality of material boxes 2 to move linearly in sequence, each material box 2 is sequentially stopped at a position corresponding to the magnet module 41, after each material box 2 is stopped at the position corresponding to the magnet module 41, the driving device 5 drives the feeding arm 3 to rotate around the first direction, so that the second magnetic conductive sheet 412 is adsorbed to the first magnetic conductive sheet 21, corresponding to the material box 2, on the tray 1, the driving device 5 continues to drive the feeding arm 3 to rotate around the first direction, so that the feeding arm 3 drives the material box 2 to turn over for a certain angle to realize feeding, and dishes in the material boxes 2 are fed into a pot body of the cooking device; after the material box 2 finishes feeding, the driving device 5 drives the feeding arm 3 to rotate around the second direction, so that the second magnetic conductive sheet 412 on the feeding arm 3 is separated from the first magnetic conductive sheet 21 on the material box 2, the material box 2 falls on the tray 1 again, the material box 2 is reset, and the material box 2 is turned over and fed; the horizontal moving device drives the tray 1 to move forwards for a certain distance along the horizontal direction, so that the next material box 2 is stopped at the position corresponding to the magnet module 41, and after the next material box 2 is stopped at the position corresponding to the magnet module 41, the feeding of the next material box 2 is completed according to the processes, and the process is circulated in sequence until the food materials in the plurality of material boxes 2 are poured into the pot body in sequence, so that the feeding action is completed.
As an embodiment of the present invention, the horizontal moving device 4 is a screw module. Wherein, on the tray 1 fixed lead screw module's removal slider 61, the motor of lead screw module removes slider horizontal migration, realizes that tray 1 moves along the horizontal direction. In the embodiment, the tray 1 is stably moved by using a screw rod module driving mode, so that the plurality of material boxes 2 are sequentially and stably moved linearly; moreover, each magazine 2 is conveniently and accurately controlled to be sequentially stopped at the position corresponding to the magnet module 41, and the position accuracy is high. Besides this embodiment, the horizontal moving device may be a linear motor, a rack and pinion mechanism, or the like, as long as the tray 1 can move in the horizontal direction.
Referring to fig. 6 and 7, as an embodiment of the present invention, the magazine 2 includes a magazine main body 20, a slot 201 is disposed on a side surface of the magazine main body 20, and the first magnetic conductive sheet 21 is clamped in the slot 201 and fixed on the magazine main body 20 by a fastener. Wherein the fastener is a screw. In this embodiment, the first magnetic conductive plate 21 is fixed on the main body of the magazine 2 by means of the clamping groove and the fastening member, so that the first magnetic conductive plate 21 is stably and reliably fixed, and the first magnetic conductive plate 21 and the magnet module 41 are reliably adsorbed. Moreover, the first magnetic conductive sheet 21 is convenient to disassemble and assemble.
As an embodiment of the utility model, the diapire slope setting of the relative magazine 2 main part of lateral wall 202 that is close to feeding arm 3 of magazine main part 20 can reduce the rotation angle when magazine 2 throws the material, and the edible material in the magazine 2 of being convenient for pours along the inclined plane, makes the edible material in the magazine 2 empty cleaner.
As an embodiment of the invention, the size of top opening 203 of magazine 2 is smaller than the size of the bottom opening of magazine 2. When the material box 2 is not used, the material box 2 can be stacked in sequence, so that the material box 2 is convenient to put in order.
Referring to fig. 5 again, as an embodiment of the present invention, a difference between the maximum distance b from the rotation axis o to the contour edge of the feeding arm 3 and the distance c from the rotation axis o to the first magnetic conductive sheet 21 is greater than 0 and less than or equal to 10, that is, 0 < b-c is less than or equal to 10. It can be understood that, a point on the rotation axis o is circular, the difference between the maximum radius of the circular motion track of the feeding arm 3 and the distance from the rotation axis o to the first magnetic conductive sheet 21 is greater than 0 and less than or equal to 10, so that the interference amount of the feeding arm 3 and the first magnetic conductive sheet 21 on the material box 2 can be reasonably controlled, the interference amount of the feeding arm 3 and the first magnetic conductive sheet 21 on the material box 2 is reduced, the interference amount is minimized while the magnetic adsorption strength is ensured, the tray 1 is prevented from being damaged due to too large interference amount, and the purpose of protecting the whole mechanism is achieved. In this embodiment, throw the material arm 3 and roughly be the V-arrangement, be convenient for control throw the interference volume of material arm 3 and the first magnetic conductive plate 21 on magazine 2, be convenient for realize that control throws the magnetic adsorption intensity of material arm 3.
Referring to fig. 4, as an embodiment of the present invention, the magnet assembly 4 further includes a magnetic plate 42 fixed to the material throwing arm 3, and the magnet module 41 is magnetically attached to the magnetic plate 42. Wherein the magnetic plate 42 is made of a permanent magnet. The magnet 411 and the second magnetic conductive plate 412 of each magnet module 41 are simultaneously attracted and fixed to the magnetic plate 42. By magnetically attaching and fixing the magnet module 41 to the magnetic plate 42, the magnetic properties of the magnet module 41 can be enhanced by the magnetic plate 42, and the magnet module 41 can be easily mounted.
As an embodiment of the utility model, the second magnetic conductive plate 412 is at least partially exposed in the surface of throwing the material arm 3, and inside the throwing the material arm 3 was placed in the magnet 411 of magnet module 41 was placed in completely, prevented that the magnet 411 of magnet module 41 from contacting with the first magnetic conductive plate 21 on magazine 2 to make magnet module 41 only adsorb or separate with the first magnetic conductive plate 21 on magazine 2, be convenient for control magnetic force size. Specifically, the feeding arm 3 is provided with a through hole 31 matched with the end of the second magnetic conductive sheet 412, and one end of the second magnetic conductive sheet 412 extends into the through hole 31 and is flush with the surface of the feeding arm 3. The second magnetic conductive plate 412 and the first magnetic conductive plate 21 are both iron plates.
As an embodiment of the present invention, each magnet module 41 includes two second magnetic conductive plates 412 and a magnet 411, and the magnet 411 is clamped between the two second magnetic conductive plates 412. Each magnet module 41 is attracted to the first magnetic conductive plate 21 by the two second magnetic conductive plates 412, so that when the magnet module 41 is attracted to the magazine 2, the magazine 2 is stressed in a balanced manner, and the magazine 2 can be turned over reliably.
As an embodiment of the present invention, the number of the magnet modules 41 is at least two, and each of the magnet modules 41 is sequentially disposed on the magnetic plate 42. Specifically, the magnet 411 and the second magnetic conductive piece 412 of each magnet module 41 are simultaneously distributed in parallel to the rotation axis o of the feeding arm 3, so that the magnetic attraction between the magnet module 41 and the first magnetic conductive piece 21 on the material box 2 can be conveniently controlled, and the magnet module 41 and the first magnetic conductive piece 21 of the material box 2 can be stably adsorbed in the overturning and feeding process of the material box 2, thereby realizing reliable feeding; moreover, after the feeding of the material box 2 is completed, the magnet module 41 is easily separated from the first magnetic conductive sheet 21 of the material box 2, so that the material box 2 is reset.
The number of the magnet modules 41 shown in fig. 4 is two, and the first magnetic conductive sheet 21 is adsorbed by the two magnet modules 41 at the same time, so that reliable feeding of the material box 2 and reliable resetting of the material box 2 can be realized. In addition, the number of the magnet modules 41 may be set to other numbers as necessary.
The embodiment also provides cooking equipment comprising the feeding mechanism of the embodiment. The embodiment of the utility model provides a pair of cooking equipment utilizes magnet subassembly 4 to replace electro-magnet adsorption magazine 2 through setting up the above-mentioned material mechanism of throwing, because cooking equipment's the material mechanism of throwing need not to set up the electro-magnet, has simplified cooking equipment's structure, and reduces cooking equipment's manufacturing cost.
The feeding mechanism of the cooking device provided by the embodiment of the utility model is provided with at least one magnet module by the feeding arm, the magnet module comprises a magnet and a second magnetic conductive sheet adsorbed with the magnet, and the feeding arm can drive the second magnetic conductive sheet of the magnet module to be adsorbed or separated with the first magnetic conductive sheet on the material box, so as to realize overturning and feeding of the material box or realize resetting of the material box; moreover, utilize second magnetic conductive plate and first magnetic conductive plate to adsorb mutually or separate, avoid the magnet of magnet module and the direct adsorption of first magnetic conductive plate on the magazine, the control of being convenient for is to the magnetic attraction of magazine, both can make the arm of throwing drive the magazine upset stably and throw the material, and the arm of throwing of being convenient for realizes with the magazine separation that the magazine resets, and cooking device's the mechanism of throwing need not to set up the electro-magnet and adsorbs the magazine, has simplified cooking device's the structure of throwing the material mechanism, and has realized with low costs.
The above description is only exemplary of the present invention and should not be construed as limiting the present invention, and any modifications, equivalents and improvements made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. A dosing mechanism for a cooking device, comprising:
a tray;
the side surface of the material box is provided with a first magnetic conductive sheet;
the feeding arm is rotatably arranged on one side of the tray;
the magnet assembly is arranged on the feeding arm and comprises at least one magnet module, and the magnet module comprises a magnet and a second magnetic conductive sheet adsorbed to the magnet;
and the driving device is in transmission connection with the feeding arm and can drive the feeding arm to rotate around a rotating axis so as to enable the second magnetic conductive sheet to be adsorbed with the first magnetic conductive sheet to drive the material box to overturn and feed or enable the second magnetic conductive sheet to be separated with the first magnetic conductive sheet to drive the material box to reset.
2. The feeding mechanism as claimed in claim 1, wherein the magnet assembly further comprises a magnetic plate fixed to the feeding arm, and the magnet module is magnetically attached to the magnetic plate.
3. The feeding mechanism as claimed in claim 1, wherein each of the magnet modules includes two of the second magnetic conductive plates and one of the magnets, and the magnet is sandwiched between the two of the second magnetic conductive plates.
4. The feeding mechanism as claimed in claim 2, wherein the number of the magnet modules is at least two, and each magnet module is sequentially disposed on the magnetic plate.
5. The feeding mechanism as claimed in claim 1, wherein the number of the material boxes is plural, and the plural material boxes are sequentially placed on the tray along a horizontal direction; the feeding mechanism further comprises:
the horizontal moving device is connected with the tray and used for driving the tray to move along the horizontal direction, and the tray can drive the plurality of material boxes to move along the horizontal direction, so that the first magnetic conductive sheets on each material box can be opposite to the magnet module in sequence.
6. The feeding mechanism as claimed in claim 1, wherein the magazine comprises a magazine body, a slot is provided on a side surface of the magazine body, and the first magnetic conductive sheet is clamped in the slot and fixed on the magazine body by a fastener.
7. The charging mechanism as claimed in claim 1, wherein the difference between the maximum distance from the rotation axis to the edge of the profile of the charging arm and the distance from the rotation axis to the first magnetic conductive plate is greater than 0 and less than or equal to 10.
8. A feeding mechanism according to claim 5, wherein the horizontal moving device is a screw module.
9. The feeding mechanism as claimed in claim 1, wherein the tray is provided with an isolation rib for isolating two adjacent cartridges; and or, the periphery of the tray is convexly provided with a limiting bulge used for limiting the material box.
10. A cooking device comprising a dosing mechanism as claimed in any one of claims 1 to 9.
CN202220240062.XU 2022-01-28 2022-01-28 Throw material mechanism and cooking equipment Active CN217161888U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220240062.XU CN217161888U (en) 2022-01-28 2022-01-28 Throw material mechanism and cooking equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220240062.XU CN217161888U (en) 2022-01-28 2022-01-28 Throw material mechanism and cooking equipment

Publications (1)

Publication Number Publication Date
CN217161888U true CN217161888U (en) 2022-08-12

Family

ID=82736635

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220240062.XU Active CN217161888U (en) 2022-01-28 2022-01-28 Throw material mechanism and cooking equipment

Country Status (1)

Country Link
CN (1) CN217161888U (en)

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