Cooking apparatus

By designing limiting grooves and limiting block structures for the turntable and mesh cylinder in the cooking device, the problem of the frying basket falling off during rotation is solved, achieving stable rotation and uniform frying, and simplifying the handling of food.

CN223601312UActive Publication Date: 2025-11-28HISENSE HOME APPLIANCES GRP CO LTD +1
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Patent Information

Application Number
CN202423186803.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-11-28
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

Some cooking appliances have frying baskets that are prone to detaching from the frying drum during rotation or have complex fixing structures, resulting in inconvenience in handling food and poor frying efficiency and uniformity.

Method used

A cooking device was designed, in which a turntable and a mesh tube are provided inside the frying drum. The turntable is provided with a first limiting groove and a limiting block. The mesh tube is detachably connected to the turntable by the cooperation of the limiting groove and the limiting block. The limiting block is fixed in the limiting groove by a magnet to achieve stable rotation. At the same time, the mesh tube is provided with mesh holes to facilitate the placement and removal of food.

Benefits of technology

This design achieves stable rotation of the mesh cylinder, improves the frying efficiency and uniformity of the ingredients, simplifies the process of placing and removing ingredients, and avoids the complexity of fixed structures.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a kind of cooking device, comprising: frying barrel, comprising: barrel body, frying cavity is formed in it;Rotating disc, is located in frying cavity;Net cylinder, is located on rotating disc and is located rotating disc close to the side of frying cavity opening;Drive module, drive rotating disc rotation;Rotating disc is formed with first limit slot, and the top of first limit slot is formed with first opening;First limit slot includes first limit surface and second limit surface;Along the direction of rotation of rotating disc, the top end of first limit surface is located on the side of the bottom end of first limit surface close to second limit surface, and the top end of second limit surface is located on the side of the bottom end of second limit surface close to first limit surface;Net cylinder is formed with first limit block, and first limit block is inserted into first limit slot or removed from first limit slot by first opening;When rotating disc drives net cylinder rotation, first limit surface and second limit surface limit first limit block in first limit slot. To make rotating disc and net cylinder connection stable, guarantee the stable rotation of net cylinder.
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Description

TECHNICAL FIELD

[0001] The utility model relates to kitchen equipment field especially, relate to a cooking device. BACKGROUND

[0002] The cooking device can include a cabinet and an inner container, and a cooking cavity can be formed in the inner container, which can cook food materials.

[0003] Some cooking devices have a frying function. The cooking device includes a frying barrel and a frying basket, the frying basket can be placed in the frying barrel, food materials can be placed in the frying basket, and the food materials can be fried, and the frying basket can rotate in the frying barrel to remove oil.

[0004] Some frying baskets cannot be taken out of the frying barrel, making it inconvenient to take out the fried food materials; some frying baskets can be taken out of the frying barrel, but the frying basket is easily removed from the frying barrel during rotation, resulting in continuous rotation, or the frying basket can be continuously rotated but the structure for fixing the frying basket in the frying barrel is relatively complex. Therefore, the present application proposes a cooking device. SUMMARY

[0005] The utility model aims at at least in a certain extent solves one of the technical problems among the related arts.

[0006] To this end, according to the embodiment of the present disclosure, a cooking device is provided, comprising:

[0007] The cabinet has a height direction from the bottom to the top;

[0008] The inner container is arranged in the cabinet, and a cooking cavity is formed in the inner container;

[0009] The frying barrel comprises:

[0010] The barrel body has a frying cavity formed therein, and a frying cavity opening is formed in the top of the barrel body, which communicates with the frying cavity;

[0011] The turntable is arranged in the frying cavity;

[0012] The mesh tube is arranged in the frying cavity, and the mesh tube is arranged on the turntable and located on the side of the turntable close to the frying cavity opening; a food material placing cavity is formed in the mesh tube; a placing cavity opening is formed in the top of the mesh tube, which communicates with the food material placing cavity; the mesh tube comprises:

[0013] The mesh tube wall has mesh holes formed therein, which communicate the food material placing cavity and the frying cavity;

[0014] A driving module is connected with the rotating disc, and the driving module drives the rotating disc to rotate, and the rotating shaft of the rotating disc is not perpendicular to the height direction of the box body;

[0015] The first limiting groove is formed on the rotating disc, and a first opening is formed on the top of the first limiting groove; the first limiting groove comprises a first limiting surface and a second limiting surface arranged oppositely, and the first limiting surface and the second limiting surface are arranged in sequence along the rotating direction of the rotating disc and located on the side of the first limiting groove; along the rotating direction of the rotating disc, the top end of the first limiting surface is located on the side of the bottom end of the first limiting surface close to the second limiting surface, and the top end of the second limiting surface is located on the side of the bottom end of the second limiting surface close to the first limiting surface;

[0016] The first limiting block is formed on the meshing cylinder, and the first limiting block is inserted into or removed from the first limiting groove through the first opening, so that the rotating disc and the meshing cylinder are detachably connected;

[0017] When the rotating disc is connected with the meshing cylinder and the rotating disc drives the meshing cylinder to rotate, the first limiting surface and the second limiting surface limit the first limiting block in the first limiting groove.

[0018] The first limiting groove comprises a first limiting surface and a second limiting surface, and along the rotating direction of the rotating disc, the top end of the first limiting surface is located on the side of the bottom end of the first limiting surface close to the second limiting surface, and the top end of the second limiting surface is located on the side of the bottom end of the second limiting surface close to the first limiting surface, so that when the rotating disc drives the meshing cylinder to rotate, the first limiting surface and the second limiting surface can limit the first limiting block in the first limiting groove, and the first limiting block cannot be removed from the first limiting groove, so that the connection between the rotating disc and the meshing cylinder is stable, the stable rotation of the meshing cylinder is ensured, and the oil frying efficiency and uniformity of the food materials in the meshing cylinder can be improved.

[0019] According to the embodiments of the present disclosure, the first limiting surface and the second limiting surface are inclined planes. The first limiting surface and the second limiting surface are inclined planes, which facilitates the installation of the first limiting block in the first limiting groove and the removal of the first limiting block from the first limiting groove, and at the same time, the first limiting surface and the second limiting surface can block the first limiting block in the height direction of the box body, so that the first limiting block cannot be removed from the first limiting groove.

[0020] According to the embodiments of the present disclosure, the first limiting block comprises a third limiting surface and a fourth limiting surface arranged oppositely, and the third limiting surface and the fourth limiting surface are arranged in sequence along the rotating direction of the meshing cylinder and located on the side of the first limiting block;

[0021] The top end of the third limiting surface is located on the side of the bottom end of the third limiting surface close to the fourth limiting surface in the rotation direction of the mesh cylinder, and the top end of the fourth limiting surface is located on the side of the bottom end of the fourth limiting surface close to the third limiting surface.

[0022] The first limiting block is provided with the third limiting surface and the fourth limiting surface, so that the third limiting surface and the fourth limiting surface are matched with the first limiting surface and the second limiting surface respectively, the first limiting block is facilitated to be installed in the first limiting groove and removed from the first limiting groove, and meanwhile the first limiting surface and the second limiting surface can block the first limiting block in the height direction of the box body, so that the first limiting block cannot be taken out of the first limiting groove.

[0023] According to the embodiment of the present disclosure, the rotating disc comprises a first connecting block, and the first limiting groove is formed on the first connecting block;

[0024] The first connecting block comprises a first connecting block top surface located at the top of the first connecting block, and the first opening is located on the first connecting block top surface, so that the first limiting block is facilitated to be inserted into the first limiting groove and removed from the first limiting groove in the height direction of the box body, and the connection between the first limiting groove and the first limiting block is facilitated.

[0025] According to the embodiment of the present disclosure, the side of the first limiting groove is provided with a second opening, the first connecting block comprises a connecting block side peripheral surface, the second opening is arranged on the connecting block side peripheral surface, and the first opening and the second opening are communicated, so that the first limiting block is facilitated to be inserted into the first limiting groove.

[0026] According to the embodiment of the present disclosure, the mesh cylinder comprises a mesh cylinder bottom wall, a second positioning groove is formed on the mesh cylinder bottom wall, the bottom end of the second positioning groove is open, and the first connecting block is inserted into the second positioning groove.

[0027] The second positioning groove comprises a second positioning groove side peripheral wall located on the side of the second positioning groove, and the first limiting block is connected to the second positioning groove side peripheral wall.

[0028] The first connecting block is inserted into the second positioning groove, so that positioning is formed and the mesh cylinder is facilitated to be installed on the rotating disc, and the first limiting block is arranged on the second positioning groove side peripheral wall, so that the first limiting block is facilitated to be inserted into the first limiting groove.

[0029] According to the embodiment of the present disclosure, a cooking device is further provided.

[0030] The box body has a height direction from the bottom to the top of the box body;

[0031] A liner is arranged in the box body, and a cooking cavity is formed in the liner;

[0032] The deep fryer comprises:

[0033] A deep fry cavity is formed in the deep fryer body, and a deep fry cavity opening is formed in the top of the deep fryer body and communicates with the deep fry cavity;

[0034] A rotating disc is arranged in the deep fry cavity;

[0035] A mesh cylinder is arranged in the deep fry cavity, and the mesh cylinder is arranged on the rotating disc and located on the side of the rotating disc close to the deep fry cavity opening; a food material placing cavity is formed in the mesh cylinder; a placing cavity opening is formed in the top of the mesh cylinder and communicates with the food material placing cavity; the mesh cylinder comprises:

[0036] A mesh cylinder wall is formed with mesh holes, and the mesh holes communicate the food material placing cavity and the deep fry cavity;

[0037] A driving module is connected with the rotating disc, the driving module drives the rotating disc to rotate, and the rotation axis of the rotating disc is not perpendicular to the height direction of the box body;

[0038] A first limiting groove is formed in the rotating disc, and a first opening is formed in the top of the first limiting groove;

[0039] A first limiting block is formed in the mesh cylinder, and the first limiting block is inserted into or removed from the first limiting groove through the first opening, so that the rotating disc and the mesh cylinder are detachably connected;

[0040] The deep fryer further comprises:

[0041] A magnet is connected with the mesh cylinder, and the magnet is connected with the rotating disc, so that the magnet limits the first limiting block in the first limiting groove.

[0042] The first limiting groove and the first limiting block are arranged to connect the rotating disc and the mesh cylinder and to drive the mesh cylinder to rotate with the rotating disc; the magnet is arranged to limit the first limiting block in the first limiting groove, so that the first limiting block does not come out of the first limiting groove when the mesh cylinder is driven to rotate with the rotating disc, the connection between the rotating disc and the mesh cylinder is stable, the rotation of the mesh cylinder is stable, and the deep frying efficiency and uniformity of the food material in the mesh cylinder are improved.

[0043] According to the embodiment of the present disclosure, the magnet is fixedly connected with the mesh cylinder, and the magnet is magnetically connected with the rotating disc, which facilitates the fixation of the magnet and makes the appearance of the rotating disc better when the mesh cylinder is taken off from the rotating disc.

[0044] According to the embodiment of the present disclosure, the rotating disc comprises a first connecting block, and a first limiting slot is formed on the first connecting block.

[0045] The first connecting block comprises a first connecting block top surface located at the top of the first connecting block, and the first opening is located on the first connecting block top surface. The magnet is magnetically connected with the first connecting block top surface, facilitating the connection of the magnet with the rotating disc.

[0046] According to the embodiment of the present disclosure, the meshing tube comprises a meshing tube bottom wall and a meshing tube connecting column, the top end of the meshing tube connecting column is connected with the meshing tube bottom wall, and the magnet is connected on the meshing tube connecting column, facilitating the fixation of the magnet on the meshing tube.

[0047] According to the embodiment of the present disclosure, a second positioning slot is formed on the meshing tube bottom wall, the bottom end of the second positioning slot is open, the second positioning slot has a positioning slot top wall located at the top of the second positioning slot, the meshing tube connecting column is located in the second positioning slot, and the top end of the meshing tube connecting column is connected with the positioning slot top wall, facilitating the connection of the meshing tube with the rotating disc through the magnet and the connection structure of the magnet and the meshing tube being arranged to be more concealed and have good appearance.

[0048] According to the embodiment of the present disclosure, the side of the first limiting slot is provided with a second opening; the first connecting block comprises a connecting block side peripheral surface, and the second opening is arranged on the connecting block side peripheral surface, and the first opening and the second opening are communicated.

[0049] The first connecting block is inserted in the second positioning slot; the second positioning slot comprises a second positioning slot side peripheral wall located at the side of the second positioning slot, and the first limiting block is connected on the second positioning slot side peripheral wall.

[0050] The first connecting block is inserted in the second positioning slot, so that positioning is formed and the meshing tube can be conveniently installed on the rotating disc; the first limiting block is located on the second positioning slot side peripheral wall, facilitating the insertion of the first limiting block in the first limiting slot.

[0051] According to the embodiment of the present disclosure, the rotating disc comprises a rotating disc support plate, the rotating disc support plate comprises a rotating disc support surface located at the top of the rotating disc support plate, the meshing tube is arranged on the rotating disc support surface, and the first connecting block is arranged on the rotating disc support plate, so that the meshing tube can be prevented from contacting the inner bottom surface of the barrel body and the meshing tube can be prevented from scratching the coating on the inner bottom wall of the barrel body.

[0052] According to the embodiment of the present disclosure, the first positioning groove is provided on the rotating disc, the bottom end of the first positioning groove is open, the bottom end of the first positioning groove is located on the bottom surface of the rotating disc support plate, the top end of the first positioning groove is formed on the first connecting block, the first positioning groove is in communication with the first limiting groove, and the weight of the rotating disc can be reduced.

[0053] According to the embodiment of the present disclosure, the first positioning groove comprises a first positioning groove top wall located at the top end of the first positioning groove; and the rotating disc comprises a first connecting column inserted into the first positioning groove, and the top end of the first connecting column is connected with the first positioning groove top wall.

[0054] The driving module comprises a driving shaft and a driving unit, the top end of the driving shaft is connected with the first connecting column, and the driving unit drives the driving shaft to rotate so as to drive the first connecting column to rotate.

[0055] The first connecting column is inserted into the first positioning groove, the top end of the first connecting column is connected with the first positioning groove top wall, the top end of the driving shaft is connected with the first connecting column, and the driving module is convenient for driving the rotating disc to rotate. BRIEF DESCRIPTION OF DRAWINGS

[0056] Figure 1 is a three-dimensional view of a cooking device according to an embodiment of the present application;

[0057] Figure 2 is a partial structural view of a cooking device according to an embodiment of the present application;

[0058] Figure 3 is a partial structural view of a cooking device according to an embodiment of the present application;

[0059] Figure 4 is a top view of a partial structure of a cooking device according to an embodiment of the present application;

[0060] Figure 5 is a partial structural view of a cooking device according to an embodiment of the present application;

[0061] Figure 6 is an exploded view of a partial structure of a cooking device according to an embodiment of the present application;

[0062] Figure 7 is a partial structural view of a cooking device according to an embodiment of the present application;

[0063] Figure 8 is Figure 7 is an enlarged view of a partial structure at A in FIG. 13;

[0064] Figure 9is a partial structural exploded view of another perspective of the cooking device according to an embodiment of the present application;

[0065] Figure 10 is a structural view of a turntable according to an embodiment of the present application;

[0066] Figure 11 is a structural view of a mesh tube according to an embodiment of the present application;

[0067] Figure 12 is another structural view of a mesh tube according to an embodiment of the present application;

[0068] Figure 13 is a partial structural sectional view of another perspective of the cooking device according to an embodiment of the present application;

[0069] Figure 14 is a partial structural view of another perspective of the cooking device according to an embodiment of the present application;

[0070] Figure 15 is Figure 14 is an enlarged view of a partial structure at B in FIG. 15B;

[0071] Figure 16 is a partial structural view of another perspective of the cooking device according to an embodiment of the present application;

[0072] Figure 17 is a partial structural sectional view of another perspective of the cooking device according to an embodiment of the present application;

[0073] Figure 18 is a partial structural sectional view of another perspective of the cooking device according to an embodiment of the present application;

[0074] Figure 19 is a partial structural view of another perspective of the cooking device according to an embodiment of the present application;

[0075] Figure 20 is a partial structural view of another perspective of the cooking device according to an embodiment of the present application;

[0076] Figure 21 is a top view of a partial structure of the cooking device according to an embodiment of the present application;

[0077] Figure 22 is a top view of a partial structure of another perspective of the cooking device according to an embodiment of the present application;

[0078] Figure 23 is a partial structural view of another perspective of the cooking device according to an embodiment of the present application;

[0079] Figure 24 is a rear view of a partial structure of the cooking device according to an embodiment of the present application.

[0080] In the above figures: 1, cabinet; 10, cooking cavity; 11, inner container; 111, cooking cavity opening; 12, cabinet door; 13, heat dissipation air duct; 131, heat dissipation fan; 132, heat dissipation fan cover; 14, support top plate; 15, support back plate; 16, water storage box; 2, drawer box; 201, first side end; 202, second side end; 203, drawer box back plate; 2031, first back plate through hole; 21, drawer; 212, drawer back plate; 2121, second back plate through hole; 3, frying barrel; 30, frying cavity; 303, air outlet; 305, magnet; 31, barrel body; 311, position avoiding groove; 3111, shaft through hole; 312, first positioning boss; 313, vacuum joint; 314, support rib; 3191, frying cavity opening; 32, barrel cover; 33, mesh cylinder; 332, second positioning groove; 3321, second positioning groove side wall; 3322, positioning groove top wall; 334, mesh hole; 3351, food material placement cavity; 3352, placement cavity opening; 3353, mesh cylinder wall; 3354, first limiting block; 33541, third limiting surface; 33542, fourth limiting surface; 3355, mesh cylinder connecting column; 3356, mesh cylinder top cover; 34, turntable; 341, first connecting column; 343, first positioning groove; 3431, first positioning groove top wall; 346, first connecting block; 3461, first limiting groove; 34611, first limiting surface; 34612, second limiting surface; 3462, first opening; 3463, first connecting block top surface; 3464, second opening; 3465, connecting block side surface; 347, turntable support plate; 3471, turntable support surface; 36, elastic sealing element; 362, inner wall portion; 363, outer wall portion; 3641, via hole; 365, shielding cover; 3651, air suction inlet; 3652, oil return hole; 366, extension portion; 3671, oil return cavity; 3672, elastic positioning column; 3673, abutting portion; 3674, sealing element groove; 4, vacuumizing module; 41, vacuum pump; 42, condenser; 4261, condensation air inlet; 4262, condensation air outlet; 4263, cooling water inlet; 4264, cooling water outlet; 461, cooling water inlet pipe; 462, cooling water outlet pipe; 471, condensation water tank; 5, driving module; 51, driving shaft; 511, second transmission wheel; 512, connecting hole; 52, driving unit; 521, first transmission wheel; 53, transmission belt; 54, shaft mounting seat; 540, transmission cavity; 541, upper mounting seat; 542, lower mounting seat; 543, first bearing; 544, second bearing; 545, accommodating groove; 55, sealing sleeve; 551, longitudinal sealing portion; 552, transverse sealing portion; 56, support block; 72, oil storage box; 761, oil storage tank; 82, drainage box; 91, air cooling module; 911, heat sink; 912, first fan; 921, circulating water pump; 9211, first water inlet; 9212, second water inlet; 925, water supply pipe; 9251, first section water pipe;9252、second water pipe; 926, elastic member. DETAILED DESCRIPTION

[0081] For the purpose of making the present application and the embodiments more clear, the following will combine the drawings in the exemplary embodiments of the present application to make a clear and complete description of the exemplary embodiments of the present application. Obviously, the described exemplary embodiments are only a part of the embodiments of the present application, but not all the embodiments.

[0082] It should be noted that the brief description of the terms in the present application is only for the convenience of understanding the subsequently described embodiments, and is not intended to limit the embodiments of the present application. Unless otherwise specified, these terms should be understood according to their ordinary and general meanings.

[0083] The terms "first", "second", "third" and the like in the specification and claims of the present application and the above drawings are used to distinguish similar or similar objects or entities, and do not necessarily mean to limit the specific order or sequence, unless otherwise noted. It should be understood that the terms used in this way can be interchanged under appropriate circumstances.

[0084] The terms "include" and "have" and any variations thereof are intended to cover but not exclusive inclusion, for example, a product or device including a series of components does not have to be limited to all the components clearly listed, but can include other components not clearly listed or inherent to these products or devices.

[0085] The present application proposes a cooking device, which will be described below with reference to the accompanying drawings.

[0086] Reference Figures 1-2 The cooking device can include a cabinet 1. The cabinet 1 is configured as a housing of the cooking device. The cabinet 1 can be a hollow structure in a rectangular shape. It should be noted that in other embodiments, the cabinet 1 can also adopt other shapes of housing structure. The specific shape of the cabinet 1 can be adjusted as needed, which is not limited here.

[0087] The bottom of the cabinet 1 to the top of the cabinet 1 can be the height direction of the cabinet 1. The cabinet 1 can have a length direction. The side end of the cabinet 1 to the other side end of the cabinet 1 can be the length direction of the cabinet 1. The cabinet 1 can have a front-rear direction. The front of the cabinet 1 can be the side of the cabinet 1 facing the user. Among the three of the height direction, the length direction and the front-rear direction of the cabinet 1, any two directions can be perpendicular to each other.

[0088] In the present application, reference Figures 1-2 The cooking device can include an inner container 11. The inner container 11 can be arranged in the cabinet 1. The inner container 11 can form a cooking cavity 10 therein. The cooking cavity 10 can be used for high-temperature cooking treatment of food in the form of steaming, baking, etc.

[0089] The inner container 11 can be formed with a cooking cavity opening 111. The cooking cavity opening can be located at the front end of the inner container 11. The cooking cavity opening 111 can be located at the front end of the cooking cavity 10. The cooking cavity opening can be in communication with the cooking cavity 10.

[0090] In the present application, the cooking device can include a cabinet door 12. The cabinet door 12 can be movably connected to the front side of the cabinet. The cabinet door 12 can be rotatably connected to the cabinet 1. The cabinet door 12 can be provided at the front end of the cooking cavity opening, and the cabinet door 12 is used to open or close the cooking cavity opening 111.

[0091] In the present application, with reference to Figures 1-2 , a heater (not shown in the figure) can be provided in the cabinet 1. The heater can be used to create a high-temperature environment in the cooking cavity 10, thereby enabling the cooking device to achieve the functions of baking and roasting.

[0092] In the present application, the heater can be provided on the inner wall of the inner container 11, such as the top of the cooking cavity 10.

[0093] It should be noted that the heater can also be provided on the back, bottom, or other side walls of the cooking cavity 10.

[0094] In the present application, with reference to Figures 1-2 , a heat dissipation air duct 13 can be provided in the cabinet 1. One end of the heat dissipation air duct 13 can be in communication with the inside of the cabinet 1. The other end of the heat dissipation air duct 13 can be in communication with the outside space of the cabinet 1. The heat dissipation air duct 13 can be used to exhaust air to the outside of the cabinet 1 for heat dissipation, and the heat in the cabinet 1 can be discharged to the outside of the cabinet 1 through the heat dissipation air duct 13, thereby achieving the heat dissipation function of the inside of the cabinet 1.

[0095] In the present application, with reference to Figures 1-2 , a heat dissipation fan 131 can be provided in the heat dissipation air duct 13. The heat dissipation fan 131 can be used to provide air power. When the heat dissipation fan 131 is running, the air inlet end of the heat dissipation air duct 13 can extract air from the inside of the cabinet 1, and exhaust air to the outside of the cabinet 1 through the air outlet end of the heat dissipation air duct 13 for heat dissipation, thereby achieving the heat dissipation function of the inside of the cabinet 1.

[0096] In the present application, with reference to Figures 1-2 , the end of the heat dissipation air duct 13 in communication with the cabinet 1 can be an air inlet end. The end of the heat dissipation air duct 13 in communication with the outside of the cabinet 1 can be an air outlet end. The heat dissipation fan 131 can be provided at the air inlet end of the heat dissipation air duct 13. The heat dissipation fan 131 can also be provided at other positions of the heat dissipation air duct 13.

[0097] In the present application, with reference to Figures 1-2The heat dissipation air duct 13 can be arranged at the top region of the cabinet 1. The heat dissipation air duct 13 can be arranged above the top of the cooking cavity 10. The heat dissipation air duct 13 can be arranged above the top of the inner container 11. The heat dissipation air duct 13 can also be arranged at other positions of the cooking cavity 10 and the inner container 11. The heat dissipation air duct 13 can also be arranged at other positions in the cabinet 1.

[0098] In the present application, reference is made to Figures 1-2 A support top plate 14 can be arranged in the cabinet 1. The support top plate 14 can be arranged above the inner container 11 at intervals. The heat dissipation air duct 13 can be arranged above the top of the support top plate 14.

[0099] In the present application, reference is made to Figures 1-2 A heat dissipation air cover 132 can be arranged on the top surface of the support top plate 14. The heat dissipation air cover 132 and the support top plate 14 can form the heat dissipation air duct 13 therebetween. At this time, the rear end of the heat dissipation air cover 132 can serve as the air inlet end of the heat dissipation air duct 13. The heat dissipation air fan 131 can be arranged at the rear end of the heat dissipation air cover 132. The front end of the heat dissipation air cover 132 can face the front side of the cabinet 1 and serve as the air outlet end of the heat dissipation air duct 13.

[0100] In the present application, reference is made to Figures 1-2 A support back plate 15 can be arranged in the cabinet 1. The support back plate is arranged in the cabinet. The support back plate 15 can be arranged behind the inner container 11.

[0101] The bottom of the support back plate 15 can be supported on the cabinet 1. The top of the support back plate 15 can be connected to the rear end of the support top plate 14. The front end of the support top plate 14 can be fixed on the cabinet 1, thereby stably fixing the support top plate 14 on the upper side of the inner container 11.

[0102] In the present application, reference is made to Figures 1-2 A steam generator (not shown in the figure) can be arranged in the cabinet 1. The steam generator can be arranged outside the inner container 11. The steam generator can be in communication with the cooking cavity 10 in the inner container 11 through a steam pipeline, thereby creating a high-temperature steam environment in the cooking cavity 10 of the inner container 11 to realize the steam cooking function in the cooking cavity 10.

[0103] In the present application, the steam generator can be arranged on the support back plate 15. The steam generator can also be directly arranged on the rear wall of the inner container 11.

[0104] In the present application, reference is made to Figures 1-2 The cooking device can include a water storage box 16. The inside of the water storage box 16 can be used for water storage. The water storage box 16 can be arranged in the cabinet 1. The water storage box 16 can be used to supply water to the steam generator, the inside of the cooking cavity 10, etc.

[0105] In the present application, the water storage box 16 can be arranged on the top surface of the support top plate 14. The water storage box 16 can also be arranged at other positions in the cabinet 1.

[0106] In the present application, with reference to Figures 1-3 , the cooking device can include a drawer box 2. A drawer 21 can be arranged in the drawer box 2. The drawer 21 can be arranged in the drawer box 2 in a pullable manner. The front end of the drawer box 2 can be provided with a drawer opening (not labeled in the figure). The drawer 21 can be slidably pushed into the inside of the drawer box 2 through the drawer opening. The drawer 21 can also be slidably pulled out from the drawer opening.

[0107] In the present application, with reference to Figures 1-3 , the drawer box 2 can be arranged outside the inner container 11. The drawer box 2 can be arranged below the bottom of the cabinet 1, so that the drawer 21 can be arranged below the bottom of the inner container 11.

[0108] It should be noted that the drawer box 2 can also be arranged inside the cabinet 1. The drawer box 2 can be arranged below the bottom of the inner container 11. Alternatively, in other embodiments, the drawer box 2 can also be integrally formed with the cabinet 1.

[0109] In the present application, the cooking device can include a vacuum frying system. The vacuum frying system can be used for vacuum low-temperature frying of food materials. Compared with conventional frying, the oil temperature in the vacuum low-temperature frying process is generally controlled between 80°C and 100°C, which is much lower than the 160°C to 230°C in conventional frying. Such low-temperature processing can effectively reduce the damage to heat-sensitive nutrients in food, such as vitamins and antioxidants, thereby better preserving the nutritional value of the food.

[0110] It should be noted that in a vacuum environment, the boiling point of water in food is reduced, and water can evaporate quickly, greatly shortening the drying time. Not only can the production efficiency be improved, but also the undesirable changes that may occur in food due to long-term high-temperature processing can be reduced, and the food can be crisp and delicious.

[0111] Because of frying in a vacuum state, the water in the food can be directly converted into steam and escape, rather than being absorbed in large quantities. Therefore, the oil content of vacuum-fried food can be significantly lower than that of traditional fried food, generally between 10% and 20%, which helps to provide a healthier dietary option.

[0112] Low-temperature processing and rapid dehydration help to maintain the original color and flavor of the food. The aroma and flavor components in the food are not easily lost in a vacuum state, but are concentrated due to the reduction of water, making the product taste crisp and the flavor rich.

[0113] During the vacuum frying process, because the water content is very low and the process is carried out in an oxygen-free environment, the growth of microorganisms can be effectively inhibited, the shelf life of the food can be extended, and the food can be easily stored and transported.

[0114] The technology is suitable for a variety of food raw materials, including but not limited to fruits, vegetables, nuts, aquatic products and livestock and poultry meat, and can produce leisure foods with unique taste and rich nutrition.

[0115] In the present application, the vacuum frying system can be arranged inside the drawer 21. It should be noted that in other embodiments, the vacuum frying system can also be arranged in the cabinet 1, and the vacuum frying system can be arranged in other areas outside the inner container 11.

[0116] In the present application, referring to Figure 4 , the vacuum frying system can include a frying barrel 3. The frying barrel 3 can form a frying cavity 30 inside. The frying cavity 30 can be used to place oil, and the oil can be heated to fry the food in the frying cavity 30.

[0117] In the present application, referring to Figure 4 , the vacuum frying system can include a vacuumizing module 4. The vacuumizing module 4 can be in communication with the frying cavity 30 in the frying barrel 3. The vacuumizing module 4 is used to vacuumize the frying cavity 30. Therefore, the food in the frying cavity 30 can be subjected to vacuum low-temperature frying treatment.

[0118] In the present application, referring to Figures 5-6 , the frying barrel 3 can include a barrel body 31. The barrel body 31 can form a frying cavity 30 inside. The top of the barrel body can form a frying cavity opening 3191. The frying cavity opening can be in communication with the frying cavity.

[0119] In the present application, referring to Figures 5-6 , the frying barrel 3 can include a barrel cover 32. The barrel cover 32 can be connected to the top of the barrel body. The barrel cover 32 is used to open or close the frying cavity opening 3191. Among them, the barrel cover 32 can be movably covered on the top of the barrel body 31.

[0120] In the present application, the barrel cover 32 can be rotatably covered on the top of the barrel body 31. The barrel cover 32 can be rotated relative to the barrel body 31 to open or close the frying cavity opening 3191, thereby opening or closing the frying cavity 30. The barrel cover 32 can also be detachably covered on the top of the barrel body 31.

[0121] In the present application, when the drawer 21 is pulled out of the drawer box 2, the barrel cover 32 can be exposed to the drawer box 2, so that the barrel cover 32 can open or close the frying cavity opening, thereby facilitating the opening or closing of the frying cavity 30.

[0122] In the present application, referring to Figures 5-7 , the frying barrel 3 can include a mesh tube 33. The mesh tube 33 can be arranged in the frying cavity 30. The mesh tube 33 inside can be used to place food to be fried. The oil in the frying cavity 30 can enter the inside of the mesh tube 33, thereby frying the food in the inside of the mesh tube 33.

[0123] The mesh cylinder 33 can be provided with a food material placing cavity 3351. The mesh cylinder can be provided with a placing cavity opening 3352 on the top thereof. The placing cavity opening is in communication with the food material placing cavity. The food material to be fried can be placed into the food material placing cavity 3351 through the placing cavity opening 3352. The fried food material can be taken out of the food material placing cavity 3351 through the placing cavity opening 3352.

[0124] The mesh cylinder 33 can include a mesh cylinder wall 3353. The mesh cylinder wall 3353 can be provided with mesh holes 334. The mesh holes 334 can communicate the food material placing cavity and the frying cavity.

[0125] In the present application, the mesh cylinder wall can enclose the food material placing cavity 3351. The mesh cylinder wall can enclose the placing cavity opening 3352.

[0126] In the present application, the bottom wall of the mesh cylinder 33 can be provided with mesh holes 334. The oil in the frying cavity 30 can enter the interior of the mesh cylinder 33 through the mesh holes 334 on the bottom wall of the mesh cylinder 33 to fry the food material in the interior of the mesh cylinder 33. The bottom wall of the mesh cylinder 33 can be provided with a plurality of mesh holes 334. The plurality of mesh holes 334 can be arranged on the bottom wall of the mesh cylinder 33 at intervals. The number and interval of the mesh holes 334 on the bottom wall of the mesh cylinder 33 can be adjusted as needed, which is not limited herein.

[0127] The side peripheral wall of the mesh cylinder 33 can be provided with mesh holes 334. The oil in the frying cavity 30 can enter the interior of the mesh cylinder 33 through the mesh holes 334 on the side peripheral wall of the mesh cylinder 33 to fry the food material in the interior of the mesh cylinder 33. The side peripheral wall of the mesh cylinder 33 can be provided with a plurality of mesh holes 334. The plurality of mesh holes 334 can be arranged on the side peripheral wall of the mesh cylinder 33 at intervals. The number and interval of the mesh holes 334 on the side peripheral wall of the mesh cylinder 33 can be adjusted as needed, which is not limited herein.

[0128] The bottom wall and the side peripheral wall of the mesh cylinder 33 can be provided with a plurality of mesh holes 334. The mesh holes 334 can also be provided only on the bottom wall of the mesh cylinder 33, or the mesh holes 334 can also be provided only on the side peripheral wall of the mesh cylinder 33.

[0129] In the present application, the mesh cylinder 33 can be rotatably arranged in the frying cavity 30. In the process of vacuum low-temperature frying, the mesh cylinder 33 can rotate in the frying cavity 30, thereby driving the food material in the mesh cylinder 33 to rotate in the frying cavity 30, which can improve the frying efficiency and uniformity of the food material in the mesh cylinder 33.

[0130] In the present application, the mesh cylinder can include a mesh cylinder top cover 3356. The mesh cylinder top cover opens or closes the placing cavity opening to prevent the food material in the mesh cylinder from coming out of the food material placing cavity.

[0131] In the present application, reference is made to Figures 7-9The vacuum frying system can comprise a driving module 5. The driving module 5 can be in driving connection with the mesh cylinder 33. The driving module 5 can drive the mesh cylinder 33 to rotate in the frying cavity 30.

[0132] In the present application, reference is made to Figures 7-9 The driving module 5 can comprise a driving shaft 51. The driving shaft 51 can be rotatably arranged on the bottom wall of the barrel 31. The top end of the driving shaft 51 can protrude into the frying cavity 30. The top end of the driving shaft 51 can be in driving connection with the mesh cylinder 33. When the driving shaft 51 rotates, the driving shaft 51 can drive the mesh cylinder 33 to rotate in the frying cavity 30.

[0133] In the present application, reference is made to Figures 7-9 The driving module 5 can comprise a driving unit 52. The driving unit 52 can be arranged on one side of the barrel 31. The bottom end of the driving shaft 51 can protrude out of the bottom of the barrel 31. The bottom end of the driving shaft 51 can be exposed outside the bottom of the barrel 31. The bottom end of the driving shaft 51 can be in driving connection with the output shaft of the driving unit 52. Thus, the driving unit 52 can drive the driving shaft 51 to rotate, and in turn drive the mesh cylinder 33 to rotate in the frying cavity 30 through the driving shaft 51.

[0134] In the present application, reference is made to Figures 7-9 The driving module 5 can comprise a transmission belt 53. The transmission belt 53 can be arranged between the driving unit 52 and the driving shaft 51. One end of the transmission belt 53 can be in driving connection with the output end of the driving unit 52. The other end of the transmission belt 53 can be in driving connection with the end of the driving shaft 51 exposed outside the bottom of the barrel 31. The driving unit 52 can drive the driving shaft 51 to rotate through the transmission belt 53, and in turn drive the mesh cylinder 33 to rotate synchronously in the frying cavity 30.

[0135] In the present application, reference is made to Figures 7-9 The driving unit 52 can be a driving motor. The output shaft of the driving motor can be in driving connection with the driving shaft 51 through the transmission belt 53.

[0136] In the present application, reference is made to Figures 7-9 A first transmission wheel 521 can be sleeved on the output shaft of the driving motor. A second transmission wheel 511 can be sleeved on the driving shaft 51. One end of the transmission belt 53 can be sleeved on the first transmission wheel 521. The other end of the transmission belt 53 can be sleeved on the second transmission wheel 511. The output shaft of the driving motor can drive the transmission belt 53 to rotate through the first transmission wheel 521, and in turn drive the second transmission wheel 511 and the driving shaft 51 to rotate synchronously through the transmission belt 53.

[0137] In the present application, reference is made to Figures 7-9The drive module 5 may include a shaft mounting base 54. The shaft mounting base 54 may be located below the bottom surface of the barrel. The drive shaft 51 may be rotatably disposed in the shaft mounting base 54, thereby fixing the drive shaft 51 to the bottom plate of the barrel 31 through the shaft mounting base 54.

[0138] In this application, references Figures 7-9 The shaft mounting base 54 may have a transmission cavity 540. The lower end of the drive shaft 51 may pass through the transmission cavity 540. One end of the transmission belt 53 may extend into the transmission cavity 540 and be sleeved on the drive shaft 51, thereby enabling the transmission belt 53 to be connected to the drive shaft 51 for transmission.

[0139] In this application, references Figures 7-9 The second drive wheel 511 can be located inside the drive cavity 540. One end of the drive belt 53 that extends into the drive cavity 540 can be fitted onto the second drive wheel 511.

[0140] In this application, references Figures 7-9 The shaft mounting base 54 may include an upper mounting base 541 and a lower mounting base 542. The upper mounting base 541 and the lower mounting base 542 can be joined together vertically. The upper mounting base 541 can be fixed to the bottom plate of the barrel body 31. The lower mounting base 542 can be detachably fixed to the bottom of the upper mounting base 541. The transmission cavity 540 can be formed between the upper mounting base 541 and the lower mounting base 542.

[0141] In this application, references Figures 7-9 A first bearing 543 may be provided inside the upper mounting base 541. The drive shaft 51 may pass through the first bearing 543. The drive shaft 51 is rotatably mounted in the upper mounting base 541 via the first bearing 543.

[0142] In this application, references Figures 7-9 A second bearing 544 may be provided within the lower mounting base 542. The drive shaft 51 may pass through the second bearing 544. The drive shaft 51 is rotatably mounted within the lower mounting base 542 via the second bearing 544. The first bearing 543 and the second bearing 544 may be located on the upper and lower sides of the transmission cavity 540.

[0143] In this application, references Figures 7-9 The bottom plate of the barrel 31 may be recessed upwards with a relief groove 311. The top of the shaft mounting seat 54 may be fitted into the relief groove 311. The top end of the drive shaft 51 may pass through the top wall of the relief groove 311 and extend into the frying chamber 30.

[0144] In the present application, an axle through hole 3111 can be formed on the top wall of the avoidance slot 311. The top end of the driving axle 51 can be rotatably inserted into the axle through hole 3111. The top end of the driving axle 51 can be inserted into the frying cavity 30 through the axle through hole 3111.

[0145] In the present application, referring to Figures 7-9 , the driving module 5 can include a sealing sleeve 55. The sealing sleeve 55 can be sleeved on the outer circumferential wall of the driving axle 51. The sealing sleeve 55 can block the gap between the driving axle 51 and the side circumferential wall of the axle through hole 3111, thereby maintaining the sealing of the frying cavity 30.

[0146] In the present application, the sealing sleeve 55 can be clamped between the top of the axle mounting seat 54 and the bottom plate of the barrel body. The sealing sleeve 55 can be arranged in the avoidance slot 311. The sealing sleeve 55 can be clamped between the top of the axle mounting seat 54 and the top wall of the avoidance slot 311.

[0147] In the present application, a receiving groove 545 can be recessed on the top surface of the axle mounting seat 54. The receiving groove 545 can be arranged on the top surface of the upper mounting seat 541. The sealing sleeve 55 can be arranged in the receiving groove 545. The sealing sleeve 55 can be clamped between the groove wall of the receiving groove 545 and the bottom plate of the barrel body.

[0148] In the present application, a support block 56 can be sleeved on the outer circumferential wall of the driving axle 51. The support block 56 can be annular. The support block 56 can be circumferentially arranged on the outer circumferential wall of the driving axle 51. The support block 56 can be arranged in the receiving groove 545. The sealing sleeve 55 is clamped between the support block 56 and the top side wall of the avoidance slot 311.

[0149] In the present application, the sealing sleeve 55 can be sleeved on the outside of the support block 56. The sealing sleeve 55 can include a longitudinal sealing portion 551. The longitudinal sealing portion 551 can be annularly sleeved on the outer circumferential wall of the support block 56. The longitudinal sealing portion 551 can be vertically arranged. The bottom end of the longitudinal sealing portion 551 can be sealingly abutted with the groove bottom surface of the receiving groove 545. The top end of the longitudinal sealing portion 551 can be sealingly abutted with the top wall of the avoidance slot 311.

[0150] In the present application, the sealing sleeve 55 can include a transverse sealing portion 552. The transverse sealing portion 552 can be arranged in the direction of the top end of the longitudinal sealing portion 551 towards the axis of the driving axle 51. The transverse sealing portion 552 can be annularly sleeved on the outer circumferential wall of the driving axle 51. The transverse sealing portion 552 can be clamped between the support block 56 and the top side wall of the avoidance slot 311. The transverse sealing portion 552 can be tightly sleeved on the driving axle, so that the transverse sealing portion and the driving axle are sealed.

[0151] In the present application, referring to Figures 7-9The frying barrel 3 can comprise a rotating disc 34. The rotating disc can be arranged in the frying cavity 30. The rotating disc 34 can be detachably arranged in the frying cavity 30. The rotating disc 34 can rotate in the frying cavity.

[0152] In the present application, the mesh cylinder can be arranged on the rotating disc. The mesh cylinder can be located on the side of the rotating disc close to the opening of the frying cavity. The rotating disc can be detachably connected with the mesh cylinder.

[0153] In the present application, the driving module 5 can be connected with the rotating disc. The driving module 5 drives the rotating disc to rotate, and the rotating disc drives the mesh cylinder 33 to rotate. The rotation axis of the rotating disc is not perpendicular to the height direction of the box body. The rotation axis of the rotating disc can be parallel to the height direction of the box body.

[0154] In the present application, the top end of the driving shaft 51 can extend into the frying cavity 30 through the shaft hole 3111 and be connected with the rotating disc 34. When the driving shaft 51 rotates, the driving shaft 51 can drive the rotating disc 34 and the mesh cylinder 33 to rotate synchronously in the frying cavity 30.

[0155] In the present application, referring to Figures 9-11 The rotating disc 34 can be provided with a first connecting column 341. The driving shaft 51 can be provided with a connecting hole 512. The connecting hole can be arranged along the length direction of the driving shaft. The rotating disc 34 can be threadedly connected with the connecting hole through the first connecting column 341. When the driving shaft 51 rotates, the driving shaft 51 can drive the rotating disc 34 to rotate in the frying cavity 30.

[0156] In the present application, referring to Figures 9-11 The rotating disc is formed with a first limiting slot 3461. The top of the first limiting slot is formed with a first opening 3462. The first limiting slot comprises a first limiting surface 34611. The first limiting slot comprises a second limiting surface 34612. The first limiting surface and the second limiting surface are located on the side of the first limiting slot. The first limiting surface 34611 and the second limiting surface 34612 are oppositely arranged. The first limiting surface 34611 and the second limiting surface 34612 are sequentially arranged along the rotation direction of the rotating disc.

[0157] In the present application, along the rotation direction of the rotating disc, the top end of the first limiting surface is located on the side of the bottom end of the first limiting surface close to the second limiting surface, and the top end of the second limiting surface is located on the side of the bottom end of the second limiting surface close to the first limiting surface.

[0158] In the present application, referring to Figures 9-11 The mesh cylinder is formed with a first limiting block 3354. The first limiting block is inserted into or removed from the first limiting slot through the first opening, so that the rotating disc is detachably connected with the mesh cylinder, and the rotating disc can drive the mesh cylinder to rotate.

[0159] When the rotating disc is connected with the mesh cylinder and the rotating disc drives the mesh cylinder to rotate, the first limiting surface and the second limiting surface limit the first limiting block in the first limiting slot.

[0160] The first limiting groove comprises a first limiting surface and a second limiting surface. The first limiting surface is arranged along the rotation direction of the rotary disc, and the top end of the first limiting surface is located on the side of the bottom end of the first limiting surface close to the second limiting surface. The top end of the second limiting surface is located on the side of the bottom end of the second limiting surface close to the first limiting surface. When the rotary disc drives the meshing cylinder to rotate, the first limiting surface and the second limiting surface can limit the first limiting block in the first limiting groove, so that the first limiting block cannot be taken out of the first limiting groove, thereby stabilizing the connection between the rotary disc and the meshing cylinder, ensuring stable rotation of the meshing cylinder, and improving the frying efficiency and uniformity of food materials in the meshing cylinder.

[0161] In the present application, the first limiting surface is an inclined plane. The second limiting surface is an inclined plane. The first limiting surface and the second limiting surface are arranged as inclined planes, which facilitates the installation and removal of the first limiting block in and from the first limiting groove, and at the same time enables the first limiting surface and the second limiting surface to block the first limiting block in the height direction of the box body, so that the first limiting block cannot be taken out of the first limiting groove.

[0162] In the present application, with reference to Figures 9-11 , the first limiting block comprises a third limiting surface 33541. The first limiting block comprises a fourth limiting surface 33542. The third limiting surface and the fourth limiting surface are located on the side of the first limiting block. The third limiting surface and the fourth limiting surface are oppositely arranged. The third limiting surface and the fourth limiting surface are sequentially arranged along the rotation direction of the meshing cylinder.

[0163] Along the rotation direction of the meshing cylinder, the top end of the third limiting surface is located on the side of the bottom end of the third limiting surface close to the fourth limiting surface, and the top end of the fourth limiting surface is located on the side of the bottom end of the fourth limiting surface close to the third limiting surface. The third limiting surface is an inclined plane. The fourth limiting surface is an inclined plane.

[0164] The first limiting block comprises a third limiting surface and a fourth limiting surface, so that the third limiting surface and the fourth limiting surface are respectively matched with the first limiting surface and the second limiting surface, which facilitates the installation and removal of the first limiting block in and from the first limiting groove, and at the same time enables the first limiting surface and the second limiting surface to block the first limiting block in the height direction of the box body, so that the first limiting block cannot be taken out of the first limiting groove.

[0165] In the present application, with reference to Figures 9-11The rotating disc 34 can include a first connecting block 346. A first limiting slot is formed on the first connecting block. The first connecting block includes a first connecting block top surface 3463. The first connecting block top surface is located at the top of the first connecting block. A first opening is located on the first connecting block top surface, so that the first limiting block can be conveniently inserted into the first limiting slot and conveniently removed from the first limiting slot in the height direction of the box body, facilitating the connection of the first limiting slot and the first limiting block.

[0166] In the present application, reference is made to Figures 9-11 The side of the first limiting slot is provided with a second opening 3464. The first connecting block includes a connecting block side peripheral surface 3465. The second opening can be provided on the connecting block side peripheral surface. The first opening can be in communication with the second opening. The first opening and the second opening are provided to facilitate the insertion of the first limiting block into the first limiting slot.

[0167] In the present application, reference is made to Figures 9-11 The rotating disc can include a rotating disc support plate 347. The meshing tube can be provided on the rotating disc support plate, and the rotating disc support plate includes a rotating disc support surface 3471 located at the top of the rotating disc support plate. The meshing tube can be provided on the rotating disc support surface, which can avoid the meshing tube from contacting the inner bottom surface of the barrel body and scratching the coating on the inner bottom wall of the barrel body.

[0168] In the present application, the first connecting block can be provided on the rotating disc support plate. The bottom end of the first limiting slot can extend to the bottom end of the first connecting block.

[0169] In the present application, reference is made to Figures 8-11 The meshing tube includes a meshing tube bottom wall, and a second positioning slot 332 is formed on the meshing tube bottom wall. The bottom end of the second positioning slot is open. The first connecting block is inserted into the second positioning slot.

[0170] In the present application, the second positioning slot can include a second positioning slot side peripheral wall 3321. The second positioning slot side peripheral wall can be located at the side of the second positioning slot. The second positioning slot can be arranged in a peripheral circle. The first limiting block can be connected to the second positioning slot side peripheral wall.

[0171] The first connecting block is inserted into the second positioning slot, which can form positioning and facilitate the installation of the meshing tube on the rotating disc. The first limiting block is located on the second positioning slot side peripheral wall, which facilitates the insertion of the first limiting block into the first limiting slot.

[0172] In the present application, a first positioning slot 343 can be provided on the rotating disc. The bottom end of the first positioning slot is open, and the bottom end of the first positioning slot is located on the bottom surface of the rotating disc support plate. The top end of the first positioning slot can be formed on the first connecting block. The first positioning slot can be in communication with the first limiting slot, which can reduce the weight of the rotating disc.

[0173] In the present application, reference is made to Figures 8-11The first positioning slot can include a first positioning slot top wall 3431. The first positioning slot top wall can be located at the top end of the first positioning slot. The first connecting column 341 can be inserted into the first positioning slot. The top end of the first connecting column can be connected with the first positioning slot top wall. The first connecting column 341 can be arranged downwardly extending from the slot top wall of the first positioning slot 343.

[0174] In the present application, the driving module includes a driving shaft and a driving unit. The top end of the driving shaft is connected with the first connecting column. The driving unit drives the driving shaft to rotate to make the first connecting column rotate, so that the rotating disc rotates.

[0175] The first connecting column is arranged to be inserted into the first positioning slot, the top end of the first connecting column is connected with the first positioning slot top wall, the top end of the driving shaft is connected with the first connecting column, and the driving module is convenient to drive the rotating disc to rotate.

[0176] In the present application, with reference to Figures 12-13 The inner bottom surface of the barrel body 31 can be upwardly protruded with a first positioning boss 312. The avoidance slot 311 can be recessed inside the first positioning boss 312. The top end of the driving shaft 51 can be protruded through the shaft perforation 3111 to the top surface of the first positioning boss 312. The first positioning boss can be inserted into the first positioning slot 343.

[0177] In the present application, the rotating disc is formed with a first limiting slot 3461. The top of the first limiting slot is formed with a first opening 6462. The meshing cylinder is formed with a first limiting block 3354, which is inserted into or removed from the first limiting slot through the first opening, so that the rotating disc and the meshing cylinder are detachably connected, and the rotating disc drives the meshing cylinder to rotate.

[0178] In the present application, with reference to Figure 9 The frying barrel includes a magnet 305, which is connected with the meshing cylinder. The magnet is connected with the rotating disc, so that the magnet limits the first limiting block in the first limiting slot.

[0179] The first limiting slot and the first limiting block are arranged, which can connect the rotating disc and the meshing cylinder, and can make the rotating disc drive the meshing cylinder to rotate. The magnet is arranged, which can limit the first limiting block in the first limiting slot, so that the first limiting block does not come out of the first limiting slot when the rotating disc drives the meshing cylinder to rotate, so as to stably connect the rotating disc and the meshing cylinder, ensure the stable rotation of the meshing cylinder, and improve the frying efficiency and uniformity of the food materials in the meshing cylinder.

[0180] In the present application, with reference to Figure 9The first limiting groove comprises a first limiting surface 34611. The first limiting groove comprises a second limiting surface 34612. The first limiting surface and the second limiting surface are located at the side of the first limiting groove. The first limiting surface 34611 and the second limiting surface 34612 are oppositely arranged. The first limiting surface 34611 and the second limiting surface 34612 are sequentially arranged along the rotation direction of the rotating disc. The first limiting surface and the second limiting surface can be parallel to the height direction of the box body. The first limiting surface is an inclined plane. The second limiting surface is an inclined plane.

[0181] In the present application, the magnet 301 is fixedly connected with the mesh cylinder. The magnet is magnetically connected with the rotating disc. The fixation of the magnet is facilitated, and the appearance of the rotating disc is better when the mesh cylinder is removed from the rotating disc.

[0182] In the present application, referring to Figures 12-13 The rotating disc 34 can comprise a first connecting block 346. The first connecting block comprises a first connecting block top surface 3463. The first connecting block top surface is located at the top of the first connecting block. The magnet is magnetically connected with the first connecting block top surface, facilitating the connection of the magnet with the rotating disc.

[0183] In the present application, referring to Figure 10 The mesh cylinder comprises a mesh cylinder bottom wall. The mesh cylinder comprises a mesh cylinder connecting column 3355. The top end of the mesh cylinder connecting column is connected with the mesh cylinder bottom wall. The magnet is connected on the mesh cylinder connecting column, facilitating the fixed connection of the magnet with the mesh cylinder.

[0184] In the present application, referring to Figures 14-16 The rotating disc can comprise a rotating disc support plate 347. The mesh cylinder can be arranged on the rotating disc support plate. The rotating disc support plate comprises a rotating disc support surface 3471 located at the top of the rotating disc support plate. The mesh cylinder can be arranged on the rotating disc support surface, which can avoid the contact between the mesh cylinder and the inner bottom surface of the barrel body, and avoid the damage of the mesh cylinder to the coating on the inner bottom wall of the barrel body. The first connecting block can be arranged on the rotating disc support plate.

[0185] In the present application, the mesh cylinder comprises a mesh cylinder bottom wall, and a second positioning groove 332 is formed on the mesh cylinder bottom wall. The bottom end of the second positioning groove is open. The second positioning groove has a positioning groove top wall 3322 located at the top of the second positioning groove. The mesh cylinder connecting column is located in the second positioning groove, and the top end of the mesh cylinder connecting column is connected with the positioning groove top wall, facilitating the connection of the mesh cylinder with the rotating disc through the magnet, and the connection structure of the magnet and the mesh cylinder is arranged to be more concealed, and the appearance is good.

[0186] In the present application, referring to Figures 14-16 The barrel body can comprise a barrel body side wall. The barrel body side wall can be located at the side of the barrel body. The air suction port 303 is formed on the barrel body side wall.

[0187] In the present application, referring to Figures 14-16The cooking device can include a shielding cover 365. The shielding cover can be located in the frying cavity. The shielding cover can be disposed opposite to the air suction port. The shielding cover can shield the air suction port.

[0188] In the present application, reference is made to Figures 14-16 The cooking device can have an oil return cavity 3671. The oil return cavity 3671 can be disposed in the frying cavity. The oil return cavity can be disposed opposite to the air suction port 303. The oil return cavity is in communication with the air suction port.

[0189] The oil return cavity has an oil return cavity wall surrounding the oil return cavity. The oil return cavity wall at least includes a part of the shielding cover. The shielding cover can be entirely the oil return cavity wall. The shielding cover can be partially the oil return cavity wall.

[0190] In the present application, reference is made to Figures 15-17 The top of the oil return cavity can be provided with an air suction inlet 3651. The air suction inlet communicates the oil return cavity and the frying cavity.

[0191] In the present application, the cooking device can have an air suction inlet 3651. The air suction inlet is located in the frying cavity. The air suction inlet communicates the oil return cavity and the frying cavity.

[0192] The shielding cover is formed with an oil return hole 3652. The oil return hole can penetrate the shielding cover. The oil return hole can communicate the oil return cavity and the frying cavity. In the height direction of the box body, the oil return hole is located on the side of the air suction inlet away from the opening of the frying cavity, so that the oil in the oil return cavity flows back to the frying cavity through the oil return hole.

[0193] The vacuumizing module can vacuumize the frying cavity through the air suction port, the oil return cavity, the air suction inlet and the oil return hole.

[0194] The air suction inlet can enable the vacuumizing module to vacuumize the frying cavity, so that the frying process can be carried out in a vacuum environment, which can effectively reduce the damage to heat-sensitive nutrients in food, improve production efficiency, make the food material taste crisp and delicious, and the oil content of fried food can be significantly lower than that of traditional fried food. The oil return cavity can store the oil sucked into the oil return cavity during vacuumizing or the oil splashed into the oil return cavity during frying. The oil return hole can enable the oil in the oil return cavity to flow back to the frying cavity to continue frying, avoiding the need to frequently supplement oil due to significant reduction of oil in the frying cavity, which prolongs the frying time.

[0195] In the present application, the oil return hole can be located at the bottom end of the oil return cavity, so that the oil in the oil return cavity can be fully drained, avoiding the accumulation of oil in the oil return cavity affecting the vacuumizing.

[0196] In the present application, reference is made to Figures 17-18 The frying barrel can include an elastic sealing member 36. The elastic sealing member can be disposed at the top of the barrel body. When the barrel cover closes the opening of the frying cavity, the elastic sealing member seals the gap between the barrel cover and the top of the barrel body.

[0197] When the bucket cover closes the opening of the frying cavity, the bottom of the bucket cover can be sealed against the elastic sealing piece 36, and the elastic sealing piece 36 can seal the gap between the bucket cover 32 and the top of the bucket body, thereby sealing the frying cavity 30. The elastic sealing piece 36 can be made of an elastic material such as rubber.

[0198] In the present application, the elastic sealing piece includes a shielding cover, and the shielding cover is arranged on the elastic sealing piece, facilitating the arrangement of the shielding cover. Alternatively, the bucket body includes the shielding cover.

[0199] In the present application, referring to Figures 17-18 , the elastic sealing piece can include an inner wall portion 362. The inner wall portion 362 can be inserted into the frying cavity. The inner wall portion 362 can be attached to the inner side wall of the bucket body. The inner wall portion can shield the air suction port. The inner wall portion is formed with a through hole 3641. The through hole and the air suction port are oppositely arranged. The through hole communicates the air suction port and the oil return cavity.

[0200] The shielding cover can be located on the side of the inner wall portion away from the air suction port. The shielding cover and the inner wall portion can enclose the oil return cavity. The shielding cover and the inner wall portion can enclose the air suction inlet. The air suction inlet can be formed at the top of the shielding cover. The arrangement of the oil return cavity and the air suction inlet by the shielding cover and the inner wall portion facilitates the formation of the oil return cavity and the air suction inlet. The vacuumizing module vacuums the frying cavity through the air suction port, the through hole, the oil return cavity, the air suction inlet, and the oil return hole.

[0201] In the present application, along the height direction of the box body, the through hole can be located on the side of the bottom end of the oil return cavity close to the opening of the frying cavity, so that the oil in the oil return cavity flows back to the frying cavity through the oil return hole as much as possible, and the oil is prevented from entering the through hole to affect the vacuumization and from being sucked out of the frying bucket during the vacuumization.

[0202] In the present application, referring to Figures 17-18 , the side of the inner wall portion away from the oil return cavity is connected with an elastic positioning column 3672. The through hole extends to the elastic column. The through hole penetrates the elastic positioning column in the length direction of the elastic column. The elastic positioning column is inserted into the air suction port, so that the oil return cavity and the air suction port are smoothly communicated, gaps between the oil return cavity and the air suction port are avoided, and the oil is prevented from being sucked into the air suction port through the gaps between the oil return cavity and the air suction port.

[0203] In the present application, the air suction port 303 can be arranged at the top region of the side wall of the bucket body, so that more oil can be contained in the frying cavity, and frying is facilitated.

[0204] In the present application, referring to Figures 17-18 , the elastic sealing piece can include an abutting portion 3673. The abutting portion 3673 can be located on the side of the top of the bucket body away from the bottom of the bucket bottom. The abutting portion can be connected with the inner wall portion. When the bucket cover closes the opening of the frying cavity, the abutting portion is clamped between the bucket body and the bucket cover.

[0205] In the present application, with reference to Figures 17-18 , the elastic sealing member can include an outer wall portion 362. The outer wall portion can be located on the outer side of the barrel body. The outer wall portion can be in contact with the outer side wall of the barrel body. The outer wall portion can be connected with the abutting portion. The outer wall portion, the abutting portion and the inner wall portion are connected to form a sealing member groove 3674. The top of the barrel body can be inserted into the sealing member groove, facilitating the connection of the elastic sealing member and the barrel body, and enabling the elastic sealing member to be stably sleeved on the top of the barrel body, thereby ensuring the stable sealing between the barrel body and the barrel cover. The outer wall portion, the abutting portion and the inner wall portion can be an integral piece.

[0206] In the present application, the elastic sealing member can be arranged in a ring shape. The elastic sealing member 36 can be arranged circumferentially around the top of the barrel body 31. The elastic sealing member 36 can be detachably sleeved on the top of the barrel body 31.

[0207] In the present application, with reference to Figures 19-20 , the elastic sealing member can include an extension portion 366. The extension portion 366 can extend from the bottom end of the outer wall portion 363 to the side away from the barrel body. The extension portion 366 can be arranged in a ring shape and circumferentially around the outer side wall of the outer wall portion 363.

[0208] The outer side wall of the barrel body can be formed with a support rib 314. The support rib 314 can be arranged in a ring shape and circumferentially around the outer side wall of the barrel body. The elastic sealing member can be located on the support rib. The extension portion 366 can be attached to the top surface of the support rib 314. The extension portion 366 can be integrally formed with the outer wall portion 363, the abutting portion and the inner wall portion 362.

[0209] In the present application, with reference to Figure 16 , the cooking device can include an oil storage tank 761. An oil storage cavity is formed in the oil storage tank. The oil storage cavity is in communication with the oil return cavity. The vacuum module draws air out of the frying cavity through the oil storage tank, the air outlet, the oil return cavity, the air inlet and the oil return hole. The oil storage tank can be used to collect oil during the process of drawing air out of the frying cavity and bringing oil out of the frying cavity, which can effectively collect oil and reduce oil waste.

[0210] In the present application, with reference to Figures 19-20 , the cooking device can include a vacuum connector 313. A connector cavity is formed in the vacuum connector. The connector cavity connects the oil storage cavity and the oil return cavity. The vacuum connector can facilitate the communication between the oil storage cavity and the oil return cavity. The vacuum module 4 can draw air out of the frying cavity 30 through the vacuum connector 313, thereby achieving vacuumization of the frying cavity 30.

[0211] The vacuum connector 313 can be protruded on the outer side wall of the barrel body 31. The vacuum connector can be threadedly connected with the air outlet.

[0212] In the present application, the barrel body 31 can be provided with an oil outlet. The oil outlet can be arranged at the bottom of the frying cavity 30. The oil outlet can be in communication with the frying cavity. The oil outlet can be in communication with the oil storage cavity, so that the oil in the frying cavity can be discharged to the oil storage cavity through the oil outlet.

[0213] In the present application, the frying barrel 3 can include a heating module. The heating module can be arranged on the outer side wall of the barrel body 31. The heating module can adopt an electric heating structure. When the heating module is working, the heating module can heat the inside of the frying cavity 30, thereby heating the oil inside the frying cavity 30, so that the food materials in the frying cavity 30 can be subjected to vacuum low-temperature frying operation.

[0214] In the present application, referring to Figures 19-20 , the cooking device can include an air cooling module 91. The air cooling module includes a radiator 911. The air cooling module includes a first fan 912. The radiator can be located above the first fan. The radiator can form a cooling cavity therein. The radiator can form a cooling air inlet thereon. The radiator can form a cooling air outlet thereon. The cooling air inlet can be in communication with the cooling cavity. The cooling air outlet can be in communication with the cooling cavity.

[0215] The cooling air inlet is in communication with the oil storage cavity. The air in the frying cavity can enter the cooling cavity through the oil storage cavity and the cooling air inlet, and the first fan rotates to exchange heat between the air in the cooling cavity and the air outside the radiator, so that the air in the radiator is condensed.

[0216] In the present application, referring to Figures 19-20 , the cooking device can include a condenser 42. The condenser 42 can be arranged inside the drawer 21. The condenser 42 can be arranged on one side of the frying barrel 3.

[0217] The condenser forms a condensing cavity therein. The condenser has a condensing air inlet 4261. The condenser forms a condensing air outlet 4262. The condensing air inlet is in communication with the condensing cavity. The condensing air outlet is in communication with the condensing cavity.

[0218] In the present application, the barrel body forms an air suction port. The air suction port is in communication with the frying cavity. The inlet end of the vacuum module is in communication with the condensing air outlet. The oil storage tank forms an oil storage cavity. The oil storage cavity is in communication with the air suction port. The oil storage cavity is in communication with the condensing air inlet. The vacuum module draws vacuum through the condensing air outlet, the condensing cavity, the condensing air inlet, the oil storage tank and the air suction port. The air drawn from the frying cavity first enters the oil storage tank, and during the vacuuming process, the oil in the frying cavity is brought out, which can collect oil by using the oil storage tank, effectively collect oil and reduce oil waste.

[0219] The condensing air inlet is in communication with the cooling air outlet, and the gas in the cooling cavity flows into the condensing cavity.

[0220] In the present application, referring toFigures 19-20 The condenser can be provided with a cooling cavity. The condenser can be provided with a cooling water inlet 4263. The condenser can be provided with a cooling water outlet 4264. The cooling water inlet can be in communication with the cooling cavity. The cooling water outlet can be in communication with the cooling cavity.

[0221] The cooling water can enter the cooling cavity through the cooling water inlet. The cooling water exchanges heat with the air in the condensing cavity, so that the air in the condensing cavity is condensed.

[0222] In the present application, reference is made to Figures 19-20 The cooking device can include a condensing water tank 471. The condensing water tank is provided with a water tank cavity. The condensing water tank is provided with a water tank air inlet. The condensing water tank is provided with a water tank air outlet. The water tank air inlet is in communication with the water tank cavity. The water tank air outlet is in communication with the water tank cavity.

[0223] The water tank air inlet is in communication with the condensing air outlet. The gas in the condensing cavity enters the water tank cavity for condensation.

[0224] In the present application, reference is made to Figure 5 The vacuumizing module 4 can include a vacuum pump 41. The vacuum pump 41 can be arranged inside the drawer 21. The air suction end of the vacuum pump 41 can be in communication with the vacuum joint 313. The air suction end of the vacuum pump 41 can be in communication with the frying cavity 30 through the vacuum joint 313. When the vacuum pump 41 is running, the vacuum pump 41 can perform vacuumizing on the inside of the frying cavity 30 through the vacuum joint 313.

[0225] In the present application, reference is made to Figure 5 The air suction end of the vacuum pump is in communication with the water tank air outlet. The air exhaust end of the vacuum pump is discharged into the drain box 82 through the air exhaust pipe.

[0226] In the present application, the condensing water tank is provided with a water tank drain. The water in the condensing water tank is drained into the drain box through the drain.

[0227] In the present application, reference is made to Figures 21-23 The cooking device includes an oil storage box 72. The oil storage box can be in communication with the oil storage tank. The oil in the oil storage tank can enter the oil storage box. The oil in the oil storage box can enter the oil storage tank.

[0228] In the present application, the oil storage box and the drain box can be located on both sides of the frying barrel. Among them, the oil storage box, the frying barrel and the drain box can be arranged in sequence in the length direction of the box body. The condenser can be located behind the drain box.

[0229] In the present application, reference is made to Figure 24 The drawer box 2 is arranged outside the inner container. The drawer box can be arranged below the inner container. The drawer box has a first side end 201 and a second side end 202 arranged opposite in the length direction of the box body. The drawer is arranged in the drawer box in a drawable manner.

[0230] The frying bucket can be arranged in the drawer. The frying bucket is formed with a frying cavity. The condenser is arranged in the drawer. The vacuumizing module draws vacuum in the frying cavity through the condensing cavity, so that the air in the frying cavity flows through the condensing cavity.

[0231] In the present application, with reference to Figures 21-24 , the cooking device can include a circulating water pump 921. The circulating water pump can include a first water port 9211. The circulating water pump can include a second water port 9212. The first water port can be in communication with the water storage box 16.

[0232] In the present application, the cooking device can include a support back plate 15. The support back plate is arranged in the cabinet. The support back plate is located at the rear of the inner container. The circulating water pump is fixedly arranged on the support back plate. The cooking device can include a support top plate 14. The circulating water pump can be arranged on the support top plate.

[0233] In the present application, the cooking device can include a first water pipe. One end of the first water pipe is in communication with the first water port. The cooking device can include a second water pipe. One end of the second water pipe is in communication with the water supply pump of the steam generator. The cooking device can include a third water pipe. One end of the third water pipe is in communication with the water storage box. The other end of the first water pipe, the other end of the second water pipe and the other end of the third water pipe can be communicated through a three-way piece.

[0234] In the present application, with reference to Figures 21-24 , the cooking device can include a water supply pipe 925. The water port at one end of the water supply pipe is in communication with the second water port. The water port at the other end of the water supply pipe is in communication with the cooling water inlet and the cooling water outlet, so that the water in the cooling cavity exchanges heat with the air in the condensing cavity.

[0235] The water supply pipe at least includes a first section of water pipe 9251. The first section of water pipe is located in the drawer box. The first section of water pipe is located at the rear of the drawer. The water supply pipe at least includes a second section of water pipe 9252. The second section of water pipe is located in the drawer box. The second section of water pipe is located at the rear of the drawer. One end of the first section of water pipe and one end of the second section of water pipe are connected. The other end of the first section of water pipe is the first end of the water pipe, and the other end of the second section of water pipe is the second end of the water pipe.

[0236] In the present application, with reference to Figures 19-24 , the cooking device can include an elastic member 926. The elastic member can be arranged in the drawer box. The elastic member can be arranged outside the drawer. The elastic member is connected at the connection of the first section of water pipe and the second section of water pipe, and the elastic member is connected with the drawer box.

[0237] When the drawer is inserted into the drawer box to the deepest, the connection of the first section of water pipe and the second section of water pipe is located at the side close to the second side end of the first end of the water pipe and the second end of the water pipe.

[0238] When the drawer is pulled out of the drawer box, the first end of the water pipe is pulled forward by the condenser, and the connection between the first section of the water pipe and the second section of the water pipe is pulled forward and close to the first side end, and the elastic member is pulled to be in a stretched state.

[0239] When the drawer is pushed back into the drawer box, the first end of the water pipe moves backward, and the elastic member in the stretched state pulls the connection between the first section of the water pipe and the second section of the water pipe backward and close to the second side end.

[0240] The frying barrel is arranged in the drawer, which can be stored in the drawer box when not frying, and dust on the frying barrel can be avoided; the vacuumizing module is arranged, which can vacuumize the frying cavity, so that frying is carried out in a vacuum; the condenser is arranged, which can extract steam generated during frying, and then condense the steam to avoid excessive steam in the room; the water supply pipe is arranged, which can introduce the condensed water in the water storage box into the condenser and introduce the condensed water back to the water storage box, and the water can exchange heat with the air in the condenser to condense the air; the water supply pipe includes the first section of the water pipe and the second section of the water pipe arranged in the drawer box and outside the drawer, when the drawer is pulled out of the drawer box, the water supply pipe is long enough, so that the water supply pipe can normally supply water to the condenser; the elastic member is connected with the connection between the first section of the water pipe and the second section of the water pipe, and the elastic member is connected with the drawer box, when the drawer is pulled out of the drawer box, the first end of the water pipe moves forward, and the connection between the first section of the water pipe and the second section of the water pipe moves forward and close to the first side end, so that the water supply pipe is stretched, and the elastic member is in a stretched state, the elastic member can be used to orderly move the first section of the water pipe and the second section of the water pipe, and when the drawer is pushed back into the drawer box, the elastic member is used to orderly pull back the first section of the water pipe and the second section of the water pipe, the water supply pipe is bent, so that the first section of the water pipe and the second section of the water pipe are not broken in the process of pulling out and pushing back the drawer, normal water supply to the condenser is ensured, and normal condensation is ensured. The circulating water pump is arranged, which can introduce the condensed water in the water storage box into the condenser and introduce the condensed water back to the water storage box, and provides power for the flow of water.

[0241] In the present application, when the drawer is pulled out of the drawer box, the first end of the water pipe is pulled forward by the condenser, and the connection between the first section of the water pipe and the second section of the water pipe is pulled away from the connection between the elastic member and the drawer box, and the elastic member is pulled to be in a stretched state, so that the water supply pipe is stretched.

[0242] When the drawer is pushed back into the drawer box, the first end of the water pipe moves backward, and the elastic member in the stretched state pulls the connection between the first section of the water pipe and the second section of the water pipe close to the connection between the elastic member and the drawer box; the first section of the water pipe and the second section of the water pipe are orderly pulled back, and the water supply pipe is bent, so that the first section of the water pipe and the second section of the water pipe are not broken in the process of pulling out and pushing back the drawer.

[0243] In the present application, the first section of the water pipe is located in front of the second section of the water pipe; along the extension direction of the water supply pipe, the first section of the water pipe is located on the side of the second section of the water pipe away from the water storage box, so as to avoid mutual extrusion and collision between the first section of the water pipe and the second section of the water pipe during the process of pulling out the drawer, to avoid the first section of the water pipe and the second section of the water pipe being extruded and broken, and to ensure normal water supply to the condenser.

[0244] In the present application, the elastic member is an elastic rope. One end of the elastic rope is connected to the connection position of the first section of the water pipe and the second section of the water pipe. The elastic member is an elastic rope, which facilitates the connection of the elastic member with the water supply pipe.

[0245] In the present application, along the front-rear direction of the box body, the one end of the elastic rope connecting the first section of the water pipe and the second section of the water pipe is located in front of the other end of the elastic rope. In the length direction of the box body, the one end of the elastic rope connecting the first section of the water pipe and the second section of the water pipe is located on the side close to the first side end of the other end of the elastic rope. When the drawer is pulled out of the drawer box, the elastic rope can be given a tensile elastic force, and when the drawer is pushed back into the drawer box, the first section of the water pipe and the second section of the water pipe can be conveniently pulled back.

[0246] In the present application, the cooking device includes a tie (not shown). The tie fixes the elastic member on the drawer box, facilitating the connection of the elastic member with the drawer box.

[0247] In the present application, with reference to Figures 19-24 , the cooking device includes a cooling water inlet pipe 461. The water inlet of one end of the cooling water inlet pipe is in communication with the cooling water inlet. The cooking device includes a cooling water outlet pipe 462. The water outlet of one end of the cooling water outlet pipe is in communication with the cooling water outlet. The water outlet of the other end of the water supply pipe is in communication with the other end of the cooling water inlet pipe and the other end of the cooling water outlet pipe. The cooling water inlet pipe and the cooling water outlet pipe are provided to facilitate the water supply pipe to supply water to the cooling cavity, and to facilitate the water flow in the cooling cavity to flow back to the water supply pipe.

[0248] In the present application, the cooling water inlet pipe, the cooling water outlet pipe and the water supply pipe are connected through a three-way pipe, facilitating the communication of the cooling water inlet pipe, the cooling water outlet pipe and the water supply pipe.

[0249] In the present application, with reference to Figures 19-24 , the drawer box includes a drawer box rear plate 203. The drawer box rear plate is located at the rear end of the drawer box. The drawer box rear plate is formed with a first rear plate through hole 2031 penetrating through the drawer box rear plate in the front-rear direction of the box body, and the water supply pipe is arranged in the first rear plate through hole, facilitating the water supply pipe to extend into the drawer box from outside the drawer box, or facilitating the water supply pipe to extend out of the drawer box from inside the drawer box.

[0250] In the present application, with reference to ​The drawer includes a drawer back plate 212. The drawer back plate is formed with a second back plate through hole 2121 which penetrates the drawer back plate in the front-rear direction of the cabinet. The water supply pipe is arranged in the second back plate through hole. The water supply pipe is conveniently extended into the drawer and connected with the condenser.

[0251] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not intended to limit the same; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent substitutions for part or all of the technical features; and these modifications or substitutions do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

[0252] For the convenience of explanation, the above description has been made in conjunction with specific embodiments. However, the above exemplary discussion is not intended to exhaust or limit the embodiments to the specific forms disclosed above. Various modifications and variations can be derived according to the above teachings. The selection and description of the above embodiments are to better explain the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.

Claims

1. A cooking apparatus, characterized by, The utility model relates to a kind of cooking equipment, including: Box, the height direction of the box is from its bottom to its top; Inner container, be equipped in the box, the inside of the inner container is formed with cooking cavity; Frying barrel, including: Barrel body, frying cavity is formed in the barrel body, the top of the barrel body is formed with frying cavity opening, and the frying cavity opening is communicated with the frying cavity; Rotating disc, is equipped in the frying cavity; Mesh cylinder, be equipped in the frying cavity, the mesh cylinder is located on the rotating disc and is located in the rotating disc side close to the frying cavity opening;Mesh cylinder is formed with food material placement cavity in the mesh cylinder;The top of the mesh cylinder is formed with placement cavity opening, and the placement cavity opening is communicated with the food material placement cavity;The mesh cylinder includes: Mesh cylinder wall, the mesh hole is formed on the mesh cylinder wall, and the mesh hole is communicated with the food material placement cavity and the frying cavity; Driving module, is connected with the rotating disc, and the driving module drives the rotating disc to rotate, and the rotation axis of the rotating disc is not perpendicular to the height direction of the box; The first limiting slot is formed on the rotating disc, and the top of the first limiting slot is formed with first opening;The first limiting slot includes oppositely arranged first limiting surface and second limiting surface, and the first limiting surface and the second limiting surface are located in the side of the first limiting slot and are sequentially arranged along the rotating direction of the rotating disc;Along the rotating direction of the rotating disc, the top end of the first limiting surface is located on the side close to the second limiting surface of the bottom end of the first limiting surface, and the top end of the second limiting surface is located on the side close to the first limiting surface of the bottom end of the second limiting surface; The first limiting block is formed on the mesh cylinder, and the first limiting block is inserted into the first limiting slot or removed from the first limiting slot through the first opening, so that the rotating disc and the mesh cylinder can be detachably connected; When the rotating disc is connected with the mesh cylinder and the rotating disc drives the mesh cylinder to rotate, the first limiting surface and the second limiting surface limit the first limiting block in the first limiting slot.

2. The cooking apparatus according to claim 1, characterized in that, The first limiting surface and the second limiting surface are inclined planes.

3. The cooking apparatus according to claim 2, characterized in that, The first limiting block includes oppositely arranged third limiting surface and fourth limiting surface, and the third limiting surface and the fourth limiting surface are located in the side of the first limiting block and are sequentially arranged along the rotating direction of the mesh cylinder; Along the rotating direction of the mesh cylinder, the top end of the third limiting surface is located on the side close to the fourth limiting surface of the bottom end of the third limiting surface, and the top end of the fourth limiting surface is located on the side close to the third limiting surface of the bottom end of the fourth limiting surface.

4. The cooking apparatus according to claim 1, wherein The rotating disc includes a first connecting block, and the first limiting slot is formed on the first connecting block; The first connecting block includes a first connecting block top surface, and the first connecting block top surface is located on the top of the first connecting block, and the first opening is located on the first connecting block top surface.

5. The cooking apparatus according to claim 4, wherein The side of the first limiting slot is provided with a second opening;The first connecting block includes a connecting block side peripheral surface, and the second opening is arranged on the connecting block side peripheral surface, and the first opening and the second opening are communicated.

6. The cooking apparatus according to claim 4, wherein The mesh cylinder includes a mesh cylinder bottom wall, and the second positioning slot is formed on the mesh cylinder bottom wall, and the bottom end of the second positioning slot is open, and the first connecting block is inserted into the second positioning slot. The second positioning groove comprises a second positioning groove side wall, which is located at the side of the second positioning groove, and the first limiting block is connected to the second positioning groove side wall.

7. A cooking apparatus characterized by comprising: It comprises: a box, the bottom of which to the top of which is the height direction of the box; an inner container arranged in the box, and a cooking cavity formed in the inner container; a frying barrel comprising: a barrel body, in which a frying cavity is formed, and the top of the barrel body is provided with a frying cavity opening, which is in communication with the frying cavity; a rotating disc arranged in the frying cavity; a mesh cylinder arranged in the frying cavity, which is arranged on the rotating disc and located on the side of the rotating disc close to the frying cavity opening; the mesh cylinder is provided with a food material placing cavity formed therein; the top of the mesh cylinder is provided with a placing cavity opening in communication with the food material placing cavity; the mesh cylinder comprises: a mesh cylinder wall, which is provided with mesh holes in communication with the food material placing cavity and the frying cavity; a driving module connected to the rotating disc, which drives the rotating disc to rotate, and the rotation axis of the rotating disc is not perpendicular to the height direction of the box; the rotating disc is provided with a first limiting groove, and the top of the first limiting groove is provided with a first opening; the mesh cylinder is provided with a first limiting block, which is inserted into or removed from the first limiting groove through the first opening, so that the rotating disc and the mesh cylinder are detachably connected; the frying barrel further comprises: a magnet connected to the mesh cylinder, which is connected to the rotating disc, so that the magnet limits the first limiting block in the first limiting groove.

8. The cooking apparatus according to claim 7, characterized in that, The magnet is fixedly connected to the mesh cylinder, and the magnet is magnetically connected to the rotating disc.

9. The cooking apparatus according to claim 8, wherein, The rotating disc comprises a first connecting block, and the first limiting groove is formed on the first connecting block; the first connecting block comprises a first connecting block top surface located at the top of the first connecting block, and the first opening is located on the first connecting block top surface; the magnet is magnetically connected to the first connecting block top surface.

10. The cooking apparatus according to claim 9, wherein The mesh cylinder comprises a mesh cylinder bottom wall and a mesh cylinder connecting column, the top end of the mesh cylinder connecting column is connected to the mesh cylinder bottom wall, and the magnet is connected to the mesh cylinder connecting column.

11. The cooking apparatus according to claim 10, wherein The mesh cylinder bottom wall is provided with a second positioning groove, the bottom end of the second positioning groove is open, the second positioning groove has a positioning groove top wall located at the top of the second positioning groove, the mesh cylinder connecting column is located in the second positioning groove, and the top end of the mesh cylinder connecting column is connected to the positioning groove top wall.

12. The cooking apparatus according to claim 11, wherein, The side of the first limiting groove is provided with a second opening; the first connecting block comprises a connecting block side surface, and the second opening is arranged on the connecting block side surface; the first opening and the second opening are in communication; the first connecting block is inserted into the second positioning groove; the second positioning groove comprises a second positioning groove side wall, which is located at the side of the second positioning groove, and the first limiting block is connected to the second positioning groove side wall.

13. The cooking apparatus according to claim 4 or 9 or the same, characterized by The rotating disc comprises a rotating disc support plate, the rotating disc support plate comprises a rotating disc support surface on the top of the rotating disc support plate, the meshing tube is arranged on the rotating disc support surface, and the first connecting block is arranged on the rotating disc support plate.

14. The cooking apparatus according to claim 13, wherein, A first positioning groove is arranged on the rotating disc, the bottom end of the first positioning groove is open, the bottom end of the first positioning groove is arranged on the bottom surface of the rotating disc support plate, the top end of the first positioning groove is formed on the first connecting block, and the first positioning groove is in communication with the first limiting groove.

15. The cooking apparatus of claim 14, wherein, The first positioning groove comprises a first positioning groove top wall, the first positioning groove top wall is arranged at the top end of the first positioning groove; the rotating disc comprises a first connecting column, the first connecting column is inserted into the first positioning groove, and the top end of the first connecting column is connected with the first positioning groove top wall; The driving module comprises a driving shaft and a driving unit, the top end of the driving shaft is connected with the first connecting column, and the driving unit drives the driving shaft to rotate so as to drive the first connecting column to rotate.