Cooking machine

By introducing an adsorption structure into the cooking machine, the cantilever is attracted to the column using magnetic force, which solves the problem of unstable lid locking force, achieves stability of the lid in the open position, and improves the intelligence and ease of operation of the cooking machine.

CN223873772UActive Publication Date: 2026-02-06XIANGLU ROBOTICS (JIANGSU) CO LTD
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Patent Information

Application Number
CN202520339021.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-06
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

The existing cooking machine lid has unstable locking force during opening, which may cause the lid to fall or fail to stay stably in the open position, affecting the operation of adding ingredients into the pot.

Method used

An adsorption structure is introduced between the lid and the column. The cantilever and the column are attracted to each other by magnetic force, ensuring that the lid is stably in the open position. This includes setting first and second adsorption elements, which are located on the cantilever and the column respectively, and using magnetic force to achieve stable adsorption.

Benefits of technology

The stability of the lid in the open position has been improved, ensuring that ingredients can be added smoothly into the pot. This enhances the intelligence and safety of the cooking machine and reduces the impact of unstable locking force in the drive structure.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223873772U_ABST
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Abstract

The embodiment of the utility model provides an automatic cooker. The automatic cooker comprises a stand column, a cantilever, a pot body, a driving structure and an adsorption structure, the pot body is provided with a cooking cavity, and a pot cover is arranged on the pot body; the upright post is positioned on one side of the pot body; the driving structure is used for driving the cantilever to rotate around the first shaft of the stand column to drive the pot cover to open or close the pot body; and before the pot cover is switched to open the pot body, the cantilever and the stand column are mutually adsorbed through the adsorption structure, so that the pot cover can be stably located at the opening position, vegetable materials are smoothly added into the pot body, and the intelligence of the cooker is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cooking equipment technical field especially, relates to a cooking machine. BACKGROUND

[0002] With the improvement of living standards, people pay more and more attention to the quality of life, various automatic / semi-automatic cooking equipment emerge in endlessly, and the cooking machine is one of them.

[0003] In the related art, the side edge of the pot body of the cooking machine is provided with a stand column, and the pot body is used in combination with a pot cover. The pot cover is rotationally connected with the stand column through a cantilever, and opening and closing operations of the pot cover are realized by using a motor located in the stand column for driving.

[0004] However, the motor has problems such as unstable locking force, which can cause the pot cover to fall during opening, or cannot be stably kept in the open position, thereby affecting the operation of adding food materials into the pot body. UTILITY MODEL CONTENTS

[0005] The utility model aims at at least solving one of the technical problems existing in the prior art. To this end, the utility model provides a cooking machine, the pot cover of which can be stably positioned at the open position to ensure that food materials can be smoothly added into the pot body and the intelligence of the cooking machine is improved.

[0006] According to the cooking machine provided by the utility model, the pot cover can be stably positioned at the open position to ensure that food materials can be smoothly added into the pot body and the intelligence of the cooking machine is improved.

[0007] The pot body is provided with a cooking cavity, and the pot body is provided with a pot cover;

[0008] The stand column is located on one side of the pot body;

[0009] The cantilever is connected with the pot cover;

[0010] The driving structure is used for driving the cantilever to rotate around the first shaft of the stand column to drive the pot cover to open or close the pot body;

[0011] The suction structure is used for the cantilever and the stand column to be adsorbed to each other through the suction structure before the pot cover switches to open the pot body.

[0012] According to the cooking machine provided by the utility model, the suction structure includes a first suction member and a second suction member, one of the first suction member and the second suction member is arranged on the stand column, and the other is arranged on the cantilever;

[0013] The cantilever and the stand column are adsorbed to each other through the magnetic force action between the first suction member and the second suction member before the pot cover switches to open the pot body.

[0014] According to the cooking machine, the adsorption structure further comprises a first support with a first accommodating space, and the first support is connected to the cantilever; the first adsorption component is located in the first accommodating space, and one side of the first adsorption component on the first support faces the column; and / or,

[0015] The adsorption structure further comprises a second support with a second accommodating space, and the second support is connected to the column; the second adsorption component is located in the second accommodating space, and one side of the second adsorption component on the second support faces the cantilever.

[0016] According to the cooking machine, the cantilever comprises a top plate, the first support is connected to the inner wall of the top plate, and one side of the first adsorption component on the first support faces away from the top plate; and / or,

[0017] The column comprises oppositely arranged first and second walls, and the first wall is farther away from the pot than the second wall; the second support is arranged on the first wall, and one side of the second adsorption component on the first wall faces away from the second wall.

[0018] According to the cooking machine, the first accommodating space is configured as a first containing groove, the first containing groove is formed by extending inward from one side surface of the first support close to the top plate, and the first adsorption component is located in the first containing groove; the first support further has a first magnetic transmission hole, the first magnetic transmission hole is formed by penetrating from the bottom wall of the containing groove to the side surface away from the top plate, and the opening size of the first magnetic transmission hole is smaller than the size of the bottom wall of the first containing groove; and / or,

[0019] The second support is arranged on the outer side of the first wall, the second accommodating space is configured as a second containing groove, and the second containing groove is formed by extending inward from one side surface of the second support close to the first wall; the second support further has a second magnetic transmission hole, the second magnetic transmission hole is formed by penetrating from the bottom wall of the second containing groove to the side surface away from the first wall, and the opening size of the second magnetic transmission hole is smaller than the size of the bottom wall of the second containing groove.

[0020] According to the cooking machine, the first adsorption component is configured as a first magnetic part, and the second adsorption component is configured as a metal part.

[0021] According to the cooking machine, the first adsorption component is configured as a second magnetic part, and the second adsorption component is configured as a third magnetic part.

[0022] According to the cooking machine, the second magnetic part comprises at least two first magnetic bodies, the first accommodating space comprises at least two side-by-side arranged sub-first spaces, and the at least two first magnetic bodies are correspondingly accommodated in the at least two sub-first spaces; and / or,

[0023] The third magnetic member comprises at least two second magnetic bodies, and the second accommodating space comprises at least two side-by-side arranged sub-second spaces, and the at least two second magnetic bodies are accommodated in the at least two sub-second spaces correspondingly.

[0024] According to the frying machine provided in the embodiment of the utility model, the second magnetic member is configured to be formed by at least two first magnetic bodies being bonded side by side.

[0025] The third magnetic member is configured to be formed by at least two second magnetic bodies being bonded side by side.

[0026] According to the frying machine provided in the embodiment of the utility model, the adsorption structure further comprises a first bonding member, the first bonding member is arranged between the at least two first magnetic bodies and the top plate of the cantilever, and the first magnetic bodies are bonded to the first bonding member.

[0027] The adsorption structure further comprises a second bonding member, the second bonding member is arranged between the at least two second magnetic bodies and the first wall of the stand column, and the second magnetic bodies are bonded to the second bonding member.

[0028] Additional aspects and advantages of the utility model will be in part apparent and in part pointed out hereinafter. BRIEF DESCRIPTION OF DRAWINGS

[0029] The above and / or additional aspects and advantages of the utility model will become apparent and more readily appreciated from the following description of the embodiments, with reference to the following drawings, in which:

[0030] Figure 1 is the structure schematic view of the frying machine in the embodiment of the utility model that the pot body is in the closed state;

[0031] Figure 2 is the structure schematic view of the frying machine in the embodiment of the utility model that the pot body is in the open state;

[0032] Figure 3 is Figure 1 the partial schematic view of the left half in;

[0033] Figure 4 is Figure 3 the structure schematic view of the cantilever of the lower part in after removing the top plate;

[0034] Figure 5 is Figure 4 the enlarged structure schematic view of A in;

[0035] Figure 6 is Figure 2 the structure schematic view of the cantilever of the lower left in after removing the top plate;

[0036] Figure 7 is Figure 6An enlarged structural schematic view of the middle B;

[0037] Figure 8 For Figure 7 An exploded structural schematic view of the first support, the second magnetic member and the first adhesive member in the frying machine;

[0038] Figure 9 A structural schematic view of the first support in the frying machine according to an embodiment of the present application;

[0039] Figure 10 For Figure 4 An enlarged structural schematic view of the middle C;

[0040] Figure 11 For Figure 10 An exploded structural schematic view of the second support, the third magnetic member and the first wall;

[0041] Figure 12 A structural schematic view of the second support in the frying machine according to an embodiment of the present application;

[0042] Figure 13 For Figure 12 A structural schematic view of the second support from another angle.

[0043] Reference signs:

[0044] 100 - frying machine;

[0045] 10 - pot body; 11 - cooking cavity; 12 - pot cover; 20 - cantilever; 30 - stand column;

[0046] 21 - top plate; 22 - side plate; 31 - first wall; 41 - second magnetic member; 42 - third magnetic member; 43 - first support; 44 - second support; 411 - first magnetic body; 421 - second magnetic body; 431 - first connecting hole; 432 - first accommodating groove; 433 - first magnetic transmission hole; 434 - first adhesive member; 441 - second connecting hole; 442 - second accommodating groove; 443 - second magnetic transmission hole. DETAILED DESCRIPTION

[0047] The embodiments of the present application are described in detail below, and examples of the embodiments are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, and are only used to explain the present application, and cannot be understood as a limitation of the present application.

[0048] The following content is written in the process of writing as needed, in order to explain the relevant content:

[0049] 1. In the description of the utility model, need understanding, the term "center", "inner", "outer", "axial direction", "radial direction", "circumferential direction" and so on indicate the position relation or position relation based on the position relation shown in drawing, only for the convenience of describing the utility model and simplifying the description, and not indicate or imply that the device or element indicated must have a particular orientation, construct and operate in a particular orientation, therefore cannot be understood as a limitation on the utility model.

[0050] 2. In the description of the utility model, the meaning of "multiple" is two or more than two.

[0051] The following refers to Figures 1 to 13 The cooking machine 100 according to the embodiments of the utility model is described.

[0052] Combined Figure 1 And Figure 2 The cooking machine 100 according to the utility model includes: a pot body 10, a stand column 30, a cantilever 20, and a driving structure (not shown in the figure).

[0053] Among them, the pot body 10 is provided with a cooking cavity 11, and the opening of the cooking cavity 11 can be upward (see Figure 1 Or Figure 2 Z direction in the figure). It should be noted that the Z direction can be the direction opposite to the direction of gravity, so as to realize that the cooking cavity 11 holds the food materials.

[0054] It can be understood that here, upward can also be obliquely upward, that is, there is an included angle with the opposite direction of gravity, as long as the cooking cavity 11 can hold the food materials, the opening direction of the cooking cavity 11 is not limited in the embodiments of the application.

[0055] The pot body 10 is provided with a pot cover 12, and the pot body 10 and the pot cover 12 are used in cooperation, so as to configure the pot body 10 to be in an open or closed state. Specifically, when the pot cover 12 is covered on the pot body 10 (see Figure 1 ), the opening of the cooking cavity 11 is blocked, and the pot body 10 is in a closed state, at this time, the cooking actions such as stir-frying and stirring can be carried out; when the pot cover 12 is opened on the pot body 10 (see Figure 2 ), the opening of the cooking cavity 11 is exposed, and the pot body 10 is in an open state, at this time, the operations such as putting in food materials and holding out dishes can be carried out.

[0056] The stand column 30 can be located on one side of the pot body 10, and the pot cover 12 is rotationally connected with the stand column 30 through the cantilever 20, and the rotation shaft is the first shaft (see Figure 1 Or Figure 2 R axis in the figure) of the stand column 30. It should be noted that the first shaft can be parallel or approximately parallel to the horizontal direction, so as to realize that the cantilever 20 drives the pot cover 12 to rotate around the horizontal shaft, and the pot body 10 is configured to be in an open or closed state.

[0057] In some embodiments, one end of the cantilever 20 is rotatably connected to the stand 30 about the first axis, and the other end is connected to the lid 12. Accordingly, the cantilever 20 rotates about the first axis of the stand 30 within a preset angle range to drive the lid 12 to open or close the wok 10.

[0058] In some examples, when the lid 12 is closed on the wok 10 (first position, see Figure 1 ), the extension direction of the cantilever 20 from the stand 30 to the wok 10 is taken as the 0-degree reference position (see Figure 1 or Figure 2 M-ray). At this time, when the lid 12 is closed on the wok 10, the rotation angle of the cantilever 20 is 0°, which corresponds to the first limit within the preset angle range; when the lid 12 is lifted off the wok 10, the cantilever 20 rotates to the farthest position (second position, see Figure 2 ), the rotation angle of the cantilever 20 is the second angle. When the cantilever 20 switches to the second angle, the cantilever 20 drives the lid 12 to open the wok 10. It can be obtained that the preset angle range can be between 0° and the second angle as described above, that is, the cantilever 20 can rotate about the first axis of the stand 30 between 0° and the second angle.

[0059] It can be understood that the second angle can be determined according to the actual needs of stir-frying, such as 60°, 75°, or 90° or other angles, or any angle between 60° and 90° (including 60° and 90°), and the embodiments of the present application do not specifically limit the second angle and the preset angle range. If the second angle is determined to be 60 degrees, the preset angle range can be understood as [0°, 90°]. If the second angle is determined to be 76 degrees, the preset angle range can be understood as [0°, 76°].

[0060] In some examples, if the stand 30 is arranged on the left side of the wok 10, when the lid 12 is closed on the wok 10, the extension direction of the cantilever 20 from the stand 30 to the wok 10 is taken as the 0-degree reference position, and the preset angle range is [0°, 90°]; then, the cantilever 20 rotates counterclockwise by 90 degrees about the first axis from the first position, which can drive the lid 12 to open the wok 10; the cantilever 20 rotates clockwise by 90 degrees about the first axis from the second position, which can drive the lid 12 to close the wok 10.

[0061] In some embodiments, the driving structure is used to drive the cantilever 20 to rotate about the first axis to drive the lid 12 to open or close the wok 10.

[0062] In some examples, the driving structure can be arranged in the stand 30 and in transmission connection with the cantilever 20, and accordingly, the driving structure drives the cantilever 20 to rotate about the first axis.

[0063] In some examples, the driving structure can be configured as a motor or the like, and the type of the driving structure is not limited in the embodiments of the present application.

[0064] In the related art, the driving structure, such as the motor, has the problem of unstable locking force, which sometimes causes the pot cover to fail to be stably kept at the second position, and sometimes causes the pot cover to fall back to the first position in the process of switching from the first position to the second position, which adversely affects the operation of adding food materials into the pot body. In particular, in the commercial field, the amount of food materials required to be fried by the commercial cooking machine is large, and the volume and weight of the pot cover and the cantilever are significantly enhanced, and the adverse effects caused by the above phenomenon are more obvious, the cantilever may fall and hit the pot body, and a large noise is generated to affect the surrounding people.

[0065] In the embodiments of the present application, the cooking machine 100 further comprises an adsorption structure, before the pot cover 12 is switched to open the pot body 10, the cantilever 20 and the stand column 30 are adsorbed to each other through the adsorption structure, so that the cantilever is stably switched to the second position, the problem that the pot cover 12 fails to be kept at the second position due to the unstable locking force of the driving structure is avoided, the pot cover 12 can be stably positioned at the second position, the smooth addition of food materials into the pot body 10 is ensured, and the intelligence of the cooking machine 100 is improved.

[0066] In some embodiments, the adsorption structure can be configured as a magnetic adsorption structure, a suction cup air cylinder structure or a mechanical buckle or the like.

[0067] For example, in the case where the adsorption structure is configured as a suction cup air cylinder structure, the suction cup is arranged on the surface of the stand column 30, and the air cylinder is arranged in the interior of the stand column 30. When the cantilever 20 is rotated to the second position, the suction cup contacts the cantilever 20, and correspondingly, the suction cup adsorbs the cantilever 20 under the driving of the air cylinder, so that the pot cover 12 is stably positioned at the second position.

[0068] For another example, in the case where the adsorption structure is configured as a mechanical buckle, the buckle is arranged on the stand column 30, and when the cantilever 20 is rotated to the second position, the buckle is driven to be buckled on the cantilever 20, so that the cantilever 20 is located between the buckle and the stand column 30, and the pot cover 12 is stably positioned at the second position.

[0069] According to the cooking machine 100 of the embodiments of the present application, by arranging the adsorption structure, when the cantilever 20 is switched to the second position, the cantilever 20 and the stand column 30 are adsorbed to each other by the adsorption structure, so that the cantilever 20 and the pot cover 12 are stably positioned at the second position, and correspondingly, the pot body 10 is in an open state, so that the food materials can be smoothly added into the pot body 10, and the intelligence of the cooking machine 100 is improved.

[0070] In combination Figure 3In some embodiments, the adsorption structure comprises a first adsorption member (not labeled in the figure) and a second adsorption member (not labeled in the figure), one of the first adsorption member and the second adsorption member is arranged on the stand column 30, and the other is arranged on the cantilever 20. Before the pot cover 12 switches to open the pot body 10, the cantilever 20 and the stand column 30 are adsorbed to each other by the magnetic force between the first adsorption member and the second adsorption member, so that the cantilever 20 and the pot cover 12 are stably positioned in the second position, and correspondingly, the pot body 10 is in an open state, so as to smoothly add food materials into the pot body 10, and improve the intelligence of the cooking machine 100.

[0071] In some embodiments, in order to realize that before the pot cover 12 switches to open the pot body 10, the cantilever 20 and the stand column 30 are adsorbed to each other by the magnetic force between the first adsorption member and the second adsorption member, specifically, when the cantilever 20 reaches the second position or is located within a preset range from the second position, the first adsorption member falls within the magnetic force range of the second adsorption member, or the second adsorption member falls within the magnetic force range of the first adsorption member, or the magnetic force ranges of the first adsorption member and the second adsorption member overlap.

[0072] It should be noted that if the second position corresponds to the second angle, the preset range can be set as [second angle minus preset angle, second angle), and the preset angle can take an angle value of 15 degrees, 10 degrees or 18 degrees, etc. The present application does not limit the preset angle.

[0073] For example, if the preset angle is 15°, the preset range is [second angle-15°, second angle).

[0074] It can be understood that in order to realize that before the pot cover 12 switches to open the pot body 10, the cantilever 20 and the stand column 30 are adsorbed to each other by the magnetic force between the first adsorption member and the second adsorption member, the magnetic force of the first adsorption member and / or the second adsorption member should meet: the magnetic force of the first adsorption member can adsorb the second adsorption member, or the magnetic force of the second adsorption member can adsorb the first adsorption member, or the magnetic force of the first adsorption member and the second adsorption member can realize mutual adsorption. The present application does not specifically limit the magnetic force of the first adsorption member and / or the second adsorption member, which can be determined according to the mass and other parameters of the cantilever 20.

[0075] According to the cooking machine, the first suction accessory and the second suction accessory are introduced and arranged on the cantilever 20 and the stand column 30 respectively, the magnetic force between the first suction accessory and the second suction accessory is utilized, the cantilever 20 and the stand column 30 are adsorbed to each other before the cover 12 is switched to open the pot body 10, the cover 12 is stably positioned at the second position, the possibility that the cover 12 falls back to the first position in the process of being switched from the first position to the second position is reduced, the efficiency of adding food materials into the pot body 10 is improved, and the intelligence of the cooking machine 100 is improved. In addition, when the driving structure of the cooking machine 100 breaks down, the cantilever 20 can be prevented from generating noise due to large vibration, and the bad mood of the user caused by the breakdown is relieved to a certain extent.

[0076] In some embodiments, the first suction accessory or the second suction accessory can be attached to the stand column 30 or the cantilever 20, and correspondingly, the second suction accessory or the first suction accessory can be attached to the cantilever 20 or the stand column 30, so that the structure is simple.

[0077] In combination Figures 4 to 7 In some embodiments, the first suction accessory and / or the second suction accessory can be arranged on the stand column 30 or the cantilever 20 through a support, so that the suction accessory (the second suction accessory or the first suction accessory) can be easily disassembled, and the cantilever 20 or the stand column 30 will not be damaged, which is beneficial to improve the convenience of subsequent maintenance.

[0078] In some embodiments, the first suction accessory is arranged on the cantilever 20, and the suction structure further includes a first support 43. The first support 43 is connected to the cantilever 20, and the first suction accessory is arranged on the cantilever 20 through the first support 43, so that the replacement of the magnet after damage is facilitated.

[0079] In combination Figures 8 to 9 In some embodiments, the first support 43 is provided with a first connecting hole 431, and a fastener penetrates through the first connecting hole 431 and extends to the cantilever 20 to fasten and connect the first support 43 and the cantilever 20. It can be understood that the connection of the first support 43 and the cantilever 20 through the fastener is only an example of the connection of the first support 43 and the cantilever 20, and the connection mode of the first support 43 and the cantilever 20 is not limited in the embodiments of the application.

[0080] In some embodiments, the first support 43 has a first accommodating space, and the first suction accessory is located in the first accommodating space. The size of the first accommodating space matches the size of the first suction accessory, so that the first suction accessory can be positioned in the first accommodating space without obvious shaking, and the structural stability is ensured.

[0081] For example, the first suction accessory is a circular cake structure, and the shape of the first accommodating space is a cylindrical shape. The size of the first accommodating space matches the size of the circular cake structure.

[0082] In some embodiments, the first suction member is exposed on a side of the first support 43 facing the column 30, so that the magnetic force between the first suction member and the second suction member is not blocked by the first support 43.

[0083] In some examples, the first accommodating space is configured as a through cavity, which is sized and shaped to match the first suction member, so that the first suction member is clamped in the through cavity and exposed on a side of the first support 43 facing the column 30.

[0084] In some embodiments, the cantilever 20 includes a top plate 21 and a side plate 22 connected to an edge of the top plate 21, and the first support 43 is connected to the top plate 21, and the first suction member is exposed on a side of the first support 43 facing away from the top plate 21.

[0085] The top plate 21 can be a plate of the cantilever 20 in the direction of gravity, and can be an upper top plate 21 or a lower top plate 21, which is not specifically limited in the embodiments of the present application.

[0086] In some embodiments, the top plate 21 and the side plate 22 form an installation space, and the first support 43 is connected to an inner wall of the top plate 21 and located in the installation space, so that the first support 43 and the first suction member are protected by the structure of the cantilever 20, reducing the risk of damage and prolonging the service life.

[0087] In some examples, the first accommodating space is configured as a first accommodating groove 432, which is configured to extend inward from a side surface of the top plate 21 to form the first support 43, so that the first suction member is located in the first accommodating groove 432. In this way, the first accommodating groove 432 cooperates with the inner wall of the top plate 21 to position the first suction member, simplifying the structure of the first support 43 and facilitating installation.

[0088] In this example, the first support 43 further forms a first magnetic transmission hole 433, which is configured to extend through from a bottom wall of the accommodating groove to a side surface facing away from the top plate 21, and the first suction member is exposed corresponding to the first magnetic transmission hole 433.

[0089] In order to avoid the first suction member falling out along the first magnetic transmission hole 433, the opening size of the first magnetic transmission hole 433 should be smaller than the size of the first suction member in the radial direction of the first magnetic transmission hole 433. In other words, the opening size of the first magnetic transmission hole 433 is smaller than the size of the bottom wall of the first accommodating groove 432.

[0090] In combination with Figures 10 to 13In some embodiments, the second suction member is arranged on the stand 30, and the suction structure further comprises a second bracket 44. The second bracket 44 is connected to the stand 30, and the second suction member is arranged on the stand 30 through the second bracket 44, facilitating replacement of the magnet after damage.

[0091] In some embodiments, the second bracket 44 is provided with a second connecting hole 441, and a fastener is arranged through the second connecting hole 441 and extends to the stand 30 to fasten the second bracket 44 to the stand 30. It can be understood that the fastener is only used as an example of the connection between the second bracket 44 and the stand 30, and the embodiments of the present application do not limit the connection mode between the second bracket 44 and the stand 30.

[0092] In some embodiments, the second bracket 44 has a second accommodating space, and the second suction member is located in the second accommodating space. The size of the second accommodating space matches the size of the second suction member, so that the second suction member can be positioned in the second accommodating space without obvious shaking, ensuring the stability of the structure.

[0093] For example, the second suction member is a circular disc structure, the first accommodating space is a cylindrical shape, and the size of the second accommodating space matches the size of the circular disc structure.

[0094] In some embodiments, in order to prevent the magnetic force between the first suction member and the second suction member from being blocked by the second bracket 44, the second suction member is exposed on the side of the second bracket 44 facing the cantilever 20. In this way, the magnetic force exerted by the first suction member on the second suction member or the magnetic force exerted by the second suction member on the first suction member will not be affected by the second bracket 44.

[0095] In some examples, the second accommodating space is configured as a through cavity, and the size and shape of the through cavity match the size and shape of the second suction member, so that the second suction member is clamped in the through cavity and can be exposed on the side of the first bracket 43 facing the stand 30.

[0096] In the embodiments, the stand 30 comprises a first wall 31 and a second wall (not shown) arranged oppositely, wherein the first wall 31 is farther away from the pot body 10 than the second wall; the second bracket 44 is arranged outside the first wall 31, and the second suction member is exposed on the side of the second wall facing away from the first wall 31.

[0097] The first wall 31 and the second wall are arranged in a horizontal direction.

[0098] In some examples, the second accommodating space is configured as a second accommodating groove 442, which is formed by extending inward from a side surface of the first wall 31 of the column 30, so that the second suction accessory is located in the second accommodating groove 442. In this way, the second accommodating groove 442 cooperates with the outside of the first wall 31 of the column 30 to position the second suction accessory, and simplifies the structure of the second support 44 and facilitates installation.

[0099] In this example, the second support 44 is further formed with a second magnetic transmission hole 443, which is formed by extending from the bottom wall of the second accommodating groove 442 away from the side surface of the first wall 31, and the second suction accessory is exposed at the second magnetic transmission hole 443.

[0100] In order to avoid the second suction accessory falling out of the second magnetic transmission hole 443, the opening size d1 of the second magnetic transmission hole 443 should be smaller than the size of the second suction accessory in the radial direction of the second magnetic transmission hole 443. In other words, the opening size d1 of the second magnetic transmission hole 443 is smaller than the size d2 of the bottom wall of the second accommodating groove 442.

[0101] In some examples, the first suction accessory is configured as a first magnetic member, and the second suction accessory is configured as a metal member. When the cantilever 20 reaches the second position or is located within a preset range from the second position, the metal member falls into the magnetic force range of the first magnetic member, so that the metal member and the first magnetic member are mutually adsorbed by the magnetic force of the first magnetic member, and correspondingly, the cantilever 20 and the column 30 are mutually adsorbed at the second position. In this way, the combination of the magnetic structure (the first magnetic member) and the metal member realizes adsorption by the principle of opposite sex attraction, and the cost is low.

[0102] For example, the metal member is arranged on the cantilever 20, and the first magnetic member is arranged on the column 30. When the cantilever 20 reaches the second position or is located within a preset range from the second position, the column 30 is attracted to the metal member by the magnetic force of the first magnetic member, and finally, the first magnetic member and the metal member are mutually adsorbed together.

[0103] For another example, the metal member is arranged on the column 30, and the first magnetic member is arranged on the cantilever 20. When the cantilever 20 reaches the second position or is located within a preset range from the second position, the metal member is attracted to the first magnetic member by the magnetic force of the first magnetic member, and finally, the first magnetic member and the metal member are mutually adsorbed together, and correspondingly, the cantilever 20 and the column 30 are mutually adsorbed at the second position. In this way, when the cantilever 20 needs to be replaced or upgraded, only the first magnetic member on the cantilever 20 needs to be disassembled, without the need to operate the metal member on the column 30, which simplifies the replacement process of the cantilever 20 and reduces the maintenance cost and time cost.

[0104] In some embodiments, the first magnetic member 41 is configured as the second magnetic member 41, and the second magnetic member 42 is configured as the third magnetic member 42. When the cantilever 20 reaches the second position or is located within a preset range from the second position, the magnetic force ranges of the second magnetic member 41 and the third magnetic member 42 overlap, so that the second magnetic member 41 and the third magnetic member 42 are attracted together by the mutual magnetic force between the second magnetic member 41 and the third magnetic member 42, and accordingly, the cantilever 20 and the column 30 are in the adsorbed state at the second position.

[0105] It can be understood that the second magnetic member 41 and the third magnetic member 42 are opposite in polarity in the orientation towards each other, so as to be able to generate mutual attraction between the second magnetic member 41 and the third magnetic member 42.

[0106] For example, the second magnetic member 41 is arranged on the column 30, and the third magnetic member 42 is arranged on the cantilever 20. When the cantilever 20 reaches the second position or is located within a preset range from the second position, the second magnetic member 41 and the third magnetic member 42 are attracted together by the mutual attraction between the second magnetic member 41 and the third magnetic member 42, and accordingly, the cantilever 20 and the column 30 are in the adsorbed state at the second position.

[0107] For example, the side of the second magnetic member 41 facing the third magnetic member 42 is configured as an S polarity, and the side of the third magnetic member 42 facing the second magnetic member 41 is configured as an N polarity.

[0108] In some embodiments, the second magnetic member 41 can include at least two first magnetic bodies 411. In one implementation, the at least two first magnetic bodies 411 can be arranged separately in the first bracket 43, so that the first accommodating space has at least two sub-first spaces, and the first magnetic body 411 is placed one-to-one corresponding to the sub-first space. In another implementation, the at least two first magnetic bodies 411 can be placed as a whole in the first bracket 43, so that the shape and size of the first accommodating space should match the shape and size of the at least two first magnetic bodies 411 after being placed in contact, so that the at least two first magnetic bodies 411 are placed together in the first accommodating space.

[0109] According to the cooking machine provided in the embodiments of the present application, by introducing at least two first magnetic bodies 411 as the second magnetic member 41, the magnetic force size and the magnetic force direction of the second magnetic member 41 can be flexibly adjusted, and the compatibility of the magnetic attraction structure in various cooking machines 100 is improved.

[0110] In the case that the at least two first magnetic bodies 411 can be placed separately in the first support 43 (not shown in the figure), the first accommodating space comprises at least two first sub-spaces arranged side by side, and the at least two first magnetic bodies 411 are respectively placed in the at least two first sub-spaces, so that the at least two first magnetic bodies 411 are arranged side by side on the cantilever 20, which is conducive to expanding the magnetic force range and reducing the installation thickness, thereby reducing the structural size.

[0111] In an embodiment, if the first accommodating space is configured as the first accommodating groove 432, the number of the first magnetic transmission holes 433 is consistent with the number of the first magnetic bodies 411. The configuration of each first magnetic transmission hole 433 can refer to the configuration of the first magnetic transmission hole 433 described above, and will not be described here again.

[0112] In the case that the at least two first magnetic bodies 411 can be placed as a whole in the first support 43, the shape and size of the first accommodating space should match the shape and size of the at least two first magnetic bodies 411 placed in contact with each other.

[0113] For example, if the number of the first magnetic bodies 411 is three and each is a circular pie structure, the three first magnetic bodies 411 are arranged side by side in the first accommodating space, then the cross-sectional shape of the first accommodating space along the extension direction thereof is three circles arranged side by side and tangent to each other, and the diameter of the circle is consistent with the diameter of the circular pie of the first magnetic body 411; the extension size of the first accommodating space along the extension direction thereof corresponds to the thickness size of the circular pie.

[0114] In some embodiments, the adsorption structure further comprises a first adhesive 434 for adhesively connecting the at least two first magnetic bodies 411 side by side to form a whole, so as to facilitate installation. In addition, the first adhesive 434 is placed between the at least two first magnetic bodies 411 and the top plate 21, so as to be able to compress the magnetic bodies.

[0115] In some embodiments, the third magnetic member 42 can comprise at least two second magnetic bodies 421. In an embodiment, the at least two second magnetic bodies 421 can be placed separately in the second support 44, and then the second accommodating space has at least two second sub-spaces, and the second magnetic bodies 421 are placed one by one in the second sub-spaces. In another embodiment, the at least two second magnetic bodies 421 can be placed as a whole in the second support 44, and then the shape and size of the second accommodating space should match the shape and size of the at least two second magnetic bodies 421 placed in contact with each other, so that the at least two second magnetic bodies 421 are placed in the second accommodating space together.

[0116] According to the cooking machine provided in the embodiment of the present application, the at least two second magnetic bodies 421 are introduced as the third magnetic member 42, which is conducive to flexibly adjusting the magnetic force size and the magnetic force direction of the third magnetic member 42 and improving the compatibility of the magnetic attraction structure in various cooking machines 100.

[0117] In the case that the at least two second magnetic bodies 421 can be separately arranged in the second support 44 (not shown in the figure), the second accommodating space includes at least two side-by-side arranged sub-second spaces, and the at least two second magnetic bodies 421 are respectively located in the at least two sub-second spaces, so that the at least two second magnetic bodies 421 are arranged side by side on the stand column 30, which is conducive to expanding the magnetic force range and reducing the installation thickness, thereby reducing the structure size.

[0118] In one embodiment, if the second accommodating space is configured as the second accommodating groove 442, the number of the second magnetic transmission holes 443 is consistent with the number of the second magnetic bodies 421. The configuration of each second magnetic transmission hole 443 can refer to the configuration of the aforementioned second magnetic transmission hole 443, which will not be described here again.

[0119] In the case that the at least two second magnetic bodies 421 can be placed as a whole in the second support 44, the shape and size of the second accommodating space should match the shape and size of the at least two second magnetic bodies 421 after being placed in contact.

[0120] For example, if the number of the second magnetic bodies 421 is three and each is a circular cake structure, the three second magnetic bodies 421 are installed side by side in the second accommodating space, then the cross-sectional shape of the second accommodating space along its extension direction is three circles arranged side by side and tangent to each other, and the diameter of the circle is consistent with the diameter of the circular cake of the first magnetic body 411; the extension size of the second accommodating space along its extension direction corresponds to the thickness size of the circular cake.

[0121] In some embodiments, the adsorption structure further includes a second bonding member (not shown in the figure), which is used to bond the at least two second magnetic bodies 421 side by side to form a whole, so as to facilitate installation. In addition, the second bonding member is arranged between the at least two second magnetic bodies 421 and the top plate 21, so as to be able to compress the magnetic bodies.

[0122] For example, if the number of the second magnetic bodies 421 is three, the second bonding member is used to bond the three second magnetic bodies 421 side by side to form a whole.

[0123] In the description of the present specification, the description referring to the terms "one embodiment", "some embodiments", "exemplary embodiment", "example", "specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the exemplary description of the above terms does not necessarily mean the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0124] Although the embodiments of the present application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made thereto without departing from the principles and spirit of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A cooking machine, characterized by, The application relates to a cooking device, comprising: a pot body provided with a cooking cavity and a pot cover; a stand column arranged on one side of the pot body; a cantilever connected to the pot cover; a driving structure for driving the cantilever to rotate around a first shaft of the stand column, so as to drive the pot cover to open or close the pot body; and an adsorption structure for adsorbing the cantilever and the stand column to each other through magnetic force before the pot cover is switched to open the pot body. The adsorption structure comprises a first adsorption member and a second adsorption member, one of which is arranged on the stand column and the other of which is arranged on the cantilever. The cantilever and the stand column are adsorbed to each other through magnetic force between the first adsorption member and the second adsorption member before the pot cover is switched to open the pot body. The adsorption structure further comprises a first bracket provided with a first accommodating space, the first bracket being connected to the cantilever; the first adsorption member is arranged in the first accommodating space, and the first adsorption member is exposed on one side of the first bracket facing the stand column. The adsorption structure further comprises a second bracket provided with a second accommodating space, the second bracket being connected to the stand column; the second adsorption member is arranged in the second accommodating space, and the second adsorption member is exposed on one side of the second bracket facing the cantilever. The cantilever comprises a top plate, the first bracket is connected to an inner wall of the top plate, and the first adsorption member is exposed on one side of the first bracket facing away from the top plate.

2. The cooker according to claim 1, characterized in that, The stand column comprises oppositely arranged first and second walls, the first wall being farther away from the pot body than the second wall; the second bracket is arranged on the first wall, and the second adsorption member is exposed on one side of the first wall facing away from the second wall. The first accommodating space is configured as a first accommodating groove formed by extending the first bracket inward from one side surface close to the top plate; the first adsorption member is arranged in the first accommodating groove; the first bracket is further provided with a first magnetic transmission hole formed by penetrating from a bottom wall of the accommodating groove to one side surface away from the top plate, and the opening size of the first magnetic transmission hole is smaller than the size of the bottom wall of the first accommodating groove.

3. The cooking machine according to claim 2, characterized in that, The second bracket is arranged outside the first wall, the second accommodating space is configured as a second accommodating groove formed by extending the second bracket inward from one side surface close to the first wall; the second bracket is further provided with a second magnetic transmission hole formed by penetrating from a bottom wall of the second accommodating groove to one side surface away from the first wall, and the opening size of the second magnetic transmission hole is smaller than the size of the bottom wall of the second accommodating groove. The first adsorption member is configured as a first magnetic member, and the second adsorption member is configured as a metal member. The first adsorption member is configured as a second magnetic member, and the second adsorption member is configured as a third magnetic member.

4. The cooker according to claim 3, characterized in that, ​ ​ 5. The cooking machine according to claim 4, characterized in that, ​ ​ ​ 6. The cooking machine according to any one of claims 2 to 5, characterized in that, ​ 7. The cooking machine according to any one of claims 3 to 5, characterized in that, ​ 8. The cooker according to claim 7, characterized in that, The second magnetic member comprises at least two first magnetic bodies, the first accommodating space comprises at least two side-by-side arranged sub-first spaces, and the at least two first magnetic bodies are correspondingly accommodated in the at least two sub-first spaces; and / or, The third magnetic member comprises at least two second magnetic bodies, the second accommodating space comprises at least two side-by-side arranged sub-second spaces, and the at least two second magnetic bodies are correspondingly accommodated in the at least two sub-second spaces.

9. The cooker according to claim 7, characterized in that, The second magnetic member is configured to be formed by bonding the at least two first magnetic bodies after being arranged side by side; or, The third magnetic member is configured to be formed by bonding the at least two second magnetic bodies after being arranged side by side.

10. The cooking machine according to claim 9, characterized in that, The adsorption structure further comprises a first bonding member, the first bonding member is arranged between the at least two first magnetic bodies and the top plate of the cantilever, and the first magnetic bodies are bonded to the first bonding member; or, The adsorption structure further comprises a second bonding member, the second bonding member is arranged between the at least two second magnetic bodies and the first wall of the column, and the second magnetic bodies are bonded to the second bonding member. ​