Cooking equipment

By setting a detachable partition assembly in the cooking cavity of the cooking device and separating it into multiple independent cooking sub-cavities, the problem in the prior art that multiple cooking methods cannot be realized simultaneously in one cavity is solved, and efficient and diverse cooking effects are achieved.

CN223025824UActive Publication Date: 2025-06-27GUANGDONG MIDEA KITCHEN APPLIANCES MFG CO LTD
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Patent Information

Application Number
CN202421888117.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-06-27
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

Existing cooking utensils cannot achieve multiple cooking methods in one cavity at the same time, resulting in low cooking efficiency, food skewers and inability to meet different grilling needs.

Method used

A cooking device is designed to separate it into multiple independent cooking sub-cavities by providing a detachable partition assembly in the cooking chamber, each of which is equipped with a heating structure, supporting two types of baking methods: hot air and pure baking.

Benefits of technology

It achieves the simultaneous grilling of different foods, avoids the skewer flavor of the food, enhances the taste of the food, and meets the needs of grilling a large amount of food, has good cooking effect and many usage scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooking device which comprises a device body, a cooking cavity and an installation cavity are formed in the device body, and a hot air assembly is arranged in the installation cavity. The partition assembly is installed in the cooking cavity and divides the cooking cavity into a plurality of cooking sub-cavities, and a heating structure is arranged in each cooking sub-cavity; wherein the partition assembly is detachable relative to the equipment body and enables the multiple cooking sub-cavities to be selectively communicated, the installation cavity is communicated with one of the multiple cooking sub-cavities, and the hot air assembly is used for conveying hot air to one of the multiple cooking sub-cavities or conveying hot air to the multiple cooking sub-cavities at the same time. According to the cooking equipment, through the multiple cooking sub-cavities, baking of different kinds of food can be achieved, the food can be baked in a hot air mode and a pure baking mode, an integral cooking cavity can be formed, the baking requirement of a large amount of food can be met, the cooking effect is good, and the use scenes are multiple.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a cooking device. Background Art

[0002] For common cooking utensils, whether they are single-function models, such as microwave ovens, steamers, ovens, etc., or combined-function models, such as steam ovens, air fryers, microwave steam ovens, etc., they cannot perform multiple cooking methods simultaneously in one cavity. This makes users can only achieve one cooking and heating method each time. When there are multiple foods that require different cooking methods, they can only be carried out sequentially, seriously affecting the cooking efficiency. Moreover, when placing multiple dishes in the same cavity for cooking at the same time, it is easy to have flavor cross-talk, affecting the taste of the food. In addition, when users cook small portions of food, the large volume of the cavity will affect the cooking speed of the food, and there is room for improvement. Summary of the Utility Model

[0003] The utility model aims to solve at least one of the technical problems existing in the prior art. For this purpose, the utility model provides a cooking device, which can bake food in two ways: hot air and pure baking, can achieve different baking effects for different foods, and the partition component is detachable relative to the device body to form an integral cooking cavity, which can meet the demand for baking a large amount of food, has good cooking effects and a wide range of usage scenarios.

[0004] The cooking device according to an embodiment of the utility model includes: a device body, in which a cooking cavity and an installation cavity are formed, and a hot air component is arranged in the installation cavity; a partition component, which is installed in the cooking cavity and divides the cooking cavity into multiple cooking sub-cavities, and a heating structure is arranged in each cooking sub-cavity; wherein, the partition component is detachable relative to the device body and enables the multiple cooking sub-cavities to be selectively communicated, the installation cavity is communicated with one of the multiple cooking sub-cavities, and the hot air component is used to convey hot air to one or simultaneously to multiple cooking sub-cavities.

[0005] The cooking device according to an embodiment of the utility model, by arranging a partition component in the cooking cavity, can divide the cooking cavity into multiple cooking sub-cavities, can realize the simultaneous baking of different foods, and can bake food in two ways: hot air and pure baking, can achieve different baking effects for different foods, can avoid flavor cross-talk between different foods, improve the taste of the food, and the partition component is detachable relative to the device body to form an integral cooking cavity, which can meet the demand for baking a large amount of food, has good cooking effects and a wide range of usage scenarios.

[0006] According to some embodiments of the present utility model, the cooking sub-cavities are two and are respectively a first cooking sub-cavity and a second cooking sub-cavity. The partitioning component is configured as a partition plate disposed between the first cooking sub-cavity and the second cooking sub-cavity. The installation cavity communicates with a side of the first cooking sub-cavity facing away from the second cooking sub-cavity.

[0007] According to some embodiments of the present utility model, the first cooking sub-cavity and the second cooking sub-cavity are distributed along a first direction. The partition plate includes a first plate body and a second plate body, and the first plate body and the second plate body are connected along the first direction.

[0008] Alternatively, the partition plate is an integral part.

[0009] According to some embodiments of the present utility model, an open receiving groove is formed on a side of the first plate body facing away from the first cooking sub-cavity. The second plate body is installed in the receiving groove and is detachably connected to the first plate body through a connecting member.

[0010] According to some embodiments of the present utility model, the cooking cavity includes a first side wall and a second side wall that are oppositely distributed along the first direction. The first plate body and the first side wall are oppositely distributed along the first direction, and the second plate body and the second side wall are oppositely distributed along the first direction.

[0011] Wherein, the first plate body and the first side wall are both provided with first supporting portions. The first supporting portion of the first plate body and the first supporting portion of the first side wall are used to support a first food support member. The second plate body and the second side wall are both provided with second supporting portions. The second supporting portion of the second plate body and the second supporting portion of the second side wall are used to support a second food support member.

[0012] According to some embodiments of the present utility model, the device body is provided with a sliding mating portion, and the partition plate is supported by the sliding mating portion. The partition plate is slidable relative to the sliding mating portion to communicate or partition the first cooking sub-cavity and the second cooking sub-cavity.

[0013] According to some embodiments of the present utility model, the device body is further provided with a positioning structure, and the partition plate is provided with a positioning mating portion. After the partition plate slides to separate the first cooking sub-cavity and the second cooking sub-cavity, the positioning structure and the positioning mating portion are in positioning cooperation.

[0014] A cooking device according to some embodiments of the present utility model, wherein a positioning installation groove is provided on the device body, and the positioning structure includes an elastic member and a limiting post. The elastic member is installed in the positioning installation groove, and two ends of the elastic member are respectively connected to the inner wall of the positioning installation groove and the limiting post to push the limiting post to protrude outwards from the positioning installation groove;

[0015] The positioning and mating portion is configured as a positioning hole, and the positioning hole is adapted to be inserted and positioned with the limiting post.

[0016] A cooking device according to some embodiments of the present utility model, wherein there are a plurality of sliding and mating portions, and the plurality of sliding and mating portions are respectively in sliding fit with the partition board;

[0017] And / or, there are a plurality of the positioning structures and the positioning and mating portions, and the plurality of positioning structures are in one-to-one positioning fit with the plurality of positioning and mating portions.

[0018] A cooking device according to some embodiments of the present utility model, wherein the first cooking sub-cavity and the second cooking sub-cavity are distributed along a first direction;

[0019] The heating structure includes a first heating element and a second heating element. The first heating element and the second heating element are relatively distributed along a second direction in the first cooking sub-cavity or the second cooking sub-cavity, and the first direction is perpendicular to the second direction.

[0020] A cooking device according to some embodiments of the present utility model, wherein the device body is provided with an activity opening that is open along a third direction, and the partition assembly is slidable relative to the device body along the third direction to slide in or out from the activity opening, and both the first direction and the second direction are perpendicular to the third direction.

[0021] A cooking device according to some embodiments of the present utility model, wherein the cooking cavity includes a first side wall and a second side wall that are relatively distributed along the first direction, the partition assembly is located between the first side wall and the second side wall, and the first side wall is provided with an air inlet and an air return opening, and the air inlet and the air return opening are respectively communicated with the installation cavity.

[0022] A cooking device according to some embodiments of the present utility model, wherein the hot air assembly includes a third heating element and a heating fan, and the heating fan is used to drive the air flow at the third heating element to flow into the first cooking sub-cavity.

[0023] Additional aspects and advantages of the present utility model will be given in part in the following description, will become apparent in part from the following description, or will be understood through the practice of the present utility model. Description of the Drawings

[0024] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, where:

[0025] Figure 1 is a schematic structural diagram of a cooking device according to an embodiment of the present utility model;

[0026] Figure 2 is an exploded view of the cooking device according to an embodiment of the present utility model;

[0027] Figure 3 is an assembly relationship diagram of a partition assembly of the cooking device according to an embodiment of the present utility model;

[0028] Figure 4 is a cross-sectional view of the partition assembly of the cooking device according to an embodiment of the present utility model;

[0029] Figure 5 is a schematic structural diagram of a sliding fit portion of the cooking device according to an embodiment of the present utility model;

[0030] Figure 6 is a side view of a top plate of the cooking device according to an embodiment of the present utility model;

[0031] Figure 7 is a top view of a top plate of the cooking device according to an embodiment of the present utility model;

[0032] Figure 8 is a cross-section of the cooking device according to an embodiment of the present utility model Figure 1 ;

[0033] Figure 9 is Figure 8 an enlarged view of part A in

[0034] Figure 10 is a cross-section of the cooking device according to an embodiment of the present utility model Figure 2 .

[0035] Reference numerals:

[0036] cooking device 100,

[0037] Device body 1, cooking cavity 11, cooking sub-cavity 111, first cooking sub-cavity 112, second cooking sub-cavity 113, first side wall 114, second side wall 115, installation cavity 12, hot air component 121, sliding fit part 13, sliding groove 131, positioning structure 132, elastic part 133, limiting post 134, pressing part 1341, positioning installation groove 14, movable opening 15, outer shell 16, top plate 17, first sub-plate 171, second sub-plate 172, installation hole 1721, third sub-plate 173, wire groove 174, first side plate 18, second side plate 19, separation component 2, first plate body 21, receiving groove 211, first support part 212, sunk platform 213, connection hole 214, second plate body 22, second support part 221, positioning fit part 23, connecting piece 24, heating structure 3, first heating element 31, second heating element 32, first food support 4, second food support 5. Detailed implementation mode

[0038] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements with the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.

[0039] In the description of the present utility model, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present utility model. In addition, the features defined as "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present utility model, unless otherwise stated, the meaning of "a plurality" is two or more.

[0040] In the description of the present utility model, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0041] The following refers to Figures 1 - 10 Describe the cooking device 100 according to an embodiment of the present utility model. By setting the partition component 2 detachably connected in the cooking cavity 11, the cooking cavity 11 can be divided into multiple cooking sub-cavities 111, enabling the simultaneous baking of different foods. Moreover, two baking methods, hot air and pure baking, can be adopted to bake foods, achieving different baking effects for different foods. When the partition component 2 is detached from the device body 1 to form an integral cooking cavity 11, it can meet the need for baking a large amount of food, with good cooking effects and multiple usage scenarios.

[0042] As Figures 1 - 10 shown, the cooking device 100 according to an embodiment of the present utility model includes: a device body 1 and a partition component 2.

[0043] A cooking cavity 11 and an installation cavity 12 are formed in the device body 1. A hot air component 121 is provided in the installation cavity 12. Specifically, the cooking device 100 can be other types such as an air fryer, an oven, and a roasting oven. The device body 1 is the housing structure of the cooking device 100, which includes a cooking cavity 11 and an installation cavity 12 inside. The cooking cavity 11 is used to place the food to be cooked, and the installation cavity 12 is used for the installation of the hot air component 121. For example, the hot air component 121 is detachably connected in the installation cavity 12, and the installation cavity 12 and the cooking cavity 11 are spaced apart, so that the hot air component 121 can be spaced apart from the cooking cavity 11.

[0044] Moreover, the hot air component 121 can drive the flow of hot air in the installation cavity 12. In practice, the hot air component 121 can heat the air in the installation cavity 12 and can circulate the heated air between the installation cavity 12 and the cooking cavity 11 to continuously heat the food in the cooking cavity 11, realizing the hot air baking of the food.

[0045] The partition component 2 is installed in the cooking cavity 11 and divides the cooking cavity 11 into multiple cooking sub-cavities 111. That is, the cooking cavity 11 is divided into multiple independent cooking sub-cavities 111 through the partition component 2 for cooking various different foods. A heating structure 3 is provided in each cooking sub-cavity 111. The heating structure 3 can be a heating tube. After the heating tube is powered on, it can heat the surrounding gas. That is, place the food to be cooked in multiple cooking sub-cavities 111, and the heating structures 3 in each cooking sub-cavity 111 work simultaneously to heat the food in each cooking sub-cavity 111, enabling the simultaneous cooking of a small amount of various foods. Thus, the cooking device 100 can produce multiple dishes at once, reduce the flavor mixing of dishes, improve the taste, and further enhance the cooking performance of the cooking device 100. Among them, the cooking sub-cavities 111 can be two, three, four, etc.

[0046] Among them, the partition component 2 is detachable relative to the device body 1 and enables multiple cooking sub-chambers 111 to be selectively communicated. The installation chamber 12 is communicated with one of the multiple cooking sub-chambers 111, and the hot air component 121 is used to convey hot air to one of the multiple cooking sub-chambers 111 or simultaneously to the multiple cooking sub-chambers 111.

[0047] Specifically, the partition component 2 is located in the cooking chamber 11, and the partition component 2 is detachably connected to the inside of the device body 1, and they can be connected by means of moving, clamping, etc. When the partition component 2 is connected to the device body 1, the multiple cooking sub-chambers 111 are separated, the installation chamber 12 is communicated with at least one cooking sub-chamber 111, the hot air component 121 in the installation chamber 12 conveys hot air to at least one cooking sub-chamber 111, and the remaining cooking sub-chambers 111 can heat food through the heating structure 3. And after the partition component 2 is detached from the device body 1, the multiple cooking sub-chambers 111 are communicated to form a large cooking chamber 11, the installation chamber 12 is communicated with the multiple cooking sub-chambers 111, and the hot air component 121 conveys hot air to the multiple cooking sub-chambers 111 to achieve uniform heating of food. Among them, the partition component 2 can be set to one or more.

[0048] Thus, under different needs of users, the partition component 2 can be selectively separated from or connected to the device body 1. When the multiple cooking sub-chambers 111 are used separately, the heating structure 3 and the hot air component 121 work simultaneously, and the characteristic that a cooking device 100 can heat food in different ways can be realized, thereby improving the cooking efficiency of food. And when the multiple cooking sub-chambers 111 are communicated and used, hot air circulation is used to heat food through the hot air component 121, and food can be roasted purely through the heating structure 3 to meet the use requirements of a cooking chamber 11, improving the product performance of the cooking device 100, and having high use flexibility and many use scenarios. In addition, the partition component 2 is detachable from the device body 1, which is beneficial to meeting different use needs of users, and is convenient for cleaning and maintenance, improving the user experience.

[0049] According to the cooking device 100 of the embodiment of the present invention, by arranging the partition component 2 in the cooking chamber 11, the cooking chamber 11 can be divided into multiple cooking sub-chambers 111, different foods can be roasted simultaneously, and two methods of hot air and pure roasting can be used to roast food, different roasting effects of different foods can be realized, and the problem of flavor mixing of different foods can be avoided, improving the food taste. And the partition component 2 is detachable relative to the device body 1 to form an integral cooking chamber 11, which can meet the need for roasting a large amount of food, and has good cooking effect and many use scenarios.

[0050] In some embodiments, there are two cooking sub-chambers 111, namely a first cooking sub-chamber 112 and a second cooking sub-chamber 113 respectively. The separating component 2 is configured as a partition plate disposed between the first cooking sub-chamber 112 and the second cooking sub-chamber 113, and the installation chamber 12 communicates with the side of the first cooking sub-chamber 112 facing away from the second cooking sub-chamber 113.

[0051] Specifically, as Figure 1 and Figure 2 shown, there is one separating component 2, and the separating component 2 can be configured as a partition plate. One side of the partition plate is the first cooking sub-chamber 112, and the other side is the second cooking sub-chamber 113. That is, the cooking chamber 11 is separated into the first cooking sub-chamber 112 and the second cooking sub-chamber 113 by one separating component 2, enabling the user to cook different foods simultaneously in these two independent cooking sub-chambers 111, or to select and use one of them as needed. Moreover, the installation chamber 12 is located on the side of the first cooking sub-chamber 112 facing away from the second cooking sub-chamber 113, and the installation chamber 12 communicates with the first cooking sub-chamber 112, enabling the hot air component 121 to convey hot air towards the first cooking sub-chamber 112 to achieve hot air heating of the food in the first cooking sub-chamber 112. The second cooking sub-chamber 113 is spaced apart from the first cooking sub-chamber 112, and the hot air flow is not connected. The second cooking sub-chamber 113 can directly heat the food through the heating structure 3.

[0052] Thus, through the separating function of the partition plate, when the user cooks food in the first cooking sub-chamber 112 and the second cooking sub-chamber 113 simultaneously, the cooking processes of the two cooking sub-chambers 111 operate independently without interference, which can avoid cross-influence between foods, resulting in better taste of the foods. Moreover, the installation chamber 12 is close to the first cooking sub-chamber 112 and far from the second cooking sub-chamber 113, which can optimize the distribution of hot air to achieve different cooking effects.

[0053] In some embodiments, the first cooking sub-chamber 112 and the second cooking sub-chamber 113 are distributed along a first direction. The partition plate includes a first plate body 21 and a second plate body 22, and the first plate body 21 and the second plate body 22 are connected along the first direction.

[0054] Specifically, the first direction can be a horizontal direction, a vertical direction or other directions. In this embodiment, the first direction is the horizontal direction, that is, the first cooking sub-chamber 112 and the second cooking sub-chamber 113 are distributed along the horizontal direction, and the cavity sizes of the first cooking sub-chamber 112 and the second cooking sub-chamber 113 can be the same. The partition plate is located between them. As Figure 3 shown, the partition plate includes two plate bodies, namely the first plate body 21 and the second plate body 22, and the first plate body 21 and the second plate body 22 are detachably connected along the horizontal direction. The two can be connected by fasteners such as bolts, or can also be connected by means of snap connection, plug connection, etc. Their connection method is simple and the assembly is convenient.

[0055] Moreover, the first plate body 21 and the second plate body 22 are connected along the first direction, such that the partition plate is a complete plane on the sides respectively facing the two cooking sub-cavities 111, avoiding gaps between the first cooking sub-cavity 112 and the second cooking sub-cavity 113, and preventing interference between the two cooking sub-cavities 111, so as to improve the cooking effects of the two cooking sub-cavities 111 respectively.

[0056] Alternatively, the partition plate is a single-piece component, that is to say, the partition plate is composed of a single structure and is not manufactured by splicing multiple structures. In actual processing, the partition plate can be integrally processed and formed, such that the partition plate has a continuous structure, which can improve the stability and durability of the partition plate, and the overall appearance is regular and smooth. In addition, the assembly steps of the partition plate can be reduced, the production efficiency is high, and the integrally arranged partition plate can avoid the influence of the air flow between the first cooking sub-cavity 112 and the second cooking sub-cavity 113, so as to ensure the effective separation of the partition plate.

[0057] Therefore, the manufacturing methods of the partition plate are diverse and can be selected according to actual needs.

[0058] In some embodiments, an open receiving groove 211 is formed on the side of the first plate body 21 facing away from the first cooking sub-cavity 112, and the second plate body 22 is installed in the receiving groove 211 and is detachably connected to the first plate body 21 through a connecting member 24.

[0059] Specifically, as Figure 3 and Figure 4 shown, the shapes of the first plate body 21 and the second plate body 22 can both be constructed as square shapes, and the four peripheral edges of the first plate body 21 are bent in a direction away from the first cooking sub-cavity 112 to form a receiving groove 211 on the side facing away from the first cooking sub-cavity 112. The shape of the receiving groove 211 is square, and the receiving groove 211 is open on the side facing the second cooking sub-cavity 113. The structure of the second plate body 22 can be the same as that of the first plate body 21, and the external dimensions of the second plate body 22 are slightly smaller than those of the first plate body 21. A plurality of connection holes 214 are provided around the first plate body 21 and the second plate body 22 for passing through the connecting member 24. Among them, the connecting member 24 is a connecting bolt. The second plate body 22 is installed in the receiving groove 211 from the open side, and the second plate body 22 is connected to the first plate body 21 through a plurality of connecting bolts respectively, so as to realize the detachable connection between the first plate body 21 and the second plate body 22. The connection is firm and stable, the connection method is simple, and the disassembly and assembly are convenient. In addition, a counterbore 213 is provided at the connection hole 214 of the first plate body 21, which can prevent the bolt head from protruding from the surface of the first plate body 21, affecting the connection between the partition plate and the equipment body 1, and making the external flatness of the first plate body 21 high.

[0060] Thus, by installing the second plate body 22 in the receiving groove 211 of the first plate body 21, the surfaces of the first plate body 21 and the second plate body 22 can be made flat without connection gaps, enabling the first cooking sub-chamber 112 and the second cooking sub-chamber 113 to be independent of each other and not interfere with each other.

[0061] Wherein, a hemming edge treatment is provided at the bent portions around the first plate body 21 or the second plate body 22, which can flatten the edges of the material, avoid scratching the operator during use, and enhance the strength and stability of the edges.

[0062] In some embodiments, the cooking chamber 11 includes a first side wall 114 and a second side wall 115 that are oppositely distributed along a first direction. The first plate body 21 and the first side wall 114 are oppositely distributed along the first direction, and the second plate body 22 and the second side wall 115 are oppositely distributed along the first direction.

[0063] Specifically, as Figure 2 shown, the cooking chamber 11 includes a first side wall 114 and a second side wall 115. The first side wall 114 and the second side wall 115 are oppositely distributed along the first direction, and the partition plate is located between the first side wall 114 and the second side wall 115. The first plate body 21 and the second plate body 22 are distributed along the first direction, and the first plate body 21 is close to the first side wall 114 and is oppositely distributed with the first side wall 114 along the first direction. In this way, the space between the first plate body 21 and the first side wall 114 is the first cooking sub-chamber 112. The second plate body 22 is close to the second side wall 115 and is oppositely distributed with the second side wall 115 along the first direction. In this way, the space between the second plate body 22 and the second side wall 115 is the second cooking sub-chamber 113, and the opposite distribution can make the overall structure layout simple and convenient for assembly.

[0064] Wherein, the first plate body 21 and the first side wall 114 are both provided with a first support portion 212. The first support portion 212 of the first plate body 21 and the first support portion 212 of the first side wall 114 are used to support the first food support member 4. The second plate body 22 and the second side wall 115 are both provided with a second support portion 221. The second support portion 221 of the second plate body 22 and the second support portion 221 of the second side wall 115 are used to support the second food support member 5.

[0065] Specifically, as Figures 1 - 3As shown, on one side where the first plate body 21 and the first side wall 114 are close to each other, first support portions 212 are provided. That is, the first support portions 212 on both sides are arranged separately along the first direction. The first support portions 212 are used to support the first food support member 4. The first food support member 4 can be configured as a baking tray, a frying pan, etc. The first food support member 4 is used to hold food. In this way, by respectively supporting both ends of the first food support member 4 by the first support portions 212 on both sides, stable support of the first food support member 4 can be ensured. And the first support portions 212 can be multiple. The multiple first support portions 212 are spaced apart vertically. The multiple first support portions 212 can realize the simultaneous placement of multiple first food support members 4, realizing the multi-layer cooking food characteristic of the first cooking sub-cavity 112 and improving the food production efficiency.

[0066] And as Figures 1 - 3 shown, on one side where the second plate body 22 and the second side wall 115 are close to each other, second support portions 221 are provided. That is, the second support portions 221 on both sides are arranged separately along the first direction. The second support portions 221 are used to support the second food support member 5. The second food support member 5 can be configured as a baking tray, a frying pan, etc. The second food support member 5 is used to hold food. In this way, by respectively supporting both ends of the second food support member 5 by the second support portions 221 on both sides, stable support of the second food support member 5 can be ensured. And the second support portions 221 can be multiple. The multiple second support portions 221 are spaced apart vertically. The multiple second support portions 221 can realize the simultaneous placement of multiple second food support members 5, realizing the multi-layer cooking food characteristic of the second cooking sub-cavity 113 and improving the food production efficiency.

[0067] Among them, as Figure 3 shown, both the first support portions 212 and the second support portions 221 are three. The support of three first food support members 4 and three second food support members 5 can be respectively realized. The structures of the first support portions 212 and the second support portions 221 can be the same and can be configured as support bosses. The support bosses extend along one direction, so that the first food support member 4 and the second food support member 5 can slide into or out of the cooking sub-cavity 111 along one direction, and the operation is simpler and more convenient.

[0068] In some embodiments, the equipment body 1 is provided with a sliding fit portion 13. The partition plate is supported on the sliding fit portion 13. The partition plate is slidable relative to the sliding fit portion 13 to communicate or separate the first cooking sub-cavity 112 and the second cooking sub-cavity 113.

[0069] Specifically, the sliding fit portion 13 can be configured as a structural member with sliding fit. The sliding fit portion 13 can be integrally formed with the equipment body 1, or the sliding fit portion 13 can be detachably connected to the equipment body 1 through fasteners such as bolts. Among them, as Figure 2 and Figure 5As shown, the sliding fit portion 13 can be constructed as a sheet metal part, formed by bending, and the sliding fit portion 13 is provided with a sliding groove 131. The sliding groove 131 is distributed open towards the partition plate. The partition plate can slide within the sliding groove 131. During installation, the partition plate is slid from one end of the sliding groove 131 into the other end of the sliding groove 131, and the partition plate can be supported by the sliding fit portion 13, and the cooking cavity 11 is divided into a first cooking sub-cavity 112 and a second cooking sub-cavity 113. And when the partition plate is slid out from the other end of the sliding groove 131 to one end of the sliding groove 131, the partition plate can be removed, and the first cooking sub-cavity 112 and the second cooking sub-cavity 113 can be communicated.

[0070] Thus, by setting the sliding fit between the partition plate and the sliding fit portion 13, the partition plate can be installed and disassembled with the device body 1 in a pulling manner, and the spatial layout of the cooking cavity 11 can be easily changed without complicated setting or disassembly. Its assembly is simple and convenient, the adjustment speed is fast, and the use effect is good.

[0071] In some embodiments, the device body 1 is further provided with a positioning structure 132, and the partition plate is provided with a positioning fit portion 23. After the partition plate slides to separate the first cooking sub-cavity 112 and the second cooking sub-cavity 113, the positioning structure 132 and the positioning fit portion 23 are in positioning fit.

[0072] Specifically, as Figure 2 and Figures 8 - 10 shown, the device body 1 is provided with a positioning structure 132 on the side facing the partition plate. The positioning structure 132 can be arranged on the sliding fit portion 13. The partition plate is provided with a positioning fit portion 23 on the side close to the sliding fit portion 13. The positioning structure 132 and the positioning fit portion 23 can be in positioning fit by means of a positioning boss and a positioning slot hole, and one of the positioning structure 132 and the positioning fit portion 23 can be constructed as a positioning boss and the other as a positioning slot hole to achieve the positioning fit between the two.

[0073] Thus, during installation, when the partition plate is slid relative to the sliding fit portion 13 to the innermost side of the device body 1 and the first cooking sub-cavity 112 and the second cooking sub-cavity 113 are separated, the positioning structure 132 and the positioning fit portion 23 are in positioning fit, which can limit the front and back movement of the partition plate. In this way, the connection between the partition plate and the device body 1 can be ensured to be reliable, and the limit of the partition plate can be realized simultaneously at the end of the sliding of the partition plate, making the installation process simple and the setting cost low.

[0074] In some embodiments, the device body 1 is provided with a positioning installation groove 14. The positioning structure 132 includes an elastic member 133 and a limiting post 134. The elastic member 133 is installed in the positioning installation groove 14, and both ends of the elastic member 133 are respectively connected to the inner wall of the positioning installation groove 14 and the limiting post 134 to push the limiting post 134 to extend outwards from the positioning installation groove 14.

[0075] Specifically, the positioning installation groove 14 is used for installing the positioning structure 132. For example, Figure 8 and Figure 9 as shown, the positioning installation groove 14 can be constructed as a cylindrical groove, and the positioning installation groove 14 is open towards the positioning structure 132. The positioning structure 132 includes an elastic member 133 and a limiting post 134. The elastic member 133 can be a spring. A pressing portion 1341 is provided on the outer periphery of the limiting post 134. The pressing portion 1341 protrudes along the outer wall of the limiting post 134. During installation, the spring is placed in the positioning installation groove 14, and at least a part of the limiting post 134 extends into the spring. One end of the spring presses against the inner wall of the positioning installation groove 14, and the other end presses against one end of the pressing portion 1341 of the limiting post 134. The other end of the pressing portion 1341 is in limiting cooperation with the side of the equipment body 1 close to the positioning structure 132, so as to realize the connection between the positioning structure 132 and the equipment body 1. In this way, the elastic member 133 can push the limiting post 134 to extend out of the positioning installation groove 14. Among them, it can be set that the elastic member 133 exerts a downward elastic thrust on the limiting post 134. When the partition plate is not installed, the elastic member 133 is in an unloaded state.

[0076] Among them, the positioning and mating portion 23 is constructed as a positioning hole, and the positioning hole is suitable for plugging and positioning with the limiting post 134. For example, Figure 3 、 Figure 8 and Figure 9 as shown, the positioning hole is a round hole, and the positioning hole penetrates through the partition plate. The limiting post 134 can be constructed as a cylinder, and is constructed as a semi-cylinder on the side far from the positioning installation groove 14, which is beneficial to the plugging and mating of the limiting post 134 with the positioning hole. When the partition plate slides relative to the sliding mating portion 13, the partition plate pushes the bottom of the limiting post 134 to move upward, and the limiting post 134 presses the elastic member 133 to move towards the inside of the positioning installation groove 14. At this time, the elastic member 133 is in a compressed state. And during the continuous sliding process, when the elastic member 133 pushes the limiting post 134 to plug into the positioning hole towards the outside of the positioning installation groove 14, the installation of the partition plate is completed. And when the limiting post 134 is plugged into the positioning hole, it can limit the movement of the partition plate along the sliding direction, ensuring the reliable installation of the partition plate.

[0077] And when disassembling the partition plate, the partition plate slides in the opposite direction. The partition plate forces and squeezes the limiting post 134 to move towards the inside of the positioning installation groove 14, and the limiting post 134 is separated from the positioning hole. After the partition plate is completely separated from the equipment body 1, the elastic member 133 pushes the limiting post 134 to extend out of the positioning installation groove 14, and the positioning structure 132 returns to its initial state.

[0078] Thus, through the above settings, the positioning method of the partition plate and the equipment body 1 is simple and reliable, and the overall structure is convenient to assemble and has a low cost. And the positioning structure 132 can also be set to other structures, not limited to those described in this embodiment.

[0079] In some embodiments, there are multiple sliding fit portions 13, and the multiple sliding fit portions 13 are respectively in sliding fit with the partition plate. Among them, in this embodiment, there are two sliding fit portions 13, and the two sliding fit portions 13 respectively correspond to the two ends of the partition plate, and the two sliding fit portions 13 are distributed opposite to each other. During installation, the two ends of the partition plate are respectively slid into the sliding grooves 131 of the two sliding fit portions 13, which can realize the easy disassembly and assembly of the partition plate, and can keep the partition plate in a stable state after installation, and improve the installation efficiency and installation accuracy. Moreover, the number of the sliding fit portions 13 is set to match the partition plate. When there are multiple partition plates, there are also multiple sliding fit portions 13, and the number of the sliding fit portions 13 is twice that of the partition plate, that is, the number of the sliding fit portions 13 can be selectively set according to actual needs.

[0080] In some other embodiments, there are multiple positioning structures 132 and multiple positioning fit portions 23, and the multiple positioning structures 132 and the multiple positioning fit portions 23 are in one-to-one corresponding positioning fit.

[0081] Specifically, there are multiple positioning structures 132 and multiple positioning fit portions 23, and the multiple positioning structures 132 and the multiple positioning fit portions 23 are arranged in one-to-one correspondence. Among them, the positioning structures 132 and the positioning fit portions 23 can be respectively set to two. The multiple positioning fit portions 23 are distributed at the two ends of the partition plate, and the two positioning structures 132 are respectively arranged in the two sliding fit portions 13. In this way, after the partition plate slides relative to the sliding fit portions 13 to separate the first cooking sub-cavity 112 and the second cooking sub-cavity 113, the positioning fit at two places can be realized, which can ensure that both ends of the partition plate are positioned, and can effectively prevent the movement of the partition plate to ensure the reliable and firm installation of the partition plate.

[0082] Among them, the number of the positioning structures 132 and the positioning fit portions 23 is not limited to that described in this embodiment. The positioning structures 132 and the positioning fit portions 23 can also be set to one, four, etc., and are selected according to actual design needs.

[0083] In some embodiments, the first cooking sub-cavity 112 and the second cooking sub-cavity 113 are distributed along the first direction. The heating structure 3 includes a first heating element 31 and a second heating element 32. The first heating element 31 and the second heating element 32 are relatively distributed along the second direction in the first cooking sub-cavity 112 or the second cooking sub-cavity 113, and the first direction is perpendicular to the second direction.

[0084] Specifically, as Figure 1As shown, the first direction can be the left - right direction, the second direction can be the vertical direction. The first cooking sub - cavity 112 and the second cooking sub - cavity 113 are spaced apart along the left - right direction by a partition plate. There are two heating structures 3, namely the first heating element 31 and the second heating element 32. The first heating element 31 and the second heating element 32 are spaced apart along the vertical direction, and the first heating element 31 and the second heating element 32 can be relatively distributed at the upper and lower ends of the first cooking sub - cavity 112 or the second cooking sub - cavity 113. Or, the first heating element 31 and the second heating element 32 can be relatively distributed at the upper and lower ends of the first cooking sub - cavity 112 and the second cooking sub - cavity 113. Its setting methods are diverse and can be selected according to cooking requirements.

[0085] In this embodiment, the first heating element 31 and the second heating element 32 are provided at both the upper and lower ends of the first cooking sub - cavity 112 and the second cooking sub - cavity 113. Among them, there are at least two first heating elements 31 in each cooking sub - cavity 111, and there is at least one second heating element 32 in each cooking sub - cavity 111. Both the first heating element 31 and the second heating element 32 are configured as heating tubes, and the types of the first heating element 31 and the second heating element 32 can be the same or different. For example, Figure 2 As shown, the first heating element 31 is configured as a straight heating tube, the second heating element 32 is configured as a special - shaped heating tube, and the first heating element 31 and the second heating element 32 can be made of metal tubes, graphene, carbon tubes, etc. The first heating element 31 is evenly distributed at the upper end of the first cooking sub - cavity 112, and the second heating element 32 is evenly distributed at the lower end of the second cooking sub - cavity 113, which can make the food in the first cooking sub - cavity 112 and the second cooking sub - cavity 113 heated more evenly and improve the cooking efficiency of the food.

[0086] In some embodiments, the device body 1 is provided with a movable opening 15 that is open along the third direction. The partition assembly 2 is slidable relative to the device body 1 along the third direction to slide in or out from the movable opening 15. The first direction and the second direction are both perpendicular to the third direction.

[0087] Specifically, the front side of the device body 1 is the user - using area, and the third direction can be the front - back direction. For example, Figure 1As shown in the figure, an activity opening 15 is formed on the front side of the device body 1. The activity opening 15 is open in the front-back direction and can be used for the separation component 2 to slide in and out in the front-back direction. During installation, the separation component 2 is slid backward along the sliding fit portion 13 to install the separation component 2 on the device body 1. And during disassembly, the separation component 2 is slid forward along the sliding fit portion 13 to disassemble the separation component 2 from the device body 1. Moreover, the food support can be extended or retracted through the activity opening 15. Among them, the activity opening 15 is configured as a square hole, and the size of the square hole is larger than the size of the food support. In this way, the user can extend the food support into the cooking cavity 11 from the activity opening 15 in the front-back direction. After cooking, the food support can be taken out from the activity opening 15. By providing the activity opening 15 on the front side, it is convenient for the user to operate the cooking device 100.

[0088] Among them, as Figure 2 shown, the device body 1 includes a housing 16, a top plate 17, a first side plate 18 and a second side plate 19. The housing 16, the top plate 17, the first side plate 18 and the second side plate 19 jointly define a cooking cavity 11. The first side plate 18 and the second side plate 19 are distributed opposite to each other in the first direction. The first side plate 18 has an installation cavity 12 on the side away from the second side plate 19. The top plate 17 is detachably connected inside the housing 16. The first heating element 31 is detachably installed on the top plate 17. The second heating element 32 is detachably connected to the sides of the first side plate 18 and the second side plate 19 facing away from the top plate 17. Among them, as Figure 6 and Figure 7 shown, the top plate 17 includes a first sub-plate 171, a second sub-plate 172 and a third sub-plate 173. The second sub-plate 172 and the third sub-plate 173 are located on both sides of the first sub-plate 171 and are respectively bent and connected to the two ends of the first sub-plate 171, and the bending angles can be 45°, 50°, etc. The second sub-plate 172 and the third sub-plate 173 are respectively provided with four installation holes 1721. The four first heating elements 31 are installed in the four installation holes 1721 one by one in the first direction to realize the installation of the first heating element 31. And the second sub-plate 172 and / or the third sub-plate 173 are bent to form a U-shaped wire groove 174 on the side away from the first sub-plate 171, which can reserve space for inserting wires at both ends of the first heating element 31, and the above settings can maintain the structural strength of the top plate 17.

[0089] In some embodiments, the cooking cavity 11 includes a first side wall 114 and a second side wall 115 that are distributed opposite to each other in the first direction. The separation component 2 is located between the first side wall 114 and the second side wall 115. The first side wall 114 is provided with an air inlet and an air return opening, and the air inlet and the air return opening are respectively communicated with the installation cavity 12.

[0090] Specifically, the cooking chamber 11 includes a first sidewall 114 and a second sidewall 115. The first sidewall 114 and the second sidewall 115 are oppositely distributed along a first direction, and the partitioning component 2 is located between the first sidewall 114 and the second sidewall 115. For example, the partitioning component 2 is located at the middle position between the first sidewall 114 and the second sidewall 115, so that the cavity volumes of the first cooking sub-chamber 112 and the second cooking sub-chamber 113 are the same, which can make the structures in the first cooking sub-chamber 112 and the second cooking sub-chamber 113 symmetrical, and the installation is simpler and more convenient. Moreover, the first sidewall 114 is provided with an air inlet and an air return port, and the air inlet and the air return port penetrate through the first sidewall 114 along the first direction respectively, so as to realize the communication between the first cooking sub-chamber 112 and the installation chamber 12.

[0091] Wherein, the air inlet and the air return port can be configured as arc-shaped holes, round holes, long strip holes, etc., and both the air inlet and the air outlet are multiple, which can ensure the air flow velocity between the installation chamber 12 and the first cooking sub-chamber 112 and improve the food cooking effect.

[0092] In some embodiments, the hot air component 121 includes a third heating element and a heating fan. The heating fan is used to drive the air flow at the third heating element to flow into the first cooking sub-chamber 112.

[0093] Specifically, the third heating element is used to heat air, the heating fan is used to drive the air flow, the heating fan and the heating element are spaced apart along the first direction, and the heating fan is connected to a driving motor. The driving motor can drive the heating fan to rotate. Among them, the third heating element can be a heating tube. After the heating tube is powered on, it can heat the surrounding gas. After the driving motor drives the heating fan to rotate, it can drive the hot air flow to move.

[0094] Furthermore, during the food cooking process, after the heating fan drives the hot air flow at the third heating element to flow into the cooking chamber 11 to heat the food, it returns to the installation chamber 12. The hot air flow circulates between the installation chamber 12 and the cooking chamber 11 to continuously deliver hot air to the cooking chamber 11 and realize hot air heating of the food.

[0095] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples" 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 invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0096] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the claims and their equivalents.

Claims

1. A cooking device, characterized in that: include: An equipment body, wherein a cooking cavity and an installation cavity are formed in the equipment body, and a hot air component is arranged in the installation cavity; a partition assembly, the partition assembly being installed in the cooking cavity and dividing the cooking cavity into a plurality of cooking sub-cavities, each of the cooking sub-cavities being provided with a heating structure; Wherein, the partition assembly is detachable relative to the equipment body and enables multiple cooking sub-cavities to be selectively connected, the installation cavity is connected to one of the multiple cooking sub-cavities, and the hot air assembly is used to deliver hot air to one of the multiple cooking sub-cavities or to multiple cooking sub-cavities at the same time.

2. The cooking device according to claim 1, characterized in that: There are two cooking sub-cavities, namely a first cooking sub-cavity and a second cooking sub-cavity. The partition assembly is constructed as a partition plate arranged in the first cooking sub-cavity and the second cooking sub-cavity. The installation cavity is connected to a side of the first cooking sub-cavity away from the second cooking sub-cavity.

3. The cooking device according to claim 2, characterized in that: The first cooking sub-cavity and the second cooking sub-cavity are distributed along a first direction, the partition plate includes a first plate body and a second plate body, and the first plate body and the second plate body are connected along the first direction; Alternatively, the partition plate is a one-piece piece.

4. The cooking device according to claim 3, characterized in that: An open receiving groove is formed on the side of the first plate body facing away from the first cooking sub-cavity. The second plate body is installed in the receiving groove and is detachably connected to the first plate body through a connecting piece.

5. The cooking device according to claim 3, characterized in that: The cooking cavity comprises a first side wall and a second side wall that are oppositely distributed along the first direction, the first plate body and the first side wall are oppositely distributed along the first direction, and the second plate body and the second side wall are oppositely distributed along the first direction; Wherein, the first plate body and the first side wall are both provided with a first supporting portion, and the first supporting portion of the first plate body and the first supporting portion of the first side wall are used to support a first food support, and the second plate body and the second side wall are both provided with a second supporting portion, and the second supporting portion of the second plate body and the second supporting portion of the second side wall are used to support a second food support.

6. The cooking device according to claim 2, characterized in that: The device body is provided with a sliding fitting portion, the partition plate is supported on the sliding fitting portion, and the partition plate can slide relative to the sliding fitting portion to connect or separate the first cooking sub-cavity and the second cooking sub-cavity.

7. The cooking device according to claim 6, characterized in that The device body is further provided with a positioning structure, and the partition plate is provided with a positioning matching portion. After the partition plate slides to separate the first cooking sub-cavity and the second cooking sub-cavity, the positioning structure is positioned and matched with the positioning matching portion.

8. The cooking device according to claim 7, characterized in that The device body is provided with a positioning installation groove, and the positioning structure includes an elastic member and a limiting column, the elastic member is installed in the positioning installation groove, and the two ends of the elastic member are respectively connected to the inner wall of the positioning installation groove and the limiting column to push the limiting column to extend out of the positioning installation groove; The positioning matching portion is configured as a positioning hole, and the positioning hole is suitable for being inserted and positioned with the limiting column.

9. The cooking device according to claim 7, characterized in that: There are multiple sliding fitting parts, and the multiple sliding fitting parts are respectively slidingly fitted with the partition plate; And / or, there are multiple positioning structures and multiple positioning matching parts, and the multiple positioning structures are positioned and matched with the multiple positioning matching parts in a one-to-one correspondence.

10. The cooking device according to claim 2, characterized in that The first cooking sub-cavity and the second cooking sub-cavity are distributed along a first direction; The heating structure includes a first heating element and a second heating element, wherein the first heating element and the second heating element are relatively distributed in the first cooking sub-cavity or the second cooking sub-cavity along a second direction, and the first direction is perpendicular to the second direction.

11. The cooking device according to claim 10, characterized in that The device body is provided with an active opening opened along a third direction, the partition assembly is slidable relative to the device body along the third direction to slide in or out of the active opening, and the first direction and the second direction are both perpendicular to the third direction.

12. The cooking device according to claim 10, characterized in that The cooking cavity includes a first side wall and a second side wall relatively distributed along the first direction, the partition assembly is located between the first side wall and the second side wall, the first side wall is provided with an air inlet and an air return port, and the air inlet and the air return port are respectively connected to the installation cavity.

13. The cooking device according to claim 2, characterized in that The hot air assembly includes a third heating element and a heating fan, and the heating fan is used to drive the airflow at the third heating element to flow into the first cooking sub-cavity.