Inner container assembly and cooking equipment

By incorporating a raised structure and multi-layered insulation design at the top of the inner pot, the problem of heat loss from the inner pot is solved, thereby improving the stability and safety of the inner pot components, reducing power consumption, and increasing cooking efficiency.

CN224099147UActive Publication Date: 2026-04-10HANGZHOU ROBAM APPLIANCES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

During use, heat can easily escape through the connection between the heating element and the top wall of the inner pot, causing the integrated stove to malfunction and affecting the stability and safety of the cooking equipment.

Method used

A raised structure is set at the top of the inner liner, and the connection terminals of the heating element are led out through the raised side wall. Combined with the multi-layer heat insulation design, heat is prevented from escaping from the top of the inner liner. The connection terminals are arranged in a reasonable manner to reduce the number of openings and improve the stability and safety of the inner liner assembly.

Benefits of technology

It effectively prevents heat loss, improves the working stability and safety of the inner pot components and cooking equipment, reduces power consumption, and enhances cooking efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an inner container assembly and cooking equipment, and relates to the technical field of cooking equipment. The inner container assembly comprises an inner container and a first heating piece. The top wall of the inner container is provided with a protruding structure, the protruding structure is provided with a protruding top wall and a protruding side wall, and the protruding side wall is connected with the protruding top wall and the top wall of the inner container. The first heating piece is located at the top of the cooking cavity of the inner container, and a first connecting terminal of the first heating piece penetrates through a first connecting part on the side wall of the protrusion and extends to the outer side of the side portion of the inner container. Therefore, heat in the cooking cavity can be prevented from dissipating from the top wall of the inner container without forming a hole in the top wall of the inner container to lead out the first connecting terminal, the influence of heat dissipation in the inner container on an electric control system is further reduced, the working reliability and stability of the inner container assembly are enhanced, the power consumption of the inner container assembly and the cooking equipment can be reduced, and the service life of the cooking equipment is prolonged. The cooking efficiency and the cooking effect of the inner container assembly on food are improved, and the use experience of a user is enhanced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cooking equipment, and particularly relates to an inner container assembly and cooking equipment. BACKGROUND

[0002] With the continuous development of the cooking appliance technology, the integrated cooking appliance emerges as the times require. The integrated cooking appliance integrates multiple different functions, such as the combination of the functions of “smoke+cooking+storage”, “smoke+cooking+disposal”, “smoke+cooking+steaming / roasting”, and the like.

[0003] In the related art, the integrated cooking appliance comprises a machine head assembly, a cooking body and a lower machine. The lower machine is provided with an inner container and a circuit board. The inner container has a cooking cavity. A heating pipe is arranged at the top of the cooking cavity. The connecting terminal of the heating pipe penetrates through the top wall of the inner container and the circuit board and is electrically connected and conducted.

[0004] However, in the process of use, the heat in the inner container is prone to escape through the connection between the heating pipe and the top wall of the inner container, and the integrated cooking appliance is prone to work failure. CONTENT OF THE UTILITY MODEL

[0005] The present application provides an inner container assembly and cooking equipment, which can reduce heat escape in the process of use of the inner container, thereby improving the working stability of the cooking equipment.

[0006] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:

[0007] In a first aspect, the present application provides an inner container assembly, comprising:

[0008] an inner container, the inner container having a cooking cavity; the top of the inner container is provided with a protruding structure; the protruding structure has a protruding top wall and a protruding side wall, the protruding side wall is connected to the protruding top wall and the top wall of the inner container respectively; the protruding side wall has a first connecting portion;

[0009] a first heating member, the first heating member being located in the cooking cavity, the first heating member having a first connecting terminal, the first connecting terminal penetrating through the first connecting portion and extending to the outside of the side of the inner container.

[0010] In some embodiments, the protruding structure is protrudingly arranged relative to the center of the inner container towards the side away from the cooking cavity.

[0011] In some embodiments, the protruding structure forms a containing groove, the containing groove is towards the cooking cavity, and at least part of the first heating member is located in the containing groove.

[0012] In some embodiments, the inner container assembly further comprises a first heat insulation member, and at least part of the first heat insulation member is arranged outside the top of the inner container.

[0013] In some embodiments, the first thermal insulation member covers a top wall of the inner container, the protruding top wall and the protruding side wall of the inner container.

[0014] The first thermal insulation member has a second connecting portion, which is arranged in position corresponding to the first connecting portion.

[0015] The first connecting terminal is arranged through the second connecting portion and extends to a side of the first thermal insulation member away from the inner container.

[0016] In some embodiments, the inner container assembly further comprises a second thermal insulation member, which is arranged outside the top of the inner container and at a side of the first thermal insulation member away from the inner container.

[0017] In some embodiments, the second thermal insulation member and the first thermal insulation member are arranged in a spaced manner to form a thermal insulation sandwich.

[0018] The first connecting terminal extends into the thermal insulation sandwich.

[0019] In some embodiments, the inner container has a first side wall, which is adjacent to a top wall of the inner container.

[0020] The inner container assembly further comprises a second heating member, which is arranged in the cooking cavity, and has a second connecting terminal, which extends to an outside of the first side wall.

[0021] And / or, the inner container assembly comprises a third heating member, which is arranged outside a bottom wall of the inner container, and has a third connecting terminal, which extends to the outside of the first side wall.

[0022] And / or, the inner container assembly comprises a convection fan, which is arranged in the cooking cavity, and has a fourth connecting terminal, which extends to the outside of the first side wall.

[0023] In some embodiments, at least two of the first connecting terminal, the second connecting terminal, the third connecting terminal and the fourth connecting terminal are located at the same side of the inner container along a depth direction intersecting the inner container.

[0024] In a second aspect, the present application provides a cooking device, comprising the inner container assembly provided in the first aspect.

[0025] The inner container assembly and the cooking device provided by the application, wherein the inner container assembly comprises an inner container and a first heating element. The top wall of the inner container is provided with a protruding structure having a protruding top wall and protruding side walls connected to the protruding top wall and the top wall of the inner container respectively. The first heating element is located at the top of the cooking cavity of the inner container, and the first connecting terminal of the first heating element extends to the outside of the side of the inner container through the first connecting part on the protruding side wall. In this way, the first connecting terminal does not need to be led out through a hole in the top wall of the inner container, the upward flow of heat in the cooking cavity and the escape of heat from the top wall of the inner container are prevented, the influence of the escape of heat in the inner container on the electric control system is further reduced, the working reliability and stability of the inner container assembly are enhanced, the power consumption of the inner container assembly and the cooking device is reduced, the cooking efficiency and effect of the inner container assembly on food are improved, and the use experience of the user is enhanced. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are some embodiments of the application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0027] Figure 1 The first perspective view of the inner container assembly provided by the embodiments of the application is shown in the figure.

[0028] Figure 2 The partial structure enlarged view of the dashed box part in Figure 1

[0029] Figure 3 The second perspective view of the inner container assembly provided by the embodiments of the application is shown in the figure.

[0030] Figure 4 The partial structure enlarged view of the dashed box part in Figure 3

[0031] The third perspective view of the inner container assembly provided by the embodiments of the application is shown in the figure. Figure 5

[0032] The partial structure enlarged view of the dashed box part in Figure 6 Figure 5 The fourth perspective view of the inner container assembly provided by the embodiments of the application is shown in the figure.

[0033] Figure 7 The reference signs are explained as follows:

[0034] 100 - inner container assembly

[0035] 100 - inner container assembly

[0036] ​​110 - inner container; 111 - cooking cavity; 112 - protruding structure; 1121 - protruding top wall; 1122 - protruding side wall; 1123 - first connecting part; 113 - top wall; 114 - accommodating groove; 115 - first side wall;

[0037] 120 - first heat insulation member; 121 - second connecting part;

[0038] 130 - first heating member; 131 - first connecting terminal;

[0039] 140 - second heat insulation member; 141 - heat insulation interlayer;

[0040] 150 - second heating member; 151 - second connecting terminal;

[0041] 160 - third heating member;

[0042] 170 - convection fan;

[0043] 180 - electric control system. DETAILED DESCRIPTION

[0044] To make the objectives, technical solutions, and superiorities of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described below in connection with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts should fall into the protection scope of the present application. The following embodiments and features in the embodiments can be combined with each other without conflict.

[0045] In a first aspect, referring to Figures 1 to 4 、 Figure 7 The embodiments of the present application provide an inner container assembly 100, which comprises an inner container 110 and a first heating member 130. The inner container 110 has a cooking cavity 111, and the first heating member 130 is located in the cooking cavity 111. The first heating member 130 is used for heating to perform cooking operation on food in the cooking cavity 111, such as steaming, baking, micro-baking, steaming and baking, etc., which is not specifically required.

[0046] In some embodiments, the first heating member 130 can be located at the top, side, bottom, etc. of the cooking cavity 111 in the cooking cavity 111, which is not limited by the embodiments of the present application. Furthermore, the number of the first heating member 130 can be one or more, such as two, three, etc., which is not specifically required.

[0047] Exemplarily, the first heating member 130 comprises a heating pipe, and the first heating member 130 can be a straight pipe or a bent pipe, which is not required by the embodiments of the present application.

[0048] In some embodiments, the first heating element 130 is located at the top of the cooking cavity 111, and the first heating element 130 has a first connecting terminal 131 for electrically connecting with the electric control system 180 on the inner container assembly 100, so as to control the start and stop of the first heating element 130 through the electric control system 180.

[0049] In order to facilitate the connection of the first connecting terminal 131 and the electric control system 180, a connecting hole is usually formed on the top wall of the inner container 110, and the first connecting terminal 131 extends to the outside of the top wall 113 of the inner container 110 through the connecting hole and is connected with the electric control system 180. In this way, during the cooking operation, the hot steam and / or hot air are mainly concentrated at the top of the cooking cavity 111, and the heat is easily dissipated through the connecting hole, which leads to a decrease in the temperature in the cooking cavity 111, an increase in the power consumption of the inner container assembly 100, and a decrease in the cooking efficiency and effect. In addition, the heat dissipated by the inner container 110 can easily cause the electric control system 180 at the top of the inner container 110 to fail to work, thereby reducing the reliability of the cooking device.

[0050] In order to solve such problems, in the embodiments of the present application, the top wall 113 of the inner container 110 is provided with a protruding structure 112, the protruding structure 112 has a protruding top wall 1121 and a protruding side wall 1122, and the protruding side wall 1122 is connected with the protruding top wall 1121 and the top wall 113 of the inner container 110, respectively; the protruding side wall 1122 has a first connecting portion 1123, and the first connecting terminal 131 extends to the outside of the side of the inner container 110 through the first connecting portion 1123. In this way, the first heating element 130 leads the first connecting terminal 131 out through the first connecting portion 1123 on the protruding side wall 1122, avoids forming a hole in the top wall 113 of the inner container 110, and the top wall 113 of the inner container 110 and the protruding top wall 1121 are both complete wall structures, which can prevent the heat of the top wall 113 of the inner container 110 from dissipating, so as to enhance the safety and stability of the inner container assembly 100 and the cooking device.

[0051] Exemplarily, the protruding structure 112 in the embodiment of the present application can be a protruding structure 112 formed by bending the top wall 113 of the inner container 110. In this way, by arranging the protruding structure 112, the strength of the inner container 110 is reinforced, the deformation of the inner container 110 during high-temperature cooking operation can be prevented, thereby prolonging the service life of the inner container 110, further stabilizing the connection of other components on the inner container assembly 100, reducing the failure probability of the inner container assembly 100 and the cooking device in use, and improving the working stability and safety of the inner container assembly 100 and the cooking device. In addition, the protruding structure 112 is arranged on the top wall 113 of the inner container 110 to adjust the flow path of the hot steam and / or hot air by the protruding structure 112 to form a flow or reflection effect, so that the heat is more evenly distributed on the top of the cooking cavity 111, thereby improving the cooking efficiency and reducing the power consumption of the inner container assembly 100.

[0052] Exemplarily, the first connecting portion 1123 can be a hole structure, or a slit structure, etc., and structures capable of leading out the first connecting terminal 131 can be used, and no specific requirements are made thereon. The number of the first connecting portion 1123 on the protruding side wall 1122 can be one, two or more, and no limitation is made on the number of the first connecting portion 1123. In addition, the first connecting portion 1123 can be located on one side or both sides of the protruding side wall 1122 along the Y direction, and no requirements are made thereon.

[0053] Referring to Figure 1 and Figure 2 In some embodiments, the protruding structure 112 is protrudingly arranged relative to the center of the inner container 110 towards the side away from the cooking cavity 111. In this way, the volume of the cooking cavity 111 can be increased by the protruding structure 112.

[0054] In combination Figure 1 , Figure 2 In some embodiments, the protruding structure 112 has a containing groove 114 towards the cooking cavity 111. It can be understood that the containing groove 114 is formed by the protruding structure 112 being protrudingly arranged relative to the top of the inner container 110 towards the side away from the cooking cavity 111. At least part of the first heating element 130 is located in the containing groove 114. By arranging the containing groove 114, the volume of the cooking cavity 111 is increased, and further, the first heating element 130 arranged in the containing groove 114 can improve the space utilization of the inner space of the inner container 110.

[0055] In the embodiment of the present application, the inner container assembly 100 further comprises a first heat insulation member 120, and the first heat insulation member 120 covers at least the outer side of the top of the inner container 110.

[0056] It can be understood that the embodiment of the present application sets the first heat insulation piece 120 on the outside of the top of the inner container 110 and covers the outside of the top of the inner container 110, so that the heat exchange between the heat of the hot steam and / or hot air in the cooking cavity 111 and the outside air through the top of the inner container 110 and the outside of the inner container 110 is reduced by the setting of the first heat insulation piece 120, so that the heat can be concentrated in the cooking cavity 111 of the inner container 110, and the failure of the electric control system 180 caused by the heat escaping in the inner container 110 can be avoided, the working stability and safety of the inner container assembly 100 and the cooking equipment are improved, the service life of the inner container assembly 100 and the cooking equipment is prolonged, and the user's use experience is improved.

[0057] It should be noted that the first heat insulation piece 120 can only cover the outside of the top of the inner container 110. Of course, in some embodiments, the first heat insulation piece 120 can not only cover the outside of the top of the inner container 110, but also cover the outside of the side of the inner container 110, the outside of the bottom, etc., which is not limited by the embodiment of the present application.

[0058] For example, the first heat insulation piece 120 includes heat insulation cotton, foam, etc., which is not limited by the embodiment of the present application.

[0059] Optionally, the first heat insulation piece 120 covers the top wall 113, the convex top wall 1121 and the convex side wall 1122 of the inner container 110. The embodiment of the present application covers the top wall 113, the convex top and the convex side wall 1122 of the inner container 110 by the first heat insulation piece 120, so as to fully cover the outside of the top of the inner container 110, prevent the heat in the cooking cavity 111 from escaping through the top of the inner container 110, and ensure the stability of the electric control system 180 of the inner container assembly 100, thereby enhancing the working reliability and safety of the inner container assembly 100.

[0060] In order to facilitate the connection between the first connecting terminal 131 and the electric control system 180 of the inner container assembly 100, in the embodiment of the present application, the first heat insulation piece 120 has a second connecting part 121, and the positions of the second connecting part 121 and the first connecting part 1123 are correspondingly arranged; the first connecting terminal 131 is arranged through the second connecting part 121 and extends to the side of the first heat insulation piece 120 away from the inner container 110.

[0061] For example, the second connecting part 121 can be a through hole structure or a slit structure, etc., which is not limited by the embodiment of the present application.

[0062] Referring to Figure 3 , Figure 4 , Figure 5 , Figure 7In some embodiments, the inner container assembly 100 further comprises a second thermal insulation 140, which is arranged on the top outer side of the inner container 110 and on the side of the first thermal insulation 120 away from the inner container 110. In this way, by arranging the second thermal insulation 140, the heat dissipation of the inner container 110 is reduced in a multi-layer thermal insulation manner outside the inner container 110, avoiding the failure of the electric control system 180 in the inner container assembly 100 due to temperature rise, so that the operation of the inner container assembly 100 is stable and reliable, and the working safety of the inner container assembly 100 is ensured.

[0063] In combination Figure 3 , Figure 4 , Figure 7 In some embodiments, the second thermal insulation 140 and the first thermal insulation 120 are arranged in a spaced manner to form a thermal insulation interlayer 141.

[0064] When the first heating element 130 or the hot steam in the inner container 110 is working, a large amount of heat is output in the cooking cavity 111 by radiation or convection to heat the food in the cooking cavity 111 and the wall surface of the inner container 110. The outer side of the inner container 110 is covered with the first thermal insulation 120, so that the first thermal insulation 120 insulates and keeps warm the high-temperature inner container 110 to avoid rapid heat loss.

[0065] However, during use, part of the heat of the inner container 110 will be transferred to the side of the first thermal insulation 120 away from the inner container 110 by heat conduction. In the embodiments of the present application, the second thermal insulation 140 and the first thermal insulation 120 are arranged in a spaced manner, and a thermal insulation interlayer 141 is formed between them. In this way, the air in the thermal insulation interlayer 141 is a poor conductor of heat, which hinders the heat loss of the side of the first thermal insulation 120 away from the inner container 110, thereby preventing the failure of the inner container assembly 100 caused by the heat dissipation in the inner container 110. That is, by such an arrangement, the working stability, reliability and safety of the inner container assembly 100 are improved, and when the inner container assembly 100 is applied to a cooking device, the working stability, reliability and safety of the cooking device are further enhanced, and the user's use experience is improved.

[0066] In the embodiments of the present application, the first connecting terminal 131 extends into the thermal insulation interlayer 141. That is, the first connecting terminal 131 can be connected with the connecting terminal of the electric control system 180 in the thermal insulation interlayer 141. In this way, by reasonably utilizing the space of the inner container assembly 100, the installation space utilization rate of the inner container assembly 100 is improved, and the space proportion of the inner container assembly 100 is reduced. Furthermore, no hole needs to be opened on the second thermal insulation 140, and only a convenient wiring layout is needed to complete the connection and electrical conduction between the first connecting terminal 131 and the electric control system 180, thereby improving the assembly efficiency of the inner container assembly 100.

[0067] It is understandable that the second thermal insulation member 140 has no opening, which can limit the upward flow of air in the thermal insulation layer 141, and avoid a large amount of air convection caused by the heated air and the cold air outside the second thermal insulation member 140, thereby reducing the heat loss of the inner container 110.

[0068] For example, the second thermal insulation member 140 can be a plate-shaped member, and the material of the plate-shaped member can be metal or plastic, etc., which is not specifically required.

[0069] In combination Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 7 In some embodiments, the inner container 110 has a first side wall 115, the first side wall 115 and the top wall 113 of the inner container 110 are adjacent; and the first connecting terminal 131 extends to the outside of the first side wall 115. It is understandable that the connection between the top wall 113 and the first side wall 115 of the inner container 110 is usually a stress concentration area, and extending the first connecting terminal 131 to the first side wall 115 can avoid opening the top wall 113 of the inner container 110, thereby maintaining the overall strength of the inner container 110 and avoiding deformation of the inner container 110.

[0070] For example, the first side wall 115 is provided with a hole structure, so that the first connecting terminal 131 passes through the first side wall 115 and extends to the outside of the first side wall 115.

[0071] Referring to Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 In some embodiments, the inner container assembly 100 further comprises a second heating member 150, the second heating member 150 is located in the cooking cavity 111, and the second heating member 150 has a second connecting terminal 151, the second connecting terminal 151 extends to the outside of the first side wall 115.

[0072] For example, the second heating member 150 is a heating pipe. Referring to Figure 1 The first heating member 130 is arranged at the top of the cooking cavity 111, and the second heating member 150 can be arranged at the side of the cooking cavity 111. In this way, by arranging the first heating member 130 and the second heating member 150, the temperature in the cooking cavity 111 can be quickly raised. Furthermore, the first heating member 130 and the second heating member 150 can radiate heat to food from multiple angles, thereby improving the cooking efficiency and effect of the food.

[0073] In addition, by extending the second connecting terminal 151 to the outside of the first side wall 115 and connecting and electrically conducting with the electric control system 180 on the inner container assembly 100 and the outside of the first side wall 115, thus, the second connecting terminal 151 does not pass through the top of the inner container 110, thereby reducing the opening structure of the top of the inner container 110, further preventing the heat in the cooking cavity 111 from escaping from the top of the inner container 110.

[0074] Referring to Figure 3 , Figure 5 , Figure 6 , Figure 7 In some embodiments, the inner container assembly 100 includes a third heating element 160, the third heating element 160 is arranged outside the bottom wall of the inner container 110, the third heating element 160 has a third connecting terminal (not shown in the figure), the third connecting terminal extends to the outside of the first side wall 115.

[0075] Referring to Figure 1 , Figure 3 , Figure 5 , Figure 7 The first heating element 130 is arranged at the top of the cooking cavity 111, the second heating element 150 can be arranged at the side of the cooking cavity 111, and the third heating element 160 is arranged outside the bottom of the inner container 110. In this way, by arranging the first heating element 130, the second heating element 150 and the third heating element 160, the temperature in the cooking cavity 111 can be quickly raised. Furthermore, the first heating element 130, the second heating element 150 and the third heating element 160 can radiate temperature to food from multiple angles, improving the cooking efficiency and cooking effect of food.

[0076] In addition, by extending the third connecting terminal to the outside of the first side wall 115 and connecting and electrically conducting with the electric control system 180 on the inner container assembly 100 and the outside of the first side wall 115, thus, the third connecting terminal does not pass through the top of the inner container 110, thereby reducing the opening structure of the top of the inner container 110, further preventing the heat in the cooking cavity 111 from escaping from the top of the inner container 110.

[0077] In some embodiments, the inner pot assembly 100 includes a convection fan 170 disposed in the cooking cavity 111. The convection fan 170 has a fourth connection terminal extending to the outer side of the first sidewall 115. Thus, the convection fan 170 allows hot air in the cooking cavity 111 to circulate within it, ensuring even heating of the food, preventing heat concentration, and improving cooking efficiency. Furthermore, the fourth connection terminal extends to the outer side of the first sidewall 115 and is connected and electrically conductive to the outer side of the first sidewall 115 and the electrical control system 180 on the inner pot assembly 100. The fourth connection terminal does not pass through the top of the inner pot 110, thereby reducing the number of openings at the top of the inner pot 110 and further preventing heat from escaping from the top of the inner pot 110.

[0078] It should be noted that, see Figure 3 and Figure 7 Let X be the depth direction of the inner liner 110, and let Y and Z be the directions that intersect the depth direction of the inner liner 110.

[0079] In some embodiments, at least two of the first connecting terminal 131, the second connecting terminal 151, the third connecting terminal, and the fourth connecting terminal are located on the same side of the inner liner 110 along the depth direction intersecting the inner liner 110.

[0080] See Figure 7 In this embodiment, the first connecting terminal 131, the second connecting terminal 151, the third connecting terminal, and the fourth connecting terminal are all located on the same side of the inner liner 110 along the Y direction. Thus, the first heat insulation member 120 on the outer sidewall of the inner liner 110 along the Y direction has multiple openings or slits for the corresponding first connecting terminal 131, second connecting terminal 151, third connecting terminal, and fourth connecting terminal to pass through and extend to the outer side of the first sidewall 115. It can be understood that this arrangement concentrates the openings or slits on the first heat insulation member 120 on the same side, reducing the need for openings in other locations, facilitating electrical connections between components, and reducing damage to the heat insulation interlayer 141 between the first heat insulation member 120 and the second heat insulation member 140, thereby preventing heat loss from the inner liner 110 and ensuring the operational stability and safety of the inner liner assembly 100.

[0081] Secondly, embodiments of this application provide a cooking device, including: the inner pot assembly 100 provided in the first aspect.

[0082] The cooking device in this embodiment of the application, by including the inner pot assembly 100 provided in the first aspect, can improve the working stability and safety of the cooking device.

[0083] It should be noted that the cooking device in the embodiments of the present application can be integrated stove, steaming and baking integrated machine, stove and steaming and baking integrated machine, integrated extractor hood, steaming oven, electric oven, etc., and the embodiments of the present application do not make specific requirements thereon.

[0084] It should be noted that the terms “one embodiment”, “an embodiment”, “exemplary embodiment”, “some embodiments”, etc. mentioned in the specification mean that the described embodiments can include a particular feature, structure or characteristic, but not necessarily every embodiment. In addition, such phrases do not necessarily refer to the same embodiment. In addition, when a particular feature, structure or characteristic is described in connection with an embodiment, it is within the knowledge of those skilled in the art to implement such feature, structure or characteristic in connection with other embodiments whether explicitly described or not.

[0085] Generally, the terms should be understood at least partially by the usage in the context. For example, at least partially according to the context, the term “one or more” used in the text can be used to describe any feature, structure or characteristic of singular meaning, or can be used to describe a combination of features, structures or characteristics of plural meaning. Similarly, at least partially according to the context, terms such as “a” or “said” can be understood to convey singular usage or to convey plural usage.

[0086] It should be readily understood that “on”, “above” and “over” in the present application should be interpreted in the broadest way, so that “on” not only means “directly on”, but also includes the meaning of “on” with intermediate features or layers therebetween, and “above” or “over” not only includes the meaning of “above” or “over”, but also can include the meaning of “above” or “over” without intermediate features or layers therebetween (i.e. directly on).

[0087] In addition, spatial relative terms can be used herein for ease of description, such as “below”, “under”, “below”, “above”, “over”, etc., to describe the relationship of one element or feature to other elements or features as shown in the drawings. The spatial relative terms are intended to include different orientations of the device in use or operation in addition to the orientation shown in the drawings. The device can have other orientations (rotated 90° or in other orientations), and the spatial relative terms used herein can also be interpreted accordingly.

[0088] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.

Claims

1. A liner assembly, comprising: The inner container (110) has a cooking cavity (111); a top wall (113) of the inner container (110) is provided with a protruding structure (112); the protruding structure (112) has a protruding top wall (1121) and a protruding side wall (1122) respectively connecting the protruding top wall (1121) and the top wall (113) of the inner container (110); the protruding side wall (1122) has a first connecting portion (1123); The first heating element (130) is located in the cooking cavity (111), and the first heating element (130) has a first connecting terminal (131) penetrating through the first connecting portion (1123) and extending to the outside of the side of the inner container (110). The protruding structure (112) is protrudingly arranged relative to the center of the inner container (110) towards the side away from the cooking cavity (111).

2. The liner assembly of claim 1, wherein, The protruding structure (112) forms an accommodating groove (114) towards the cooking cavity (111), and at least part of the first heating element (130) is located in the accommodating groove (114).

3. The liner assembly of claim 2, wherein, Further comprising a first heat insulation element (120), and at least part of the first heat insulation element (120) is arranged outside the top of the inner container (110).

4. The liner assembly of any of claims 1-3, wherein, The first heat insulation element (120) covers the top wall (113) of the inner container (110), the protruding top wall (1121) and the protruding side wall (1122); 5. The liner assembly of claim 4, wherein, The first heat insulation element (120) has a second connecting portion (121) arranged in position corresponding to the first connecting portion (1123); The first connecting terminal (131) penetrates through the second connecting portion (121) and extends to the side of the first heat insulation element (120) away from the inner container (110). Further comprising a second heat insulation element (140) arranged outside the top of the inner container (110) and located on the side of the first heat insulation element (120) away from the inner container (110).

6. The liner assembly of claim 4, wherein, The second heat insulation element (140) and the first heat insulation element (120) are arranged in a spaced manner to form a heat insulation interlayer (141); 7. The liner assembly of claim 6, wherein, The first connecting terminal (131) extends into the heat insulation interlayer (141). The inner container (110) has a first side wall (115) abutting the top wall (113) of the inner container (110); 8. The liner assembly of any of claims 1-3, wherein, The inner container assembly (100) further comprises a second heating element (150) located in the cooking cavity (111), and the second heating element (150) has a second connecting terminal (151) extending to the outside of the first side wall (115). ​ And / or, the inner container assembly (100) comprises a third heating element (160) disposed outside a bottom wall of the inner container (110), the third heating element (160) having a third connecting terminal extending to outside of the first side wall (115); And / or, the inner container assembly (100) comprises a convection fan (170) disposed in the cooking cavity (111), the convection fan (170) having a fourth connecting terminal extending to outside of the first side wall (115).

9. The liner assembly of claim 8, wherein, At least two of the first connecting terminal (131), the second connecting terminal (151), the third connecting terminal and the fourth connecting terminal are located at the same side of the inner container (110) along a depth direction intersecting the inner container (110).

10. A cooking apparatus, characterized by, Comprise: The inner container assembly (100) according to any one of claims 1-9.