Cooking device

By designing the storage chamber and guide rail structure in the cooking device, the door body can slide into the storage chamber under high temperature conditions, solving the scald and bumping problems, improving safety and user experience.

CN223126310UActive Publication Date: 2025-07-22HISENSE HOME APPLIANCES GRP CO LTD
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Patent Information

Application Number
CN202421686585.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-07-22
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

After cooking, the high-temperature door body exposed may burn the user and may cause bumps and accidental damage.

Method used

A cooking device is designed, by forming a receptacle cavity between the outer wall of the inner liner and the inner wall of the box, and providing guide rails in the receptacle cavity, the door body is hinged with the hinge bracket, and the door body can slide into the receptacle cavity for storage under high temperature state to avoid exposure.

Benefits of technology

It effectively avoids scalds and bumps in the door body, and improves the safety and user experience of the cooking device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cooking device. The cooking device comprises a box body; the inner container is arranged in the box body; the outer wall of the inner container and the inner wall of the box body are arranged in a spaced mode so as to form a containing cavity extending in the front-back direction of the box body. The door body is rotatably arranged on the front side of the box body, the door body can rotate between a first position and a second position, when the door body is in the first position, the door body rotates to cover a front side opening of the cooking cavity, and when the door body is in the second position, the door body can rotate to open the cooking cavity; a containing cavity is formed in the door body, a guide rail extending from the front end of the containing cavity to the rear end of the containing cavity is arranged in the containing cavity, a hinge support capable of sliding is arranged on the guide rail, the door body is hinged to the hinge support, and when the door body is located at the second position, the door body can slide into the containing cavity along the guide rail along with the hinge support. The door body can be prevented from scalding a user after cooking is finished, so that accidental injury to the user is avoided.
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Description

Technical Field

[0001] This application relates to the technical field of kitchen appliances, and particularly to a cooking device. Background Art

[0002] Cooking devices such as ovens, steamers, or steam ovens are cooking machines that enclose food in a closed space and heat and cook the food. With the development of technology, cooking devices such as ovens, steamers, and steam ovens have become increasingly popular.

[0003] Among them, the cooking device includes a box body and an inner container disposed inside the box body. The inner container forms a cooking cavity with an opening at the front side, and the food to be cooked is placed into the cooking cavity through its front-side opening. A door body is provided on the box body, and the cooking cavity is opened or closed through the door body.

[0004] In the related art, the door body and the box body are usually hinged. When it is necessary to close the cooking cavity, the door body rotates to cover the front-side opening of the cooking cavity. When it is necessary to open the cooking cavity, the door body rotates to be flush with the bottom surface of the box body, thereby exposing the front-side opening of the cooking cavity. However, when the door body is opened after cooking is completed, the inside of the cooking cavity is in a high-temperature state, and the door body is exposed on the front side of the box body. When the user takes and places food, it is easy to get burned, and the door body protruding from the front side of the box body may also cause the user to bump, thus causing accidental injuries. Summary of the Utility Model

[0005] The purpose of this application is to solve the above problems and other problems.

[0006] The purpose of this application is also to avoid scalding the user by the door body after cooking is completed, thereby avoiding causing accidental injuries to the user.

[0007] The purpose of this application is also to improve the safety factor of the cooking device.

[0008] The purpose of this application is not limited to the above-mentioned purposes, and those skilled in the art can clearly understand other purposes not mentioned through the following descriptions.

[0009] The cooking device of this application for achieving the above purposes includes a box body.

[0010] The cooking device includes an inner container.

[0011] The inner container can be disposed inside the box body, and the inner container can form a cooking cavity with an opening at the front side.

[0012] A space can be provided between the outer wall of the inner container and the inner wall of the box body to form a receiving cavity extending in the front-rear direction of the box body.

[0013] The front end of the receiving cavity can be open.

[0014] The cooking device includes a door body.

[0015] The door body is rotatably arranged on the front side of the box body.

[0016] The door body can rotate between a first position and a second position. When in the first position, the door body rotates to cover the front opening of the cooking cavity to close the cooking cavity.

[0017] When in the second position, the door body can rotate to open the cooking cavity.

[0018] A guide rail extending from the front end to the rear end of the accommodating cavity can be provided in the accommodating cavity.

[0019] A slidable hinge bracket can be provided on the guide rail.

[0020] The door body can be hinged to the hinge bracket. When the door body is in the second position, the door body can slide into the accommodating cavity along the guide rail together with the hinge bracket.

[0021] A first elastic member can be provided at the front end of the guide rail, and the hinge bracket can slide forward to abut against the first elastic member.

[0022] A second elastic member can be provided at the rear end of the guide rail, and the hinge bracket can slide backward to abut against the second elastic member.

[0023] When the hinge bracket abuts against the second elastic member, the door body can be received in the accommodating cavity.

[0024] The guide rail can be provided with a chute extending along its length direction.

[0025] The first elastic member and the second elastic member can be respectively arranged at two ends in the chute.

[0026] A part of the hinge bracket can be located in the chute to be able to slide along the chute.

[0027] The part of the hinge bracket located outside the chute can be hinged to the door body.

[0028] The part of the hinge bracket extending into the chute can be provided with a first baffle and a second baffle at intervals along the length direction of the chute.

[0029] The first baffle can be used to abut against the first elastic member.

[0030] The second baffle can be used to abut against the second elastic member.

[0031] The hinge bracket can include two oppositely arranged side plates, a connecting plate, and a bottom plate connected to the bottoms of the two side plates.

[0032] The bottom plate can be located in the sliding groove.

[0033] The bottom plate can extend along the length direction of the sliding groove.

[0034] The two side plates can extend outside the sliding groove.

[0035] The connecting plate can be connected to the front ends of the two side plates and the bottom plate.

[0036] The connecting plate can be hinged to the door body.

[0037] The outer side surface of the side plate can be in contact with the side wall of the groove of the sliding groove, and the first baffle and the second baffle can be arranged at intervals at the bottom of the bottom plate.

[0038] Limit plates can be respectively arranged at both ends of the notch of the sliding groove.

[0039] The limit plates can extend along the length direction of the sliding groove.

[0040] The outer side surfaces of the two side plates can be respectively in contact with the end faces of the two limit plates.

[0041] Two opposite sides of the bottom plate can respectively protrude towards the side walls of the opposite sliding grooves to form limit blocks, and the two limit blocks can respectively abut against the bottom surfaces of the two limit plates.

[0042] The first elastic member can include a guide post and a spring.

[0043] The guide post can be arranged at the front end of the sliding groove.

[0044] The guide post can extend along the length direction of the sliding groove.

[0045] The spring can be sleeved on the guide post, and the first baffle is used to abut against the spring.

[0046] There can be two guide rails.

[0047] The two guide rails can be respectively located at opposite ends of the bottom of the accommodating cavity.

[0048] When the door body is in the second position, the bottom of the door body can be supported on the two guide rails and slide into the accommodating cavity along the guide rails.

[0049] A door frame can be provided on the front side of the box body.

[0050] An installation opening matching the inner container can be formed on the door frame.

[0051] The installation opening can be opposite to the opening on the front side of the cooking cavity.

[0052] A relief groove communicating with the front-end opening of the accommodating cavity can be provided at the bottom of the door frame. When the door body is in the second position, the door body can enter the accommodating cavity through the relief groove.

[0053] Beneficial effects:

[0054] In this application, by forming an accommodating cavity, a guide rail extending from the front end to the rear end of the accommodating cavity is provided in the accommodating cavity. A slidable hinge bracket is provided on the guide rail, and the door body is hinged to the hinge bracket, so that the door body can rotate relative to the hinge bracket. When the door body is in the second position, the door body can slide into the accommodating cavity along the guide rail together with the hinge bracket, so that the door body can be received in the accommodating cavity in the open state, avoiding scalding and bumping the user due to its exposure, thereby improving the safety factor of the cooking device and enhancing the user experience. Description of the drawings

[0055] Figure 1 Shows a schematic structural diagram of the middle door body of the cooking device in the closed state according to some embodiments;

[0056] Figure 2 Shows a schematic structural diagram of the middle door body of the cooking device in the open state according to some embodiments;

[0057] Figure 3 Shows a schematic structural diagram of the middle door body of the cooking device in the received state according to some embodiments;

[0058] Figure 4 Shows a schematic internal structural diagram of the middle door body of the cooking device in the closed state according to some embodiments;

[0059] Figure 5 Exemplarily shows an assembly diagram of the middle door body of the cooking device in the received state and the guide rail;

[0060] Figure 6 Exemplarily shows a top view of the cooking device after the assembly of the middle door body in the received state and the guide rail according to some embodiments;

[0061] Figure 7 Shows Figure 6 A cross-sectional view taken along the A-A direction in

[0062] Figure 8 Shows Figure 7 A partial enlarged view at B in

[0063] Figure 9 Shows Figure 7 A partial enlarged view at C in

[0064] Figure 10 Exemplarily shown is a schematic structural diagram of a middle hinge bracket of a cooking device according to some embodiments;

[0065] Figure 11 Exemplarily shown is a schematic structural diagram of a guide rail in a cooking device according to some embodiments.

[0066] Description of reference numerals:

[0067] Cabinet 10, door frame 100, avoidance groove 110, front panel 120, inner container 20, cooking cavity 200, accommodating cavity 210, door body 30, guide rail 40, sliding groove 400, limiting plate 410, hinge bracket 50, side plate 500, bottom plate 510, connecting plate 520, first baffle 530, second baffle 540, limiting block 550, hinge 60, first elastic member 70, guiding column 700, spring 710, second elastic member 80. Detailed implementation manners

[0068] To make the purpose and implementation manners of this application clearer, the following will clearly and completely describe the exemplary implementation manners of this application with reference to the accompanying drawings in the exemplary embodiments of this application. Obviously, the described exemplary embodiments are only a part of the embodiments of this application, rather than all of the embodiments.

[0069] It should be noted that the brief description of terms in this application is only for facilitating the understanding of the following described implementation manners, rather than intending to limit the implementation manners of this application. Unless otherwise specified, these terms should be understood according to their ordinary and common meanings.

[0070] The terms "first", "second", "third", etc. in the specification, claims and the above-mentioned drawings of this application are used to distinguish similar or same-kind objects or entities, and do not necessarily mean to limit a specific order or sequence, unless otherwise noted. It should be understood that such terms can be interchanged under appropriate circumstances.

[0071] The terms "comprising" and "having" and any variations thereof are intended to cover but not exclusively include. For example, a product or device comprising a series of components does not necessarily have to be limited to all the clearly listed components, but may include other components not clearly listed or inherent to these products or devices.

[0072] In the related art, the door body and the box body are usually hinged. When the cooking cavity needs to be closed, the door body rotates to cover the front opening of the cooking cavity. When the cooking cavity needs to be opened, the door body rotates to be flush with the bottom surface of the box body, thereby exposing the front opening of the cooking cavity. However, when the door body is opened after cooking is completed, the cooking cavity is in a high-temperature state, and the door body is exposed on the front side of the box body. When the user takes and places food, it is easy to get burned. The door body protruding from the front side of the box body may also cause the user to bump into it, resulting in accidental injuries. To solve this problem, the present application specifically proposes a cooking device.

[0073] For ease of understanding, in this embodiment, the side of the cooking device facing the user for the user to operate is the front side of the cooking device, and the side facing away from the user is the rear side of the cooking device.

[0074] See Figure 1 , the cooking device provided in this embodiment may include a box body 10. Among them, the box body 10 may have a rectangular hollow structure. The box body 10 is configured as the outer shell of the cooking device, and the internal space of the box body 10 is used to provide an installation space for other components, playing a certain protective role.

[0075] In some embodiments, the cooking device may include an inner container 20. The inner container 20 may be disposed inside the box body 10. A cooking cavity 200 with a front opening is formed inside the inner container 20, and the cooking cavity 200 can be used for high-temperature cooking of food by steaming, baking and other methods.

[0076] In some embodiments, the cooking device may include a heating element. The heating element may be disposed in the cooking cavity 200, such as on the top wall of the inner container 20. The heating element is used to heat the air in the cooking cavity 200, thereby raising the temperature inside the inner cavity.

[0077] In some embodiments, the heating element may also be disposed on the rear wall or other side walls of the cooking cavity 200. The heating element heats the inside of the cooking cavity 200 from the rear region or other regions of the cooking cavity 200. The heating element may also be disposed outside the inner container 20, such as arranged below the bottom of the inner container 20.

[0078] In some embodiments, the heating element may be in the form of a heating tube. The heating tube is bent into a plate shape and laid on the top wall of the inner container 20. It should be noted that the heating element may also be in the form of a heating wire.

[0079] In some embodiments, an installation opening matching the inner container 20 may be provided on the front side of the box body 10. The front opening of the cooking cavity 200 is opposite to the installation opening. The food to be cooked is put into the cooking cavity 200 through the installation opening on the front side of the box body 10, or taken out of the cooking cavity 200 through the installation opening of the box body 10.

[0080] In some embodiments, a door frame 100 may be provided on the front side of the cabinet 10. The above-mentioned installation opening is formed on the door frame 100. The inner container 20 can be fixed through the door frame 100 and is used for installing the door body 30. It can be understood that the door frame 100 as a whole can be a rectangular ring frame structure. The upper side of the door frame 100 located at the installation opening can be used for installing the front panel 120 of the cooking device. The front panel 120 can be a liquid crystal touch panel for displaying and controlling relevant content.

[0081] In some embodiments, the cooking device may include a door body 30. The door body 30 is rotatably arranged on the front side of the cabinet 10 and is used for opening and closing the cooking cavity 200.

[0082] In some embodiments, the door body 30 can rotate between a first position and a second position. When in the first position, the door body 30 rotates to cover the front opening of the cooking cavity 200 to close the cooking cavity 200, so that the cooking cavity 200 is in a sealed state and cooking can start. At this time, the door body 30 can be attached to the door frame 100 and parallel to the door frame 100, so as to cover the front opening of the cooking cavity 200, and the door body 30 is in the closed state.

[0083] Continue to refer to Figure 2 , in some embodiments, when in the second position, the door body 30 can rotate to open the cooking cavity 200. At this time, the door body 30 can rotate to be misaligned with the front opening of the cooking cavity 200 to expose the front opening of the cooking cavity 200, so as to open the cooking cavity 200, and the door body 30 is in the open state. It can be understood that in order to expose a larger front opening of the cooking cavity 200 and make it more convenient to take and place food, the door body 30 can rotate to a state almost perpendicular to the door frame 100. For example, the included angle between the door body 30 and the door frame 100 can be between 85° and 90°. In some embodiments, the door body 30 can rotate to form an 85° included angle with the door frame 100, and in some embodiments, the door body 30 can rotate to form a 90° included angle with the door frame 100.

[0084] In this embodiment, a gap is provided between the outer wall of the inner container 20 and the inner wall of the cabinet 10 to form a receiving cavity 210 extending in the front-rear direction of the cabinet 10, and the front end of the receiving cavity 210 is open. It can be understood that there can be gaps between the bottom wall of the inner container 20 and the bottom wall of the cabinet 10, the left and right side walls of the inner container 20 and the left and right inner side walls of the cabinet 10, and the rear side wall of the inner container 20 and the rear side wall of the cabinet 10, so that the receiving cavity 210 is arranged around the inner container 20.

[0085] Continue to refer to Figure 3 and Figure 4, wherein, a guide rail 40 extending from the front end to the rear end of the accommodation cavity 210 may be provided in the accommodation cavity 210. A slidable hinge bracket 50 is provided on the guide rail 40, and the door body 30 is hinged to the hinge bracket 50, so that the door body 30 can rotate relative to the hinge bracket 50, that is, the door body 30 can rotate relative to the box body 10. When the door body 30 is in the second position, the door body 30 can slide into the accommodation cavity 210 along the guide rail 40 with the hinge bracket 50. Thus, when the door body 30 is in the open state, it can be received in the accommodation cavity 210 to prevent it from being exposed to scald or bump the user. After the door body 30 is received in the accommodation cavity 210, the door body 30 is in the received state.

[0086] In some embodiments, the door frame 100 may be provided with an avoidance groove 110 at the bottom communicating with the front end opening of the accommodation cavity 210, and the size of the opening of the avoidance groove 110 can meet the requirement that the door body 30 can pass through the avoidance groove 110 when in the second position. Therefore, when the door body 30 is in the second position, the door body 30 can enter the accommodation cavity 210 through the avoidance groove 110 and thus be received therein. It can be understood that the door body 30 can partially enter the accommodation cavity 210 or completely enter the accommodation cavity 210, depending on the user's setting.

[0087] In some embodiments, the door frame 100 may also be provided with the above-mentioned avoidance groove 110 at the left and right sides, so that when the door body 30 is in the second position, the door body 30 is located at the left and right sides of the door frame 100. When the door body 30 rotates, it can rotate from the right side to the left side of the box body 10 to close the cooking cavity 200, or rotate from the left side to the right side of the box body 10 to close the cooking cavity 200.

[0088] Continue to refer to Figures 5 to 9 , in some embodiments, there may be two guide rails 40, and the two guide rails 40 are respectively located at the opposite ends of the bottom of the accommodation cavity 210. When the door body 30 is in the second position, the bottom of the door body 30 can be supported on the two guide rails 40 and slide into the accommodation cavity 210 along the guide rails 40, so that the door body 30 slides more stably. Hinge brackets 50 are provided on both of the two guide rails 40, so that the door body 30 rotates more stably. The guide rail 40 can be fixed to the door frame 100 and the bottom of the box body 10 by screws to improve the stability of the installation of the guide rail 40.

[0089] In some embodiments, a hinge 60 may be provided between the door body 30 and the hinge bracket 50 to hinge the door body 30 and the hinge bracket 50. Among them, a first connection hole may be provided on the door body 30, a second connection hole is provided on the hinge 60, and the first connection hole and the second connection hole are rotationally connected through a rotating shaft. The hinge 60 is connected to the hinge bracket 50, so that the hinge 60 is hinged to the door body 30 and the hinge bracket 50 and the door body 30 are hinged through the rotation of the rotating shaft. The hinge 60 and the hinge bracket 50 may be an integral structure or a detachable connection, so as to facilitate the disassembly and assembly of the door body 30 and the hinge bracket 50.

[0090] In some embodiments, the guide rail 40 may be provided with a chute 400 extending along its length direction. The hinge bracket 50 is partially located in the chute 400 so as to be able to slide along the chute 400. The chute 400 plays a role in limiting and guiding the hinge bracket 50 extending into it, so that the hinge bracket 50 can only move along the chute 400. The part of the hinge bracket 50 located outside the chute 400 is hinged to the door body 30 to drive the door body 30 in the second position to slide along the guide rail 40.

[0091] In some embodiments, the hinge bracket 50 may include two oppositely arranged side plates 500. There is a gap between the two side plates 500, and the outer side surface of the side plate 500 abuts against the groove side wall of the chute 400, so that the hinge bracket 50 is clamped in the chute 400 to prevent it from shaking when sliding.

[0092] See Figure 10 , in some embodiments, the hinge bracket 50 may include a bottom plate 510 connected to the bottoms of the two side plates 500. The bottom plate 510 connects the two side plates 500 into one body. The bottom plate 510 is located in the chute 400. The bottom plate 510 may extend along the length direction of the chute 400, strengthening the structural strength of the hinge bracket 50. At the same time, the two side plates 500 can be spaced apart, making the inside of the hinge bracket 50 hollow and reducing the material cost of the hinge bracket 50.

[0093] In some embodiments, the hinge bracket 50 may include a connecting plate 520. The connecting plate 520 is connected to the front ends of the two side plates 500 and the bottom plate 510 to further strengthen the structural strength of the hinge bracket 50. The connecting plate 520 is hinged to the door body 30, so that the front end of the hinge bracket 50 can be hinged to the door body 30. Among them, a clamping position may be provided on the connecting plate 520. One end of the hinge 60 is clamped in the clamping position and thus connected to the connecting plate 520. The other end of the hinge 60 is hinged to the door body 30 to realize the hinging of the hinge bracket 50 and the door body 30.

[0094] In some embodiments, opposite limiting plates 410 are respectively provided at two ends of the notch of the sliding groove 400. The limiting plates 410 can extend along the length direction of the sliding groove 400, so that the notch of the sliding groove 400 is limited between the two limiting plates 410. The outer sides of the two side plates 500 can respectively abut against the end faces of the two limiting plates 410 to clamp the hinge bracket 50.

[0095] In some embodiments, two opposite sides of the bottom plate 510 can respectively protrude towards the side walls of the opposite sliding grooves 400 to form limiting blocks 550. The two limiting blocks 550 respectively abut against the bottom surfaces of the two limiting plates 410. Thus, in the direction perpendicular to the notch of the sliding groove 400, the limiting plates 410 limit the bottom plate 510, preventing the hinge bracket 50 from disengaging from the sliding groove 400, thereby ensuring the stability of the door body 30 when moving along the guide rail 40. Especially when the door body 30 moves to the outermost side and is in the second position, it can prevent the door body 30 from tilting forward due to the forward shift of the center of gravity.

[0096] In some embodiments, several limiting blocks 550 can be arranged at intervals along the length direction of the bottom plate 510 to further prevent the hinge bracket 50 from disengaging from the sliding groove 400.

[0097] See Figure 11 , in some embodiments, a first elastic member 70 can be provided at the front end of the guide rail 40. The hinge bracket 50 can slide forward until it abuts against the first elastic member 70. At this time, the door body 30 can be in the second position, and the door body 30 cannot continue to slide forward out of the accommodating cavity 210 due to the abutment of the first elastic member 70. When the hinge bracket 50 abuts against the first elastic member 70, the elastic acting force of the first elastic member 70 can provide a backward acting force for the hinge bracket 50, thereby providing a certain resistance when closing the door body 30, avoiding no damping when closing the door, and improving the user experience. Moreover, when the door body 30 is pushed into the accommodating cavity 210 by the elastic acting force of the first elastic member 70, the elastic acting force of the first elastic member 70 can provide a certain starting pushing force for the pushing of the door body 30, and the user operation experience is better.

[0098] In some embodiments, a second elastic member 80 can be provided at the rear end of the guide rail 40. The hinge bracket 50 can slide backward until it abuts against the second elastic member 80. When the hinge bracket 50 abuts against the second elastic member 80, the door body 30 slides into and is received in the accommodating cavity 210, and the door body 30 cannot continue to be pushed into the accommodating cavity 210 due to the abutment of the second elastic member 80. The elastic acting force of the second elastic member 80 can provide a certain damping force for the door body 30, avoiding the door body 30 being violently pushed to the rear end of the accommodating cavity 210, slowing down the impact of the door body 30, and avoiding damage to the door body 30 caused by excessive user force.

[0099] Specifically, the first elastic member 70 and the second elastic member 80 can be respectively arranged at both ends in the sliding groove 400. The first elastic member 70 is located at the front end of the sliding groove 400, and the second elastic member 80 is located at the rear end of the sliding groove 400. The part of the hinge bracket 50 extending into the sliding groove 400 can be provided with a first baffle 530 and a second baffle 540 at intervals along the length direction of the sliding groove 400. The first baffle 530 is used to abut against the first elastic member 70, and the second baffle 540 is used to abut against the second elastic member 80. By the first baffle 530 and the second baffle 540 arranged at intervals, the relative distance between the first baffle 530 and the second baffle 540 can be set to set the stroke that the door body 30 can move along the guide rail 40, making it more matched with the length of the accommodation cavity 210.

[0100] In some embodiments, the first baffle 530 and the second baffle 540 are arranged at intervals at the bottom of the bottom plate 510, so that there can be a certain gap between the bottom plate 510 and the bottom wall of the sliding groove 400. When the first elastic member 70 abuts against the first baffle 530, the first elastic member 70 can be located on the bottom side of the bottom plate 510, so that the connecting plate 520 can be closer to the outside of the door frame 100, and the door body 30 can rotate better from the second position to the first position. Among them, the first baffle 530 and the second baffle 540 can extend in a direction perpendicular to the bottom plate 510.

[0101] In some embodiments, the first elastic member 70 can include a guide post 700. The guide post 700 is arranged at the front end of the sliding groove 400 and extends along the length direction of the sliding groove 400. The first elastic member 70 can include a spring 710. The spring 710 is sleeved on the guide post 700. The guide post 700 plays a role of guiding and limiting the spring 710, so that the spring 710 can only stretch back and forth along the length direction of the guide post 700, so as to be able to apply an elastic acting force in the length direction of the sliding groove 400 to the first baffle 530.

[0102] In some embodiments, one end of the spring 710 can be fixedly connected to the front end of the sliding groove 400. The spring 710 can be a compression spring 710 or a disc spring.

[0103] In some embodiments, the second elastic member 80 can be a damper arranged at the rear end of the sliding groove 400. The damper provides a damping force to slow down the impact of the door body 30. When the second baffle 540 abuts against the damper, it can abut against the actuating end of the damper. Among them, the damper can be one of a hydraulic damper, a spring 710 damper, a viscous damper, etc., which is not limited here.

[0104] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.

[0105] For the sake of explanation, the above description has been made in conjunction with specific embodiments. However, the above exemplary discussion is not intended to be exhaustive or to limit the embodiments to the specific forms disclosed above. According to the above teachings, various modifications and variations can be obtained. The selection and description of the above embodiments are for the purpose of better explaining the principles and practical applications, so that those skilled in the art can better use the embodiments and various different modified embodiments suitable for specific use considerations.

Claims

1. A cooking device, characterized in that, Comprising: A box body; An inner container, which is arranged inside the box body and forms a cooking cavity with an opening at the front side; there is a space between the outer wall of the inner container and the inner wall of the box body to form a receiving cavity extending along the front-back direction of the box body, and the front end of the receiving cavity is open; A door body, which is rotatably arranged on the front side of the box body, and the door body can rotate between a first position and a second position. When in the first position, the door body rotates to cover the front-side opening of the cooking cavity to close the cooking cavity. When in the second position, the door body can rotate to open the cooking cavity; Wherein, a guide rail extending from the front end to the rear end of the receiving cavity is arranged in the receiving cavity, and a slidable hinge bracket is arranged on the guide rail. The door body is hinged to the hinge bracket. When the door body is in the second position, the door body can slide into the receiving cavity along the guide rail together with the hinge bracket.

2. The cooking device according to claim 1, wherein A first elastic member is arranged at the front end of the guide rail, and the hinge bracket can slide forward to abut against the first elastic member.

3. The cooking device according to claim 2, wherein A second elastic member is arranged at the rear end of the guide rail, and the hinge bracket can slide backward to abut against the second elastic member. When the hinge bracket abuts against the second elastic member, the door body is received in the receiving cavity.

4. The cooking device according to claim 3, wherein The guide rail is provided with a chute extending along its length direction, and the first elastic member and the second elastic member are respectively arranged at two ends in the chute; Part of the hinge bracket is located in the chute to be able to slide along the chute, and the part of the hinge bracket outside the chute is hinged to the door body.

5. The cooking device according to claim 4, wherein On the part of the hinge bracket extending into the chute, a first baffle and a second baffle are arranged at intervals along the length direction of the chute. The first baffle is used to abut against the first elastic member, and the second baffle is used to abut against the second elastic member.

6. The cooking device according to claim 5, wherein The hinge bracket includes two oppositely arranged side plates, a connecting plate and a bottom plate connected to the bottoms of the two side plates. The bottom plate is located in the chute and extends along the length direction of the chute. The two side plates extend outside the chute. The connecting plate is connected to the front ends of the two side plates and the bottom plate. The connecting plate is hinged to the door body. The outer side surfaces of the side plates abut against the side wall of the chute, and the first baffle and the second baffle are arranged at intervals at the bottom of the bottom plate.

7. The cooking device according to claim 6, wherein At both ends of the opening of the chute, opposite limiting plates are respectively arranged, and the limiting plates extend along the length direction of the chute. The outer side surfaces of the two side plates respectively abut against the end surfaces of the two limiting plates; Two opposite sides of the bottom plate respectively bulge towards the side walls of the opposite chutes to form limiting blocks, and the two limiting blocks respectively abut against the bottom surfaces of the two limiting plates.

8. The cooking device according to claim 5, wherein the first elastic member includes a guide post and a spring. The guide post is disposed at the front end of the chute and extends along the length direction of the chute. The spring is sleeved on the guide post, and the first baffle is used to abut against the spring.

9. The cooking device according to claim 1, wherein there are two guide rails, and the two guide rails are respectively located at opposite ends of the bottom of the accommodating cavity. When the door body is in the second position, the bottom of the door body can be supported on the two guide rails and slide into the accommodating cavity along the guide rails.

10. The cooking device according to claim 1, wherein a door frame is provided on the front side of the box body. An installation opening matching the inner container is formed in the door frame. The installation opening is opposite to the opening on the front side of the cooking cavity. An avoidance groove communicating with the front end opening of the accommodating cavity is provided at the bottom of the door frame. When the door body is in the second position, the door body can enter the accommodating cavity through the avoidance groove.