Cooking equipment

By designing a detachable heating structure that connects to the plate in the cooking equipment, the problem of difficult cleaning of the heating elements in existing electric ovens is solved, enabling convenient cleaning and maintenance.

CN224206676UActive Publication Date: 2026-05-08GUANGDONG MIDEA KITCHEN APPLIANCES MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGDONG MIDEA KITCHEN APPLIANCES MFG CO LTD
Filing Date
2025-05-13
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The heating elements of existing electric ovens are difficult to clean, requiring the control panel to be disassembled, resulting in high cleaning and maintenance costs.

Method used

A cooking device has been designed in which the heating structure is detachably connected to the plate body and electrically connected to the control panel via an electrical connector. This allows the heating structure to be separated from the plate body and the electrical connector, facilitating cleaning and maintenance.

Benefits of technology

The process of cleaning and maintaining the heating structure has been simplified, reducing the difficulty of operation and improving the performance of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides cooking equipment, which comprises a seat body, a heating element, a heating element and a heating element, and is characterized in that the seat body is provided with a mounting groove; the control panel is arranged on the seat body; the disc body is arranged in the mounting groove; the electric connecting piece is arranged in the seat body, the electric connecting piece is provided with a first socket, the first socket is exposed out of the groove wall of the mounting groove, and the electric connecting piece is electrically connected with the control panel; and the heating structure is provided with an electrode part, the heating structure is detachably connected with the tray body, and the electrode part is inserted into the electric connecting piece through the first socket and is detachably and electrically connected with the electric connecting piece. According to the cooking equipment, the structure of the cooking equipment is reasonably arranged, so that the heating structure can be effectively controlled to work through the control panel after the heating structure is assembled with the plate body and the electric connecting piece, and the purpose of cooking food materials is achieved. When the heating structure needs to be cleaned and maintained, the heating structure and the tray body can be separated, the heating structure and the electric connecting piece can be separated, operation convenience is achieved, and cleaning and maintenance of the heating structure are facilitated.
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Description

Technical Field

[0001] This application relates to the field of cooking equipment, and more specifically, to a cooking device. Background Technology

[0002] In related technologies, electric ovens include a heating element and terminals, which are fixedly connected. The heating element is fixed to the oven body via the terminals, which are embedded in the oven body and electrically connected to the control panel. This design makes cleaning the heating element difficult after cooking. For deep cleaning, the control panel must be disassembled to separate the terminals from the control panel before the heating element can be removed. This design hinders cleaning the heating element and results in high cleaning and maintenance costs for the electric oven. Utility Model Content

[0003] This application aims to address at least one of the technical problems existing in the prior art or related technologies.

[0004] Therefore, this application proposes a cooking device.

[0005] In view of the above, this application provides a cooking device, including: a base body with a mounting groove; a control panel disposed in the base body; a plate body disposed in the mounting groove; an electrical connector disposed in the base body, the electrical connector having a first socket protruding from the groove wall of the mounting groove, the electrical connector being electrically connected to the control panel; and a heating structure having an electrode portion, the heating structure being detachably connected to the plate body, the electrode portion being inserted into the electrical connector through the first socket and being detachably electrically connected to the electrical connector.

[0006] The cooking device provided in this application includes a base, a control panel, a plate, electrical connectors, and a heating structure.

[0007] The base has a mounting slot, the panel is placed in the mounting slot, and the control panel and electrical connectors are all located in the base. That is, the base serves as the mounting carrier for the panel, control panel, and electrical connectors, and has the function of installing and fixing the panel, control panel, and electrical connectors.

[0008] The electrical connector has a first socket that protrudes from the wall of the mounting groove. The heating structure is electrically connected to the control panel through the electrical connector to meet the usage requirements of controlling the operation of the heating structure.

[0009] The heating structure is detachably connected to the plate body, and the electrode part of the heating structure is inserted into the electrical connector through the first socket and is detachably electrically connected to the electrical connector.

[0010] When assembling the heating structure, the electrode portion of the heating structure can be inserted into the electrical connector through the first socket and electrically connected to the electrical connector. Since the heating structure and the disk body are detachably connected, and both the disk body and the electrical connector are located on the base, the mating dimensions of the disk body and the electrical connector are fixed. After assembling the heating structure with the disk body and the electrical connector, the mating dimensions of the heating structure and the disk body are fixed, thereby limiting the mating dimensions of the electrode portion of the heating structure and the electrical connector, allowing the heating structure to effectively connect to the electrical connector.

[0011] When cleaning or maintaining the heating structure, first separate the heating structure from the plate. Then, pull the electrical connector out of the first socket from the electrode part of the heating structure to separate the heating structure from the electrical connector. The heating structure can then be removed from the base for cleaning and rinsing. Additionally, once the heating structure is separated from the plate, the plate will be easily exposed, allowing for cleaning and maintenance.

[0012] This application features a rationally designed structure for the cooking equipment, allowing the heating element, after assembly with the plate and electrical connectors, to be effectively controlled via a control panel to achieve the purpose of cooking food. When cleaning or maintenance of the heating element is required, it can be separated from the plate and electrical connectors, offering ease of operation and facilitating cleaning and maintenance. Compared to related technologies where the control panel must be disassembled to remove the heating element, this design offers advantages in terms of ease of operation and simplified cleaning and maintenance, thus improving the performance of the cooking equipment.

[0013] In some technical solutions, optionally, the electrical connector includes: a connecting body having a first socket; a terminal located within the connecting body, the terminal being disposed opposite to the first socket, the terminal being electrically connected to the control panel, the terminal being used to abut against the electrode portion when the heating structure, the disc, and the electrical connector are in an assembled state; and an elastic member abutting between the inner surface of the connecting body and the terminal, the elastic member being used to push the electrode portion away from the electrical connector through the terminal when the heating structure and the disc are in a disassembled state.

[0014] In this technical solution, the structure of the electrical connector is defined, and the electrical connector includes a connecting body, terminals and elastic elements.

[0015] The connecting body is provided with a first socket, and the terminals and elastic elements are both located inside the connecting body. The terminals are electrically connected to the control panel, and the elastic elements abut against the inner surface of the connecting body and between the terminals.

[0016] When the heating structure, the disc, and the electrical connector are in the assembled state, the disc restricts the assembly position of the heating structure relative to the electrical connector, thereby indirectly limiting the position of the electrode part and the terminal of the heating structure. The electrode part of the heating structure abuts against the terminal, and the electrode part squeezes the elastic element through the terminal to keep the elastic element in a compressed state.

[0017] When the heating structure and the disc are disassembled, the external force acting on the heating structure is removed, which indirectly removes the external force acting on the elastic element. The elastic element returns to its original deformation and pushes the electrode part away from the electrical connector through the terminals. That is, the elastic element pushes the electrode part outward through the terminals, and then the heating structure can be easily pulled out, thus achieving the purpose of disassembling the heating structure. It can be understood that after the elastic element pushes the electrode part outward, it can reduce the size of the heating structure inserted into the electrical connector through the first socket, or allow the heating structure to be disengaged from the electrical connector through the first plug. This greatly reduces the difficulty of disassembling the heating structure, allowing the heating structure to be easily separated from the electrical connector.

[0018] In some technical solutions, optionally, the terminal includes: a terminal body; a baffle, the baffle being disposed on one side of the terminal body and used to abut against the electrode part, and an elastic member being sleeved on the terminal body and abutting against the baffle.

[0019] In this technical solution, the structure of the terminal is defined.

[0020] The terminal includes a terminal body and a baffle, with the baffle located on one side of the terminal body. The baffle can abut against the electrode when the heating structure, the disk, and the electrical connector are in the assembled state to meet the usage requirements of the electrical connection between the heating structure and the control panel. It also has the function of cooperating with the inner surface of the connecting body to limit the elastic element.

[0021] Understandably, when the heating structure, the disc, and the electrical connectors are assembled, the electrode part abuts against the baffle, and the baffle compresses the elastic element, putting the elastic element in a compressed state. When the disc and the heating structure are disassembled, the external force acting on the heating structure is removed, which indirectly removes the external force acting on the elastic element. The elastic element recovers its deformation and pushes the electrode part away from the electrical connectors through the baffle, after which the heating structure can be easily extracted.

[0022] The elastic element is sleeved on the terminal body and abuts against the baffle, which can ensure the balance and consistency of the force exerted by the elastic element on the baffle, avoid the baffle from tilting, and allow the elastic element to be pushed outward smoothly through the baffle to generate heat.

[0023] In some technical solutions, the connecting body may optionally be provided with a second socket, and the electrical connector may also include: a connecting wire, one end of which is electrically connected to the control panel, and the other end of which is inserted into the connecting body through the second socket and electrically connected to the terminal.

[0024] In this technical solution, the structure of the electrical connector is further defined.

[0025] Electrical connectors also include connecting wires.

[0026] The connector body is also equipped with a second socket. One end of the connector wire is electrically connected to the control panel, and the other end of the connector wire is inserted into the connector body through the second socket and electrically connected to the terminal. That is, the terminal is electrically connected to the control panel through the connector.

[0027] This feature protects the connection points of the connecting wires and terminals, ensuring a secure connection between the connecting wires and terminals, and providing structural support for ensuring an effective electrical connection between the electrical connectors and the control panel.

[0028] In some technical solutions, the electrical connector may optionally include a first fastener, which passes through the connector body and the terminal body and is detachably connected to the connector wire.

[0029] In this technical solution, the structure of the electrical connector is further defined.

[0030] The electrical connector also includes a first fastener, through which the connecting wire and terminal are detachably connected. Specifically, the first fastener passes through the connector body and the terminal body and is detachably connected to the connecting wire. This arrangement allows for the determination of the detachment and installation of the terminal and connecting wire, as well as the installation position of the connecting wire relative to the terminal, based on actual conditions, thus meeting the needs of subsequent cleaning and maintenance of the electrical connector.

[0031] In some technical solutions, optionally, the connecting body includes: a cylindrical body, one end of which encloses a first insertion port; a first cover, which is detachably connected to the cylindrical body, with terminals and elastic elements located within the area enclosed by the cylindrical body and the first cover, the elastic elements abutting against the first cover, and both the cylindrical body and the first cover being insulators.

[0032] In this technical solution, the structure of the connecting body is defined.

[0033] The connecting body includes a cylindrical body and a first cover. The first cover is detachably connected to the cylindrical body. This design ensures the reliability of the connection between the cylindrical body and the first cover while facilitating the cleaning and maintenance of both. That is, the cylindrical body and the first cover can be separated or assembled together according to actual usage needs. This design simplifies the assembly structure of the electrical connectors, simplifies the disassembly and assembly process, and reduces the difficulty of disassembling and assembling the electrical connectors.

[0034] Both the terminal and the elastic element are located in the area enclosed by the cylinder and the first cover. One end of the cylinder encloses the first socket, and the electrode part can be inserted into the connecting body through the first socket and electrically connected to the terminal.

[0035] In addition, both the cylinder and the first cover are insulators, and the connecting body has insulating properties, which can meet safety requirements and ensure the safety and reliability of the electrical connectors.

[0036] For example, at least one of the cylinder and the first cover is made of bakelite, and the connecting body has the advantages of being heat-resistant and insulating.

[0037] In some technical solutions, optionally, the electrical connector includes a seal disposed at the first socket, the seal being used to seal the connection between the heating structure and the first socket during assembly of the heating structure and the electrical connector.

[0038] In this technical solution, the structure of the electrical connector is further defined.

[0039] The electrical connector also includes a seal, which is located at the first socket. When the heating structure and the electrical connector are assembled, the seal can seal the connection between the heating structure and the first socket to prevent grease, meat scraps, etc. from entering the electrical connector through the connection between the heating structure and the first socket. In other words, the seal has the function of blocking grease, meat scraps, etc., and provides structural support for ensuring the safety and reliability of the cooking equipment.

[0040] For example, the seal is a high-temperature resistant component. The seal can not only seal the connection between the heating structure and the first socket when the heating structure and electrical connector are assembled, but also will not deform or be damaged due to high temperature.

[0041] In some technical solutions, optionally, the seal includes multiple elastic sealing parts, which are arranged circumferentially along the first socket, and a joint is formed at the connection of any two adjacent elastic sealing parts; when the heating structure and the electrical connector are in a disassembled state, the multiple elastic sealing parts block the first socket; when the heating structure and the electrical connector are in an assembled state, the elastic sealing parts bend inward toward the electrical connector and abut against the outer surface of the heating structure.

[0042] In this technical solution, the structure of the seal is defined such that the seal includes multiple elastic sealing parts.

[0043] Multiple resilient sealing parts are arranged circumferentially along the first socket, and a seam is formed at the connection between any two adjacent resilient sealing parts. For example, if there are four resilient sealing parts, the connection between the four resilient sealing parts forms a cross-shaped seam. If there are eight resilient sealing parts, the connection between the eight resilient sealing parts forms a star-shaped seam.

[0044] It is understandable that the elastic seal is elastic and can deform.

[0045] When the heating structure and electrical connector are disassembled, multiple elastic sealing parts block the first socket. In their initial state, these parts work together to seal the first socket, preventing dirt and food debris from entering the electrical connector through the first socket. When the heating structure and electrical connector are assembled, the elastic sealing parts bend inwards and abut against the outer surface of the heating structure. At this point, the multiple elastic sealing parts seal the connection between the heating structure and the first socket, preventing grease, meat scraps, and other contaminants from entering the electrical connector through this connection.

[0046] In some technical solutions, optionally, the heating structure includes: a heating tube, with electrode portions at both ends, the heating tube being bent and including multiple heating segments, the multiple heating segments being spaced apart along a first direction; a first connector, the first connector extending along the first direction, each heating segment being connected to the first connector, the first connector being detachably connected to the disk body.

[0047] In this technical solution, the heating structure includes a heating element and a first connector.

[0048] The heating element has electrodes at both ends. It can be understood that the heating element has two ends, each with an electrode. One end has a positive electrode, and the other end has a negative electrode.

[0049] The heating element is arranged in a curved configuration and includes multiple heating segments spaced apart along a first direction. The heating element also includes multiple arc-shaped segments, with adjacent heating segments connected by an arc-shaped segment. This design increases the heating area of ​​the heating element, ensuring even heating of the food and preserving its texture and flavor.

[0050] The first connector extends along a first direction, and each heating segment is connected to the first connector. The first connector is detachably connected to the disk body. That is, the heating element is detachably connected to the disk body through the first connector. When the first connector and the disk body are in an assembled state, the first connector can limit the heating element, limit the mating dimensions between the heating element and the disk body, limit the mating dimensions between the electrode part and the electrical connector, and ensure effective electrical connection between the electrode part and the electrical connector.

[0051] It is understandable that any one of the multiple heating segments is connected to the first connector. The first connector has the function of limiting the matching dimensions of the multiple heating segments, which can limit the distance between two adjacent heating segments and improve the stability and reliability of the heating tube.

[0052] In some technical solutions, optionally, the first connector is provided with multiple connecting parts, with one connecting part between any two adjacent heating sections; the connecting part is snapped into the disc body; and / or the connecting part is magnetically attracted to the disc body; and / or the connecting part and the disc body are locked together by a second fastener.

[0053] In this technical solution, the structure of the first connector is further defined so that the first connector is provided with multiple connecting parts, which are used for detachable connection with the disk body.

[0054] Multiple connecting parts are arranged at intervals, with one connecting part between any two adjacent heating sections. This arrangement increases the mating area between the first connecting part and the disc body, and increases the number of mating positions between the first connecting part and the disc body. This ensures the balance and consistency of the force at different positions of the heating tube, and avoids the situation where the heating tube tilts due to excessive local force. It also provides structural support for the effective electrical connection between the electrode part and the electrical connecting part.

[0055] The connecting part is snap-fitted to the disk body, and / or the connecting part is magnetically attracted to the disk body, and / or the connecting part and the disk body are locked together by a second fastener. That is, the connection method between the connecting part and the disk body includes any one or a combination of the following: snap-fit ​​connection, magnetic connection, and locking connection, which can meet the usage requirements of the heating structure and the disk body being detachably connected.

[0056] In some technical solutions, the heating structure may optionally include a second connector along a second direction, the second connector being located on one side of the first connector, the second connector extending along a first direction, and each heating segment being connected to the second connector.

[0057] In this technical solution, the heating structure also includes a second connector.

[0058] Along the second direction, the second connector is located on one side of the first connector. Either the first connector or the second connector extends in the first direction, and multiple heating segments are connected to the first connector and also to the second connector.

[0059] This design increases the connection area of ​​the first connector, the second connector, and the heating element, and increases the number of connection positions of the first connector, the second connector, and the heating element. This helps to improve the stability and reliability of the assembly of the heating element and the plate, and can ensure the spacing between two adjacent heating sections.

[0060] In some technical solutions, optionally, there are multiple electrode parts and electrical connectors, with each electrode part cooperating with one electrical connector.

[0061] In this technical solution, the number and mating structure of the electrode parts and electrical connectors are defined.

[0062] There are multiple electrode parts and multiple electrical connectors. That is, there are multiple electrode parts and multiple electrical connectors, and each electrode part is paired with one electrical connector.

[0063] The device includes a first electrode section and a second electrode section, where the first electrode section is the positive electrode section and the second electrode section is the negative electrode section. Each electrode section is electrically connected to the control panel via an electrical connector.

[0064] In some technical solutions, optionally, the outer diameter of the electrode portion is greater than or equal to 5 mm.

[0065] In this technical solution, the structure of the electrode part is defined such that the outer diameter of the electrode part is greater than or equal to 5mm. This setting increases the effective contact area between the electrode part and the electrical connector when the heating structure and the electrical connector are in the assembled state. This can prevent the instantaneous current from being too large due to the outer diameter of the electrode part being too small, and can avoid the occurrence of high temperature. This provides structural support for ensuring the safety and reliability of the cooking equipment.

[0066] In some technical solutions, the cooking device may optionally include: a second cover, which is closably connected to the seat; and a frame, with the seat located between the frame and the second cover.

[0067] In this technical solution, the structure of the cooking equipment is defined such that the cooking equipment also includes a second cover and a frame.

[0068] The second cover and the base can be opened and closed, and the second cover has the function of opening or closing the base.

[0069] The seat is located between the frame and the second cover. The frame supports the seat and increases the distance between the seat and the ground, making it easier for users to operate the cooking equipment to cook ingredients.

[0070] In some technical solutions, optionally, a support is provided on the disk body, and the heating structure is located on the support.

[0071] In this technical solution, the structure of the plate is defined, and a support is provided on the plate. The heating structure is located on the support, and the support serves to support the heating structure. This arrangement ensures effective assembly of the plate and the heating structure while allowing the heating structure to be separated from the inner surface of the plate through the support, preventing damage to the plate due to contact between the heating structure and the plate. This provides structural support to ensure the performance of the cooking equipment.

[0072] Additional aspects and advantages of this application will become apparent in the following description or may be learned by practice of this application. Attached Figure Description

[0073] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0074] Figure 1 A first-view structural schematic diagram of a cooking apparatus according to an embodiment of this application is shown;

[0075] Figure 2 for Figure 1 A magnified view of part A of the cooking equipment shown;

[0076] Figure 3 An exploded view of the electrical connector and heating structure according to one embodiment of this application is shown;

[0077] Figure 4 A schematic diagram of the structure of an electrical connector according to an embodiment of this application is shown;

[0078] Figure 5 An exploded view of an electrical connector according to one embodiment of this application is shown;

[0079] Figure 6 A first-view structural schematic diagram of an electrical connector and a heating structure according to an embodiment of this application is shown;

[0080] Figure 7 for Figure 6 The electrical connectors and heating structure shown are cross-sectional views along the BB direction;

[0081] Figure 8 for Figure 7 A partial enlarged view of point C of the electrical connector and heating structure shown;

[0082] Figure 9 This invention provides a second-view structural schematic diagram of an electrical connector and a heating structure according to an embodiment of the present application.

[0083] Figure 10 A partial structural schematic diagram of the electrical connector and heating structure according to an embodiment of this application is shown;

[0084] Figure 11 A second-view structural schematic diagram of a cooking device according to an embodiment of this application is shown.

[0085] in, Figures 1 to 11 The correspondence between the reference numerals and component names in the attached drawings is as follows:

[0086] 10 Cooking equipment, 100 Base, 110 Mounting slot, 200 Control panel, 300 Plate, 400 Electrical connector, 410 First socket, 420 Connecting body, 422 Second socket, 424 Cylinder, 426 First cover, 430 Terminal, 432 Terminal body, 434 Baffle, 440 Elastic element, 450 Connecting wire, 460 First fastener, 470 Seal, 472 Elastic sealing part, 474 Joint, 500 Heating structure, 510 Electrode part, 520 Heating tube, 522 Heating section, 530 First connector, 532 Connecting part, 540 Second connector, 550 Second fastener, 600 Second cover, 700 Frame, 800 Support. Detailed Implementation

[0087] To better understand the above-mentioned objectives, features, and advantages of this application, the application will be further described in detail below with reference to the accompanying drawings and specific embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0088] Many specific details are set forth in the following description in order to provide a full understanding of this application. However, this application may also be implemented in other ways different from those described herein. Therefore, the scope of protection of this application is not limited to the specific embodiments disclosed below.

[0089] The following reference Figures 1 to 11 The present application describes a cooking apparatus 10 according to some embodiments.

[0090] like Figure 1 , Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 9 , Figure 10 and Figure 11 As shown, a cooking device 10 according to some embodiments of this application includes a base 100, a control panel 200, a plate 300, an electrical connector 400, and a heating structure 500.

[0091] The base 100 is provided with a mounting groove 110.

[0092] The control panel 200 is located on the base 100.

[0093] The disk body 300 is located in the mounting slot 110.

[0094] Electrical connector 400 is located inside base 100.

[0095] Electrical connector 400 has a first socket 410.

[0096] The first socket 410 is exposed outside the wall of the mounting slot 110.

[0097] Electrical connector 400 is electrically connected to control panel 200.

[0098] The heating structure 500 has an electrode section 510.

[0099] The heating structure 500 and the plate 300 can be detachably connected.

[0100] The electrode part 510 is inserted into the electrical connector 400 through the first socket 410 and is detachably electrically connected to the electrical connector 400.

[0101] The cooking device 10 provided in this application includes a base 100, a control panel 200, a plate 300, an electrical connector 400, and a heating structure 500.

[0102] The base 100 is provided with a mounting groove 110, the panel 300 is disposed in the mounting groove 110, and the control panel 200 and the electrical connector 400 are both disposed in the base 100. That is, the base 100 serves as the mounting carrier for the panel 300, the control panel 200 and the electrical connector 400, and has the function of installing and fixing the panel 300, the control panel 200 and the electrical connector 400.

[0103] The electrical connector 400 has a first socket 410, which protrudes from the wall of the mounting groove 110. The heating structure 500 is electrically connected to the control panel 200 through the electrical connector 400 to meet the usage requirements of controlling the operation of the heating structure 500.

[0104] The heating structure 500 is detachably connected to the plate 300. The electrode part 510 of the heating structure 500 is inserted into the electrical connector 400 through the first socket 410 and is detachably electrically connected to the electrical connector 400.

[0105] When assembling the heating structure 500, the electrode portion 510 of the heating structure 500 can be inserted into the electrical connector 400 through the first socket 410 and electrically connected to the electrical connector 400. Since the heating structure 500 and the disk body 300 are detachably connected, and both the disk body 300 and the electrical connector 400 are located on the base 100, the mating dimensions of the disk body 300 and the electrical connector 400 are fixed. After assembling the heating structure 500 with the disk body 300 and the electrical connector 400, the mating dimensions of the heating structure 500 and the disk body 300 are fixed, thereby limiting the mating dimensions of the electrode portion 510 of the heating structure 500 and the electrical connector 400, allowing the heating structure 500 to be effectively electrically connected to the electrical connector 400.

[0106] When cleaning or maintaining the heating structure 500, first separate the heating structure 500 from the disk body 300. Then, pull the electrode portion 510 of the heating structure 500 out of the first socket 410 to remove the electrical connector 400, thus separating the heating structure 500 from the electrical connector 400. The heating structure 500 can then be removed from the base 100 for cleaning and rinsing. Furthermore, after separating the heating structure 500 from the disk body 300, the disk body 300 will be easily exposed, allowing for cleaning and maintenance.

[0107] This application rationally designs the structure of the cooking device 10, enabling the heating structure 500 to be effectively controlled via the control panel 200 after assembly with the plate 300 and electrical connector 400, thus achieving the purpose of cooking food. When cleaning or maintaining the heating structure 500, it can be separated from the plate 300 and the electrical connector 400, providing ease of operation and facilitating cleaning and maintenance. Compared to related technologies where the control panel needs to be disassembled to remove the heating structure, this design offers advantages such as ease of operation and simpler cleaning and maintenance of the heating structure 500, thereby improving the performance of the cooking device 10.

[0108] For example, the mounting groove 110 has an opening in its groove wall, through which the first socket 410 protrudes from the groove wall of the mounting groove 110. For example, the first socket 410 is disposed opposite to the opening, or the wall of the opening surrounds the periphery of the first socket 410, etc., which will not be listed here.

[0109] For example, the wall of the mounting groove 110 is provided with an opening, and a part of the electrical connector 400 extends into the mounting groove 110 through the opening. The part of the electrical connector 400 located in the mounting groove 110 is provided with a first socket 410 to meet the usage requirements of the first socket 410 being exposed outside the wall of the mounting groove 110.

[0110] For example, the plate 300 serves to hold food residue and grease.

[0111] For example, the plate body 300 has the function of reflecting heat, so that heat is concentrated on the food above the heating structure 500. The plate body 300 includes a stainless steel plate.

[0112] For example, the plate 300 has the function of limiting the space to be heated, so as to shorten the heating time of the cooking cavity of the cooking device 10.

[0113] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 5 , Figure 7 , Figure 8 and Figure 10 As shown, the electrical connector 400 includes a connector body 420, a terminal 430, and an elastic member 440.

[0114] The connecting body 420 is provided with a first socket 410.

[0115] Terminal 430 is located inside the connecting body 420.

[0116] Terminal 430 is positioned opposite to the first socket 410.

[0117] Terminal 430 is electrically connected to control panel 200. Terminal 430 is used to abut against electrode part 510 when heating structure 500, disc 300 and electrical connector 400 are in the assembled state.

[0118] The elastic member 440 abuts against the inner surface of the connecting body 420 and the terminal 430. The elastic member 440 is used to push the electrode part 510 away from the electrical connector 400 through the terminal 430 when the heating structure 500 and the disc 300 are in the disassembled state.

[0119] In this embodiment, the structure of the electrical connector 400 is defined, and the electrical connector 400 includes a connecting body 420, a terminal 430, and an elastic member 440.

[0120] The connecting body 420 is provided with a first socket 410, and the terminal 430 and the elastic member 440 are both located inside the connecting body 420. The terminal 430 is electrically connected to the control panel 200, and the elastic member 440 abuts against the inner surface of the connecting body 420 and the terminal 430.

[0121] When the heating structure 500, the disc 300, and the electrical connector 400 are in the assembled state, the disc 300 restricts the assembly position of the heating structure 500 relative to the electrical connector 400, thereby indirectly limiting the position of the electrode portion 510 and the terminal 430 of the heating structure 500. The electrode portion 510 of the heating structure 500 abuts against the terminal 430, and the electrode portion 510 presses the elastic member 440 through the terminal 430 to keep the elastic member 440 in a compressed state.

[0122] When the heating structure 500 and the disc 300 are in the disassembled state, the external force acting on the heating structure 500 is removed, which indirectly removes the external force acting on the elastic member 440. The elastic member 440 restores its deformation and pushes the electrode part 510 away from the electrical connector 400 through the terminal 430. That is, the elastic member 440 pushes the electrode part 510 outward through the terminal 430, and then the heating structure 500 can be easily pulled out to achieve the purpose of disassembling the heating structure 500. It can be understood that after the elastic member 440 pushes the electrode part 510 outward, it can reduce the size of the heating structure 500 inserted into the electrical connector 400 through the first socket 410, or make the heating structure 500 disengage from the electrical connector 400 through the first plug. This will greatly reduce the difficulty of disassembling the heating structure 500, allowing the heating structure 500 to be easily separated from the electrical connector 400.

[0123] In some other embodiments, the electrical connector 400 is provided with a locking member, which is used to lock the heating structure 500 when the heating structure 500 and the electrical connector 400 are in an assembled state, so as to limit the heating structure 500. When the disc body 300 and the heating structure 500 are in a disassembled state, the locking member and the heating structure 500 are released, and then the heating structure 500 and the electrical connector 400 can be separated.

[0124] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 5 As shown, terminal 430 includes terminal body 432 and baffle 434.

[0125] A baffle 434 is provided on one side of the terminal body 432 and is used to abut against the electrode part 510.

[0126] The elastic element 440 is sleeved on the terminal body 432 and abuts against the baffle 434.

[0127] In this embodiment, the structure of the defined terminal 430 is specified.

[0128] Terminal 430 includes terminal body 432 and baffle 434, with baffle 434 disposed on one side of terminal body 432. Baffle 434 can abut against electrode part 510 when heating structure 500, disk 300 and electrical connector 400 are in the assembled state to meet the usage requirements of electrical connection between heating structure 500 and control panel 200, and also has the function of cooperating with inner surface of connecting body 420 to limit elastic member 440.

[0129] Understandably, when the heating structure 500, the disc 300, and the electrical connector 400 are in the assembled state, the electrode part 510 abuts against the baffle 434, and the baffle 434 compresses the elastic member 440, causing the elastic member 440 to be in a compressed state. When the disc 300 and the heating structure 500 are in the disassembled state, the external force acting on the heating structure 500 is removed, thereby indirectly removing the external force acting on the elastic member 440. The elastic member 440 restores its deformation and pushes the electrode part 510 away from the electrical connector 400 through the baffle 434, and then the heating structure 500 can be easily removed.

[0130] The elastic element 440 is sleeved on the terminal body 432 and abuts against the baffle 434, which can ensure the balance and consistency of the force exerted by the elastic element 440 on the baffle 434, avoid the baffle 434 from tilting, and enable the elastic element 440 to be pushed outward smoothly through the baffle 434 to generate the heating structure 500.

[0131] For example, the elastic element 440 includes springs and retaining rings, etc., which will not be listed here.

[0132] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 4 , Figure 5 , Figure 7 , Figure 8 and Figure 10 As shown, the electrical connector 400 also includes a connecting wire 450.

[0133] The connecting body 420 is also provided with a second socket 422.

[0134] One end of the connecting cable 450 is electrically connected to the control panel 200.

[0135] The other end of the connecting wire 450 is inserted into the connecting body 420 through the second socket 422 and electrically connected to the terminal 430.

[0136] In this embodiment, the structure of the electrical connector 400 is further defined.

[0137] Electrical connector 400 also includes connecting wire 450.

[0138] The connecting body 420 is also provided with a second socket 422. One end of the connecting cable 450 is electrically connected to the control panel 200, and the other end of the connecting cable 450 is inserted into the connecting body 420 through the second socket 422 and electrically connected to the terminal 430. That is, the terminal 430 is electrically connected to the control panel 200 through the connecting cable 450.

[0139] This feature protects the connection between the connecting wire 450 and the terminal 430, ensuring a secure connection between the connecting wire 450 and the terminal 430, and providing structural support for ensuring an effective electrical connection between the electrical connector 400 and the control panel 200.

[0140] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 5 and Figure 10 As shown, the electrical connector 400 also includes a first fastener 460.

[0141] The first fastener 460 passes through the connecting body 420 and the terminal body 432, and is detachably connected to the connecting wire 450.

[0142] In this embodiment, the structure of the electrical connector 400 is further defined.

[0143] The electrical connector 400 also includes a first fastener 460, through which the connecting wire 450 and the terminal 430 are detachably connected. Specifically, the first fastener 460 passes through the connecting body 420 and the terminal body 432, and is detachably connected to the connecting wire 450. This arrangement allows the detachment and installation of the terminal 430 and the connecting wire 450, as well as the installation position of the connecting wire 450 relative to the terminal 430, to be determined according to actual conditions, thus meeting the needs of subsequent cleaning and maintenance of the electrical connector 400.

[0144] For example, the first fastener 460 is screwed to the connecting wire 450. The first fastener 460 includes at least one of screws, bolts and rivets, which are not listed here.

[0145] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 5 As shown, the connecting body 420 includes a cylindrical body 424 and a first cover body 426.

[0146] One end of the cylinder 424 encloses the first insertion port 410.

[0147] The first cover 426 and the cylinder 424 can be detachably connected.

[0148] Terminal 430 and elastic element 440 are both located within the area enclosed by cylinder 424 and first cover 426.

[0149] The elastic element 440 abuts against the first cover 426.

[0150] Both the cylinder 424 and the first cover 426 are insulators.

[0151] In this embodiment, the structure of the connecting body 420 is defined.

[0152] The connecting body 420 includes a cylindrical body 424 and a first cover 426. The first cover 426 is detachably connected to the cylindrical body 424. This design ensures the reliability of the connection between the cylindrical body 424 and the first cover 426 while facilitating the cleaning and maintenance of the cylindrical body 424 and the first cover 426. That is, the cylindrical body 424 and the first cover 426 can be separated or assembled together according to actual usage needs. This design simplifies the assembly structure of the electrical connector 400, simplifies the disassembly and assembly process, and reduces the difficulty of disassembling and assembling the electrical connector 400.

[0153] Terminal 430 and elastic element 440 are both located in the area enclosed by cylindrical body 424 and first cover 426. One end of cylindrical body 424 encloses first insertion port 410. Electrode part 510 can be inserted into connecting body 420 through first insertion port 410 and electrically connected to terminal 430.

[0154] In addition, both the cylinder 424 and the first cover 426 are insulators, and the connecting body 420 has insulating properties, which can meet safety requirements and ensure the safety and reliability of the electrical connector 400.

[0155] For example, at least one of the cylinder 424 and the first cover 426 is made of bakelite, and the connecting body 420 has the advantages of being heat-resistant and insulating.

[0156] For example, the connection between the cylinder 424 and the first cover 426 includes any one or a combination of the following: snap-fit ​​connection, magnetic connection, and locking connection via a third fastener. The third fastener includes at least one of bolts, screws, and rivets.

[0157] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 4 and Figure 5 As shown, the electrical connector 400 also includes a seal 470.

[0158] A seal 470 is provided at the first socket 410. The seal 470 is used to seal the connection between the heating structure 500 and the first socket 410 when the heating structure 500 and the electrical connector 400 are assembled.

[0159] In this embodiment, the structure of the electrical connector 400 is further defined.

[0160] The electrical connector 400 also includes a seal 470, which is located at the first socket 410. When the heating structure 500 and the electrical connector 400 are assembled, the seal 470 can seal the connection between the heating structure 500 and the first socket 410 to prevent grease, meat scraps, etc. from entering the electrical connector 400 through the connection between the heating structure 500 and the first socket 410. In other words, the seal 470 has the function of blocking grease, meat scraps, etc., and provides structural support for ensuring the safety and reliability of the cooking equipment 10.

[0161] For example, the seal 470 is a high-temperature resistant component. The seal 470 can not only seal the connection between the heating structure 500 and the first socket 410 when the heating structure 500 and the electrical connector 400 are assembled, but the seal 470 will also not deform or be damaged due to high temperature.

[0162] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 4 As shown, the seal 470 includes a plurality of resilient sealing portions 472.

[0163] Multiple resilient sealing portions 472 are arranged circumferentially along the first insertion port 410.

[0164] A seam 474 is formed at the connection point of any two adjacent elastic sealing parts 472.

[0165] When the heating structure 500 and the electrical connector 400 are in the disassembled state, multiple elastic sealing parts 472 block the first socket 410.

[0166] When the heating structure 500 and the electrical connector 400 are in the assembled state, the elastic sealing part 472 bends into the electrical connector 400 and abuts against the outer surface of the heating structure 500.

[0167] In this embodiment, the structure of the seal 470 is defined such that the seal 470 includes a plurality of resilient sealing portions 472.

[0168] Multiple elastic sealing parts 472 are arranged circumferentially along the first insertion port 410, and a seam 474 is formed at the connection between any two adjacent elastic sealing parts 472. For example, if there are four elastic sealing parts 472, the connection between the four elastic sealing parts 472 forms a cross-shaped seam. For example, if there are eight elastic sealing parts 472, the connection between the eight elastic sealing parts 472 forms a star-shaped seam.

[0169] It is understandable that the elastic sealing part 472 is elastic and can deform.

[0170] When the heating structure 500 and the electrical connector 400 are in the disassembled state, multiple elastic sealing parts 472 block the first socket 410. That is, the multiple elastic sealing parts 472 are in the initial state, and the multiple elastic sealing parts 472 cooperate to block the first socket 410, preventing dirt and food impurities from entering the electrical connector 400 through the first socket 410. When the heating structure 500 and the electrical connector 400 are in the assembled state, the elastic sealing parts 472 bend inward into the electrical connector 400 and abut against the outer surface of the heating structure 500. At this time, the multiple elastic sealing parts 472 can seal the connection between the heating structure 500 and the first socket 410, preventing grease, meat scraps, etc. from entering the electrical connector 400 through the connection between the heating structure 500 and the first socket 410.

[0171] For example, the resilient sealing portion 472 includes a plastic sealing portion and / or a rubber sealing portion. This arrangement satisfies the requirement that the resilient sealing portion 472 can deform, and also seals the first socket 410 when in its initial state.

[0172] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 3 and Figure 6 As shown, the heating structure 500 includes a heating tube 520 and a first connector 530.

[0173] Both ends of the heating element 520 are provided with electrode portions 510.

[0174] The heating element is arranged in a 520-degree bend.

[0175] The heating element 520 includes multiple heating segments 522.

[0176] Multiple heating segments 522 are arranged at intervals along the first direction.

[0177] The first connector 530 extends along the first direction, and each heating segment 522 is connected to the first connector 530. The first connector 530 is detachably connected to the disc body 300.

[0178] In this embodiment, the heating structure 500 includes a heating tube 520 and a first connector 530.

[0179] The heating tube 520 has electrode portions 510 at both ends. It can be understood that the heating tube 520 has two ends, each end of which is provided with an electrode portion 510. The electrode portion 510 at one end is the positive electrode portion, and the electrode portion 510 at the other end is the negative electrode portion.

[0180] The heating element 520 is arranged in a curved manner and includes multiple heating segments 522, which are spaced apart along a first direction. The heating element 520 also includes multiple arc-shaped segments, with adjacent heating segments 522 connected by an arc-shaped segment. This arrangement increases the heating area of ​​the heating element 520, ensuring even heating of the food and preserving its texture and flavor.

[0181] The first connector 530 extends along a first direction, and each heating segment 522 is connected to the first connector 530. The first connector 530 is detachably connected to the disk body 300. That is, the heating element 520 is detachably connected to the disk body 300 through the first connector 530. When the first connector 530 and the disk body 300 are in an assembled state, the first connector 530 can limit the heating element 520, limit the mating dimensions between the heating element 520 and the disk body 300, limit the mating dimensions between the electrode part 510 and the electrical connector 400, and ensure effective electrical connection between the electrode part 510 and the electrical connector 400.

[0182] It is understandable that any one of the multiple heating segments 522 is connected to the first connector 530. The first connector 530 has the function of limiting the mating dimensions of the multiple heating segments 522, which can limit the spacing between two adjacent heating segments 522, thereby improving the stability and reliability of the heating tube 520.

[0183] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 3 and Figure 6 As shown, the first connector 530 is provided with a plurality of connecting parts 532.

[0184] A connecting part 532 is provided between any two adjacent heating sections 522.

[0185] The connecting part 532 is snapped into place with the disk body 300.

[0186] And / or the connecting part 532 is magnetically attracted to the disk body 300.

[0187] And / or the connecting part 532 and the disk body 300 are locked together by the second fastener 550.

[0188] In this embodiment, the structure of the first connector 530 is further defined such that the first connector 530 is provided with a plurality of connecting portions 532, which are used to be detachably connected to the disk body 300.

[0189] Multiple connecting parts 532 are arranged at intervals, and a connecting part 532 is provided between any two adjacent heating sections 522. This arrangement increases the mating area between the first connecting member 530 and the disk body 300, and increases the number of mating positions between the first connecting member 530 and the disk body 300. This can ensure the balance and consistency of the force at different positions of the heating tube 520, and avoid the situation where the heating tube 520 tilts due to excessive local force. It also provides structural support for the effective electrical connection between the electrode part 510 and the electrical connector 400.

[0190] Specifically, the connecting part 532 is snap-fitted to the disk body 300, and / or the connecting part 532 is magnetically attracted to the disk body 300, and / or the connecting part 532 and the disk body 300 are locked together by a second fastener 550. That is, the connection method between the connecting part 532 and the disk body 300 includes any one or a combination of the following: snap-fit ​​connection, magnetic connection, and locking connection, which can meet the usage requirements of detachable connection between the heating structure 500 and the disk body 300.

[0191] For example, the second fastener 550 includes at least one of screws, bolts and rivets, which are not listed here.

[0192] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 , Figure 2 , Figure 3 , Figure 6 and Figure 7 As shown, the heating structure 500 also includes a second connector 540.

[0193] Along the second direction, the second connector 540 is located on one side of the first connector 530.

[0194] The second connector 540 extends along the first direction.

[0195] Each heating segment 522 is connected to the second connector 540.

[0196] In this embodiment, the heating structure 500 further includes a second connector 540.

[0197] Along the second direction, the second connector 540 is located on one side of the first connector 530. Either the first connector 530 or the second connector 540 extends in the first direction, and a plurality of heating segments 522 are connected to the first connector 530 and also to the second connector 540.

[0198] This configuration increases the connection area of ​​the first connector 530, the second connector 540, and the heating element 520, and increases the number of connection positions of the first connector 530, the second connector 540, and the heating element 520. This is beneficial to improving the stability and reliability of the assembly of the heating element 520 and the disc 300, and can ensure the spacing between two adjacent heating sections 522.

[0199] In some other embodiments, the second connector 540 is detachably connected to the disk body 300.

[0200] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the number of electrode parts 510 and electrical connectors 400 are both multiple.

[0201] Each electrode part 510 mates with an electrical connector 400.

[0202] In this embodiment, the number and mating structure of the electrode portion 510 and the electrical connector 400 are defined.

[0203] There are multiple electrode portions 510 and multiple electrical connectors 400. That is, there are multiple electrode portions 510 and multiple electrical connectors 400, and each electrode portion 510 is coupled with one electrical connector 400.

[0204] The plurality of electrode sections 510 include a first electrode section and a second electrode section, wherein the first electrode section is a positive electrode section and the second electrode section is a negative electrode section. Each electrode section 510 is electrically connected to the control panel 200 via an electrical connector 400.

[0205] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features: the outer diameter of the electrode portion 510 is greater than or equal to 5 mm.

[0206] In this embodiment, the structure of the electrode portion 510 is defined such that the outer diameter of the electrode portion 510 is greater than or equal to 5 mm. This configuration increases the effective contact area between the electrode portion 510 and the electrical connector 400 when the heating structure 500 and the electrical connector 400 are in the assembled state. This can prevent the occurrence of excessive instantaneous current due to the small outer diameter of the electrode portion 510, and can avoid the occurrence of high temperature. This provides structural support for ensuring the safety and reliability of the cooking equipment 10.

[0207] For example, the outer diameter of the electrode portion 510 includes 5.5mm, 6mm, 6.5mm, 7mm, 8mm and 9mm, etc., which will not be listed here.

[0208] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 As shown, the cooking device 10 also includes a second cover 600 and a frame 700.

[0209] The second cover 600 and the base 100 are closable.

[0210] The seat 100 is located between the frame 700 and the second cover 600.

[0211] In this embodiment, the structure of the cooking device 10 is defined such that the cooking device 10 further includes a second cover 600 and a frame 700.

[0212] The second cover 600 is closable with the base 100, and the second cover 600 has the function of opening or closing the base 100.

[0213] The seat 100 is located between the frame 700 and the second cover 600. The frame 700 supports the seat 100 to increase the distance between the seat 100 and the ground, making it easier for the user to operate the cooking equipment 10 to cook ingredients.

[0214] For example, the seat 100 is detachably connected to the frame 700.

[0215] For example, the seat 100 is fixedly connected to the frame 700.

[0216] For example, the bottom of the frame 700 has wheels.

[0217] This embodiment provides a cooking device 10. In addition to the technical features of the above embodiments, this embodiment further includes the following technical features, such as... Figure 1 and Figure 2 As shown, a support member 800 is provided on the disk body 300, and the heating structure 500 is located on the support member 800.

[0218] In this embodiment, the structure of the plate body 300 is defined, and a support member 800 is provided on the plate body 300. The heating structure 500 is located on the support member 800, and the support member 800 serves to support the heating structure 500. This arrangement ensures the effective assembly of the plate body 300 and the heating structure 500, while allowing the heating structure 500 to be separated from the inner surface of the plate body 300 through the support member 800. This prevents damage to the plate body 300 caused by the heating structure 500 abutting against the plate body 300, and provides structural support to ensure the performance of the cooking device 10.

[0219] For example, this application reasonably sets the structure of the cooking device 10 so that the heating structure 500 is plugged into the electrical connector 400. The heating structure 500 can be removed without disassembling the control panel 200, and then the bottom of the heating structure 500, the plate 300 and the base 100 can be cleaned.

[0220] Cooking equipment 10 includes electric ovens, electric grills, etc., which will not be listed here. Figure 1 As shown, the cooking device 10 includes a second cover 600, a heating structure 500, an electrical connector 400, a base 100, a plate 300, and a frame 700.

[0221] The heating structure 500 and the plate 300 are detachably connected. When the heating structure 500, the plate 300 and the electrical connector 400 are in the assembled state, the electrode part 510 of the heating structure 500 is located inside the base 100.

[0222] The electrode portion 510 of the heating structure 500 is cylindrical, and the outer diameter of the electrode portion 510 is greater than or equal to 5mm. This ensures an effective contact area between the electrode portion 510 and the electrical connector 400, preventing excessive instantaneous current and high temperature caused by an insufficient contact area between the electrode portion 510 and the electrical connector 400.

[0223] The heating structure 500 includes a connecting portion 532. A second fastener 550 is inserted at the connection between the connecting portion 532 and the disk body 300 to fix the heating structure 500. For example, the second fastener 550 includes a pin.

[0224] Electrical connector 400 includes a seal 470, a connector body 420, a terminal 430, a first fastener 460, a resilient element 440, and a connecting wire 450. For example, the seal 470 may include a silicone ring. For example, the first fastener 460 may include a screw. For example, the resilient element 440 may include a spring. For example, the connector body 420 may include a cylinder 424 and a first cover 426.

[0225] The silicone ring has a cross-shaped seam in the middle. The function of the silicone ring is to seal the connection between the heating structure 500 and the first socket 410. When the heating structure 500 is inserted into the electrical connector 400 due to grease or meat scraps from not being cleaned properly, the cross-shaped sealing curtain (i.e., the silicone ring) will block some of the grease or scrape off the meat scraps.

[0226] Electrical connector 400 includes terminal 430. For example, terminal 430 is made of copper and directly contacts the electrode portion 510 of heating structure 500 to provide power.

[0227] Electrical connector 400 includes a connecting wire 450 and a first fastener 460. For example, the first fastener 460 includes a screw. When the connecting wire 450 is inserted into the round hole of the terminal 430, the screw serves to secure the connecting wire 450.

[0228] Electrical connector 400 includes an elastic element 440. For example, elastic element 440 includes a spring. When heating structure 500 is inserted into electrical connector 400, the spring is compressed, which keeps the contact surface of terminal 430 and contact surface of electrode portion 510 pressed and prevents them from separating.

[0229] When the heating structure 500 and the disc 300 are in the disassembled state, the spring returns to its original position, and the electrode part 510 is pushed outward through the terminal 430, so that the heating structure 500 can be easily removed.

[0230] The electrical connector 400 includes a connecting body 420, which comprises a cylindrical body 424 and a first cover 426. The connecting body 420 is made of bakelite and has temperature resistance and insulation properties. The connection methods between the cylindrical body 424 and the first cover 426 include, but are not limited to, snap-fit ​​and screw fastening.

[0231] The second fastener 550 includes a pin and an R-pin, which secures and limits the heating structure 500 and the disc 300. When the heating structure 500 is assembled with the disc 300, the spring is compressed, and the heating structure 500 is tightly connected to the terminal 430. When the second fastener 550 is removed, the spring pushes open the heating structure 500, allowing it to be easily removed.

[0232] After cooking is complete, the heating element 500 can be directly removed for rinsing. At the same time, the bottom of the plate 300 and the base 100 can be cleaned.

[0233] In this application, the term "multiple" refers to two or more unless otherwise expressly defined. The terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0234] In the description of this specification, the terms "one embodiment," "some embodiments," "specific embodiment," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. The above descriptions are merely preferred embodiments of this application and are not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A cooking device, characterized in that, include: The base body is provided with a mounting groove; The control panel is located on the base. The disk body is disposed in the mounting slot; An electrical connector is disposed in the base body, the electrical connector having a first socket, the first socket protruding from the groove wall of the mounting groove, and the electrical connector being electrically connected to the control panel; The heating structure has an electrode portion, which is detachably connected to the disk body. The electrode portion is inserted into the electrical connector through the first socket and is detachably electrically connected to the electrical connector.

2. The cooking apparatus according to claim 1, characterized in that, The electrical connector includes: A connecting body, wherein the connecting body is provided with the first socket; A terminal is located within the connecting body, the terminal is disposed opposite to the first socket, the terminal is electrically connected to the control panel, and the terminal is used to abut against the electrode portion when the heating structure, the disc body, and the electrical connector are in the assembled state; An elastic element abuts against the inner surface of the connecting body and the terminal. The elastic element is used to push the electrode part away from the electrical connector through the terminal when the heating structure and the disc are in a disassembled state.

3. The cooking apparatus according to claim 2, characterized in that, The terminal includes: terminal body; A baffle is disposed on one side of the terminal body and is used to abut against the electrode portion. The elastic element is sleeved on the terminal body and abuts against the baffle.

4. The cooking apparatus according to claim 3, characterized in that, The connecting body is also provided with a second socket, and the electrical connector further includes: A connecting wire, one end of which is electrically connected to the control panel, and the other end of which is inserted into the connecting body through the second socket and electrically connected to the terminal; A first fastener passes through the connecting body and the terminal body, and is detachably connected to the connecting wire.

5. The cooking apparatus according to claim 2, characterized in that, The connection body includes: A cylindrical body, one end of which encloses the first insertion port; The first cover is detachably connected to the cylinder. The terminal and the elastic element are both located in the area enclosed by the cylinder and the first cover. The elastic element abuts against the first cover. Both the cylinder and the first cover are insulators.

6. The cooking apparatus according to any one of claims 1 to 5, characterized in that, The electrical connector includes: A sealing element is provided at the first socket, and the sealing element is used to seal the connection between the heating structure and the first socket when the heating structure and the electrical connector are assembled.

7. The cooking apparatus according to claim 6, characterized in that, The sealing element includes multiple elastic sealing parts, which are arranged circumferentially along the first socket, and a seam is formed at the connection between any two adjacent elastic sealing parts. When the heating structure and the electrical connector are in a disassembled state, the plurality of elastic sealing parts block the first socket; When the heating structure and the electrical connector are in the assembled state, the elastic sealing part bends inward toward the electrical connector and abuts against the outer surface of the heating structure.

8. The cooking apparatus according to any one of claims 1 to 5, characterized in that, The heating structure includes: A heating element, wherein the heating element is provided with electrode portions at both ends, the heating element is bent and includes multiple heating segments, the multiple heating segments are arranged at intervals along a first direction; A first connector extends along the first direction, and each of the heating segments is connected to the first connector. The first connector is detachably connected to the disc body.

9. The cooking apparatus according to claim 8, characterized in that, The first connector has multiple connecting parts, and one connecting part is provided between any two adjacent heating sections; The connecting part is snapped into the disk body; and / or The connecting part is magnetically attracted to the disk body; and / or The connecting part and the disk body are locked together by a second fastener.

10. The cooking apparatus according to claim 8, characterized in that, The heating structure also includes: A second connector is located on one side of the first connector along a second direction, and the second connector extends along the first direction. Each of the heating segments is connected to the second connector.

11. The cooking apparatus according to any one of claims 1 to 5, characterized in that, There are multiple electrode portions and multiple electrical connectors, with each electrode portion cooperating with one electrical connector.

12. The cooking apparatus according to any one of claims 1 to 5, characterized in that, The outer diameter of the electrode portion is greater than or equal to 5 mm; The disk body is provided with a support member, and the heating structure is located on the support member.

13. The cooking apparatus according to any one of claims 1 to 5, characterized in that, Also includes: The second cover is closable and connectable to the base. The frame, wherein the seat is located between the frame and the second cover.