Heating device and cooking appliance
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN SHUNDE MIDEA ELECTRICAL HEATING APPLIANCES MFG CO LTD
- Filing Date
- 2025-07-31
- Publication Date
- 2026-08-07
AI Technical Summary
受限于产品的加工精度,底座100’的底壁的形变量通常较大,面板200’的显控区域210’和显示板500’的显控部510’的尺寸链过长(影响装配精度的尺寸链d=d1+d2+d3),易出现支架400’倾斜的情况,导致显示板500’相对于面板200’倾斜,这样,会导致显示板500’的显控部510’和面板200’的显控区域210’错位,降低加热装置10’的控制精度,会降低产品的使用性能
[0082] The second aspect of this application provides a cooking appliance, including a heating device as described in the first aspect.
Smart Images

Figure CN224610946U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of heating device technology, and more specifically, to a heating device and a cooking appliance. Background Technology
[0002] In related technologies, such as Figure 1 As shown, the heating device 10' includes a base 100', a panel 200', a bracket 400', and a display panel 500'. The bracket 400' and the display panel 500' are both located within the space enclosed by the base 100' and the panel 200'. The display panel 500' is mounted on the bracket 400'. The bracket 400' and the side walls of the base 100' are spaced apart. The bracket 400' and the bottom wall of the base 100' are connected by screws. Due to limitations in product manufacturing precision, the deformation of the bottom wall of the base 100' is usually large. The dimensional chain of the display and control area 210' of the panel 200' and the display and control part 510' of the display board 500' is too long (the dimensional chain d = d1 + d2 + d3 affects assembly precision), which can easily cause the bracket 400' to tilt. This results in the display board 500' tilting relative to the panel 200', which in turn causes the display and control part 510' of the display board 500' and the display and control area 210' of the panel 200' to misalign, reducing the control precision of the heating device 10' and thus reducing the product's performance. 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, the first aspect of this application proposes a heating device.
[0005] The second aspect of this application proposes a cooking utensil.
[0006] In view of the above, the first aspect of this application provides a heating device, comprising: a base, wherein a connecting member is provided on the side wall of the base; a panel, which covers one side of the base, the base and the panel enclosing a mounting cavity, the panel having a display and control area; a bracket, at least a portion of which is located within the mounting cavity, the bracket having a mating member, the mating member and the connecting member being detachably connected; a display panel, located within the mounting cavity, the display panel being disposed on the side of the bracket facing the panel, the display panel having a display and control section, the display and control section being disposed opposite to the display and control area; and a support member, located within the mounting cavity, the support member being connected to one of the base and the bracket, and the support member abutting against the other of the base and the bracket.
[0007] The heating device provided in this application includes a base, a panel, a bracket, a display panel, and a support component.
[0008] The panel is placed on one side of the base, and the base and the panel together form a mounting cavity. The panel has a display and control area.
[0009] At least a portion of the bracket is located within the mounting cavity, and the base and panel cooperate to serve to mount and secure the bracket.
[0010] The base has a connector on its side wall, and the bracket has a mating part; the connector and the mating part can be detachably connected. That is, the bracket is connected to the side wall of the base.
[0011] The support member is located within the mounting cavity and is connected to one of the base and the bracket, while also abutting against the other. That is, the support member is located within the mounting cavity, connected to the base, and abuts against the bracket. Alternatively, the support member is located within the mounting cavity, connected to the bracket, and abuts against the base. The support member serves to support the bracket and also limits the engagement between the bracket and the base.
[0012] Therefore, it can be seen that the connectors and mating parts cooperate with each other and combine with the support parts. By restricting the mating dimensions of the bracket and the base in multiple ways from multiple directions and multiple positions, the assembly accuracy of the bracket and the base is guaranteed. This ensures the mating dimensions of the display panel on the bracket and the panel covering one side of the base. In turn, it ensures the mating dimensions of the display control part of the display panel and the display control area of the panel. This meets the usage requirements of the display control part and the display control area being set relative to each other, and avoids the situation where the display control part is displaced relative to the display control area. This allows the display control part to be accurately aligned with the display control area of the panel, providing reliable structural support for ensuring the control accuracy of the heating device and the display accuracy of the heating device.
[0013] It is understood that the mating parts and the connecting parts on the side wall of the base in this application are detachably connected. That is, the connection between the bracket and the base is located on the side of the base, and the mating parts and the connecting parts constrain each other to ensure the mating dimensions of the bracket and the base. Compared with the connection structure of the bracket and the base in related technologies, this application shortens the dimensional chain of the panel and the display panel. It is understood that, under the same component structural precision, the shorter the dimensional chain, the higher the assembly precision and the smaller the misalignment. Because this application shortens the dimensional chain of the display control area of the panel and the display control part of the display panel (the dimensional chain of the display control area and the display control part D = D1 + D2), it can improve the assembly precision of the display panel and the panel, reduce the positional offset of the display control part and the display control area, improve the display misalignment problem of the display control part and the display control area, improve the product's performance, improve the product's touch precision, ensure the effectiveness of the product display, and enhance the product's market competitiveness.
[0014] In some technical solutions, the connection between the connector and the mating part is optionally located within the mounting cavity.
[0015] In this technical solution, the mating structure of the connector and the mating component is further defined. The connection point between the connector and the mating component is located within the mounting cavity. That is, the connection point between the connector and the mating component is concealed by the base and the panel, and the connection point between the connector and the mating component is not exposed to the base and the panel. This ensures the aesthetic appearance of the heating device.
[0016] At the same time, this structural design can also prevent moisture and dirt in the environment from damaging the connectors and mating parts, ensuring the effectiveness and reliability of the connection between the connectors and mating parts, and helping to extend the service life of the connectors and mating parts.
[0017] In some technical solutions, optionally, a portion of the sidewall of the base protrudes in a direction away from the outer surface of the base to form a connector, with the bracket located within the mounting cavity.
[0018] In this technical solution, the mating structure of the base and the bracket is further defined.
[0019] A portion of the side wall of the base protrudes in a direction away from the outer surface of the base to form a connector. That is, the base is integrally formed with a connector, which is a structure that protrudes in a direction away from the outer surface of the base.
[0020] The bracket is located inside the mounting cavity. All connectors and mating parts are also located within the mounting cavity, and neither the base nor the panel is exposed, ensuring the aesthetic appearance of the heating device.
[0021] In some technical solutions, the connector and mating part can optionally be snap-fit connected; and / or screwed together; and / or magnetically connected; and / or locked together by fasteners.
[0022] In this technical solution, the mating structure of the connector and the mating part is further defined.
[0023] The connector and mating parts are snap-fit connected, and / or the connector and mating parts are screwed together, and / or the connector and mating parts are magnetically connected, and / or the connector and mating parts are locked together by fasteners.
[0024] When the connector and mating parts are snapped together, the bracket engages with the connector of the base via the mating parts. When it is necessary to separate the bracket and the base, only external force needs to be applied to overcome the snapping force between the bracket and the base to achieve the purpose of separating the bracket and the base.
[0025] When the connector and mating parts are screwed together, the bracket is screwed into the connector of the base via the mating parts. When it is necessary to separate the bracket and the base, only an external force needs to be applied to overcome the screwing force between the bracket and the base to achieve the purpose of separating the bracket and the base.
[0026] When the connector and mating parts are magnetically connected, the bracket is assembled with the base by magnetic attraction through the mating parts. When it is necessary to separate the bracket and the base, only an external force needs to be applied to overcome the magnetic attraction between the bracket and the base to achieve the purpose of separating the bracket and the base.
[0027] When the connector and mating parts are locked together by fasteners, the bracket and the base are locked together by fasteners. When it is necessary to separate the bracket and the base, simply remove the fasteners of the mating parts and the connector to separate the bracket and the base.
[0028] This design not only ensures the stability and reliability of the bracket and base assembly, but also offers the advantages of convenient disassembly and assembly and high assembly efficiency.
[0029] In some technical solutions, optionally, when the connector and the mating part are snapped together, the connector includes a support part and a limiting part. The support part is located between the bottom wall of the panel and the base, and the limiting part extends from the support part toward the panel. The limiting part is spaced apart from the side wall of the base. The mating part is provided with a connecting hole, and the limiting part is inserted into the connecting hole.
[0030] In this technical solution, the mating structure of the connector and the mating part is further defined.
[0031] When the connector and mating parts are snapped together, the connector includes a support portion and a limiting portion. The limiting portion and the support portion are connected, with the support portion located between the bottom wall of the panel and the base, and the limiting portion extending from the support portion toward the panel, spaced apart from the side wall of the base. The mating part has a connecting hole, into which the limiting portion is inserted. In other words, the connector and the mating part form a snap-fit structure. This design ensures the stability and reliability of the bracket and base assembly while also offering advantages such as convenient disassembly and assembly, and high assembly efficiency.
[0032] It is understandable that the limiting part and the side wall of the base are arranged at intervals, that is, there is a gap between the limiting part and the side wall of the base. This gap provides clearance for the assembly parts, so that the limiting part can be smoothly inserted into the connecting hole.
[0033] Understandably, the connectors and mating parts cooperate to limit the displacement of the bracket relative to the base along the direction of the panel and the base, and also to limit the displacement of the bracket relative to the base along the direction perpendicular to the panel and the base. In other words, the mating dimensions of the bracket and the base can be limited from multiple directions and angles to ensure the assembly accuracy of the bracket and the base, to ensure the mating dimensions of the display panel located on the bracket and the panel covering one side of the base, and thus to ensure the mating dimensions of the display control section of the display panel and the display control area of the panel. This meets the usage requirements of the display control section and the display control area being positioned relative to each other, preventing the display control section from shifting relative to the display control area.
[0034] In some technical solutions, optionally, the limiting part has a guide section, the guide section has a first end and a second end, the first end is located between the second end and the support part, and the distance from the first end to the side wall of the base is less than the distance from the second end to the side wall of the base.
[0035] In this technical solution, the structure of the limiting part is further defined.
[0036] The limiting part has a guide section, which has a first end and a second end. The first end is located between the second end and the support part. That is, along the direction from the base to the panel, the height of the first end is lower than the height of the second end.
[0037] The distance from the first end to the side wall of the base is less than the distance from the second end to the side wall of the base. The guide section serves a guiding function, allowing the limiting part to smoothly insert into the connecting hole of the mating part, which facilitates operation, simplifies the assembly difficulty of the connecting part and the mating part, and ensures the ease of disassembly and assembly of the bracket and the base.
[0038] In some technical solutions, optionally, there are multiple connectors and mating parts, with each connector mating with one mating part; wherein, the multiple mating parts are arranged at intervals.
[0039] In this technical solution, the mating structure of the connector and the mating part is further defined.
[0040] There are multiple connectors and multiple mating parts.
[0041] Each connector mates with one mating component. Multiple mating components are arranged at intervals, and at the same time, multiple connectors are arranged at intervals.
[0042] This design increases the mating area and angle between the bracket and the base, which helps to improve the stability and reliability of the bracket assembly, ensures the assembly accuracy of the bracket and the base, and thus ensures the mating dimensions of the display control section of the display panel and the display control area of the panel.
[0043] In some technical solutions, optionally, the plurality of mating parts include at least a first mating part and a second mating part; along the first direction, the middle part of the bracket is located between the first mating part and the second mating part.
[0044] In this technical solution, the structure of multiple mating parts is further defined. The types of multiple mating parts are classified so that the multiple mating parts include at least a first mating part and a second mating part.
[0045] Along the first direction, the middle part of the bracket is located between the first mating member and the second mating member, that is, there are mating members on both opposite sides of the middle part of the bracket. For example, along the first direction, the first mating member is located on the first side of the middle part of the bracket, and the second mating member is located on the second side of the middle part of the bracket. The first side and the second side of the middle part of the bracket are opposite sides of the middle part of the bracket.
[0046] This design ensures the balance and consistency of forces on both sides of the middle of the bracket, guarantees the levelness of the bracket, reduces the displacement of the bracket relative to the base, improves the assembly accuracy of the bracket and the base, ensures the matching dimensions of the display panel on the bracket and the panel covering one side of the base, and further ensures the matching dimensions of the display control part of the display panel and the display control area of the panel, providing reliable structural support for ensuring the control accuracy and performance of the heating device.
[0047] In some technical solutions, optionally, the first mating component and the second mating component are located on the same side of the display panel; along the first direction, the distance from either the first mating component or the second mating component to the center of the bracket is m, and the length of the bracket is M; wherein, 1 / 4×M≤m≤1 / 2×M.
[0048] In this technical solution, the positions of the first mating component and the second mating component are further defined.
[0049] The first mating component and the second mating component are located on the same side of the display panel.
[0050] Along the first direction, the distance from either the first or second mating component to the center of the support is denoted as m. The length of the support along the first direction is denoted as M. The relationship between M and m satisfies: 1 / 4 × M ≤ m ≤ 1 / 2 × M.
[0051] This setting defines the mating dimensions of the first and second mating parts in the first direction and at the middle of the bracket. This setting can reduce the swing of the bracket relative to the base and reduce the offset of the bracket relative to the base, thereby ensuring the dimensional matching accuracy of the display control part of the display panel and the display control area of the panel. This provides reliable structural support for ensuring the control accuracy of the heating device and the performance of the heating device.
[0052] If m < 1 / 4 × M, the swing of the bracket relative to the base will increase, which will increase the risk of the bracket being misaligned relative to the base and will not be able to effectively guarantee the dimensional accuracy of the display panel and the control area of the panel located on the bracket.
[0053] If m > 1 / 2 × M, then the mating parts are located on the outer side of the outer edge of the bracket, which will increase the space occupied inside the heating device, which is not conducive to the reasonable layout of other components of the heating device and makes it impossible to achieve the thinness of the heating device.
[0054] In some technical solutions, the heating device may optionally include: a fan located inside the mounting cavity, the fan having a connecting structure; and a bracket having a mating structure, the connecting structure and the mating structure being detachably connected.
[0055] In this technical solution, the structure of the heating device is further defined, and the heating device also includes a fan.
[0056] The fan is located inside the installation cavity. The fan has a connecting structure, and the bracket has a mating structure. The connecting structure and the mating structure can be detached and connected, which increases the assembly position of the bracket and the fan.
[0057] In other words, the connecting structure, mating structure, connectors, mating parts, and support parts work together to assemble the base, bracket, and fan into a whole. This ensures the assembly accuracy of the bracket and base from multiple directions and positions, guarantees the mating dimensions of the display panel on the bracket and the panel covering one side of the base, and thus ensures the mating dimensions of the display control section of the display panel and the display control area of the panel. This meets the usage requirements of the display control section and the display control area being set relative to each other, preventing the display control section from shifting relative to the display control area. This allows the display control section to be precisely aligned with the display control area of the panel, providing reliable structural support for ensuring the control accuracy and performance of the heating device.
[0058] In some technical solutions, optionally, the display panel is located between the mating structure and the mating component; the bracket is located in the middle of the portion between the first mating component and the second mating component and is disposed opposite to the mating structure.
[0059] In this technical solution, the positional relationship between the first mating component, the second mating component, and the mating structure is further defined.
[0060] The display panel is located between the mating structure and the mating parts. That is, multiple mating parts are located on the first side of the display panel, and the mating structure is located on the second side of the display panel. The first side and the second side of the display panel are opposite sides of the display panel.
[0061] Specifically, the bracket is positioned opposite to the mating structure at the middle of the portion between the first mating member and the second mating member. It can be understood that the connector that mates with the first mating member is referred to as the first connector, the connector that mates with the second mating member is referred to as the second connector, and the base is positioned opposite to the mating structure at the middle of the portion between the first connector and the second connector.
[0062] Therefore, the positions of the first mating component, the second mating component, and the mating structure form a relatively stable triangular relationship. This can further increase the accuracy of the bracket assembly, help reduce the positional offset of the display control part of the display panel and the display control area of the panel, effectively improve the display misalignment problem of the display panel and the panel, improve the performance of the product, improve the touch accuracy of the product, ensure the effectiveness of the product display, and enhance the market competitiveness of the product.
[0063] In some technical solutions, the support frame is optionally located between the fan and the panel.
[0064] In this technical solution, the positional relationship between the bracket, the fan, and the panel is further defined, so that the bracket is located between the fan and the panel. That is, along the direction from the base to the panel, the height of the bracket is higher than the height of the fan. This setting has the convenience of assembly, simplifies the assembly difficulty of the bracket and the fan, facilitates the disassembly and assembly of the product, and helps to improve the assembly efficiency of the product.
[0065] In some technical solutions, the connecting structure and the mating structure may optionally be snap-fitted together; or screwed together; or magnetically connected; or locked together by a fastening structure.
[0066] In this embodiment, the specific assembly relationship between the connecting structure and the mating structure is further defined.
[0067] The connecting structure and the mating structure are snap-fitted together, and / or the connecting structure and the mating structure are screwed together, and / or the connecting structure and the mating structure are magnetically attracted together, and / or the connecting structure and the mating structure are locked together by a fastening structure.
[0068] When the connecting structure and the mating structure are snapped together, the bracket engages with the connecting structure on the fan through the mating structure. When it is necessary to separate the bracket and the fan, only external force needs to be applied to overcome the snapping force between the bracket and the fan to achieve the purpose of separating the bracket and the fan.
[0069] When the connecting structure and the mating structure are screwed together, the bracket is screwed into the connecting structure on the fan through the mating structure. When it is necessary to separate the bracket and the fan, only an external force needs to be applied to overcome the screwing force between the bracket and the fan to achieve the purpose of separating the bracket and the fan.
[0070] When the connecting structure and the mating structure are magnetically connected, the bracket is assembled with the fan's connecting structure through the mating structure in a magnetically attracted manner. When it is necessary to separate the bracket and the fan, only an external force needs to be applied to overcome the magnetic attraction between the bracket and the fan to achieve the purpose of separating the bracket and the fan.
[0071] When the connecting structure and the mating structure are locked together by the fastening structure, the bracket and the fan are locked together by the mating structure and the connecting structure of the fan by the fastening structure. When it is necessary to separate the bracket and the fan, it is only necessary to disassemble the connecting and mating structure and the fastening structure of the connecting structure to achieve the purpose of separating the bracket and the fan.
[0072] This setup not only ensures the stability and reliability of the bracket and fan assembly, but also offers the advantages of convenient disassembly and assembly, and high assembly efficiency.
[0073] In some technical solutions, optionally, there are multiple display panels, which are arranged at intervals on the same side of the bracket; or there are multiple display panels and brackets, with each display panel mounted on a bracket.
[0074] In this technical solution, the mating structure of the display panel and the bracket is further defined.
[0075] There are multiple display panels and one support frame, with the display panels spaced apart on the same side of the support frame. In other words, one support frame supports multiple display panels, and the display control section of each display panel is positioned opposite the display control area of the front panel. This arrangement helps reduce assembly steps for the heating device and improves assembly efficiency.
[0076] Alternatively, there can be multiple display panels and multiple brackets, with each display panel mounted on a separate bracket. In other words, there are multiple display panels and multiple brackets, with each display panel paired with a bracket; specifically, each display panel is mounted on a separate bracket. This arrangement reduces the overall size of the brackets and, while ensuring assembly accuracy, lowers the requirements for the brackets' strength and rigidity.
[0077] In some technical solutions, the support and mating parts are optionally located on opposite sides of the display panel.
[0078] In this technical solution, the support component and the mating component are located on opposite sides of the display panel. That is, the support component and the mating component are close to different sides of the display panel, which increases the distance between them, as well as the distance between them and the connecting component. This not only ensures the effectiveness of the support component but also improves the stability and effectiveness of the connection between the mating component and the connecting component.
[0079] In some technical solutions, optionally, when the support and bracket are connected, the support abuts against the bottom wall of the base.
[0080] In this technical solution, the specific mating structure of the support, bracket and base is defined.
[0081] When the support and bracket are connected, the support abuts against the bottom wall of the base. That is, the support effectively abuts against the bottom wall of the base to effectively support the bracket in the direction from the base to the panel, thereby effectively supporting the display panel in the direction from the base to the panel. This effectively prevents the display panel from tilting and provides structural support to ensure the effective alignment of the display control part of the display panel and the display control area of the panel.
[0082] The second aspect of this application provides a cooking appliance, including a heating device as described in the first aspect.
[0083] The cooking appliance provided in this application includes the heating device as described in the first aspect, and therefore has all the beneficial effects of the aforementioned heating device, which will not be described in detail here.
[0084] 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
[0085] 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:
[0086] Figure 1 A partial structural schematic diagram of a heating device in the related art is shown;
[0087] Figure 2 A schematic diagram of the first part of the heating device according to the first embodiment of this application is shown;
[0088] Figure 3 for Figure 2 A partial enlarged view of point A of the heating device shown;
[0089] Figure 4 for Figure 2 A partial enlarged view of section B of the heating device shown;
[0090] Figure 5 A schematic diagram of the second part of the heating device according to the first embodiment of this application is shown;
[0091] Figure 6 for Figure 5 A partial enlarged view of point C of the heating device shown;
[0092] Figure 7 A schematic diagram of the third part of the heating device according to the first embodiment of this application is shown;
[0093] Figure 8 A partial structural schematic diagram of the heating device according to the second embodiment of this application is shown.
[0094] in, Figure 1The correspondence between the reference numerals and component names in the attached drawings is as follows:
[0095] 10' heating device, 100' base, 200' panel, 210' display and control area, 400' bracket, 500' display board, 510' display and control unit.
[0096] Figures 2 to 8 The correspondence between the reference numerals and component names in the attached drawings is as follows:
[0097] 10 Heating device, 100 Base, 110 Connector, 112 Support, 114 Limiting part, 1142 Guide section, 1144 First end, 1146 Second end, 120 Bottom wall of base, 130 Side wall of base, 200 Panel, 210 Display and control area, 300 Mounting cavity, 400 Bracket, 410 Mating part, 410a First mating part, 410b Second mating part, 412 Connecting hole, 420 Mating structure, 430 Center of bracket, 500 Display board, 510 Display and control part, 600 Support, 700 Fan, 710 Connecting structure, 800 Fastening structure. Detailed Implementation
[0098] 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.
[0099] 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.
[0100] The following reference Figures 2 to 8 The present application describes heating device 10 and cooking appliance according to some embodiments.
[0101] like Figure 2 , Figure 5 and Figure 8 As shown, a heating device 10 according to some embodiments of this application includes a base 100, a panel 200, a bracket 400, a display panel 500, and a support member 600.
[0102] like Figure 2 , Figure 3 , Figure 7 and Figure 8 As shown, the side wall 130 of the base is provided with a connector 110.
[0103] Panel 200 covers one side of base 100.
[0104] The base 100 and the panel 200 enclose the mounting cavity 300.
[0105] like Figure 5 As shown, panel 200 has a display control area 210.
[0106] At least a portion of the bracket 400 is located within the mounting cavity 300.
[0107] like Figure 2 , Figure 3 , Figure 5 , Figure 6 , Figure 7 and Figure 8 As shown, the bracket 400 is equipped with a mating part 410.
[0108] The mating part 410 and the connector 110 can be detached and connected.
[0109] The display panel 500 is located inside the mounting cavity 300.
[0110] Display panel 500 is located on the side of bracket 400 facing panel 200.
[0111] like Figure 2 and Figure 5 As shown, the display panel 500 has a display control unit 510.
[0112] The display and control unit 510 is positioned opposite to the display and control area 210.
[0113] The support 600 is located inside the mounting cavity 300.
[0114] The support 600 is connected to one of the base 100 and the bracket 400, and the support 600 abuts against the other of the base 100 and the bracket 400.
[0115] The heating device 10 provided in this application includes a base 100, a panel 200, a bracket 400, a display panel 500, and a support member 600.
[0116] Panel 200 covers one side of base 100, and base 100 and panel 200 together form mounting cavity 300. Panel 200 has display and control area 210.
[0117] At least a portion of the bracket 400 is located within the mounting cavity 300, and the base 100 and the panel 200 cooperate to serve to mount and fix the bracket 400.
[0118] The side wall 130 of the base is provided with a connector 110, and the bracket 400 is provided with a mating part 410. The connector 110 and the mating part 410 can be detachably connected. That is, the bracket 400 is connected to the side wall 130 of the base.
[0119] The support member 600 is located within the mounting cavity 300. The support member 600 is connected to one of the base 100 and the bracket 400, and abuts against the other of the base 100 and the bracket 400. That is, the support member 600 is located within the mounting cavity 300, connected to the base 100, and abuts against the bracket 400. Alternatively, the support member 600 is located within the mounting cavity 300, connected to the bracket 400, and abuts against the base 100. The support member 600 serves to support the bracket 400, and also serves to limit the mating structure 420 between the bracket 400 and the base 100.
[0120] Therefore, it can be seen that the connector 110 and the mating part 410 cooperate with each other and combine with the support 600. By restricting the mating dimensions of the bracket 400 and the base 100 from multiple directions and positions in multiple ways, the assembly accuracy of the bracket 400 and the base 100 is guaranteed. The mating dimensions of the display panel 500 located on the bracket 400 and the panel 200 covering one side of the base 100 are guaranteed. In this way, the mating dimensions of the display control part 510 of the display panel 500 and the display control area 210 of the panel 200 can be guaranteed. This can meet the usage requirements of the display control part 510 and the display control area 210 being set relative to each other, and prevent the display control part 510 from shifting relative to the display control area 210. This allows the display control part 510 to be accurately aligned with the display control area 210 of the panel 200, providing reliable structural support for ensuring the control accuracy of the heating device 10 and the display accuracy of the heating device 10.
[0121] It is understood that the mating part 410 and the connecting part 110 at the side wall 130 of the base are detachably connected. That is, the connection between the bracket 400 and the base 100 is located on the side of the base 100, and the mating part 410 and the connecting part 110 constrain each other to ensure the mating dimensions of the bracket 400 and the base 100. Compared with the connection structure of the bracket and the base in the related art, this application shortens the dimensional chain between the panel 200 and the display panel 500. It is understood that, under the same component structural precision, the shorter the dimensional chain, the higher the assembly precision and the smaller the misalignment. This application shortens the dimensional chain of the display control area 210 of the panel 200 and the display control part 510 of the display board 500 (the dimensional chain D of the display control area 210 and the display control part 510 is D = D1 + D2). Therefore, it can improve the assembly accuracy of the display board 500 and the panel 200, reduce the positional offset of the display control part 510 and the display control area 210, improve the display misalignment problem of the display control part 510 and the display control area 210, improve the product's performance, improve the product's touch accuracy, ensure the effectiveness of the product's display, and enhance the product's market competitiveness.
[0122] It is understandable that the display panel 500 is mounted on the bracket 400, and the bracket 400 serves to support and fix the display panel 500.
[0123] For example, a portion of the bracket 400 is located inside the mounting cavity 300, and another portion of the bracket 400 is located outside the mounting cavity 300.
[0124] For example, the bracket 400 is entirely located within the mounting cavity 300.
[0125] For example, the display control unit 510 includes a button section and / or an indicator light, at least one of which is disposed opposite to the display control area 210 of the panel 200.
[0126] In some embodiments, exemplarily, the connection between the connector 110 and the mating member 410 is located within the mounting cavity 300.
[0127] In this embodiment, the mating structure 420 of the connector 110 and the mating member 410 is further defined. The connection between the connector 110 and the mating member 410 is located within the mounting cavity 300. That is, the connection between the connector 110 and the mating member 410 is covered by the base 100 and the panel 200, and the connection between the connector 110 and the mating member 410 is not exposed to the base 100 and the panel 200. In this way, the aesthetic appearance of the heating device 10 can be guaranteed.
[0128] Meanwhile, this structural design can also prevent moisture and dirt in the environment from damaging the connector 110 and mating parts 410, ensuring the effectiveness and reliability of the connection between the connector 110 and mating parts 410, and helping to extend the service life of the connector 110 and mating parts 410.
[0129] In some other embodiments, the connection between the connector 110 and the mating member 410 is located outside the mounting cavity 300.
[0130] In some embodiments, exemplarily, a portion of the sidewall 130 of the base protrudes in a direction away from the outer surface of the base 100 to form a connector 110, and the bracket 400 is located within the mounting cavity 300.
[0131] In this embodiment, the mating structure 420 of the base 100 and the bracket 400 is further defined.
[0132] A portion of the sidewall 130 of the base protrudes in a direction away from the outer surface of the base 100 to form a connector 110. That is, the base 100 is integrally formed with the connector 110, which is a structure that protrudes in a direction away from the outer surface of the base 100.
[0133] The bracket 400 is located inside the mounting cavity 300. Both the connector 110 and the mating part 410 are located inside the mounting cavity 300. Neither the connector 110 nor the mating part 410 will expose the base 100 and the panel 200, thus ensuring the aesthetic appearance of the heating device 10.
[0134] In some embodiments, the connector 110 and the mating member 410 are snap-fitted together.
[0135] And / or the connector 110 and the mating part 410 are screwed together.
[0136] And / or the connector 110 and the mating part 410 are magnetically connected.
[0137] And / or the connector 110 and the mating part 410 are locked together by fasteners.
[0138] In this embodiment, the mating structure 420 of the connector 110 and the mating member 410 is further defined.
[0139] The connector 110 and the mating part 410 are snap-fitted together, and / or the connector 110 and the mating part 410 are screwed together, and / or the connector 110 and the mating part 410 are magnetically connected, and / or the connector 110 and the mating part 410 are locked together by fasteners.
[0140] When the connector 110 and the mating part 410 are snapped together, the bracket 400 is snapped into contact with the connector 110 of the base 100 through the mating part 410. When it is necessary to separate the bracket 400 and the base 100, only an external force needs to be applied to overcome the snapping force between the bracket 400 and the base 100 to achieve the purpose of separating the bracket 400 and the base 100.
[0141] When the connector 110 and the mating part 410 are screwed together, the bracket 400 is screwed into the connector 110 of the base 100 through the mating part 410. When it is necessary to separate the bracket 400 and the base 100, only an external force needs to be applied to overcome the screwing force between the bracket 400 and the base 100 to achieve the purpose of separating the bracket 400 and the base 100.
[0142] When the connector 110 and the mating part 410 are magnetically connected, the bracket 400 is assembled with the connector 110 of the base 100 through the mating part 410 in a magnetically attracted manner. When it is necessary to separate the bracket 400 and the base 100, only an external force needs to be applied to overcome the magnetic attraction between the bracket 400 and the base 100, so as to achieve the purpose of separating the bracket 400 and the base 100.
[0143] When the connector 110 and the mating part 410 are locked together by fasteners, the bracket 400 is locked together with the connector 110 of the base 100 by fasteners through the mating part 410. When it is necessary to separate the bracket 400 and the base 100, it is only necessary to remove the fasteners of the mating part 410 and the connector 110 to achieve the purpose of separating the bracket 400 and the base 100.
[0144] This design not only ensures the stability and reliability of the assembly of bracket 400 and base 100, but also has the advantages of convenient disassembly and assembly and high assembly efficiency.
[0145] For example, fasteners include at least one of bolts, screws, and rivets, which are not listed here.
[0146] In some embodiments, exemplarily, such as Figure 5 and Figure 6 As shown, when the connector 110 and the mating part 410 are snapped together, the connector 110 includes a support part 112 and a limiting part 114.
[0147] The support 112 is located between the panel 200 and the bottom wall 120 of the base.
[0148] The limiting part 114 extends from the support part 112 toward the panel 200.
[0149] The limiting part 114 is arranged at a distance from the side wall 130 of the base.
[0150] like Figure 2 and Figure 3 As shown, the mating part 410 is provided with a connecting hole 412.
[0151] The limiting part 114 is inserted into the connecting hole 412.
[0152] In this embodiment, the mating structure 420 of the connector 110 and the mating member 410 is further defined.
[0153] When the connector 110 and the mating part 410 are snapped together, the connector 110 includes a support portion 112 and a limiting portion 114. The limiting portion 114 is connected to the support portion 112, with the support portion 112 located between the panel 200 and the bottom wall 120 of the base. The limiting portion 114 extends from the support portion 112 toward the panel 200 and is spaced apart from the side wall 130 of the base. The mating part 410 has a connecting hole 412, into which the limiting portion 114 is inserted. In other words, the connector 110 and the mating part 410 form a snap-fit structure. This arrangement ensures the stability and reliability of the assembly of the bracket 400 and the base 100, while also offering the advantages of convenient disassembly and assembly and high assembly efficiency.
[0154] It is understood that the limiting part 114 is spaced apart from the side wall 130 of the base, that is, there is a gap between the limiting part 114 and the side wall 130 of the base. This gap provides clearance space for the assembly mating part 410, so that the limiting part 114 can be smoothly inserted into the connecting hole 412.
[0155] It is understood that the connector 110 and the mating part 410 cooperate to limit the displacement of the bracket 400 relative to the base 100 along the direction of the panel 200 and the base 100, and to limit the displacement of the bracket 400 relative to the base 100 in the direction perpendicular to the panel 200 and the base 100. In other words, the mating dimensions of the bracket 400 and the base 100 can be limited from multiple directions and multiple angles to ensure the assembly accuracy of the bracket 400 and the base 100, and to ensure the mating dimensions of the display panel 500 located on the bracket 400 and the panel 200 covering one side of the base 100. This, in turn, ensures the mating dimensions of the display control unit 510 of the display panel 500 and the display control area 210 of the panel 200, and meets the usage requirements of the display control unit 510 and the display control area 210 being arranged opposite each other, thus preventing the display control unit 510 from shifting relative to the display control area 210.
[0156] In some embodiments, exemplarily, such as Figure 5 and Figure 6 As shown, the limiting part 114 has a guide section 1142.
[0157] The guide segment 1142 has a first end 1144 and a second end 1146.
[0158] The first end 1144 is located between the second end 1146 and the support part 112.
[0159] The distance from the first end 1144 to the side wall 130 of the base is less than the distance from the second end 1146 to the side wall 130 of the base.
[0160] In this embodiment, the structure of the limiting part 114 is further defined.
[0161] The limiting part 114 has a guide section 1142, which has a first end 1144 and a second end 1146. The first end 1144 is located between the second end 1146 and the support part 112. That is, along the direction from the base 100 to the panel 200, the height of the position where the first end 1144 is located is lower than the height of the position where the second end 1146 is located.
[0162] The distance from the first end 1144 to the side wall 130 of the base is less than the distance from the second end 1146 to the side wall 130 of the base. The guide section 1142 has a guiding function, which allows the limiting part 114 to be smoothly inserted into the connecting hole 412 of the mating part 410, which has convenient operation, simplifies the assembly difficulty of the connecting part 110 and the mating part 410, and ensures the convenience of disassembling and assembling the bracket 400 and the base 100.
[0163] For example, along the direction from the base 100 to the panel 200, the distance from the guide section 1142 to the side wall 130 of the base gradually decreases.
[0164] For example, along the direction from the base 100 to the panel 200, a portion of the guide segment 1142 gradually decreases in distance from the side wall 130 of the base.
[0165] In some embodiments, for example, there are multiple connectors 110 and mating members 410.
[0166] Each connector 110 mates with a mating part 410.
[0167] Among them, multiple mating parts 410 are arranged at intervals.
[0168] In this embodiment, the mating structure 420 of the connector 110 and the mating member 410 is further defined.
[0169] There are multiple connectors 110 and multiple mating parts 410. That is, there are multiple connectors 110 and multiple mating parts 410.
[0170] Each connector 110 mates with a mating part 410. Multiple mating parts 410 are arranged at intervals, and simultaneously, multiple connectors 110 are arranged at intervals.
[0171] This design increases the mating area and mating angle between the bracket 400 and the base 100, which helps to improve the stability and reliability of the bracket 400 assembly, ensures the assembly accuracy of the bracket 400 and the base 100, and thus ensures the mating dimensions of the display control unit 510 of the display panel 500 and the display control area 210 of the panel 200.
[0172] In some embodiments, exemplarily, such as Figure 2 As shown, the plurality of mating parts 410 include at least a first mating part 410a and a second mating part 410b.
[0173] Along the first direction, the middle part of the bracket 400 is located between the first mating member 410a and the second mating member 410b.
[0174] In this embodiment, the structure of the plurality of mating parts 410 is further defined. The plurality of mating parts 410 are classified into different types, such that the plurality of mating parts 410 includes at least a first mating part 410a and a second mating part 410b.
[0175] Along the first direction, the middle portion of the bracket 400 is located between the first mating member 410a and the second mating member 410b. That is, there are mating members 410 on opposite sides of the middle portion of the bracket 400. For example, along the first direction, the first mating member 410a is located on the first side of the middle portion of the bracket 400, and the second mating member 410b is located on the second side of the middle portion of the bracket 400. The first side and the second side of the middle portion of the bracket 400 are opposite sides of the middle portion of the bracket 400.
[0176] This design ensures the balance and consistency of forces on the two sides of the middle part of the bracket 400, maintains the levelness of the bracket 400, reduces the displacement of the bracket 400 relative to the base 100, improves the assembly accuracy of the bracket 400 and the base 100, ensures the matching dimensions of the display panel 500 on the bracket 400 and the panel 200 covering one side of the base 100, and further ensures the matching dimensions of the display and control section 510 of the display panel 500 and the display and control area 210 of the panel 200. This provides reliable structural support for ensuring the control accuracy and performance of the heating device 10.
[0177] For example, the number of first mating parts 410a is at least one. When the number of first mating parts 410a is multiple, the number of first mating parts 410a includes two, three, four, etc., which will not be listed here.
[0178] For example, the number of second mating parts 410b is at least one. When the number of second mating parts 410b is multiple, the number of second mating parts 410b includes two, three, four, etc., which will not be listed here.
[0179] In some embodiments, exemplarily, such as Figure 2 As shown, the first mating part 410a and the second mating part 410b are located on the same side of the display panel 500.
[0180] Along the first direction, the distance from either the first mating member 410a or the second mating member 410b to the center 430 of the bracket is m, and the length of the bracket 400 is M.
[0181] Where 1 / 4×M≤m≤1 / 2×M.
[0182] In this embodiment, the positions of the first mating member 410a and the second mating member 410b are further defined.
[0183] The first mating part 410a and the second mating part 410b are located on the same side of the display panel 500.
[0184] Along the first direction, the distance from either the first mating member 410a or the second mating member 410b to the center 430 of the bracket is denoted as m. The length of the bracket 400 along the first direction is denoted as M. The relationship between M and m satisfies: 1 / 4 × M ≤ m ≤ 1 / 2 × M.
[0185] This setting limits the mating dimensions of the first mating member 410a and the second mating member 410b in the first direction and at the middle of the bracket 400. This setting can reduce the swing of the bracket 400 relative to the base 100 and reduce the offset of the bracket 400 relative to the base 100. In this way, it can ensure the dimensional matching accuracy of the display control part 510 of the display panel 500 and the display control area 210 of the panel 200, and provide reliable structural support for ensuring the control accuracy of the heating device 10 and the performance of the heating device 10.
[0186] If m < 1 / 4 × M, the swing of the bracket 400 relative to the base 100 will increase, which will increase the risk of misalignment of the bracket 400 relative to the base 100 and will not be able to effectively guarantee the dimensional matching accuracy of the display control unit 510 of the display panel 500 and the display control area 210 of the panel 200.
[0187] If m > 1 / 2 × M, then the mating part 410 is located outside the outer edge of the bracket 400, which will increase the space occupancy rate inside the heating device 10, which is not conducive to the reasonable layout of other components of the heating device 10, and makes it impossible to achieve the thinness of the heating device 10.
[0188] Examples include m = 1 / 3 × M, m = 1 / 3.2 × M, m = 1 / 3.5 × M, and m = 1 / 3.8 × M, etc., which will not be listed here.
[0189] In some embodiments, exemplarily, such as Figure 2 and Figure 8 As shown, the heating device 10 also includes a fan 700.
[0190] The fan 700 is located inside the mounting cavity 300.
[0191] like Figure 2 and Figure 4 As shown, the fan 700 is equipped with a connecting structure 710.
[0192] like Figure 2 and Figure 4 As shown, the bracket 400 is provided with a mating structure 420.
[0193] The connecting structure 710 and the mating structure 420 can be detachably connected.
[0194] In this embodiment, the structure of the heating device 10 is further defined, and the heating device 10 also includes a fan 700.
[0195] The fan 700 is located in the mounting cavity 300. The fan 700 is provided with a connecting structure 710, and the bracket 400 is provided with a mating structure 420. The connecting structure 710 and the mating structure 420 can be detached and connected, which means that the assembly position of the bracket 400 and the fan 700 is increased.
[0196] In other words, the connecting structure 710, the mating structure 420, the connector 110, the mating component 410, and the support component 600 work together to assemble the base 100, the bracket 400, and the fan 700 into a whole. This ensures the assembly accuracy of the bracket 400 and the base 100 from multiple directions and positions, and guarantees the mating dimensions of the display panel 500 on the bracket 400 and the panel 200 covering one side of the base 100. This, in turn, ensures the mating dimensions of the display control section 510 of the display panel 500 and the display control area 210 of the panel 200. This meets the usage requirements of the display control section 510 and the display control area 210 being set relative to each other, preventing the display control section 510 from shifting relative to the display control area 210. This allows the display control section 510 to be precisely aligned with the display control area 210 of the panel 200, providing reliable structural support for ensuring the control accuracy and performance of the heating device 10.
[0197] In some embodiments, for example, the display panel 500 is located between the mating structure 420 and the mating member 410.
[0198] The middle part of the bracket 400 located between the first mating member 410a and the second mating member 410b is disposed opposite to the mating structure 420.
[0199] In this embodiment, the positional relationship between the first mating member 410a, the second mating member 410b, and the mating structure 420 is further defined.
[0200] The display panel 500 is located between the mating structure 420 and the mating parts 410. That is, multiple mating parts 410 are located on the first side of the display panel 500, and the mating structure 420 is located on the second side of the display panel 500. The first side and the second side of the display panel 500 are opposite sides of the display panel 500.
[0201] Specifically, the middle portion of the bracket 400 located between the first mating member 410a and the second mating member 410b is positioned opposite to the mating structure 420. It is understood that the connector 110 mating with the first mating member 410a is referred to as the first connector, and the connector 110 mating with the second mating member 410b is referred to as the second connector. The middle portion of the base 100 located between the first connector and the second connector is positioned opposite to the mating structure 420.
[0202] Therefore, the positions of the first mating part 410a, the second mating part 410b, and the mating structure 420 form a relatively stable triangular relationship. This can further increase the assembly accuracy of the bracket 400, help reduce the positional offset of the display control part 510 of the display panel 500 and the display control area 210 of the panel 200, effectively improve the display misalignment problem of the display panel 500 and the panel 200, improve the product's performance, enhance the product's touch accuracy, ensure the effectiveness of the product's display, and enhance the product's market competitiveness.
[0203] For example, the base 100 is provided with support ribs, and the fan 700 is located on the support ribs.
[0204] For example, the fan 700 is mounted on the bottom wall 120 of the base.
[0205] In some embodiments, for example, the bracket 400 is located between the fan 700 and the panel 200.
[0206] In this embodiment, the positional relationship between the bracket 400, the fan 700, and the panel 200 is further defined, such that the bracket 400 is located between the fan 700 and the panel 200. That is, along the direction from the base 100 to the panel 200, the height of the bracket 400 is higher than the height of the fan 700. This arrangement facilitates assembly, simplifies the assembly difficulty of the bracket 400 and the fan 700, facilitates product disassembly and assembly, and helps improve product assembly efficiency.
[0207] In some embodiments, the connection structure 710 and the mating structure 420 are exemplarily snap-fitted together.
[0208] And / or the connecting structure 710 and the mating structure 420 are screwed together.
[0209] And / or magnetic connection between connection structure 710 and mating structure 420.
[0210] The connection structure 710 and the mating structure 420 are locked together by the fastening structure 800.
[0211] In this embodiment, the specific assembly relationship between the connecting structure 710 and the mating structure 420 is further defined.
[0212] The connecting structure 710 and the mating structure 420 are snap-fitted together, and / or the connecting structure 710 and the mating structure 420 are screwed together, and / or the connecting structure 710 and the mating structure 420 are magnetically attracted together, and / or the connecting structure 710 and the mating structure 420 are locked together by the fastening structure 800.
[0213] When the connecting structure 710 and the mating structure 420 are snapped together, the bracket 400 is engaged with the connecting structure 710 on the fan 700 through the mating structure 420. When it is necessary to separate the bracket 400 and the fan 700, only an external force needs to be applied to overcome the snapping force between the bracket 400 and the fan 700 to achieve the purpose of separating the bracket 400 and the fan 700.
[0214] When the connecting structure 710 and the mating structure 420 are screwed together, the bracket 400 is screwed into the connecting structure 710 on the fan 700 through the mating structure 420. When it is necessary to separate the bracket 400 and the fan 700, only an external force needs to be applied to overcome the screwing force between the bracket 400 and the base 100 to achieve the purpose of separating the bracket 400 and the fan 700.
[0215] When the connecting structure 710 and the mating structure 420 are magnetically connected, the bracket 400 is assembled with the connecting structure 710 of the fan 700 through the mating structure 420 in a magnetically attracted manner. When it is necessary to separate the bracket 400 and the fan 700, only an external force needs to be applied to overcome the magnetic attraction between the bracket 400 and the fan 700, so as to achieve the purpose of separating the bracket 400 and the fan 700.
[0216] When the connecting structure 710 and the mating structure 420 are locked together by the fastening structure 800, the bracket 400 is locked together with the connecting structure 710 of the fan 700 by the mating structure 420 and the fastening structure 800. When it is necessary to separate the bracket 400 and the fan 700, it is only necessary to remove the fastening structure 800 of the connecting structure 420 and the connecting structure 710 to achieve the purpose of separating the bracket 400 and the fan 700.
[0217] This setup not only ensures the stability and reliability of the bracket 400 and the fan 700 assembly, but also has the advantages of convenient disassembly and assembly and high assembly efficiency.
[0218] For example, the fastening structure 800 includes at least one of bolts, screws and rivets, which are not listed here.
[0219] In some embodiments, exemplarily, such as Figure 8 As shown, there are multiple display panels 500, which are arranged at intervals on the same side of the bracket 400; or there are multiple display panels 500 and multiple brackets 400, with each display panel 500 mounted on a bracket 400.
[0220] In this embodiment, the mating structure 420 of the display panel 500 and the bracket 400 is further defined.
[0221] There are multiple display panels 500 and one support bracket 400. The multiple display panels 500 are arranged at intervals on the same side of the support bracket 400. That is, one support bracket 400 supports multiple display panels 500, and the display control unit 510 of each display panel 500 is positioned opposite to the display control area 210 of the panel 200. This arrangement helps to reduce the assembly steps of the heating device 10 and improves the assembly efficiency of the heating device 10.
[0222] Alternatively, there can be multiple display panels 500 and multiple brackets 400, with each display panel 500 mounted on one bracket 400. That is, there are multiple display panels 500 and multiple brackets 400, with each display panel 500 cooperating with one bracket 400; specifically, each display panel 500 is mounted on one bracket 400. This arrangement can reduce the overall size of the bracket 400, and while ensuring the assembly accuracy of the bracket 400, it can also reduce the strength and rigidity requirements of the bracket 400.
[0223] In some embodiments, for example, the support 600 and the mating member 410 are located on opposite sides of the display panel 500.
[0224] In this embodiment, the support member 600 and the mating member 410 are located on opposite sides of the display panel 500. That is, the support member 600 and the mating member 410 are close to different sides of the display panel 500, which increases the distance between the support member 600 and the mating member 410, and also increases the distance between the support member 600 and the connector 110. This not only ensures the effectiveness of the support member 600 but also improves the stability and effectiveness of the connection between the mating member 410 and the connector 110.
[0225] In some embodiments, exemplarily, such as Figure 5 As shown, when the support 600 and the bracket 400 are connected, the support 600 abuts against the bottom wall 120 of the base.
[0226] In this embodiment, a specific mating structure 420 is defined for the support member 600, the bracket 400, and the base 100.
[0227] When the support member 600 and the bracket 400 are connected, the support member 600 abuts against the bottom wall 120 of the base. That is, the support member 600 effectively abuts against the bottom wall 120 of the base to effectively support the bracket 400 in the direction from the base 100 to the panel 200, thereby effectively supporting the display panel 500 in the direction from the base 100 to the panel 200. This effectively prevents the display panel 500 from tilting and provides structural support to ensure that the display control part 510 of the display panel 500 and the display control area 210 of the panel 200 are effectively aligned.
[0228] A cooking appliance according to some embodiments of this application includes: a heating device 10 of any of the above embodiments.
[0229] The cooking appliance provided in this application includes the heating device 10 of any of the above embodiments, and therefore has all the beneficial effects of the heating device 10, which will not be described in detail here.
[0230] For example, the cooking appliance provided in this application includes the heating device 10 as described in the first aspect, and therefore has all the beneficial effects of the heating device 10, which will not be described in detail here.
[0231] For example, panel 200 has a display control area 210 with a silkscreen pattern. Panel 200 is attached to one side of base 100.
[0232] For example, the display panel 500 is fixed on the bracket 400. The bracket 400 is provided with a mating part 410, such as a pull clip. The side wall 130 of the base is provided with a connector 110. The connector 110 and the pull clip constrain each other. The dimensional chain D, which affects the assembly accuracy of the display control area 210 of the panel 200 and the display control part 510 of the display panel 500, is D = D1 + D2. Under the condition of equal component structural accuracy, the shorter the dimensional chain, the higher the assembly accuracy and the smaller the misalignment. The ratio of the dimensional chain D in this application to the dimensional chain d in the related art is D < d. Therefore, the structural design of this application can significantly improve the assembly accuracy of the display panel 500 and effectively improve the display misalignment problem of the display panel 500.
[0233] For example, the connector 110 and the mating member 410 are considered as a structural group, and the number of structural groups is greater than or equal to 2. Taking two structural groups as an example, the two mating members 410 are respectively denoted as the first mating member 410a and the second mating member 410b. Along the first direction, the distance from either the first mating member 410a or the second mating member 410b to the center 430 of the bracket is m, and the length of the bracket 400 is M, where 1 / 4×M≤m≤1 / 2×M. Within the limits of structural allowance, the larger the value of m, the smaller the sway and the smaller the deviation of the display panel 500.
[0234] For example, the fan 700 is provided with a connecting structure 710, and the bracket 400 is provided with a mating structure 420. The connecting structure 710 and the mating structure 420 are screwed together, or the connecting structure 710 and the mating structure 420 are pinned together, or the connecting structure 710 and the mating structure 420 are fastened together.
[0235] For example, the two connectors 110, two mating parts 410, a connecting structure 710, and a mating structure 420 cooperate to form a stable triangular relationship, further increasing the accuracy of the bracket 400 installation. The fan 700 is located below the bracket 400, and the connection structure 710 and mating structure 420 are connected, which also serves to fix the fan 700. This saves on the investment in components for connecting the fan 700 and increases assembly efficiency.
[0236] For example, the mating part 410 of the bracket 400 of this application is connected to the connector 110 of the side wall 130 of the base, which can shorten the length of the dimensional chain that affects the assembly accuracy, thereby making the assembly more precise and solving the problem of display misalignment.
[0237] For example, the number of display panels 500 is one.
[0238] For example, there are multiple display panels 500, which are arranged at intervals. When multiple display panels 500 are arranged at intervals, the number of connectors 110 and mating parts 410 should be increased accordingly to ensure the stability of the heating device 10 assembly.
[0239] 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.
[0240] 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 heating device, characterized in that, include: A base, wherein the side wall of the base is provided with a connector; A panel is disposed on one side of the base, the base and the panel enclose a mounting cavity, and the panel has a display and control area; A bracket, at least a portion of which is located within the mounting cavity, the bracket being provided with a mating component, the mating component and the connecting component being detachably connected; The display panel is located inside the mounting cavity and is disposed on the side of the bracket facing the panel. The display panel has a display control unit, which is disposed opposite to the display control area. A support member is located within the mounting cavity, the support member is connected to one of the base and the bracket, and the support member abuts against the other of the base and the bracket.
2. The heating device according to claim 1, characterized in that, The connection between the connector and the mating part is located within the mounting cavity.
3. The heating device according to claim 2, characterized in that, A portion of the sidewall of the base protrudes in a direction away from the outer surface of the base to form the connector, and the bracket is located within the mounting cavity.
4. The heating device according to claim 2 or 3, characterized in that, The connector and the mating part are snap-fitted together; and / or The connector and the mating part are screwed together; and / or The connector and the mating part are magnetically connected; and / or The connector and the mating part are locked together by fasteners.
5. The heating device according to claim 4, characterized in that, When the connector and the mating part are snapped together, the connector includes a support part and a limiting part. The support part is located between the bottom wall of the panel and the base. The limiting part extends from the support part toward the panel. The limiting part is spaced apart from the side wall of the base. The mating part is provided with a connecting hole, and the limiting part is inserted into the connecting hole.
6. The heating device according to claim 5, characterized in that, The limiting part has a guide section, the guide section has a first end and a second end, the first end is located between the second end and the support part, and the distance from the first end to the side wall of the base is less than the distance from the second end to the side wall of the base.
7. The heating device according to any one of claims 1 to 3, characterized in that, There are multiple connectors and mating parts, with each connector mating with one mating part; The plurality of mating components are arranged at intervals.
8. The heating device according to claim 7, characterized in that, The plurality of mating parts include at least a first mating part and a second mating part; Along the first direction, the middle part of the bracket is located between the first mating member and the second mating member.
9. The heating device according to claim 8, characterized in that, The first mating component and the second mating component are located on the same side of the display panel; Along the first direction, the distance from either the first mating member or the second mating member to the center of the bracket is m, and the length of the bracket is M; Where 1 / 4×M≤m≤1 / 2×M.
10. The heating device according to claim 8, characterized in that, Also includes: A fan is located inside the mounting cavity, and the fan is equipped with a connecting structure; The bracket is provided with a mating structure, and the connecting structure and the mating structure can be detached and connected.
11. The heating device according to claim 10, characterized in that, The display panel is located between the mating structure and the mating component; The bracket is positioned opposite the mating structure at the middle of the portion between the first mating member and the second mating member.
12. The heating device according to claim 10, characterized in that, The bracket is located between the fan and the panel.
13. The heating device according to claim 10, characterized in that, The connecting structure and the mating structure are snap-fitted together; and / or The connecting structure and the mating structure are screwed together; and / or The connecting structure and the mating structure are magnetically connected; and / or The connecting structure and the mating structure are locked together by a fastening structure.
14. The heating device according to any one of claims 1 to 3, characterized in that, The number of display panels is multiple, and the multiple display panels are arranged at intervals on the same side of the bracket; or There are multiple display panels and multiple brackets, with each display panel mounted on one bracket.
15. The heating device according to any one of claims 1 to 3, characterized in that, The support member and the mating member are located on opposite sides of the display panel.
16. The heating device according to any one of claims 1 to 3, characterized in that, When the support member and the bracket are connected, the support member abuts against the bottom wall of the base.
17. A cooking utensil, characterized in that, include: The heating device as described in any one of claims 1 to 16.