Conductive connection structure and cabinet body

By using modular support and conductive components, the problem of metal rail damage during transportation of tall cabinets is solved, achieving stable electrical connection and easy installation, ensuring normal operation of functional loads.

CN223601167UActive Publication Date: 2025-11-28GUANGDONG LEADSHOW DISPLAY PROD
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Patent Information

Application Number
CN202423159867.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-11-28
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

In the existing technology, the integrated metal rail design of tall cabinets is easily damaged during transportation, resulting in poor contact between the wiring plug and the metal rail, the lighting cannot work properly, and the installation and maintenance are complicated.

Method used

It adopts a splicable support component and a conductive component. The support component is splicable and the conductive component uses a flexible carrier plate and conductive sheet. Combined with the power connection component and magnetic attraction component, it can achieve flexible combination and stable electrical connection.

Benefits of technology

It facilitates packaging and transportation, avoids damage from excessively long support components, ensures good contact of conductive components, normal operation of functional loads, and is easy, safe and stable to install.

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Abstract

The utility model relates to the field of cabinet body, concretely relates to a conductive connection structure and cabinet body, including support subassembly, conducting component, electricity connection subassembly, support subassembly contains a plurality of support components and is connected together to the integral penetration of conducting component in the recess of support subassembly, and the function load is conducted through electricity connection subassembly. The support subassembly in this technical scheme adopts the splicing connection mode, and different numbers of support components can be combined according to the height of the display cabinet to make the support subassembly adapt to display cabinets of different heights. At the same time, it is convenient for packaging and transportation, and damage of the support subassembly caused by too long length can be avoided during transportation, thereby solving the problem that the support subassembly is easy to deform during transportation, and then the electricity connection subassembly and the conducting component maintain contact, and the function load can work normally.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of cabinet body, concretely relates to a conductive connection structure and cabinet body.

BACKGROUND

[0002] At present, various additional function loads are loaded on the cabinet body to meet the use demand of the user, for example, a conventional illuminating lamp is arranged in the cabinet body to serve as an illuminating function and increase the light condition inside the cabinet body.

[0003] For example, the Chinese utility model patent with the application number 202121371762.4 discloses a display cabinet conductive device, which is integrally designed with a metal guide rail, is fixed on the display cabinet, is connected with an external power supply through the metal guide rail, acts on the installation and fixing layer plate and the illuminating lamp, and is electrically connected with the metal guide rail through the wiring plug to electrify the illuminating lamp and is detachably connected to the metal guide rail through the mounting piece. However, for the cabinet body with a high height, if the metal guide rail with the above-mentioned integral design is fixed on the cabinet body, although the problem of complicated wiring in the metal guide rail can be reduced, the metal guide rail is too long and is inconvenient for packaging and transportation, and deformation problems such as bending of the metal guide rail are prone to occur during the transportation process, so that after installation, the wiring plug cannot be in contact with the metal guide rail, the illuminating lamp cannot work normally due to poor contact, and maintenance is very complex.

[0004] In view of the above technical problems, the utility model is hereby researched and proposed.

UTILITY MODEL CONTENTS

[0005] The utility model aims at overcoming the defects of the prior art, providing a conductive connection structure and cabinet body, including support assembly, conductive assembly, electricity connection assembly, the support assembly contains a plurality of support components and is connected together, the conductive assembly is integrally penetrated in the recess of support assembly, and the function load is conducted through the electricity connection assembly. The support assembly in the technical scheme adopts a splicable connection mode, can flexibly combine different numbers of support components according to the height of display cabinet to make the support assembly adapt to display cabinets with different heights. At the same time, it is convenient for packaging and transportation, and the support assembly can be prevented from being damaged due to too long length during the transportation process, so that the problem that the support assembly is prone to deformation during the transportation process is solved, and then the electricity connection assembly and the conductive assembly maintain contact, so that the function load can work normally.

[0006] The utility model is realized through the following technical schemes:

[0007] A conductive connection structure, including support assembly, the support assembly includes a plurality of support components, further including a connecting component for connecting two adjacent support components, the support component is provided with a recess penetrating both ends along the length direction, and

[0008] The conductive assembly for electrically connecting with an external power source comprises a flexible carrier plate, a first conductive sheet and a second conductive sheet, the flexible carrier plate is embedded in a groove, the flexible carrier plate is integrally penetrated through two adjacent support components, the first conductive sheet and the second conductive sheet are arranged on the flexible carrier plate away from the bottom of the groove, the first conductive sheet and the second conductive sheet can deform correspondingly with the bending of the flexible carrier plate, and the conductive assembly further comprises

[0009] The power connection assembly for connecting with a functional load comprises a first conductive spring sheet and a second conductive spring sheet, and the first conductive spring sheet and the second conductive spring sheet are electrically connected with the corresponding first conductive sheet and second conductive sheet respectively.

[0010] According to the conductive connection structure, a plurality of openings are correspondingly formed in the side surfaces of the support components, and the two adjacent support components are connected through the connection components and the openings.

[0011] According to the conductive connection structure, the two adjacent support components are hingedly connected through the connection components.

[0012] According to the conductive connection structure, an insulating layer is coated on the surface of the flexible carrier plate, so that the first conductive sheet and the second conductive sheet are not conductive.

[0013] According to the conductive connection structure, a magnetic attraction component is arranged between the flexible carrier plate and the support component to fixedly connect the two components relative to each other.

[0014] According to the conductive connection structure, the magnetic attraction component comprises a first magnetic pole sheet distributed on the flexible carrier plate and a second magnetic pole sheet distributed on the support component.

[0015] According to the conductive connection structure, the conductive connection structure further comprises a hook part for fixing the power connection assembly, so that the power connection assembly and the conductive assembly can be elastically contacted when they are connected.

[0016] According to the conductive connection structure, the support assembly is provided with a wire hole for passing a wire, so that the first conductive sheet and the second conductive sheet can be electrically connected with the external power source through the wire.

[0017] The application further provides a cabinet body comprising the conductive connection structure, a layer plate, a functional load and a support body, the support assembly is fixedly connected to the support body, the power connection assembly is fixedly connected to the layer plate, and the functional load is arranged on the layer plate and electrically connected with the external power source through the power connection assembly.

[0018] According to the cabinet body, the two sides of the layer plate are provided with hook parts, the support body is provided with a plurality of hook holes matched with the hook parts, and the power connection assembly is arranged on the hook part on one side of the layer plate.

[0019] Compared with the prior art, the conductive connection structure and the cabinet body have the following advantages:

[0020] 1、The support assembly in the technical scheme adopts a splicing connection mode, and different numbers of support components can be combined according to the height of the display cabinet to enable the support assembly to adapt to display cabinets of different heights. Therefore, the technical scheme is more convenient for packaging and transportation, and damage caused by the excessively long length of the support assembly during transportation can be avoided, thereby solving the problem that the support assembly is prone to deformation during transportation, and then enabling the power connection assembly and the conductive assembly to maintain contact, so that the functional load can work normally.

[0021] 2、The conductive assembly in the application can be rolled up for storage, which is convenient during transportation; and the length of the conductive assembly required can be cut according to the length of the support assembly during use, which is convenient and simple to operate.

[0022] 3、In the application, the layer plate is fixed to the support body through the hook part, and the power connection assembly and the conductive assembly maintain electrical connection, and the two cooperate with each other to make the conductive connection structure safe and stable, and ensure that the functional load can work normally.

[0023] 4、In the application, the support assembly is hinged to adapt to the polygonal column body in the display cabinet, the conductive assembly is integrally penetrated in the support assembly and is bent and deformed to adapt to the included angle formed by the hinged position of the support component, and then the functional load distributed on the display cabinet layer plate with a polygonal outer contour line is electrically connected to the same conductive assembly to reduce the layout of the circuit and increase the flexibility of the conductive connection structure, thereby meeting the needs of installing the functional load in such a display cabinet layout structure.

[0024] 5、The application uses a magnetic component to connect the support assembly and the conductive assembly, which is firm and reliable in installation and simple to operate during installation.

[0025] 6、The cabinet disclosed in the application is provided with the conductive connection structure, the layer plate can adjust its up-down position along the length direction of the column body and limit the layer plate at a specific position, the power connection assembly 3 moves with the position of the hook part 4, and is disconnected or electrically connected at different conductive positions of the conductive assembly 2, and then the height position between the layer plates is adjusted flexibly; at the same time, the functional load is plug and play, which is simple to operate. BRIEF DESCRIPTION OF DRAWINGS

[0026] The specific embodiments of the utility model will be further described in detail below with reference to the drawings, in which:

[0027] Figure 1 is a structural schematic view of the conductive connection structure in the utility model;

[0028] Figure 2 is a side view of the conductive connecting structure in the utility model;

[0029] Figure 3 is a partial enlarged view of A part in the utility model;

[0030] Figure 4 is a structure schematic view of the support component in the utility model;

[0031] Figure 5 is a sectional view of the support component in the utility model;

[0032] Figure 6 is a schematic view of the conductive assembly in the utility model;

[0033] Figure 7 is a structure schematic view of the power connection assembly in the utility model;

[0034] Figure 8 is one of the state diagrams of the conductive connecting structure in the utility model;

[0035] Figure 9 is an unfolded schematic view of the support component in the utility model;

[0036] Figure 10 is a partial schematic view of the support component in the utility model;

[0037] Figure 11 is the second state diagram of the conductive connecting structure in the utility model;

[0038] Figure 12 is a structure schematic view of the cabinet body in the utility model.

[0039] In the drawings:

[0040] 1, support assembly; 11, support component; 12, connecting component; 13, groove; 14, opening; 15, through hole;

[0041] 2, conductive assembly; 21, first conductive sheet; 22, second conductive sheet; 23, flexible carrier plate;

[0042] 3, power connection assembly; 31, first conductive spring sheet; 32, second conductive spring sheet; 4, hook part;

[0043] 5, magnetic attraction component; 51, first magnetic pole sheet; 52, second magnetic pole sheet; 53, wire hole; 61, layer plate; 62, support body; 621, hook hole; 63, functional load.

DETAILED DESCRIPTION

[0044] The embodiments of the utility model will be described in detail below with reference to the drawings.

[0045] As Figures 1-12 shown, the utility model of a kind of electrically conductive connection structure, including support assembly 1, the support assembly 1 includes several support components 11, further include the connecting component 12 for connecting two adjacent support components 11, the support component 11 is opened with recess 13 through both ends along its length direction, and

[0046] electrically conductive assembly 2, the electrically conductive assembly 2 is used to be electrically connected with external power supply, electrically conductive assembly 2 includes flexible carrier plate 23, first electrically conductive sheet 21 and second electrically conductive sheet 22, the flexible carrier plate 23 is embedded in recess 13, the flexible carrier plate 23 is integrally through two adjacent support components 11, first electrically conductive sheet 21 and second electrically conductive sheet 22 are spaced apart and arranged on the flexible carrier plate 23 on the side away from the bottom of recess 13, first electrically conductive sheet 21 and second electrically conductive sheet 22 can be deformed with the bending of flexible carrier plate 23, further include

[0047] electricity connection assembly 3, the electricity connection assembly 3 is used to be connected with functional load 63, the electricity connection assembly 3 includes first electrically conductive spring sheet 31 and second electrically conductive spring sheet 32, and first electrically conductive spring sheet 31 and second electrically conductive spring sheet 32 are electrically connected with corresponding first electrically conductive sheet 21 and second electrically conductive sheet 22 respectively.The side surface of the support component 11 is correspondingly opened with several holes 14, and two adjacent support components 11 are connected by connecting component 12 and hole 14.The support assembly 1 is opened with wire hole 53 for wire to pass through so that first electrically conductive sheet 21 and second electrically conductive sheet 22 are electrically connected with external power supply by wire.

[0048] The technical scheme of a kind of electrically conductive connection structure is disclosed in the application, two adjacent support components 11 are assembled together by connection component 12, while support component 11 is opened with recess 13 through both ends along its length direction, flexible carrier plate 23 and first electrically conductive sheet 21 and second electrically conductive sheet 22 are integrally through in recess 13, to make electrically conductive assembly 2 and be fixed in support assembly 1, external power supply is welded with first electrically conductive sheet 21 and second electrically conductive sheet 22 by wire hole 53 on support assembly 1, first electrically conductive sheet 21 and second electrically conductive sheet 22 are electrically connected with first electrically conductive spring sheet 31 and second electrically conductive spring sheet 32 respectively.Specifically, first electrically conductive spring sheet 31 and second electrically conductive spring sheet 32 in the electricity connection assembly 3 are V-shaped electrically conductive spring sheet, and belong to the conventional technical means in the art.

[0049] With the showcase as an example, the conductive connecting structure is installed on the showcase to illustrate the use of the present application. The conventional showcase in the prior art includes a support body 62 for support, and a layer plate 61 connected with the support body 62 perpendicularly. When the conductive connecting structure is installed, two adjacent support components 11 are connected by the connecting component 12 through screws, so as to splice the grooves 13 of the support components 11 into one, and then the conductive assembly 2 is embedded in the groove 13, so that the first conductive sheet 21 and the second conductive sheet 22 on the flexible carrier plate 23 are continuously extended in the support assembly 1, and then the support assembly 1 is installed and fixed on the support body 62 of the showcase, and the wires of the external power supply are welded with the starting ends of the first conductive sheet 21 and the second conductive sheet 22 through the wire hole 53, so as to conduct the first conductive sheet 21 and the second conductive sheet 22. Specifically, the layer plate 61 is provided with an electricity connecting assembly 3 electrically connected with the conductive assembly 2 on one side, and the layer plate 61 and the support body 62 are movably connected to adjust the spacing between the layer plates 61. When the layer plate 61 is connected with the support body 62, the first conductive spring sheet 31 and the second conductive spring sheet 32 are correspondingly abutted on the first conductive sheet 21 and the second conductive sheet 22, and the electricity connecting assembly 3 and the conductive assembly 2 are kept electrically connected.

[0050] The conductive assembly 2 of the present application is directly connected with the functional load 63 through the electricity connecting assembly 3, and is integrally penetrated in the groove 13 of the support assembly 1, and the first conductive spring sheet 31 and the second conductive spring sheet 32 in the electricity connecting assembly 3 are directly electrically connected with the first conductive sheet 21 and the second conductive sheet 22, so as to simultaneously conduct the functional loads 63 on different layer plates 61. Compared with the prior art of applying multiple metal rails to connect the external power supply through wires to conduct multiple lighting lamps, the present application simplifies the wiring of the electricity connecting assembly 3, and can avoid the safety hazard problem caused by too many lines. The functional load 63 is plug and play, and the operation is simple and convenient. In addition, the support assembly 1 in the present application adopts a splicing connection mode, and different numbers of support components 11 can be combined according to the height of the showcase, so that the support assembly 1 can adapt to the showcase of different heights. Therefore, the advantage of the present application is that it is convenient for packaging and transportation, and the support assembly 1 can be prevented from being damaged due to too long length during transportation, so as to solve the problem that the support assembly 1 is easily deformed during transportation, and then the electricity connecting assembly 3 and the conductive assembly 2 are kept in contact, so as to keep the functional load 63 working normally.

[0051] As Figure 2 , Figure 3 , Figure 7As shown, as a further technical solution of the present embodiment, the conductive connection structure further comprises a hook portion 4 for fixing the power connection component 3 to keep elastic contact when the power connection component 3 is connected with the conductive component 2. Taking the above display cabinet as an example, the power connection component 3 is arranged between the hook portion 4 and the layer plate 61, and the hook portion 4 is used to fix the power connection component 3 on the support body 62. The layer plate 61 can be adjusted in position in the length direction of the support body 62 through the hook portion 4. When the power connection component 3 is electrically connected with the conductive component 2, the layer plate 61 is fixedly connected on the support body 62 by the hook portion 4, and the power connection component 3 is limited in a specific position, and the power connection component 3 is disconnected or connected with the conductive component 2 in different positions by moving the hook portion 4. At this time, the first conductive spring 31 and the second conductive spring 32 are respectively abutted on the first conductive sheet 21 and the second conductive sheet 22 to keep electrical connection. In the present embodiment, the layer plate 61 is fixed on the support body 62 by the hook portion 4, and the power connection component 3 is kept in electrical connection with the conductive component 2, and the two are cooperated with each other to make the conductive connection structure safe and stable in conduction, and ensure that the functional load 63 can work normally.

[0052] As a further technical solution of the present embodiment, the functional load 63 is a load with a specific functional effect arranged on or embedded in the layer plate 61. The functional load 63 can be a load with the effects of adjusting temperature, light and illumination, or a load equipped with integrated touch screen and multimedia technology and other information interaction functions, to meet the display requirements of different display cabinets and improve the display effect of the goods.

[0053] As shown in the drawings, Figures 2-6 As a further technical solution of the present embodiment, the surface of the flexible carrier plate 23 is coated with an insulating layer (not shown in the drawings) to make the first conductive sheet 21 and the second conductive sheet 22 not conductive. The first conductive sheet 21 and the second conductive sheet 22 are arranged side by side and spaced apart on the same surface of the flexible carrier plate 23, and the insulating treatment is made on the surface of the flexible carrier plate 23 to ensure that the first conductive sheet 21 and the second conductive sheet 22 are not conductive, so that the conductive connection structure can work safely and effectively. In addition, the flexible carrier plate 23 is made of flexible material that can be rolled up, and the first conductive sheet 21 and the second conductive sheet 22 are made of conductive copper strips, so they have good ductility and can adapt to various complex shapes and curved surfaces. At the same time, the conductive component 2 can be rolled up for storage, which is convenient during transportation; when in use, the required length of the conductive component 2 can be cut according to the length of the support component 1, which is convenient and easy to operate.

[0054] As shown in the drawings, Figure 6 , Figures 8-11 As another embodiment of the technical solution, the adjacent

[0055] Two of the support components 11 are hinged by the connecting component 12. The connecting component 12 in the application uses a hinged connection mode to splice the plurality of support components 11 integrally. Since the support components 11 are hinged, the adjacent two support components 11 can be rotated to form a specific range of included angle B. At the same time, since the flexible carrier plate 23 and the first and second conductive sheets 21 and 22 can be bent to deform accordingly to adapt to the included angle B formed between the support components 11 at the hinged position. It should be noted that the above-mentioned rotating adjustment of the included angle B between the support components 11 is determined by the different rotating angle range specifications of the connecting component 12, and the rotating direction of the connecting component 12 is not unique. Different specifications of the hinged component need to be selected according to different application scenarios. Only one embodiment is shown in the illustration.

[0056] For example, in some design-sensitive display cabinets, the side view presents a polygonal outer contour line, and the display cabinet further includes a bottom plate connected with the layer plate 61. The side view of the bottom plate presents a polygonal outer contour line. The column body in the above-mentioned display cabinet presents a polygon to adapt to the outer contour of the display cabinet. At this time, the straight-line type support assembly 1 mentioned in the first embodiment cannot be connected with the above-mentioned display cabinet. Therefore, in the application, the support assembly 1 is hinged to adapt to the polygonal column body in the display cabinet. The conductive assembly 2 is integrally bent in the support assembly 1 to deform accordingly to adapt to the included angle formed between the support components 11 at the hinged position. Then, the functional load 63 distributed on the layer plate 61 of the display cabinet with a polygonal outer contour line is electrically connected with the same conductive assembly 2 to reduce the layout of the line and increase the flexibility of the conductive connection structure, thereby meeting the demand of installing the functional load 63 in such a display cabinet layout structure.

[0057] As shown in Figure 2 , Figure 3 , Figure 5 As a further technical solution of the embodiment, the flexible carrier plate 23 and the support component 11 are provided with a magnetic attraction component 5 for relatively fixed connection therebetween. The magnetic attraction component 5 includes a first magnetic pole sheet 51 distributed on the flexible carrier plate 23 and a second magnetic pole sheet 52 distributed on the support component 11. In the technical solution, the back surface of the flexible carrier plate 23 of the conductive assembly 2 is provided with the first magnetic pole sheet 51, and the upper surface of the groove 13 in the support assembly 1 is provided with the second magnetic pole sheet 52. The conductive assembly 2 and the support assembly 1 are connected by mutual attraction of the first magnetic pole sheet 51 and the second magnetic pole sheet 52. The above-mentioned first magnetic pole sheet 51 and the second magnetic pole sheet 52 can be fixed on the specific positions of the flexible carrier plate 23 and the support component 11, respectively, by the connection modes of adhesive tape, adhesive, and screw fastening. The application uses the connection mode of the magnetic attraction component 5 to connect the support assembly 1 and the conductive assembly 2, which is firm and reliable in installation and easy to operate in the installation process.

[0058] As shown in Figure 12As shown, the application also discloses a cabinet body comprising the above-mentioned conductive connection structure, the layer plate 61, the functional load 63 and the support body 62, the support assembly 1 is relatively fixedly connected to the support body 62, the power connection assembly 3 is relatively fixedly connected to the layer plate 61, and the functional load 63 is arranged on the layer plate 61 and electrically connected to an external power source through the power connection assembly 3. The layer plate 61 is provided with a hook portion 4 on each side, the support body 62 is provided with a plurality of hook holes 621 matched with the hook portions 4, and the power connection assembly 3 is arranged on the hook portion 4 on one side of the layer plate 61.

[0059] The cabinet body disclosed in the technical solution comprises at least one layer plate 61 and at least two support bodies 62 arranged in parallel with each other. The support assembly 1 is fixedly connected to the support body 62 through the through hole 15, and correspondingly, the conductive assembly 2 is arranged in parallel with the support body. The outer surface of the layer plate 61 or the functional load 63 arranged inside the layer plate 61 is arranged, and the layer plate 61 is also distributed with the power connection assembly 3 on the side edge, and the functional load 63 is electrically connected to an external power source through the power connection assembly 3. In order to adapt to different volumes of articles placed on the layer plate 61 and then adjust the height of the layer plate 61 as needed, the layer plate 61 is provided with a hook portion 4 on each side, and the power connection assembly 3 is arranged on the hook portion 4 on one side of the layer plate 61. A plurality of hook holes 621 distributed along the length direction of the support body are arranged on the support body, the hook portion 4 in the layer plate 61 is connected to the hook holes 621 in different positions by adjusting, so as to limit the layer plate 61 at a specific position of the support body 62, the power connection assembly 3 moves with the position of the hook portion 4, and is disconnected or electrically connected at different conductive positions of the conductive assembly 2.

[0060] The cabinet body disclosed in the application is provided with a conductive connection structure, the layer plate 61 can adjust the up-down position along the length direction of the support body and limit the layer plate 61 at a specific position, the power connection assembly 3 moves with the position of the hook portion 4, and is disconnected or electrically connected at different conductive positions of the conductive assembly 2, so as to flexibly adjust the height position between the layer plates 61; meanwhile, the functional load 63 is plug-and-play, and the operation is simple.

Claims

1. A conductive connection structure, characterized in that... include Support assembly (1), the support assembly (1) includes a plurality of support components (11), and a connecting component (12) for connecting two adjacent support components (11), the support components (11) having grooves (13) extending through both ends along their length direction, and A conductive component (2) is used for electrical connection with an external power source. It includes a flexible carrier plate (23), a first conductive sheet (21), and a second conductive sheet (22). The flexible carrier plate (23) is embedded in a groove (13) and integrally extends through two adjacent support components (11). The first conductive sheet (21) and the second conductive sheet (22) are spaced apart on the flexible carrier plate (23) on the side away from the bottom of the groove (13). The first conductive sheet (21) and the second conductive sheet (22) can deform accordingly as the flexible carrier plate (23) bends. It also includes... The power connection assembly (3) is used to connect to the functional load (63). The power connection assembly (3) includes a first conductive spring (31) and a second conductive spring (32), and the first conductive spring (31) and the second conductive spring (32) are electrically connected to the corresponding first conductive piece (21) and second conductive piece (22), respectively.

2. The conductive connection structure according to claim 1, characterized in that... The side of the support component (11) is provided with a number of openings (14), and two adjacent support components (11) are connected by a connecting component (12) and the openings (14).

3. The conductive connection structure according to claim 1, characterized in that... The two adjacent support members (11) are hinged by a connecting member (12).

4. The conductive connection structure according to claim 1, characterized in that... The surface of the flexible carrier plate (23) is coated with an insulating layer so that there is no electrical conductivity between the first conductive sheet (21) and the second conductive sheet (22).

5. A conductive connection structure according to claim 1 or 3, characterized in that... A magnetic attraction component (5) is provided between the flexible carrier plate (23) and the support component (11) to fix the two relatively.

6. A conductive connection structure according to claim 5, characterized in that... The magnetic attraction component (5) includes a first magnetic pole piece (51) distributed on the flexible carrier plate (23) and a second magnetic pole piece (52) distributed on the support component (11).

7. A conductive connection structure according to any one of claims 1 to 4 or 6, characterized in that... The conductive connection structure also includes a hook portion (4) for fixing the electrical connection component (3) so that the electrical connection component (3) and the conductive component (2) maintain elastic contact when connected.

8. A conductive connection structure according to claim 7, characterized in that... The support assembly (1) has a wire hole (53) for wires to pass through so that the first conductive plate (21) and the second conductive plate (22) can be electrically connected to an external power source through wires.

9. A cabinet, characterized in that... The device includes a conductive connection structure as described in claim 1, a shelf (61), a functional load (63), and a support body (62). The support component (1) is fixedly connected to the support body (62), the power connection component (3) is fixedly connected to the shelf (61), and the functional load (63) is disposed on the shelf (61) and electrically connected to an external power source through the power connection component (3).

10. A cabinet according to claim 9, characterized in that... The shelf (61) is provided with hook portions (4) on both sides, and the support body (62) is provided with a plurality of hook holes (621) that cooperate with the hook portions (4). The power connection component (3) is provided on the hook portion (4) on one side of the shelf (61).

Citation Information

Patent Citations

  • Conductive device of display cabinet

    CN215226380U