Anti-vibration outdoor energy storage connector

By introducing magnetic pole repulsion features and suspension anti-vibration components into the outdoor energy storage connector, combined with a tightening structure, the problem of unstable connection of the energy storage connector in a vibration environment is solved, a stable connection between the terminal block and the board end socket is achieved, and the reliability of outdoor use is enhanced.

CN224288759UActive Publication Date: 2026-05-26金锚电力控股有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
金锚电力控股有限公司
Filing Date
2025-05-21
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Outdoor energy storage connectors are prone to connection instability due to vehicle vibration, resulting in loose wiring or detachment, which affects the reliability of electrical connections.

Method used

An anti-vibration outdoor energy storage connector was designed. It adopts the repulsive characteristics of the same magnetic poles and the suspension anti-vibration component, combined with a tightening structure, to enhance the connection stability between the terminal block and the end socket. The terminal block is suspended by the magnetic pole repulsion characteristics, and a tightening ring and compression pad are set on the outside of the end socket to increase the connection firmness.

Benefits of technology

It effectively protects the terminal block for stable use in vibration environments, reduces loosening or desoldering of wiring, and improves the outdoor performance of connectors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an anti-vibration outdoor energy storage connector, which comprises a wire end plug and a plate end socket, a wiring board is arranged in the wire end plug, a suspension anti-vibration piece is arranged in the wire end plug, a homopolar box of which the same magnetic poles repel each other is clamped in the middle of the suspension anti-vibration piece, the wiring board is arranged in the homopolar box, and the suspension anti-vibration piece is arranged in the suspension anti-vibration piece. The top of the suspension anti-vibration part is provided with a limiting fitting part which is used for anti-vibration treatment of the wiring board and the connecting board end socket, the outer side of the board end socket is provided with a screwing groove, a plurality of extrusion pads are arranged between the screwing groove and the board end socket in a penetrating mode, the suspension anti-vibration part comprises a positioning plate arranged on the line end plug, and the positioning plate is provided with a positioning groove. A supporting seat is arranged on the side, away from the plate end socket, of the positioning plate, a homopolar plate is arranged on one side of the supporting seat, the homopolar box is located in the middle of the supporting seat, and the limiting attaching piece is located on the upper side of the supporting seat. The outdoor energy storage connector is provided with an anti-vibration structure, and stable use of the wiring board can be protected.
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Description

Technical Field

[0001] This utility model relates to a connector, and more particularly to a vibration-resistant outdoor energy storage connector. Background Technology

[0002] Energy storage connectors are critical electronic components used in energy storage systems, primarily responsible for connecting and transmitting electrical energy, ensuring reliable and safe electrical connections between various components of the energy storage system. It is necessary to carefully verify the technical parameters and standards for the specific application scenario. Energy storage connectors consist of a board-side socket on the electrical device and a wire-side plug that connects to the cable and mates with the board-side socket. The socket uses screws to assemble the rubber core within the socket onto the electrical device, and the plug connection enables the transmission of electrical energy through the connection of its conductive terminals to external devices.

[0003] Currently, the operation and maintenance of outdoor power grid equipment utilizes energy storage connectors for plugging and unplugging connections. These connectors, used in conjunction with electrical and testing equipment, facilitate the transmission of electricity to the grid. However, when used outdoors, vibrations from vehicles can affect the stability of the connections between the connector structures, leading to loosening or desoldering of internal wiring and impacting the accuracy of the connected electrical equipment. Therefore, it is necessary to design an outdoor energy storage connector with a vibration-resistant structure to ensure stable operation of the terminal block. Utility Model Content

[0004] In view of the above-mentioned problems in the existing technology, the purpose of this utility model is to provide a vibration-resistant outdoor energy storage connector, which realizes that the outdoor energy storage connector has a vibration-resistant structure and can protect the connection board for stable use.

[0005] To achieve the above objectives, the technical solution of this utility model is as follows:

[0006] An anti-vibration outdoor energy storage connector includes a wire-end plug and a board-end socket. The wire-end plug is provided with a wiring board and a suspended anti-vibration component. A same-pole box with repulsive magnetic poles is sandwiched in the middle of the suspended anti-vibration component, and the wiring board is installed in the same-pole box. A limiting fitting is provided on the top of the suspended anti-vibration component for anti-vibration treatment of the wiring board and the board-end socket.

[0007] Preferably, a tightening groove is provided on the outer side of the plate end socket, and a plurality of compression pads are provided through the tightening groove and the plate end socket. A tightening ring is threadedly connected to the outer side of the tightening groove.

[0008] Preferably, a plurality of compression pads are arranged in a ring on the plate end socket, the compression pads being made of elastic material, and a plurality of tightening strips being provided on the inner side of the plate end socket.

[0009] Preferably, the suspension vibration damping component includes a positioning plate disposed on the line end plug, a support is disposed on the side of the positioning plate away from the plate end socket, a co-electrode plate is disposed on one side of the support and the co-electrode box is located in the middle of the support, and the limiting fitting component is located on the upper side of the support.

[0010] Preferably, the positioning plate has a straight rod on the side near the wire end plug, and the end of the straight rod has two arc-shaped branch rods.

[0011] Preferably, the same electrode plate has a platform-shaped box structure, a limiting frame is provided on the side of the same electrode plate near the same electrode box, and a connecting bolt is provided between the same electrode plate and the support for the suspension and limiting of the same electrode box.

[0012] Preferably, the limiting fitting component includes an adjusting bolt that passes through the wire end plug, a limiting plate is provided at the lower end of the adjusting bolt, and a snap-fit ​​groove that passes through the support is provided at the lower end of the limiting plate, and the adjusting bolt is threadedly connected to the wire end plug.

[0013] Preferably, magnets are provided on both the positioning plate and the same pole plate. The same pole box includes an insulating box and a hollow cover. The outer sides of the insulating box and the hollow cover are fixed with same pole pieces with the same magnetic poles, and the magnets on the positioning plate and the same pole plate have the same magnetic poles on the opposite side.

[0014] Compared with existing technologies, the vibration-resistant outdoor energy storage connector provided by this utility model has a vibration-resistant structure. The repulsive characteristics of the same magnetic poles protect the terminal block for stable use. By setting the same pole box in the terminal block, a magnetic structure can be added to the outside of the terminal block. Then, by using a suspended vibration-resistant component in the line plug, it can cooperate with the same pole box, suspending the same pole box in the line plug. This reduces the damage to the terminal block and the terminal socket caused by external forces, achieving vibration resistance, preventing loosening or desoldering of the wiring on the terminal block, increasing the connection stability between the terminal block and the terminal socket, and improving the connection effect of the energy storage connector in outdoor use.

[0015] Furthermore, the multiple compression ends that are arranged through the board-end socket can be tightened by screwing the screw ring towards the multiple ring-shaped compression ends, thus attaching the multiple compression ends to the outer surface of the connecting cable, increasing the connection strength between the board-end socket and the cable, and allowing for flexible connection between the board-end socket and the cable. In addition, the multiple tightening strips arranged inside the board-end socket can easily increase the roughness between the cable and the board-end socket, improving the stability of the board-end socket circuit connection, and providing favorable conditions for the stable transmission of energy storage connectors outdoors.

[0016] It should be understood that the general descriptions and details herein are exemplary and illustrative only and are not intended to limit this disclosure.

[0017] This application provides an overview of various implementations or exemplary embodiments of the technology described in this disclosure, and is not a full disclosure of the entire scope or all features of the disclosed technology. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the overall structure of the vibration-resistant outdoor energy storage connector of this utility model;

[0019] Figure 2 This is a partial exploded view of the plug at the center line end of the vibration-resistant outdoor energy storage connector of this utility model.

[0020] Figure 3 This is a schematic diagram of the connection structure between the positioning plate and the wire end plug in the vibration-resistant outdoor energy storage connector of this utility model.

[0021] Figure 4 This is an exploded view of the suspended vibration-damping component in the vibration-resistant outdoor energy storage connector of this utility model;

[0022] Figure 5 This is an exploded view of the same-pole box in the vibration-resistant outdoor energy storage connector of this utility model;

[0023] Figure 6 This is an exploded view of the structure of the plate-end socket of the vibration-resistant outdoor energy storage connector of this utility model.

[0024] Key reference numerals:

[0025] 1. Plug at the end of the wire; 11. Terminal block; 2. Socket at the end of the block; 21. Tightening groove; 211. Extrusion pad; 22. Tightening strip; 23. Tightening ring; 3. Suspension anti-vibration component; 31. Positioning plate; 311. Straight rod; 312. Arc-shaped branch rod; 32. Support; 33. Same pole plate; 331. Limiting frame; 34. Limiting fitting component; 341. Limiting plate; 343. Adjusting bolt; 4. Same pole box; 41. Insulation box; 42. Hollowed-out cover; 43. Same pole piece. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the embodiments of this disclosure will be described in more detail below with reference to the accompanying drawings. Note: The described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the described embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.

[0027] As attached Figure 1 To be continued Figure 6As shown, the vibration-resistant outdoor energy storage connector provided in this embodiment of the present invention uses the repulsive characteristics of the same magnetic poles to suspend the terminal block 11 in the line plug 1, thus protecting the terminal block 11 and increasing its stability. Currently, energy storage connectors include a line plug 1 and a plate socket 2. The line plug 1 is used in conjunction with the plate socket 2. The line plug 1 connects to the conductive end and external equipment, while the plate socket 2 connects to the electrical equipment. The terminal block 11 is housed in the line plug 1 and can be connected to the plate socket 2 or to external equipment. By providing a suspended vibration-damping element 3 in the line plug 1 of the energy storage connector, a suspended vibration-damping structure can be added to the connector. Furthermore, a common pole box 4 is sandwiched in the middle of the suspended vibration-damping element 3, and the terminal block 11 is installed in the common pole box 4. The common pole box 4 is located on the opposite side of the suspended vibration-damping element 3. The repulsive state of the same magnetic poles creates a gap between the same pole box 4 and the suspended vibration damping component 3, reducing the contact and force transmission between the external structure and the terminal block 11, thus achieving vibration damping and facilitating heat dissipation of the terminal block 11. At the same time, a limiting fitting component 34 can be set on the top of the suspended vibration damping component 3. The pressure of the limiting fitting component 34 on the same pole box 4 can limit the top of the same pole box 4. The lower end of the same pole box 4 can be fitted with an elastic material such as sponge rubber and placed on the line plug 1 for upper and lower limiting of the outside of the same pole box 4, providing vibration damping for the terminal block 11 and the connection plate end socket 2.

[0028] Among them, the energy storage connector can also increase the connection strength between the board-end socket 2 and the electrical equipment, such as Figure 1 and 6 As shown, in some embodiments, a tightening groove 21 can be formed on the outer side of the plate end socket 2. The tightening groove 21 has an annular structure, and multiple compression pads 211 are disposed through the tightening groove 21 and the plate end socket 2. One side of the compression pad 211 extends to the inner side of the plate end socket 2. Then, a tightening ring 23 is threaded to the outer side of the tightening groove 21. The tightening ring 23 has a frustum-shaped tubular structure. Through the tightening treatment of the tightening ring 23 and the tightening groove 21, the multiple compression pads 211 can be pressed against the inner side of the plate end socket 2, so that the multiple compression ends 211 are in contact with the wiring of the connected electrical equipment, thereby achieving a stable connection between the energy storage connector and the electrical equipment. This is very beneficial for improving the vibration damage of outdoor vehicles.

[0029] Furthermore, such as Figure 6As shown, in order to increase the uniformity of the compression of the connecting lines by the compression pad 211, multiple compression pads 211 can be arranged in a ring on the board end socket 2 to ensure stable compression of the compression pads 211. The compression pads 211 can be made of elastic material. In order to increase the connection between the electrical equipment and the energy storage connector, multiple tightening strips 22 can be provided on the inner side of the board end socket 2 to increase the roughness of the inner side of the board end socket 2. This makes it convenient for the board end socket 2 to use multiple compression pads and multiple tightening strips 22 to press the electrical equipment together. When the board end socket 2 is disassembled, the tightening or loosening of the tightening ring 23 can be used to disassemble the board end socket 2.

[0030] It is worth noting that, in order for the suspended vibration damping component 3 to achieve vibration damping for the same-pole box 4, the same-pole box 4 can be suspended and set within the suspended vibration damping component, such as... Figure 2 and 3 As shown, in some embodiments, the suspension anti-vibration component 3 includes a positioning plate 31 disposed on the line end plug 1. The positioning plate 31 can not only limit the position of the suspension anti-vibration component 3, but also facilitate the through connection of the plate end socket 2. Then, a support 32 is disposed on the side of the positioning plate 31 away from the plate end socket 2, which serves as the suspension frame of the same pole box 4. At the same time, a same pole plate 33 is disposed on one side of the support 32. The same pole box 4 is located in the middle of the support 32 and between the positioning plate 31 and the same pole plate 33, so as to realize the suspension of the same pole box 4 between the suspension anti-vibration components 3. In order to further ensure the stable suspension of the same pole, a limiting fitting component 34 can be disposed on the upper side of the support 32 and the same pole box 4 to limit the vertical direction of the same pole box 4. The plate end socket 2 can be inserted through the same pole box 4. The same pole box 4 is also provided with a wire outlet to facilitate the connection of the wires in the terminal block 11, which provides favorable conditions for the use of the line end plug 1 and is very beneficial for the use of energy storage connectors.

[0031] The positioning plate 31 can be fixed on the line end plug 1, such as Figure 3 As shown, in some embodiments, a straight rod 311 can be provided on the side of the positioning plate 31 near the wire end plug 1, and then two arc-shaped branch rods 312 can be provided at the end of the straight rod 311. The straight rod 311 is vertically arranged on the positioning plate 31, and the two arc-shaped branch rods 312 are symmetrical. Both the straight rod 311 and the arc-shaped branch rods 312 are made of elastic metal material. When installing the positioning plate 31, the arc-shaped branch rods 312 can be welded or passed through the wire end plug 1 to fix the position of the positioning plate 31. The two symmetrically distributed arc-shaped branch rods 312 are used to provide shock absorption and protection for the positioning plate 31.

[0032] Furthermore, in some embodiments, in order to suspend the same-pole box 4, such as... Figure 2 and 4As shown, the same electrode plate 33 can be configured as a platform-shaped box structure. A limiting frame 331 is provided on the side of the same electrode plate 33 near the same electrode box 4. The limiting frame 331 can be made of magnetic material to facilitate the limiting treatment of the same electrode box 4 around its perimeter. Then, when installing the same electrode plate 33, a connecting bolt can be provided between the same electrode plate 33 and the support 32. By driving the same electrode plate 33 to tighten towards the same electrode box 4 through the connecting bolt, the distance between the same electrode plate 33 and the same electrode box 4 can be shortened, so that the same electrode box 4 can be stably suspended in the suspension limiting component, thereby realizing the suspension limiting of the same electrode box 4.

[0033] In some embodiments, in order to limit the vertical movement of the same-pole box 4, such as... Figure 2 and 4 As shown, the limiting fitting 34 can be provided with an adjusting bolt 343 through the line plug 1. The lower end of the adjusting bolt 343 can extend into the interior of the line plug 1. Then, a limiting plate 341 is provided at the lower end of the adjusting bolt 343. The lower end of the limiting plate 341 has a snap-in groove that penetrates the support 32. The adjusting bolt 343 is threadedly connected to the line plug 1. The lower end of the adjusting bolt 343 is rotatably connected to the limiting plate 341. When the limiting fitting 34 is in use, the adjusting bolt 343 can be rotated by rotating the bolt head of the external adjusting bolt 343 to screw the adjusting bolt 343 into the line plug 1. This causes the limiting plate 341 to pass through the snap-in groove, penetrate the support plate, and then attach to the same pole box 4. The use of silicone or rubber material of the limiting plate 341 provides shock absorption and cushioning, thereby achieving upper and lower limit of the same pole box 4 and ensuring the stability of the same pole box 4 during levitation.

[0034] Furthermore, such as Figure 5 As shown, in order to enable the same-pole box 4 to be used in the suspension anti-vibration component 3, magnets are provided on both the positioning plate 31 and the same-pole plate 33. Then, the same-pole box 4 includes an insulating box 41 and a hollow cover 42. Same-pole pieces 43 are provided on the outer side of the insulating box 41 and the hollow cover 42. The same-pole pieces 43 are also made of magnetic material. Taking advantage of the characteristic that like poles of the two magnetic poles on the magnet repel each other and unlike poles attract each other, the magnetic poles of the two same-pole pieces 43 on the outer side are the same. Furthermore, the magnets on the positioning plate 31 and the same-pole plate 33 are the same as the magnetic poles on the opposite side of the same-pole pieces 43. This provides favorable conditions for the same-pole box 4 to be used in the suspension limiting component, thereby realizing the anti-vibration function of the outdoor energy storage connector. Then, the use of the insulating box 41 and the hollow cover 42 facilitates the heat dissipation of the wiring board 11 without affecting the use of the wiring on the wiring board. This is very beneficial for the accurate use of the outdoor energy storage connector.

[0035] Of course, the above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.

Claims

1. A vibration-resistant outdoor energy storage connector, comprising a wire-end plug (1) and a board-end socket (2), wherein a terminal block (11) is provided in the wire-end plug (1), characterized in that: The line plug (1) is provided with a suspension anti-vibration component (3), and a same pole box (4) with the same magnetic poles repelling each other is sandwiched in the middle of the suspension anti-vibration component (3). The wiring board (11) is installed in the same pole box (4). The top of the suspension anti-vibration component (3) is provided with a limiting fitting component (34) for the anti-vibration treatment of the wiring board (11) and the connection plate end socket (2).

2. The vibration-resistant outdoor energy storage connector as described in claim 1, characterized in that, The outer side of the plate end socket (2) is provided with a tightening groove (21), and multiple compression pads (211) are provided through the tightening groove (21) and the plate end socket (2). A tightening ring (23) is threadedly connected to the outer side of the tightening groove (21).

3. The vibration-resistant outdoor energy storage connector as described in claim 2, characterized in that, Multiple compression pads (211) are arranged in a ring on the plate end socket (2). The compression pads (211) are made of elastic material. Multiple tightening strips (22) are provided on the inner side of the plate end socket (2).

4. The vibration-resistant outdoor energy storage connector as described in claim 1, characterized in that, The suspension vibration damping component (3) includes a positioning plate (31) disposed on the line end plug (1), a support (32) is disposed on the side of the positioning plate (31) away from the plate end socket (2), a same pole plate (33) is disposed on one side of the support (32) and the same pole box (4) is located in the middle of the support (32), and the limiting fitting component (34) is located on the upper side of the support (32).

5. The vibration-resistant outdoor energy storage connector as described in claim 4, characterized in that, The positioning plate (31) has a straight rod (311) on the side near the wire end plug (1), and the end of the straight rod (311) has two arc-shaped branch rods (312).

6. The vibration-resistant outdoor energy storage connector as described in claim 4, characterized in that, The same plate (33) has a platform-shaped box structure. A limit frame (331) is provided on the side of the same plate (33) near the same box (4). A connecting bolt is provided between the same plate (33) and the support (32) for the suspension limit of the same box (4).

7. The vibration-resistant outdoor energy storage connector as described in claim 6, characterized in that, The limiting fitting component (34) includes an adjusting bolt (343) that passes through the line end plug (1). The lower end of the adjusting bolt (343) is provided with a limiting plate (341). The lower end of the limiting plate (341) is provided with a slot that passes through the support (32). The adjusting bolt (343) is threadedly connected to the line end plug (1).

8. The vibration-resistant outdoor energy storage connector as described in claim 7, characterized in that, Magnets are provided on both the positioning plate (31) and the same pole plate (33). The same pole box (4) includes an insulating box (41) and a hollow cover (42). The same pole pieces (43) with the same magnetic poles are fixed on the outside of both the insulating box (41) and the hollow cover (42). The magnets on the positioning plate (31) and the same pole plate (33) have the same magnetic poles on the opposite side of the same pole pieces (43).