A mounting component for easy cable management of charging stations

CN224617459UActive Publication Date: 2026-08-11SHANDONG QICHENG ELECTRIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0003]然而,现有单一绕绳架的挂接方案存在明显缺陷:一方面,线缆缠绕后所有张力集中于单一绕绳架的固定区域,长期使用易导致线缆局部受力过载,不仅可能加速线缆外皮磨损、内部导线疲劳,还会缩短线缆整体使用寿命,增加维护成本;另一方面,当线缆长度较长时,即使缠绕在单一绕绳架上,线缆两端或部分缠绕段仍易因整体收纳长度不足而垂落至地面,既可能被过往行人或车辆踩踏、碾压造成损坏,引发漏电等安全隐患,也可能因拖地导致线缆沾染污渍,影响后续使用卫生与操作便捷性

Benefits of technology

[0015]The beneficial effects of this utility model are as follows: This utility model is a hanging component that facilitates the management of charging pile cables. Compared with the existing single rope winding frame, which concentrates cable tension in a fixed area, leading to wear of the cable sheath and fatigue of the internal conductors, this hanging component, through the parallel design of the first and second hanging frames, allows the cable to be wound in sections on the hanging rods of the two hanging frames. This evenly distributes the cable tension to multiple support points of the two hanging frames, avoiding local overload. This reduces stress damage to the cable during long-term storage, slows down the aging of the sheath and the fatigue rate of the conductors, and also reduces the risk of cable breakage due to local damage. This reduces the risk of leakage, extends the overall lifespan of the cable, reduces the maintenance cost of the charging pile, and meets the cable protection needs of high-frequency use scenarios of the charging pile. The second bracket can slide along the side of the charging pile body and be fixed in multiple positions through the cooperation of the mounting base and the first sliding groove. The distance between the second bracket and the first bracket can be flexibly adjusted according to the actual length of the cable. When the cable is long, increasing the distance between the two brackets can extend the overall storage length and prevent the ends or tangled sections of the cable from falling to the ground. When the cable is short, reducing the distance can achieve compact storage, reducing the risk of the cable getting dirty on the ground and being trampled or crushed.

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Abstract

This utility model relates to a mounting component for facilitating the organization of charging pile cables. Installed on one or both sides of the charging pile body, it includes a first bracket and a second bracket mounted parallel to the side of the charging pile body. Both the first and second brackets include vertical rods spaced apart from the charging pile body, with hanging rods vertically mounted at both ends. The hanging rods extend towards the charging pile body and are mounted thereon. The bottom side of the charging pile body with the first and second brackets has an outlet for cable extension. This design evenly distributes cable tension across multiple support points on the two brackets, preventing localized overload. It reduces stress damage during long-term cable storage, slows down sheath aging and conductor fatigue, reduces the risk of leakage due to localized cable damage, extends the overall cable lifespan, reduces charging pile maintenance costs, and meets the cable protection needs of high-frequency charging pile usage scenarios.
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Description

Technical Field

[0001] This utility model relates to the field of charging pile technology, specifically a hanging component that facilitates the organization of charging pile cables. Background Technology

[0002] With the rapid development of the electric vehicle industry, charging piles, as core supporting facilities, have been widely distributed in various public and private areas, and their usage frequency and coverage continue to increase. Charging cables, as a key component connecting the charging pile to the vehicle, typically have a certain length to adapt to different parking locations. Therefore, the storage and management of cables has become a crucial factor affecting the convenience and safety of charging pile use. Currently, most mainstream charging pile mounting components on the market adopt a single rope-winding frame structure, which stores the cable by winding it around a fixed rope frame. This structure is widely used due to its simple design and low cost.

[0003] However, the existing single-rope winding rack hanging scheme has obvious drawbacks: on the one hand, after the cable is wound, all the tension is concentrated in the fixed area of ​​the single rope winding rack. Long-term use can easily lead to local overload of the cable, which may not only accelerate the wear of the cable sheath and fatigue of the internal wires, but also shorten the overall service life of the cable and increase maintenance costs; on the other hand, when the cable is long, even if it is wound on a single rope winding rack, the two ends or part of the wound section of the cable may still fall to the ground due to insufficient overall storage length. This may be damaged by pedestrians or vehicles, causing safety hazards such as leakage, or the cable may become dirty due to dragging on the ground, affecting the hygiene and ease of operation in subsequent use. Utility Model Content

[0004] To address the technical problems mentioned above, this utility model provides a mounting component that facilitates the organization of charging pile cables.

[0005] The technical solution of this utility model is as follows: A mounting assembly for easy cable management of charging piles is installed on the side of the charging pile body, either on one or both sides of the charging pile body. It includes a first bracket and a second bracket installed on the side of the charging pile body, and the two are arranged in parallel. Both the first and second brackets include vertical bars spaced apart from the main body of the charging pile, and each of them has a hanging rod vertically installed at both ends. The hanging rods extend toward the main body of the charging pile and are installed with the main body of the charging pile. The charging pile body, which is equipped with the first and second mounting brackets, has an outlet on the bottom side for cable extension.

[0006] To facilitate cable winding and to allow the cable to be spread out, increasing the bottom drooping height after being wound onto the hanging rod, the first hanging bracket is fixedly installed on the side of the charging pile body, and the second hanging bracket is slidably installed on the side of the charging pile body, and can move away from or towards the first hanging bracket and be fixed to the side of the charging pile body in multiple positions.

[0007] The first mounting bracket is fixed in such a way that a first base is installed at the end of the two mounting rods of the first mounting bracket, and the first base is fixed to the side of the charging pile body by fasteners.

[0008] The second bracket is installed on the charging pile body in such a way that the two hanging rods of the second bracket are equipped with a second base, and the second base is slidably set with the side of the charging pile body. The second bracket has a connecting rod in the middle of the vertical rod, and a mounting base is installed at the end of the connecting rod. The mounting base is slidably disposed with the side of the charging pile body and can be fixed in multiple positions.

[0009] The mounting base is fixed in the following manner: a first sliding groove is provided on the side of the charging column body along the sliding direction of the mounting base, and the mounting base is slidably disposed with the first sliding groove. A first insertion hole is provided on the mounting base, and multiple sets of second insertion holes are provided in the first sliding groove along the length direction. The mounting base is fixed with the first sliding groove by passing a plug rod through the first insertion hole and the second insertion hole.

[0010] To improve the stability of the mounting base, the first socket is provided in two sets on the mounting base, with two sockets in each set parallel to the vertical rod, and two second sockets in each set corresponding to the first socket. The plug rod is U-shaped, with both ends able to pass through the two first and second plug holes in the same group, respectively.

[0011] To improve the stability of the second base sliding, a sliding plate is installed at one end of the second base near the charging pile body, and a second sliding groove for the sliding plate to slide is opened along the side of the charging pile body.

[0012] To further improve the stability of the second base, the upper and lower end faces of the slide plate are provided with limit plates, and the upper and lower ends of the second slide groove are integrally provided with limit grooves for the sliding of the limit plates.

[0013] In order to limit the cables wrapped around the first and second brackets, the vertical rods are integrally formed with limit rods at both ends, and the ends of the limit rods are tilted toward the side away from the charging pile body.

[0014] To improve cable protection, a soft sleeve is fitted over the outer end of the hanging rod.

[0015] The beneficial effects of this utility model are as follows: This utility model is a hanging component that facilitates the management of charging pile cables. Compared with the existing single rope winding frame, which concentrates cable tension in a fixed area, leading to wear of the cable sheath and fatigue of the internal conductors, this hanging component, through the parallel design of the first and second hanging frames, allows the cable to be wound in sections on the hanging rods of the two hanging frames. This evenly distributes the cable tension to multiple support points of the two hanging frames, avoiding local overload. This reduces stress damage to the cable during long-term storage, slows down the aging of the sheath and the fatigue rate of the conductors, and also reduces the risk of cable breakage due to local damage. This reduces the risk of leakage, extends the overall lifespan of the cable, reduces the maintenance cost of the charging pile, and meets the cable protection needs of high-frequency use scenarios of the charging pile. The second bracket can slide along the side of the charging pile body and be fixed in multiple positions through the cooperation of the mounting base and the first sliding groove. The distance between the second bracket and the first bracket can be flexibly adjusted according to the actual length of the cable. When the cable is long, increasing the distance between the two brackets can extend the overall storage length and prevent the ends or tangled sections of the cable from falling to the ground. When the cable is short, reducing the distance can achieve compact storage, reducing the risk of the cable getting dirty on the ground and being trampled or crushed. Attached Figure Description

[0016] The advantages and solutions of this application will become clear to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this invention.

[0017] In the attached diagram: Figure 1 This is a side view of the design. Figure 2 for Figure 1 Partial structural view; Figure 3 This is the rear view of the solution; Figure 4 for Figure 3 Partial structural view; Figure 5 A view of the existing patent structure; The components represented by the various reference numerals in the diagram are: 1. Charging pile body; 2. Vertical pole; 3. Hanging rod; 4. Cable outlet; 5. First base; 6. Fastener; 7. Second base; 8. Connecting rod; 9. Mounting seat; 10. First sliding groove; 11. First socket; 12. Second socket; 13. Plug rod; 14. Slide plate; 15. Second sliding groove; 16. Limiting plate; 17. Limiting groove; 18. Limiting rod; 19. Soft sleeve. Detailed Implementation

[0018] Exemplary embodiments of this disclosure will now be described in more detail with reference to the accompanying drawings.

[0019] Example As mentioned in the background section, existing charging piles typically use a single rope rack for cable storage, which has several drawbacks. On the one hand, a single rope rack results in uneven stress on the cable, which can accelerate cable wear. On the other hand, it cannot accommodate the length of the charging pile cable. When the cable is long, it can easily sag at the bottom and fall to the ground, posing a safety hazard. Therefore, the inventors have improved upon existing cable storage solutions by designing a new type of hanging component, which will be explained in detail below with reference to the illustrations.

[0020] This embodiment provides a mounting component that facilitates the organization of charging pile cables, combined with... Figure 1 and Figure 3 This system aims to solve the problems of concentrated cable tension and wear, and the risk of damage from long cables drooping, inherent in existing charging pile single-rope hanging solutions. Through a dual-hanger collaborative design and adjustable structure, it achieves uniform cable storage and safe protection, adapting to various charging pile usage scenarios in public and private locations. Its specific construction and assembly usage are as follows (see details). Figure 1 The mounting component can be installed on one or both sides of the charging pile body 1 according to the installation space and cable storage requirements of the charging pile body 1, mainly depending on the model of the charging pile which has one or two charging lines. The core consists of a first and a second bracket arranged in parallel. A cable outlet 4 is provided at the bottom side of the charging pile body 1. After the charging cable extends from the outlet 4, it can be wrapped around the first and second brackets for organized storage. For ease of illustration, the cable is not shown in the figure; the cable is an existing structure of the charging pile, such as the charging cable storage structure of a car charging pile disclosed in patent number CN221497699U, as follows: Figure 5 As shown, simply extend and wrap around; this will not affect the integrity of the solution.

[0021] Among them, combined Figure 2 The first bracket is a fixed structure, including a vertical rod 2 spaced apart from the side of the charging pile body 1. The vertical rod 2 is cylindrical, with horizontal hanging rods 3 welded vertically at both ends. The hanging rods 3 extend toward the side of the charging pile body 1, and a first base 5 is fixed at the end. The first base 5 is tightly fixed to the side of the charging pile body 1 by fasteners 6. The fasteners 6 are expansion bolts or self-tapping screws to ensure that the first bracket does not loosen during use.

[0022] Based on the above structure, the second bracket is an adjustable structure, which also includes a vertical rod 2 and two hanging rods 3 at both ends. The end of the hanging rod 3 is equipped with a second base 7. The end of the second base 7 near the charging pile body 1 is integrally formed with a sliding plate 14. The side of the charging pile body 1 at the corresponding position is provided with a second sliding groove 15 extending in the horizontal direction. The sliding plate 14 is embedded in the second sliding groove 15 and can slide along the sliding groove. In order to prevent the sliding plate 14 from falling out of the sliding groove, rectangular limiting plates 16 are also welded to the upper and lower end faces of the sliding plate 14. The upper and lower ends of the second sliding groove 15 are integrally provided with limiting grooves 17 that are adapted to the limiting plates 16. The limiting plates 16 are embedded in the limiting grooves 17 and can slide synchronously, forming a double anti-detachment structure.

[0023] In addition, combined Figure 3 and Figure 4 A horizontal connecting rod 8 is welded to the middle of the vertical rod 2 of the second bracket. A rectangular mounting base 9 is welded to the end of the connecting rod 8. The side of the charging pile body 1 is provided with a first sliding groove 10 that is adapted to the mounting base 9 along the sliding direction of the second bracket. The mounting base 9 is embedded in the first sliding groove 10 and can slide synchronously with the second bracket. Through the cooperation between the mounting base 9 and the first sliding groove 10, the stability of the second bracket during sliding is further improved, and the vertical rod 2 is prevented from tilting. In order to fix the second bracket in multiple positions, two sets of first insertion holes 11 are provided on the mounting base 9. Two insertion holes are provided in each set along the parallel direction of the vertical rod 2. A number of sets of second insertion holes 12 are evenly provided in the length direction of the first sliding groove 10. Two second insertion holes 12 are also provided in each set and are coaxial with the first insertion holes 11. When fixing, a U-shaped plug rod 13 is used. The two ends of the plug rod 13 pass through the two first plug holes 11 in the same group on the mounting base 9, and then insert into the corresponding second plug hole 12 in the first slide groove 10. Through the limiting effect of the plug rod 13, the mounting base 9 and the first slide groove 10 are firmly fixed, thereby locking the position of the second bracket. When adjustment is needed, simply pull out the U-shaped plug rod 13, push the second bracket along the first slide groove 10 and the second slide groove 15 to the target position, and then insert the plug rod 13 to complete the fixing. The operation is convenient and can adapt to the storage needs of cables of different lengths. Moreover, the plug rod 13 needs to penetrate into the charging pile body 1. The length can be set as needed to ensure that it will not fall off in the natural state. In addition, the side of the charging pile body 1 with the first slide groove 10 and the second slide groove 15 is made of a thick plate to ensure the opening of the slide groove and improve the stability of the overall structure.

[0024] To further improve the safety and stability of cable management, combined with Figure 4Both ends of the vertical rods 2 of the first and second hanging brackets are integrally formed with limiting rods 18. The ends of the limiting rods 18 are inclined towards the side away from the charging pile body 1, forming an outward-opening baffle structure, which can prevent the cables wrapped on the hanging rods 3 from slipping off from both ends. At the same time, the outer ends of the two hanging rods 3 are covered with soft sleeves 19. The soft sleeves 19 are made of wear-resistant rubber material and have anti-slip texture on the surface. On the one hand, this can prevent the cables from directly rubbing against the metal hanging rods 3 and causing wear on the outer sheath. On the other hand, it can increase the friction between the cables and the hanging rods 3 and prevent the cables from slipping during the hanging process.

[0025] In use, the charging cable extends from the outlet 4. Adjust the position of the second bracket according to the cable length. When the cable is short, move the second bracket closer to the first bracket so that the cable is evenly wrapped around the connecting rods 3 of the two brackets, reducing the stress on the single vertical rod 2. When the cable is long, first wrap the cable when the two brackets are close together. This design also reduces the length of wrapping for the operator and makes it easier to wrap and organize. Then move the second bracket away from the first bracket to increase the distance between the two brackets, spread the cable, extend the cable winding path, and prevent the cable from falling to the ground. Finally, fix the slide plate 14 to the side of the charging pile body 1 through the plug rod 13.

Claims

1. A mounting assembly for facilitating the organization of charging pile cables, which is installed on the side of the charging pile body (1), characterized in that, Installed on one or both sides of the charging pile body (1), including a first bracket and a second bracket installed on the side of the charging pile body (1), and the two are arranged in parallel. Both the first and second brackets include vertical rods (2) spaced apart from the charging pile body (1), and both ends of each bracket are vertically mounted with a hanging rod (3). The hanging rod (3) extends toward the charging pile body and is installed with the charging pile body (1). The charging pile body (1) with the first and second brackets installed has an outlet (4) for cable extension at the bottom side.

2. The mounting assembly for facilitating the organization of charging pile cables according to claim 1, characterized in that, The first bracket is fixedly installed on the side of the charging pile body (1), and the second bracket is slidably installed on the side of the charging pile body (1), and can move away from or close to the first bracket and be fixed to the side of the charging pile body (1) at multiple positions.

3. The mounting assembly for facilitating the organization of charging pile cables according to claim 2, characterized in that, The first base (5) is installed at the ends of the two hanging rods (3) of the first bracket, and the first base (5) is fixed to the side of the charging pile body (1) by fasteners (6).

4. The mounting assembly for facilitating the organization of charging pile cables according to claim 2, characterized in that, The two hanging rods (3) of the second bracket are equipped with a second base (7) at their ends, and the second base (7) is slidably disposed with respect to the side of the charging column body; A connecting rod (8) is provided in the middle of the vertical rod (2) of the second bracket, and a mounting seat (9) is installed at the end of the connecting rod (8). The mounting seat (9) is slidably disposed on the side of the charging pile body (1) and can be fixed in multiple positions.

5. A mounting assembly for facilitating the organization of charging pile cables according to claim 4, characterized in that, A first groove (10) is provided on the side of the charging column body along the sliding direction of the mounting base (9), and the mounting base (9) is slidably disposed with the first groove (10). A first socket (11) is provided on the mounting base (9), and multiple sets of second sockets (12) are provided in the first groove (10) along the length direction. The mounting base (9) and the first groove (10) are fixed by the plug rod (13) passing through the first socket (11) and the second socket (12).

6. The mounting assembly for facilitating the organization of charging pile cables according to claim 5, characterized in that, The first socket (11) is provided in two sets on the mounting base (9), with two in each set and parallel to the vertical rod (2). The second socket (12) in each set corresponds to two in the first socket (11). The plug rod (13) is U-shaped, with both ends able to pass through the two first plug holes (11) and the second plug hole (12) in the same group, respectively.

7. A mounting assembly for facilitating the organization of charging pile cables according to claim 4, characterized in that, The second base (7) has a sliding plate (14) installed at one end near the charging pile body (1), and a second sliding groove (15) for sliding the sliding plate (14) is provided along the side of the charging pile body (1).

8. A mounting assembly for facilitating the organization of charging pile cables according to claim 7, characterized in that, The upper and lower end faces of the slide plate (14) are provided with limiting plates (16), and the upper and lower ends of the second slide groove (15) are integrally provided with limiting grooves (17) for sliding of the limiting plates (16).

9. A mounting assembly for facilitating the organization of charging pile cables according to claim 1, characterized in that, Both ends of the vertical rod (2) are integrally formed with limiting rods (18), and the ends of the limiting rods (18) are inclined toward the side away from the charging pile body (1).

10. A mounting assembly for facilitating the organization of charging pile cables according to claim 1, characterized in that, The outer end of the hanging rod (3) is fitted with a soft sleeve (19).

Citation Information

Patent Citations

  • Charging cable storage structure of automobile charging pile

    CN221497699U