Charging cable management assembly and charging pile

By designing a charging cable management component and using a suspension base and elastic elements to adjust the height of the cable clamp, the problem of charging pile cables dragging on the ground was solved, reducing wear, dirt, and safety risks, and improving user experience and assembly consistency.

WO2026102934A1PCT designated stage Publication Date: 2026-05-21SUNGROW CHARGING TECH CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
SUNGROW CHARGING TECH CO LTD
Filing Date
2025-02-21
Publication Date
2026-05-21

AI Technical Summary

Technical Problem

The charging station's charging cable drags on the ground for extended periods during use, leading to wear, dirt, safety risks, and space occupation.

Method used

Design a gun cable management component, including a suspension base, an elastic element, a cable clamp, and a connector. The height of the cable clamp is adjusted by the deformation of the elastic element to suspend the gun cable and prevent it from dragging on the ground. The stability and compatibility of the component are improved by the adapter and limiting element.

Benefits of technology

It effectively reduces wire wear, dirt, and safety risks, improves user experience, saves space, and enhances component assembly consistency and compatibility.

✦ Generated by Eureka AI based on patent content.

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Abstract

A charging cable management assembly and a charging pile. The charging cable management assembly comprises: a suspension base (110) fixedly arranged on a charging pile main unit; an elastic member (120) having a first state in which elastic deformation has not occurred and a second state in which elastic deformation has occurred; a cable clamping member (140) configured to clamp part of a charging cable (200); and a connecting member (130) having a first end portion connected to the elastic member (120), and a second end portion connected to the cable clamping member (140), wherein when the elastic member (120) is in the first state and in the second state, the height of the cable clamping member (140) relative to the ground is different.
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Description

Gun line management components and charging piles

[0001] This application claims priority to Chinese Patent Application No. 2024227572944, filed on November 12, 2024, entitled "Gun Line Management Component and Charging Pile", the entire contents of which are incorporated herein by reference. Technical Field

[0002] This application relates to the field of charging equipment, and in particular to a charging cable management component and a charging pile. Background Technology

[0003] Current charging stations often have long charging cables that drag on the ground for extended periods, causing frequent friction between the cable and the floor. This prolonged dragging of the cable can lead to surface wear and tear, posing a safety risk over time. Summary of the Invention

[0004] This application provides a charging cable management component and a charging pile, which reduces the phenomenon of charging cables dragging on the ground and improves the safety of the charging pile for long-term use.

[0005] In a first aspect, embodiments of this application provide a charging cable management component, comprising: a suspension base fixedly mounted on a charging pile host; an elastic member having a first state without elastic deformation and a second state with elastic deformation; a cable clamp for clamping a portion of the charging cable; and a connector having a first end for connecting to the elastic member and a second end for connecting to the cable clamp; wherein the cable clamp is at a different height relative to the ground when the elastic member is in the first state and the second state.

[0006] According to the foregoing embodiments of the first aspect of this application, the gun wire management assembly further includes a first adapter, which is connected between the elastic member and the connector.

[0007] According to any of the foregoing embodiments of the first aspect of this application, the outer periphery of the first adapter is provided with a first abutting portion, and when the first adapter connects the elastic member and the connecting member, the elastic member and the connecting member abut against both sides of the first abutting portion.

[0008] According to any of the foregoing embodiments of the first aspect of this application, the first adapter has a first mating portion for connecting the elastic member, the first mating portion being threadedly engaged with the elastic member, and the first mating portion being provided with a first anti-reverse groove.

[0009] According to any of the foregoing embodiments of the first aspect of this application, the gun wire management assembly further includes a second adapter connected between the elastic member and the suspension base.

[0010] According to any of the foregoing embodiments of the first aspect of this application, the outer periphery of the second adapter is provided with a second abutment portion, and when the second adapter connects the elastic member to the suspension base, the elastic member and the suspension base abut against opposite sides of the second abutment portion along the axial direction.

[0011] According to any of the foregoing embodiments of the first aspect of this application, the second adapter has a second mating portion for connecting the elastic member, the second mating portion being threadedly engaged with the elastic member, and the second mating portion being provided with a second anti-reverse groove.

[0012] According to any of the foregoing embodiments of the first aspect of this application, the cable clamp includes a first housing and a second housing, the first housing and the second housing being installed to form a receiving space, and a portion of the gun wire being clamped within the receiving space.

[0013] According to any of the foregoing embodiments of the first aspect of this application, the gun wire management component further includes at least one limiting member, which is clamped between the inner wall of the cable clamp and the outer wall of the gun wire.

[0014] According to any of the foregoing embodiments of the first aspect of this application, the outer peripheral surface of the limiting member is provided with a limiting groove, and the inner wall of the cable clamping member is provided with a limiting rib that cooperates with the limiting groove.

[0015] According to any of the foregoing embodiments of the first aspect of this application, the limiting rib has a plurality of snap-fit ​​portions along the extension direction of the cable clamp, and the limiting groove can engage with the plurality of snap-fit ​​portions.

[0016] Secondly, embodiments of this application provide a charging pile, which includes: a charging pile host fixed to the ground; a charging gun; a charging cable connected to the charging gun and the charging pile host respectively; and a charging cable management component according to any of the foregoing embodiments of the first aspect of this application, wherein the cable clamp of the charging cable management component clamps a portion of the charging cable.

[0017] According to an embodiment of this application, the charging cable management component is mounted on the charging pile host via a suspension base. The component further includes an elastic element, a cable clamp, and a connector. The cable clamp is used to clamp a portion of the charging cable. The elastic element has a first state without elastic deformation and a second state with elastic deformation. The height of the cable clamp relative to the ground differs between the first and second states. For example, the cable clamp is higher relative to the ground in the first state. When the charging gun is not connected to an external device to be charged, the elastic element is in the first state, raising the cable clamped by the cable clamp relative to the ground, thus keeping the clamped cable away from the ground. Most of the cable segment is also suspended relative to the ground under the traction of the cable clamp, preventing the cable from dragging on the ground when the charging pile is not connected to a device to be charged. This alleviates problems such as cable surface dirt, cable wear, leakage safety risks, cable crushing, and cable tangling caused by long-term cable dragging. The gun wire management assembly of this application embodiment includes a connector between the elastic element and the cable clamp. The first end of the connector is used to connect to the elastic element, and the second end is used to connect to the cable clamp. By providing the connector, various sizes of elastic elements and cable clamps can be connected, thereby improving the compatibility of the gun wire management assembly. Furthermore, since the connector has a certain length, the height of the cable clamp above the ground can be adjusted, facilitating adaptation to different suspension height requirements. That is, connectors, elastic elements, and cable clamps of corresponding lengths can be connected according to different suspension height requirements, making the total length or total height of the gun wire management assembly adjustable. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0019] Figure 1 is a perspective view of an embodiment of the gun wire management component of this application;

[0020] Figure 2 is an exploded perspective view of an embodiment of the gun wire management component of this application;

[0021] Figure 3 is a perspective view of the first adapter in one embodiment of the gun wire management component of this application;

[0022] Figure 4 is a cross-sectional schematic diagram of the first adapter in one embodiment of the gun wire management component of this application;

[0023] Figure 5 is a cross-sectional schematic diagram of an embodiment of the wire management component of this application;

[0024] Figure 6 is a magnified view of a portion of region A in Figure 5;

[0025] Figure 7 is a perspective view of the second adapter in one embodiment of the gun wire management component of this application;

[0026] Figure 8 is a cross-sectional schematic diagram of the second adapter in one embodiment of the gun wire management component of this application;

[0027] Figure 9 is an exploded perspective view of the cable clamp in one embodiment of the cable management component of this application;

[0028] Figure 10 is an exploded perspective view of the limiting member in one embodiment of the gun wire management component of this application;

[0029] Figure 11 is an exploded perspective view of the connector in one embodiment of the gun wire management component of this application.

[0030] Explanation of reference numerals in the attached drawings: 100-Wire management assembly; 110-Suspension base; 120-Elastic element; 130-Connector; 131-Positioning groove; 140-Cable clamp; 141-First housing; 142-Second housing; 143-Limiting rib; 1431-Snap-fit ​​part; 144-Positioning protrusion; 150-First adapter; 151-First abutment part; 152-First mating part; 1521-First anti-reverse groove; 160-Second adapter; 161-Second abutment part; 162-Second mating part; 1621-Second anti-reverse groove; 170-Limiting element; 171-First sub-limiting element; 172-Second sub-limiting element; 173-Limiting groove; 200-Wire.

[0031] The purpose, features, and advantages of this application will be further explained in conjunction with the embodiments and the accompanying drawings. Detailed Implementation

[0032] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0033] It should be noted that all directional indications in the embodiments of this application, such as up, down, left, right, front, back, etc., are only used to explain the relative positional relationship and movement of the components in a specific posture as shown in the attached figure. If the specific posture changes, the directional indication will also change accordingly.

[0034] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. Additionally, the technical solutions of the various embodiments can be combined with each other, but only on the basis of being achievable by those skilled in the art. When the combination of technical solutions is contradictory or impossible to implement, such a combination of technical solutions should be considered non-existent and not within the scope of protection claimed in this application.

[0035] In related technologies, the charging pile's cable is quite long, and during use, the cable is often dragging on the ground. This prolonged dragging can cause several problems. For example, the cable surface easily gets dirty from constant friction with the ground, affecting the user experience; prolonged dragging can cause scratches and damage to the cable surface, potentially leading to electrical leakage over time, thus posing a safety hazard; and because the cable is heavy, if not properly organized, it will take up parking space and can easily cause wire tangling or pressing during parking, creating safety hazards for drivers and pedestrians.

[0036] This application provides a charging cable management component that can be connected to the charging cable of a charging pile. Figures 1 and 2 are a perspective view and an exploded perspective view of an embodiment of the charging cable management component of this application, respectively.

[0037] The cable management assembly 100 includes a suspension base 110, an elastic element 120, a cable clamp 140, and a connector 130. The suspension base 110 is fixedly mounted on the charging pile host. The elastic element 120 has a first state without elastic deformation and a second state with elastic deformation. The cable clamp 140 is used to clamp a portion of the charging cable 200. The first end of the connector 130 is used to connect to the elastic element 120, and the second end of the connector 130 is used to connect to the cable clamp 140. The cable clamp 140 is at a different height relative to the ground when the elastic element 120 is in the first state and the second state.

[0038] According to an embodiment of this application, a cable management component 100 is mounted on a charging pile host via a suspension base 110. The cable management component 100 further includes an elastic element 120, a cable clamping element 140, and a connector 130. The cable clamping element 140 is used to clamp a portion of the charging cables 200. The elastic element 120 has a first state without elastic deformation and a second state with elastic deformation. The height of the cable clamping element 140 relative to the ground differs between the first and second states. For example, in the first state, the cable clamping element 140 is higher relative to the ground. When the charging gun is not connected to an external device to be charged, the elastic element 120 is in the first state, and lifts the charging gun wire 200 held by the cable clamp 140 relative to the ground, so that the clamped charging gun wire 200 is away from the ground. Most of the wire segment of the charging gun 200 is also suspended relative to the ground under the traction of the cable clamp 140. This prevents the charging gun wire 200 from dragging on the ground when the charging pile is not connected to the device to be charged, thereby alleviating problems such as dirt on the surface of the charging gun wire, wear and tear of the charging gun wire, leakage safety risks, crushing of the charging gun wire, and tangling of the charging gun wire caused by the charging gun dragging on the ground for a long time.

[0039] The gun wire management assembly 100 of this application embodiment includes a connector 130 between the elastic member 120 and the cable clamp 140. The first end of the connector 130 is used to connect to the elastic member 120, and the second end is used to connect to the cable clamp 140. By providing the connector 130, various sizes of elastic members 120 and cable clamps 140 can be compatiblely connected, thereby improving the assembly compatibility of the gun wire management assembly 100. Furthermore, since the connector 130 has a certain length, the height of the cable clamp 140 above the ground can be adjusted, facilitating adaptation to different suspension height requirements. That is, the connector 130, elastic member 120, and cable clamp 140 of corresponding lengths can be connected according to different suspension height requirements, making the total length or total height of the gun wire management assembly 100 adjustable.

[0040] The elastic element 120 may be a spring; in this embodiment, the elastic element 120 is a tension spring. In other embodiments, the elastic element 120 may include other elastic structures or components with elastic force, such as a swing arm assembly including an elastic structure.

[0041] In some embodiments, the cable clamp 140 is at a first height relative to the ground in a first state, and at a second height relative to the ground in a second state, with the first height being higher than the second height. For example, the elastic element 120 is a tension spring. In the first state, the tension spring is in an undeformed state, extending upwards from the suspension base 110 away from the ground, causing the cable clamp 140 to lift the charging cable 200 relative to the ground. In the second state, the tension spring undergoes elastic deformation, bending relative to the first state, thus lowering the height of the cable clamp 140 relative to the ground, facilitating charging.

[0042] In some embodiments, the gun wire management assembly 100 further includes a first adapter 150 connected between the elastic member 120 and the connector 130.

[0043] Because the elastic element 120 is elastic, it is difficult to achieve a stable connection at the joint when ordinary connectors or ordinary cable clamps are directly connected to the elastic element 120. This embodiment of the application achieves a stable connection between the connector 130 and the elastic element 120 by providing a first adapter 150. Furthermore, assembling the elastic element 120 and the connector 130 through the first adapter 150 improves the corrosion resistance of the cable management assembly 100 compared to direct welding or other connection methods.

[0044] In some embodiments, the first adapter 150 and the connector 130 are detachably connected. In other embodiments, the first adapter 150 and the connector 130 are an integral structure.

[0045] Figures 3 and 4 are perspective and cross-sectional views of a first adapter in one embodiment of the wire management component of this application. In some embodiments, a first abutment portion 151 is provided on the outer periphery of the first adapter 150.

[0046] With the first adapter 150 connecting the elastic member 120 and the connector 130, the elastic member 120 and the connector 130 respectively abut against both sides of the first abutment portion 151. Therefore, when assembling the wire management assembly 100, it is possible to determine whether the elastic member 120 and the connector 130 are properly installed with the first adapter 150 based on whether they abut against the first abutment portion 151, thereby improving the assembly consistency and quality of the wire management assembly 100.

[0047] As shown in Figures 3 and 4, in some embodiments, the first adapter 150 has a first mating portion 152 for connecting the elastic member 120. The first mating portion 152 is threadedly engaged with the elastic member 120, and the first mating portion 152 is provided with a first anti-reverse groove 1521.

[0048] Figure 5 is a cross-sectional schematic diagram of an embodiment of the gun wire management component of this application, and Figure 6 is a partially enlarged schematic diagram of region A in Figure 5. In this embodiment, the first anti-reverse groove 1521 is a recessed structure provided on the outer peripheral surface of the first mating part 152, that is, the outer diameter of the first mating part 152 is reduced at the first anti-reverse groove 1521 relative to the rest of the first mating part 152, so that a step is formed at the first anti-reverse groove 1521. The elastic member 120 is threadedly engaged with the first mating part 152, wherein the inner peripheral surface of the elastic member 120 is interference-fitted with the outer peripheral surface of the first mating part 152 except for the first anti-reverse groove 1521, and the inner peripheral surface of the elastic member 120 is clearance-fitted with the outer peripheral surface at the first anti-reverse groove 1521. The stepped structure at the first anti-reverse groove 1521 disrupts the continuity of the thread of the first mating part 152, and blocks the withdrawal action of the connected elastic member 120, thereby achieving the anti-reverse effect and improving the stability of the connection between the elastic member 120 and the first adapter 150.

[0049] In some embodiments, the wire management assembly 100 further includes a second adapter 160, which connects the elastic member 120 and the suspension base 110. By providing the second adapter 160, a stable connection between the suspension base 110 and the elastic member 120 can be achieved. Assembling the elastic member 120 and the suspension base 110 together via the second adapter 160 improves the corrosion resistance of the wire management assembly 100 compared to direct welding or other connection methods.

[0050] In some embodiments, the second adapter 160 is detachably connected to the suspension base 110. In other embodiments, the first adapter 150 and the suspension base 110 are an integral structure.

[0051] Figures 7 and 8 are perspective and cross-sectional views of the second adapter in one embodiment of the wire management assembly of this application. In some embodiments, the second adapter 160 has a second abutment portion 161 on its outer periphery. When the second adapter 160 connects the elastic member 120 to the suspension base 110, the elastic member 120 and the suspension base 110 abut against opposite sides of the second abutment portion 161 along the axial direction. When assembling the wire management assembly 100, it is possible to determine whether the elastic member 120 and the suspension base 110 are properly installed with the second adapter 160 based on whether they abut against the second abutment portion 161, thereby improving the assembly consistency and quality of the wire management assembly 100.

[0052] As shown in Figures 7 and 8, in some embodiments, the second adapter 160 has a second mating portion 162 for connecting the elastic member 120. The second mating portion 162 is threadedly engaged with the elastic member 120, and the second mating portion 162 is provided with a second anti-reverse groove 1621. In this embodiment, the second anti-reverse groove 1621 is a recessed structure provided on the outer peripheral surface of the second mating portion 162, that is, the outer diameter of the second mating portion 162 is reduced at the second anti-reverse groove 1621 relative to the rest of the second mating portion 162, so that a step is formed at the second anti-reverse groove 1621. The elastic element 120 is threadedly engaged with the second mating part 162. The inner circumferential surface of the elastic element 120 is interference-fitted with the outer circumferential surface of the second mating part 162, except for the second anti-reverse groove 1621. The inner circumferential surface of the elastic element 120 is clearance-fitted with the outer circumferential surface of the second anti-reverse groove 1621. The stepped structure at the second anti-reverse groove 1621 disrupts the continuity of the thread of the second mating part 162, blocking the withdrawal action of the connected elastic element 120, thereby achieving the anti-reverse effect and improving the stability of the connection between the elastic element 120 and the second adapter 160.

[0053] In some embodiments, the cable clamp 140 can be bent and extended.

[0054] Figure 9 is an exploded perspective view of the cable clamp in one embodiment of the cable management component of this application. As shown in Figures 2 and 9, in some embodiments, the cable clamp 140 includes a first housing 141 and a second housing 142. The first housing 141 and the second housing 142 are installed to form a receiving space, and a portion of the cable 200 is clamped in the receiving space.

[0055] In some embodiments, the outer periphery of the cable clamp 140 may be provided with a protective component, such as a cable sheath, a protective pad, or a spiral tube, so as to provide protection for the outer surface of the cable clamp 140 and a portion of the gun wire 200 during the use of the gun wire management assembly 100, thereby reducing wear on the cable clamp 140 and a portion of the gun wire 200.

[0056] As shown in Figure 2, in some embodiments, the cable management assembly 100 further includes at least one limiting member 170, which is clamped between the inner wall of the cable holder 140 and the outer wall of the cable 200. The limiting member 170 can reduce or even prevent relative sliding between the cable 200 and the inner wall of the cable holder 140, thereby ensuring stable clamping of the cable holder 140 on the cable 200 and reducing wear on the surface of the cable 200.

[0057] In this embodiment, the limiting member 170 is a sleeve made of elastic material, which can be fitted onto the gun wire 200. The limiting member 170 is made of, for example, silicone. In some other embodiments, the limiting member 170 can be in other forms, such as a pressure strip clamped between the inner wall of the cable holder 140 and the outer wall of the gun wire 200.

[0058] Figure 10 is an exploded perspective view of the limiting member in one embodiment of the wire management assembly of this application. In some embodiments, each limiting member 170 includes a first sub-limiting member 171 and a second sub-limiting member 172 disposed opposite to each other on the outer periphery of the wire 200. The first sub-limiting member 171 is sandwiched between the first housing 141 and the wire 200, and the second sub-limiting member 172 is sandwiched between the second housing 142 and the wire 200. Since each limiting member 170 is a split structure, the limiting member 170 can be assembled on the outer periphery of the wire 200 during the assembly of the wire management assembly 100 and the wire 200, improving the convenience of the assembly process.

[0059] In some embodiments, the limiting member 170 may include a variety of different sizes, thereby facilitating the adaptation of different specifications of gun cables 200. By adjusting or replacing the limiting member 170 of the corresponding size, gun cables 200 of different specifications can be limited and installed on the cable clamp 140, thereby improving the compatibility of the gun cable management component 100 with the gun cable 200.

[0060] As shown in Figures 2, 9, and 10, in some embodiments, the outer peripheral surface of the limiting member 170 is provided with a limiting groove 173, and the inner wall of the cable clamp 140 is provided with a limiting rib 143 that cooperates with the limiting groove 173. Through the cooperation of the limiting groove 173 and the limiting rib 143, the possibility of relative sliding between the limiting member 170 and the inner wall of the cable clamp 140 can be further reduced, thereby further improving the stability of the connection between the gun wire 200 and the cable clamp 140.

[0061] In some embodiments, the limiting rib 143 has a plurality of engaging portions 1431 along the extending direction of the cable clamp 140, and the limiting groove 173 can engage with the plurality of engaging portions 1431. Since the limiting rib 143 has a plurality of engaging portions 1431 along the extending direction of the cable clamp 140, the limiting member 170 can engage with the engaging portions 1431 at different positions, thereby adjusting the specific position of the clamped section of the gun wire 200 and further improving the compatibility of the gun wire management assembly 100 and the gun wire 200 during assembly.

[0062] Figure 11 is an exploded perspective view of the connector in one embodiment of the cable management component of this application. As shown in Figures 2 and 11, in some embodiments, the outer periphery of the second end of the connector 130 is provided with a positioning groove 131, and the inner wall of the cable clamp 140 is provided with a positioning protrusion 144 that can extend into the positioning groove 131. After the connector 130 is connected to the cable clamp 140, the second end extends into the cable clamp 140, and the positioning groove 131 and the positioning protrusion 144 cooperate, making the connection between the connector 130 and the cable clamp 140 more stable.

[0063] This application also provides a charging pile, which can be an AC charging pile or a DC charging pile, and can be a wall-mounted charging pile, a ground-mounted charging pile, a column-mounted charging pile, or a split charging pile, and can be a charging terminal. The charging pile includes a charging pile host, a charging gun, a charging cable, and a charging cable management component 100 of any of the foregoing embodiments. The charging cable is connected to the charging gun and the charging pile host respectively, and the cable clamp 140 of the charging cable management component 100 clamps a portion of the charging cable.

[0064] The cable management assembly 100 includes a suspension base 110, an elastic element 120, a cable clamp 140, and a connector 130. The suspension base 110 is fixedly mounted on the charging pile host. The elastic element 120 has a first state without elastic deformation and a second state with elastic deformation. The cable clamp 140 is used to clamp a portion of the charging cable 200. The first end of the connector 130 is used to connect to the elastic element 120, and the second end of the connector 130 is used to connect to the cable clamp 140. The cable clamp 140 is at a different height relative to the ground when the elastic element 120 is in the first state and the second state.

[0065] According to an embodiment of this application, a charging pile includes a cable management component 100, which is mounted on the charging pile host via a suspension base 110. The cable management component 100 further includes an elastic element 120, a cable clamping element 140, and a connector 130. The cable clamping element 140 is used to clamp a portion of the charging cables 200. The elastic element 120 has a first state without elastic deformation and a second state with elastic deformation. The cable clamping element 140 is at different heights relative to the ground when the elastic element 120 is in the first state and the second state. For example, in the first state, the elastic element 120 is higher than the cable clamp 140 relative to the ground. When the charging gun is idle and not connected to an external device to be charged, the elastic element 120 is in the first state, raising the charging cable 200 held by the cable clamp 140 relative to the ground. This causes the cable 200 to be away from the ground, and most of the cable 200 is suspended relative to the ground under the traction of the cable clamp 140. This ensures that the charging cable 200 does not drag on the ground for most of the time after the charging station is put into use, thereby alleviating problems such as surface dirt, cable wear, leakage safety risks, cable crushing, and cable tangling caused by the cable dragging on the ground for a long time. In this embodiment, a connector 130 is provided between the elastic element 120 and the cable clamp 140. The first end of the connector 130 is used to connect to the elastic element 120, and the second end of the connector 130 is used to connect to the cable clamp 140. By setting the connector 130, it is possible to connect elastic elements 120 and cable clamps 140 of various sizes, thereby improving the compatibility of the gun wire management assembly 100 assembly and making it easier to adapt to different suspension height requirements. That is, the connector 130, elastic element 120 and cable clamp 140 of corresponding lengths can be connected according to different suspension height requirements, so that the total length or total height of the gun wire management assembly 100 is adjustable.

[0066] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. A gun wire management assembly, characterized by, The gun line management assembly comprises: a hanging base fixedly arranged on a charging pile host; an elastic member having a first state of no elastic deformation and a second state of elastic deformation; a cable clamping member for clamping a part of the gun line; a connecting member, a first end of the connecting member being used for connecting with the elastic member, and a second end of the connecting member being used for connecting with the cable clamping member; wherein the height of the cable clamping member relative to the ground is different when the elastic member is in the first state and in the second state.

2. The gun management assembly of claim 1, wherein, The gun line management assembly further comprises a first adapter connected between the elastic member and the connecting member.

3. The gun management assembly of claim 2, wherein, The outer periphery of the first adapter is provided with a first abutting portion, and in the state that the first adapter connects the elastic member and the connecting member, the elastic member and the connecting member abut on both sides of the first abutting portion, respectively.

4. The gun management assembly of claim 2, wherein, The first adapter has a first matching portion for connecting the elastic member, the first matching portion is threadedly matched with the elastic member, and the first matching portion is provided with a first retreat-preventing groove.

5. The gun management assembly of any one of claims 1 to 4, wherein, The gun line management assembly further comprises a second adapter connected between the elastic member and the hanging base.

6. The gun management assembly of claim 5, wherein, The outer periphery of the second adapter is provided with a second abutting portion, and in the state that the second adapter connects the elastic member and the hanging base, the elastic member and the hanging base abut on opposite sides of the second abutting portion along the axial direction, respectively.

7. The gun management assembly of claim 5, wherein, The second adapter has a second matching portion for connecting the elastic member, the second matching portion is threadedly matched with the elastic member, and the second matching portion is provided with a second retreat-preventing groove.

8. The gun management assembly of any one of claims 1 to 4, wherein, The cable clamping member comprises a first housing and a second housing, the first housing and the second housing are installed to form an accommodation space, and a part of the gun line is arranged in the accommodation space.

9. The gun management assembly of claim 8, wherein, The gun line management assembly further comprises at least one limiting member clamped between the inner wall of the cable clamping member and the outer wall of the gun line.

10. The gun management assembly of claim 9, wherein, The outer peripheral surface of the limiting member is provided with a limiting groove, and the inner wall of the cable clamping member is provided with a limiting protruding rib matched with the limiting groove.

11. The gun management assembly of claim 10, wherein, The limiting protruding rib has a plurality of clamping portions along the extension direction of the cable clamping member, and the limiting groove can be clamped and matched with the plurality of clamping portions.

12. A charging post, characterized in that The gun line management assembly comprises: a charging pile host fixed to the ground; a charging gun; a gun line connected with the charging gun and the charging pile host, respectively; and the gun line management assembly according to any one of claims 1 to 11, the cable clamping member of the gun line management assembly clamping a part of the gun line. ​