Wire arrangement device of new energy charging pile

Through the combined design of winding tubes, limit plates, extrusion plates, etc., the problem of loose cables after winding of new energy charging piles is solved, stable winding and flexible adjustment of cables are achieved, and the use effect of the cable management device is improved.

CN223422150UActive Publication Date: 2025-10-10GUOSOFT (SUZHOU) TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423082967.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-10-10
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

When the existing new energy charging pile cable management device is in use, the distance between the cable winding rods is fixed, which causes the cables to become loose after winding, thereby reducing the cable management quality.

Method used

It adopts a combined design of winding tube, limit plate, extrusion plate, fixed plate, spring, limit rod and pull rod. By pulling the limit rod, the extrusion plate moves, compressing the spring, and then winding the cable and releasing the spring constraint, so that the elastic force of the spring pushes the extrusion plate to extrude the cable. Combined with the adjustment hole, slide rail, slider, threaded hole and bolt, the distance and fixed position of the winding tube are adjusted to achieve stable winding of the cable.

Benefits of technology

The stability of cable winding is improved, the cable is prevented from loosening after winding, the flexibility and simplicity of operation are enhanced, and it is suitable for different usage situations.

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Abstract

The utility model provides a new energy charging pile wire arrangement device, which relates to the technical field of charging pile wire arrangement and comprises a base, a mounting plate is vertically mounted at the edge of the top surface of the base, a mounting block is movably mounted on the surface of the mounting plate, and a winding pipe is arranged on the surface of the mounting block. Through cooperative use of a winding pipe, a limiting disc, an extrusion disc, a fixing disc, a spring, a limiting rod and a pull rod, a power line wound on the surface of the winding pipe can be extruded conveniently, the stability of the power line is improved, during operation, a worker pulls the limiting rod through the pull rod to drive the extrusion disc to move, and the spring is compressed in the movement process of the extrusion disc; and then a worker winds the charging pile power line on the winding rod, after winding, the worker loosens the constraint on the spring, then the extrusion disc is pushed under the action of elastic potential energy of the spring to extrude the power line on the surface of the winding pipe, the mode is easy to operate, and the situation that the cable is loosened after being wound is avoided.
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Description

Technical Field

[0001] The utility model relates to the technical field of charging pile wiring, in particular to a wiring device for a new energy charging pile. Background Art

[0002] Charging piles function similarly to gas pumps at gas stations. They can be fixed to the ground or walls and installed in public buildings (public buildings, shopping malls, public parking lots, etc.) and residential parking lots or charging stations. They can charge various models of electric vehicles according to different voltage levels. The input end of the charging pile is directly connected to the AC power grid, and the output end is equipped with a charging plug for charging electric vehicles. Charging piles generally provide two charging methods: conventional charging and fast charging. People can use a specific charging card to swipe the card on the human-computer interaction interface provided by the charging pile to perform operations such as the corresponding charging method, charging time, and cost data printing. The charging pile display can display data such as charging amount, cost, and charging time. In the process of using new energy charging piles, it is often necessary to manage the charging pile cables to facilitate the use of new energy charging piles.

[0003] After massive searches, it was found that in the prior art, such as the technical problems raised in the cable management device of a new energy charging pile with application number CN202122735928.2, the existing new energy charging pile cable management device has a certain distance between the cable winding rods, which can easily cause the cables to be too long or too short after winding, thereby reducing the cable management quality of the new energy charging pile cables.

[0004] Therefore, it is necessary to provide a wiring arrangement for a new energy charging pile to solve the above technical problems. Utility Model Content

[0005] The utility model provides a wire management device for a new energy charging pile, which solves the problems in the background technology.

[0006] In order to solve the above technical problems, the utility model provides a wire management device for a new energy charging pile, including a base, a mounting plate is vertically installed at the edge of the top surface of the base, a mounting block is movably installed on the surface of the mounting plate, a winding tube is provided on the surface of the mounting block, a limiting disk is provided on the outer surface of the winding tube, a fixed disk is provided on the surface of the winding tube located on the other side of the limiting disk, a spring is provided on the surface of the fixed disk, an extrusion disk is provided on the other end of the spring, the extrusion disk is sleeved on the outside of the winding tube, a limiting rod is provided on the surface of the extrusion disk located inside the spring, a pull rod is provided between the two limiting rods, The winding tube, limit plate, extrusion plate, fixed plate, spring, limit rod and pull rod are used in combination to facilitate the extrusion of the power cord wrapped on the surface of the winding tube and improve its stability. During operation, the staff first pulls the limit rod through the pull rod to drive the extrusion plate to move. The extrusion plate compresses the spring during the movement. Then the staff wraps the charging pile power cord around the winding rod. After winding, the staff releases the constraint on the spring, and then pushes the extrusion plate to squeeze the power cord on the surface of the winding tube under the action of the elastic potential energy of the spring. This method is simple to operate and avoids the cable from becoming loose after winding.

[0007] Preferably, a slide rail is provided on the surface of the mounting plate, and a slider is provided on the surface of the mounting block, and the mounting block is slidably connected to the slide rail through the slider, and an adjustment hole is provided through the bottom end of the slide rail, and a threaded hole is provided on the surface of the slider, and the slider is fixedly connected to the mounting plate by a bolt passing through the threaded hole and the adjustment hole. By setting the adjustment hole, the slide rail, the slider, the threaded hole, and the bolt, it is convenient to adjust the distance between the two winding tubes according to actual usage. When adjusting, it is only necessary to rotate the bolt out of the threaded hole, and then move the winding tube to a specified height position through the cooperation of the slider and the slide rail, and then fix it again by passing the bolt through the adjustment hole and the threaded hole (it should be noted that the bolt can support the overall weight of the winding tube and the power cord in the later stage). This method is simple to operate and greatly improves its flexibility of use.

[0008] Preferably, a second plug-in hole is provided through the side surface of the winding tube, and a first plug-in hole is provided through the surface of one of the limit rods, and a plug-in rod is inserted into the first plug-in hole and the second plug-in hole. By setting the first plug-in hole and the second plug-in hole, before the power cord of the charging pile is arranged, the extrusion plate is first driven to move by the pull rod compression spring, and then the extrusion plate is fixed by passing the plug-in rod through the first plug-in hole and the second plug-in hole, and then the power cord is wound around the winding tube. This method is simple to operate and convenient for line arrangement.

[0009] Preferably, a through hole is provided in the middle of the extrusion disc, and the inner diameter of the through hole is equal to the outer diameter of the winding tube. By providing the through hole, the extrusion disc can be easily sleeved on the winding tube.

[0010] Preferably, a clearance hole is provided through the surface of the fixing plate, and the inner diameter of the clearance hole is larger than the outer diameter of the limiting rod. By providing the clearance hole, the limiting rod can be easily released.

[0011] Preferably, there are multiple adjustment holes, and the multiple adjustment holes are opened at equal distances on the surface of the mounting plate. By providing multiple adjustment holes, it is convenient to adjust the distance between the two winding tubes in multiple positions, thereby improving its flexibility of use.

[0012] Preferably, a fixing hole is provided through the top surface of the base, and a plurality of fixing holes are provided, and the plurality of fixing holes are provided at equal distances on the surface of the base. By providing the fixing holes, the base can be easily fixed by fasteners.

[0013] Compared with related technologies, the cable management device for a new energy charging pile provided by the present invention has the following beneficial effects:

[0014] The utility model provides a wire management device for a new energy charging pile, which is convenient for squeezing the power cord wound on the surface of the winding tube by arranging a winding tube, a limiting plate, an extrusion plate, a fixing plate, a spring, a limiting rod and a pulling rod for use in coordination, so as to improve the stability of the wire management device. During operation, the staff first pulls the limiting rod through the pulling rod to drive the extrusion plate to move, and the extrusion plate compresses the spring during the movement, and then the staff winds the power cord of the charging pile around the winding rod. After winding, the staff releases the constraint on the spring, and then pushes the extrusion plate to squeeze the power cord on the surface of the winding tube under the action of the elastic potential energy of the spring. This method is simple to operate and avoids the loosening of the cable after winding. By arranging the adjusting hole, the slide rail, the slider, the threaded hole and the bolt for use in coordination, it is convenient to The distance between the two winding tubes is adjusted according to actual usage, so that when adjusting, it is only necessary to rotate the bolt out from the inside of the threaded hole, and then move the winding tube to the specified height position through the cooperation of the slider and the slide rail, and then fix it again by passing the bolt through the adjustment hole and the threaded hole. (It should be noted that the bolt can support the overall weight of the winding tube and the power cord in the later stage). This method is simple to operate and greatly improves its flexibility of use. By setting the first plug hole and the second plug hole, before arranging the power cord of the charging pile, the extrusion plate is first driven to move by the pull rod compression spring, and then the first plug hole and the second plug hole are passed through the plug rod to fix the extrusion plate, and then the power cord is wrapped around the winding tube. This method is simple to operate and convenient for cable management. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a structural diagram of a cable management device for a new energy charging pile provided by the present invention;

[0016] Figure 2 This is a schematic diagram of the mounting plate structure of a cable management device for a new energy charging pile provided by the present invention;

[0017] Figure 3 This is a schematic diagram of the structure of an extrusion plate of a cable management device for a new energy charging pile provided by the utility model;

[0018] Figure 4 This is a schematic diagram of the adjustment hole structure of a cable management device for a new energy charging pile provided by the utility model;

[0019] Figure 5 This is a schematic diagram of the slider structure of a cable management device for a new energy charging pile provided by the utility model;

[0020] Figure 6 This is a schematic diagram of the slide rail structure of a cable management device for a new energy charging pile provided by the utility model.

[0021] Numbers in the figure:

[0022] 1. Base; 2. Mounting plate; 3. Mounting block; 4. Slide rail; 5. Winding tube; 6. Extrusion plate; 7. Fixing plate; 8. Fixing hole; 9. Through hole; 10. Spring; 11. Connecting rod; 12. First connecting hole; 13. Threaded hole; 14. Pull rod; 15. Limiting rod; 16. Clearance hole; 17. Bolt; 18. Adjustment hole; 19. Second connecting hole; 20. Slider; 21. Limiting plate. DETAILED DESCRIPTION

[0023] The present invention will be further described below with reference to the accompanying drawings and implementation examples.

[0024] Example 1

[0025] See Figure 1-6, a new energy charging pile wiring device, including a base 1, a mounting plate 2 is vertically installed at the edge of the top surface of the base 1, a mounting block 3 is movably installed on the surface of the mounting plate 2, a winding tube 5 is provided on the surface of the mounting block 3, a limiting disk 21 is provided on the outer surface of the winding tube 5, a fixed disk 7 is provided on the surface of the winding tube 5 located on the other side of the limiting disk 21, a spring 10 is provided on the surface of the fixed disk 7, an extrusion disk 6 is provided at the other end of the spring 10, the extrusion disk 6 is sleeved on the outside of the winding tube 5, a limiting rod 15 is provided on the surface of the extrusion disk 6 located inside the spring 10, a pull rod 14 is provided between the two limiting rods 15, and the winding tube 5 is provided. The coordinated use of the limiting plate 21, the extrusion plate 6, the fixed plate 7, the spring 10, the limiting rod 15 and the pull rod 14 facilitates the extrusion of the power cord wound on the surface of the winding tube 5 and improves its stability. During operation, the staff first pulls the limiting rod 15 through the pull rod 14 to drive the extrusion plate 6 to move. The extrusion plate 6 compresses the spring 10 during the movement, and then the staff winds the charging pile power cord around the winding rod. After winding, the staff releases the constraint on the spring 10, and then pushes the extrusion plate 6 to squeeze the power cord on the surface of the winding tube 5 under the action of the elastic potential energy of the spring 10. This method is simple to operate and avoids the cable from becoming loose after winding.

[0026] The working principle of the cable management device for a new energy charging pile provided by this utility model is as follows:

[0027] By setting the coordinated use of the winding tube 5, the limiting plate 21, the extrusion plate 6, the fixed plate 7, the spring 10, the limiting rod 15 and the pull rod 14, it is convenient to squeeze the power cord wound on the surface of the winding tube 5, thereby improving its stability. During operation, the staff first pulls the limiting rod 15 through the pull rod 14 to drive the extrusion plate 6 to move. The extrusion plate 6 compresses the spring 10 during the movement, and then the staff winds the charging pile power cord around the winding rod. After winding, the staff releases the constraint on the spring 10, and then pushes the extrusion plate 6 to squeeze the power cord on the surface of the winding tube 5 under the action of the elastic potential energy of the spring 10. This method is simple to operate and avoids the cable from becoming loose after winding. By setting the coordinated use of the adjusting hole 18, the slide rail 4, the slider 20, the threaded hole 13 and the bolt 17, it is convenient to adjust the two according to actual usage. The distance between the winding tubes 5 is such that when adjusting, it is only necessary to rotate the bolt 17 out from the threaded hole 13, and then move the winding tube 5 to the specified height position through the cooperation of the slider 20 and the slide rail 4, and then fix it again by passing the bolt 17 through the adjustment hole 18 and the threaded hole 13 (it should be noted that the bolt 17 can support the overall weight of the winding tube 5 and the power cord in the later stage). This method is simple to operate and greatly improves its flexibility of use. By setting the first plug hole 12 and the second plug hole 19, before arranging the power cord of the charging pile, the spring 10 is first compressed by the pull rod 14 to drive the extrusion plate 6 to move, and then the first plug hole 12 and the second plug hole 19 are passed through the plug rod 11 to fix the extrusion plate 6, and then the power cord is wound around the winding tube 5. This method is simple to operate and is convenient for wiring.

[0028] Compared with related technologies, the cable management device for a new energy charging pile provided by the present invention has the following beneficial effects:

[0029] By setting the cooperation of the winding pipe 5, the limiting disc 21, the extrusion disc 6, the fixed disc 7, the spring 10, the limiting rod 15 and the pull rod 14, the power cord wound on the surface of the winding pipe 5 is extruded, the stability is improved, and when operating, the staff first pulls the limiting rod 15 by the pull rod 14 to drive the extrusion disc 6 to move, the spring 10 is compressed in the moving process of the extrusion disc 6, then the staff winds the charging pile power cord on the winding rod, after winding, the staff releases the constraint of the spring 10, then the extrusion disc 6 is pushed to extrude the power cord on the surface of the winding pipe 5 under the action of the elastic potential energy of the spring 10, which is simple in operation and avoids the loosening of the cable after winding. By setting the cooperation of the adjusting hole 18, the sliding rail 4, the sliding block 20, the threaded hole 13 and the bolt 17, the distance between the two winding pipes 5 can be adjusted according to the actual use, so that when adjusting, the bolt 17 is only needed to be rotated out of the threaded hole 13, and then the winding pipe 5 is moved to the specified height position through the cooperation of the sliding block 20 and the sliding rail 4, and then the bolt 17 is fixed through the adjusting hole 18 and the threaded hole 13. (It should be noted that the bolt 17 can support the overall weight of the winding pipe 5 and the power cord in the later stage.) This way is simple in operation and greatly improves the flexibility of use. By setting the first plug hole 12 and the second plug hole 19, the extrusion disc 6 is first moved by pulling the spring 10 through the pull rod 14 before the charging pile power cord is arranged, then the extrusion disc 6 is fixed by the plug rod 11 through the first plug hole 12 and the second plug hole 19, and then the power cord is wound on the winding pipe 5, which is simple in operation and convenient for arranging the power cord.

[0030] Example two

[0031] On the basis of example one, referring to Figure 1-5 , the surface of the mounting plate 2 is provided with a sliding rail 4, the surface of the mounting block 3 is provided with a sliding block 20, the mounting block 3 is connected with the sliding rail 4 through the sliding block 20, the inside bottom of the sliding rail 4 is provided with an adjusting hole 18, the surface of the sliding block 20 is provided with a threaded hole 13, and the sliding block 20 is fixedly connected with the mounting plate 2 through the bolt 17 penetrating the threaded hole 13 and the adjusting hole 18. By setting the cooperation of the adjusting hole 18, the sliding rail 4, the sliding block 20, the threaded hole 13 and the bolt 17, the distance between the two winding pipes 5 can be adjusted according to the actual use, so that when adjusting, the bolt 17 is only needed to be rotated out of the threaded hole 13, and then the winding pipe 5 is moved to the specified height position through the cooperation of the sliding block 20 and the sliding rail 4, and then the bolt 17 is fixed through the adjusting hole 18 and the threaded hole 13. (It should be noted that the bolt 17 can support the overall weight of the winding pipe 5 and the power cord in the later stage.) This way is simple in operation and greatly improves the flexibility of use.

[0032] Based on the first embodiment, see Figure 1-5 A second plug hole 19 is formed through the side surface of the winding tube 5, and a first plug hole 12 is formed through the surface of one of the limit rods 15. The plug rod 11 is inserted into the first plug hole 12 and the second plug hole 19. By setting the first plug hole 12 and the second plug hole 19, before arranging the power cord of the charging pile, the spring 10 is compressed by the pull rod 14 to drive the extrusion plate 6 to move, and then the plug rod 11 is passed through the first plug hole 12 and the second plug hole 19 to fix the extrusion plate 6, and then the power cord is wound around the winding tube 5. This method is simple to operate and convenient for cable management.

[0033] Based on the first embodiment, see Figure 1-4 A through hole 9 is provided in the middle of the extrusion disc 6 , and the inner diameter of the through hole 9 is equal to the outer diameter of the winding tube 5 . By providing the through hole 9 , it is convenient for the extrusion disc 6 to be sleeved on the winding tube 5 .

[0034] Based on the first embodiment, see Figure 1-5 A clearance hole 16 is provided on the surface of the fixed plate 7, and the inner diameter of the clearance hole 16 is larger than the outer diameter of the limiting rod 15. By providing the clearance hole 16, it is convenient to make way for the limiting rod 15.

[0035] Based on the first embodiment, see Figure 1-4 There are multiple adjustment holes 18, and multiple adjustment holes 18 are opened at equal distances on the surface of the mounting plate 2. By setting multiple adjustment holes 18, it is convenient to adjust the distance between the two winding tubes 5 in multiple positions, thereby improving its flexibility of use.

[0036] Based on the first embodiment, see Figure 1 A fixing hole 8 is provided through the top surface of the base 1, and there are multiple fixing holes 8, and multiple fixing holes 8 are equidistantly provided on the surface of the base 1. By providing the fixing holes 8, it is convenient to fix the base 1 with fasteners.

[0037] It should be noted that all types of components used in this application document are standard parts and can be purchased on the market. The specific connection methods of each part adopt conventional means such as mature bolts 17, rivets and welding in the existing technology. The machinery, parts and electrical equipment all adopt conventional models in the existing technology. The circuit connection adopts the conventional connection method in the existing technology. The electrical equipment is connected to the external safe power supply, and no further detailed description is given here.

[0038] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. A cable management device for a new energy charging pile, characterized in that: The utility model comprises a base (1), a mounting plate (2) is vertically mounted on the edge of the top surface of the base (1), a mounting block (3) is movably mounted on the surface of the mounting plate (2), a winding tube (5) is arranged on the surface of the mounting block (3), a limiting disk (21) is arranged on the outer surface of the winding tube (5), a fixed disk (7) is arranged on the surface of the winding tube (5) on the other side of the limiting disk (21), a spring (10) is arranged on the surface of the fixed disk (7), an extrusion disk (6) is arranged at the other end of the spring (10), the extrusion disk (6) is sleeved on the outer side of the winding tube (5), a limiting rod (15) is arranged on the surface of the extrusion disk (6) on the inner side of the spring (10), and a pull rod (14) is arranged between the two limiting rods (15).

2. A cable management device for a new energy charging pile according to claim 1, characterized in that: A slide rail (4) is provided on the surface of the mounting plate (2), a slider (20) is provided on the surface of the mounting block (3), the mounting block (3) is slidably connected to the slide rail (4) via the slider (20), an adjustment hole (18) is provided through the bottom end of the inner portion of the slide rail (4), a threaded hole (13) is provided on the surface of the slider (20), and the slider (20) is fixedly connected to the mounting plate (2) via a bolt (17) passing through the threaded hole (13) and the adjustment hole (18).

3. The cable management device for a new energy charging pile according to claim 1, characterized in that: A second plug-in hole (19) is provided through the side surface of the winding tube (5), a first plug-in hole (12) is provided through the surface of one of the limiting rods (15), and a plug-in rod (11) is inserted into the first plug-in hole (12) and the second plug-in hole (19).

4. The cable management device for a new energy charging pile according to claim 1, characterized in that: A through hole (9) is provided in the middle of the extrusion disc (6), and the inner diameter of the through hole (9) is equal to the outer diameter of the winding tube (5).

5. The cable management device for a new energy charging pile according to claim 1, characterized in that: A clearance hole (16) is provided through the surface of the fixing plate (7), and the inner diameter of the clearance hole (16) is larger than the outer diameter of the limiting rod (15).

6. The cable management device for a new energy charging pile according to claim 2, characterized in that: A plurality of adjustment holes (18) are provided, and the plurality of adjustment holes (18) are provided at equal distances on the surface of the mounting plate (2).

7. The cable management device for a new energy charging pile according to claim 1, characterized in that: A fixing hole (8) is provided through the top surface of the base (1), and a plurality of fixing holes (8) are provided, and the plurality of fixing holes (8) are provided at equal distances on the surface of the base (1).

Citation Information

Patent Citations

  • Wire arrangement device of new energy charging pile

    CN216709056U