Electric automatic charging pile equipment

By introducing a sliding rail, slider, and rubber roller structure into the charging pile equipment, the inconvenience problem caused by the fixed location of wall-mounted charging piles is solved, realizing the flexible movement of charging piles and automatic extension of cables, thereby improving charging convenience and utilization.

CN223877886UActive Publication Date: 2026-02-06HENAN UNIVERSITY
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Patent Information

Application Number
CN202520125171.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-06
Estimated Expiration
2035-01-20

AI Technical Summary

Technical Problem

Existing wall-mounted charging stations are fixed in location, which means that they cannot charge when fuel vehicles occupy the charging space, reducing the convenience and adequacy of using the charging stations.

Method used

An automated charging pile device was designed, which adopts a structure of slide rail, slider, conductive slip ring and rubber roller, so that the charging pile body can move on the slide rail, and the rotation of the rubber roller drives the bevel gear system to realize the unwinding and rewinding of the cable, which can adapt to the position of new energy vehicles.

Benefits of technology

It enables convenient relocation of charging piles and flexible extension of cables, improving the utilization rate and convenience of charging piles and ensuring that new energy vehicles can be charged in a timely manner.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electrical automation charging pile device, belonging to the charging pile field, the electrical automation charging pile device comprises a wall body, the surface of the wall body is fixedly provided with three slide rails, the outer sides of the three slide rails are slidingly connected with slide blocks, the outer walls of two of the slide blocks are fixedly provided with a charging pile body, and the outer walls of the two slide blocks are fixedly provided with a charging pile body. A cable winding box is fixedly installed on the outer wall of the other sliding block, the back of the cable winding box is fixedly connected with the back of the charging pile body through a fixing rod, a conductive sliding ring is arranged in the cable winding box, and the stator end of the conductive sliding ring is fixedly connected with the circular position of the inner wall of the cable winding box; a rotating shaft is inserted into the rotor end of the conductive slip ring through a central channel, and the rotating shaft is fixedly connected with the rotor end of the conductive slip ring through a bolt, so that the charging pile can be moved when a charging parking space is occupied by a fuel vehicle, and the charging pile can be moved to the parking space where a new energy vehicle is located; therefore, the utilization rate and convenience of the charging pile are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of charging pile, more specifically, to an electrical automation charging pile equipment. BACKGROUND

[0002] The charging pile, also known as an electric vehicle charging station or an electric vehicle power supply device, is a device that provides electric energy for electric vehicles, enabling electric vehicles to store enough electric energy to support their operation. Charging piles are divided into public charging piles and private charging piles, and from the charging method, they are divided into alternating current charging piles and direct current charging piles. Charging piles are also divided into vertical charging piles and wall-mounted charging piles.

[0003] Based on the above, the present inventor found that the installation method of the existing wall-mounted charging pile is mostly fixed on the wall behind the parking space. Since the position of the charging pile is fixed, when the charging space is in short supply and occupied by a fuel vehicle, the new energy vehicle cannot be charged, thereby greatly reducing the convenience and fullness of the charging pile in use. Therefore, in view of the above, the existing structure is studied and improved to provide an electrical automation charging pile equipment in order to achieve a more practical value. SUMMARY

[0004] 1. Technical problem to be solved

[0005] In view of the problems existing in the prior art, the purpose of the utility model is to provide an electrical automation charging pile equipment, which can move the charging pile when the charging space is occupied by a fuel vehicle, so that the charging pile can be moved to the parking space where the new energy vehicle is located, thereby improving the use rate and convenience of the charging pile.

[0006] 2. Technical scheme

[0007] To solve the above problems, the utility model adopts the following technical scheme.

[0008] The utility model provides an electric automatic charging pile equipment, including wall, the surface of wall is fixedly installed with three slide rails, the outer side of three slide rails is connected with the sliding block, the outer wall of two sliding blocks is fixedly installed with charging pile body, the outer wall of another sliding block is fixedly installed with cable winding box, the back of cable winding box is fixedly connected with the back of charging pile body through fixed link, the inside of cable winding box is provided with conductive slip ring, the stator end of conductive slip ring is fixedly connected with the circular place of cable winding box inner wall, and the rotor end of conductive slip ring is inserted with rotating shaft through center channel installation, and the rotating shaft is fixedly connected with the rotor end of conductive slip ring through bolt, one end of rotating shaft extends to the outside of cable winding box through through -slot, the stator end of conductive slip ring is electrically connected with static cable through brush, and the rotor end of conductive slip ring is electrically connected with rotating cable through conducting ring, one end of rotating cable is fixedly connected with the wiring end of charging pile body, one end of rotating shaft is fixedly installed with bevel gear no.

[0009] Further, the rotating cable is wound to the outside of the rotating shaft, and the static cable and one end of the rotating cable respectively extend to the top and the bottom of the cable winding box through the through-slots.

[0010] Further, the outer wall of the linkage shaft is connected to the inner wall of the limiting sleeve through a bearing, and one end of the limiting sleeve is fixedly connected to the outer wall of the cable winding box.

[0011] Further, the outer wall of one of the rubber rollers is uniformly provided with a tooth groove, and the outer wall of the other two rubber rollers is uniformly fixedly installed with a tooth block, and the two groups of tooth blocks are connected to each other through the tooth groove.

[0012] Further, the outer walls of the three rubber rollers are closely attached to each other, and the outer wall of one of the rubber rollers is closely attached to the surface of the wall.

[0013] 3. Beneficial effects

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] The utility model discloses a structure is provided with slide rail, sliding block, conductive sliding ring and rubber roller, when the user moves the charging pile body after the device is put into use, the sliding block of the back of charging pile body and the back of cable winding box will move on the slide rail, at the same time, the rubber roller that is closely combined with the wall body will rotate, the bevel gear no.2 on the linkage shaft can be driven to rotate through the rotation of rubber roller, so that the bevel gear no.1 that is connected with each other is driven to rotate by bevel gear no.2, makes the rotating shaft rotate with bevel gear no.1, thereby can put off the extension of rotary cable, when moving reversely to the charging pile body, the rubber roller reverses, thereby drives the rotating shaft to reverse and winds rotary cable, avoids the cable connection problem caused by the movement of charging pile body, at the same time, the new energy vehicle is convenient according to the position of vehicle and moves the charging pile body, through the device, the convenience of charging pile body use can be effectively improved, and the use rate of charging pile body is increased. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structure perspective diagram of the utility model;

[0017] Figure 2 It is the structure perspective diagram of the utility model's charging pile body structure back;

[0018] Figure 3 It is the structure perspective diagram of the utility model's charging pile body structure back;

[0019] Figure 4 It is the structure perspective diagram of the utility model's cable winding box structure split;

[0020] Figure 5 It is the structure perspective diagram of the utility model's Figure 2 It is the structure perspective diagram of the utility model's

[0021] Figure 6 It is the rubber roller installation position diagram of the utility model.

[0022] Mark explanation in drawing:

[0023] 1, wall body;2, slide rail;3, sliding block;4, charging pile body;5, cable winding box;6, conductive sliding ring;7, rotating shaft;8, static cable;9, rotary cable;10, bevel gear no.1;11, bevel gear no.2;12, linkage shaft;13, limit sleeve;14, fixed plate;15, rotating rod;16, rubber roller;17, tooth groove;18, tooth block. DETAILED DESCRIPTION

[0024] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments, and based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the protection scope of the present application.

[0025] Embodiment:

[0026] Please refer to Figures 1-6 , an electric automatic charging pile device, comprising a wall body 1, the surface of the wall body 1 is fixedly installed with three slide rails 2, the outer sides of the three slide rails 2 are slidably connected with slide blocks 3, the outer walls of two slide blocks 3 are fixedly installed with charging pile bodies 4, and the outer wall of the other slide block 3 is fixedly installed with a cable winding box 5, the back of the cable winding box 5 is fixedly connected with the back of the charging pile body 4 through a fixing rod, the inside of the cable winding box 5 is provided with a conductive slip ring 6, the stator end of the conductive slip ring 6 is fixedly connected with the circular part of the inner wall of the cable winding box 5, and the rotor end of the conductive slip ring 6 is inserted and installed with a rotating shaft 7 through a central channel, and the rotating shaft 7 is fixedly connected with the rotor end of the conductive slip ring 6 through bolts, one end of the rotating shaft 7 extends to the outside of the cable winding box 5 through a through slot, the stator end of the conductive slip ring 6 is electrically connected with a stationary cable 8 through a brush, and the rotor end of the conductive slip ring 6 is electrically connected with a rotating cable 9 through a conductive ring, one end of the rotating cable 9 is fixedly connected with a wiring end of the charging pile body 4, one end of the rotating shaft 7 is fixedly installed with a bevel gear one 10, the outer side of the bevel gear one 10 is meshingly connected with a bevel gear two 11, one end of the bevel gear two 11 is fixedly connected with a linkage shaft 12, the outer side of the linkage shaft 12 is provided with a limiting sleeve 13, the top end of the charging pile body 4 is fixedly installed with a fixed plate 14, the top end of the fixed plate 14 is installed with three rotating rods 15 through bearings, the outer walls of the three rotating rods 15 are fixedly installed with rubber rollers 16, and one end of one of the rubber rollers 16 is fixedly connected with one end of the linkage shaft 12, the device installs the charging pile body 4 on the wall body 1 through the slide rails 2 and the slide blocks 3, so that the charging pile body 4 can move left and right on the wall body 1, so that the wall body 1 can be moved according to the position of the new energy vehicle.

[0027] Please refer to Figure 4 , Figure 5 , the rotating cable 9 is wound to the outside of the rotating shaft 7, and the stationary cable 8 and one end of the rotating cable 9 extend to the outside of the top and bottom of the cable winding box 5 through the through slot respectively; the outer wall of the linkage shaft 12 is connected with the inner wall of the limiting sleeve 13 through a bearing, and one end of the limiting sleeve 13 is fixedly connected with the outer wall of the cable winding box 5, the limiting sleeve 13 is sleeved on the linkage shaft 12, so that the linkage shaft 12 is more stable when rotating.

[0028] Please refer toFigure 2 、 Figure 6 Wherein one rubber roller 16 outer wall is uniformly provided with tooth groove 17, and the outer wall of the other two rubber roller 16 is uniformly fixedly installed with tooth block 18, and two groups of tooth block 18 are connected with each other with tooth groove 17; the outer wall of the three rubber roller 16 is closely adhered to each other, and the outer wall of one rubber roller 16 is closely adhered to the surface of wall 1, when the charging pile body 4 is moved by pulling, the rubber roller 16 at the top of the charging pile body 4 will be fully adhered to the wall 1, so that the three rubber roller 16 rotates, so that the linkage shaft 12 drives the rotating shaft 7 to rotate through bevel gear two 11 and bevel gear one 10, and the rotation of the rotating shaft 7 can shorten and lengthen the rotating cable 9.

[0029] In use: first, the user will be parked on the parking space, then the user moves the charging pile body 4, so that the sliding block 3 on the back of the charging pile body 4 and the cable winding box 5 moves on the slide rail 2, at the same time, the rubber roller 16 closely adhered to the wall 1 will rotate, the rotation of the rubber roller 16 can drive the bevel gear two 11 on the linkage shaft 12 to rotate, so that the bevel gear two 11 drives the meshing connection of bevel gear one 10 to rotate, so that the rotating shaft 7 rotates with the bevel gear one 10, so that the rotating cable 9 can be unwound and lengthened, when the charging pile body 4 is moved reversely, the rubber roller 16 reverses, so as to drive the rotating shaft 7 to reverse and wind the rotating cable 9, then the charging gun can be taken to charge the vehicle.

[0030] The above is only the preferred specific embodiment of the present application; however, the protection scope of the present application is not limited to this. Any skilled person in the art, according to the technical scheme and the improvement concept of the present application, can be replaced or changed, which should be covered in the protection scope of the present application.

Claims

1. An electrically automated charging post apparatus comprising a wall (1), characterized in that: The surface of the wall (1) is fixedly installed with three slide rails (2), the outer sides of the three slide rails (2) are slidably connected with sliding blocks (3), the outer walls of two sliding blocks (3) are fixedly installed with charging pile bodies (4), the outer wall of the other sliding block (3) is fixedly installed with a cable winding box (5), the back of the cable winding box (5) is fixedly connected with the back of the charging pile body (4) through a fixing rod, the inside of the cable winding box (5) is provided with a conductive slip ring (6), the stator end of the conductive slip ring (6) is fixedly connected with the circular part of the inner wall of the cable winding box (5), and the rotor end of the conductive slip ring (6) is inserted and installed with a rotating shaft (7) through a central channel, and the rotating shaft (7) is fixedly connected with the rotor end of the conductive slip ring (6) through bolts, one end of the rotating shaft (7) extends to the outside of the cable winding box (5) through a through groove, the stator end brush of the conductive slip ring (6) is electrically connected with a static cable (8), and the rotor end conductive ring of the conductive slip ring (6) is electrically connected with a rotating cable (9), one end of the rotating cable (9) is fixedly connected with the wiring end of the charging pile body (4), one end of the rotating shaft (7) is fixedly installed with a bevel gear one (10), the outer side of the bevel gear one (10) is meshedly connected with a bevel gear two (11), one end of the bevel gear two (11) is fixedly connected with a linkage shaft (12), the outer side of the linkage shaft (12) is provided with a limiting sleeve (13), the top end of the charging pile body (4) is fixedly installed with a fixed plate (14), the top end of the fixed plate (14) is installed with three rotating rods (15) through bearings, the outer walls of the three rotating rods (15) are fixedly installed with rubber rollers (16), and one end of one of the rubber rollers (16) is fixedly connected with one end of the linkage shaft (12).

2. The electric automated charging station of claim 1, wherein: The rotating cable (9) is wound to the outside of the rotating shaft (7), and the static cable (8) and one end of the rotating cable (9) extend to the top and the bottom of the cable winding box (5) respectively through the through grooves.

3. The electric automated charging station of claim 1, wherein: The outer wall of the linkage shaft (12) is connected with the inner wall of the limiting sleeve (13) through a bearing, and one end of the limiting sleeve (13) is fixedly connected with the outer wall of the cable winding box (5).

4. The electric automated charging station of claim 1, wherein: The outer walls of one of the rubber rollers (16) are uniformly provided with tooth grooves (17), and the outer walls of the other two rubber rollers (16) are uniformly fixedly installed with tooth blocks (18), and the two groups of tooth blocks (18) are meshedly connected with the tooth grooves (17).

5. The electric automated charging station of claim 1, wherein: The outer walls of the three rubber rollers (16) are closely attached to each other, and the outer wall of one of the rubber rollers (16) is closely attached to the surface of the wall (1).