Peeling equipment for new energy wire

By designing peeling equipment for the bottom and top molds, using servo motors to drive guide rollers and lock adjustment, and combining ceramic semi-rings and anti-slip strips, the problem of friction damage during the peeling process of new energy lines was solved, achieving stable guidance and convenient recycling.

CN224068225UActive Publication Date: 2026-03-31TIANJIN JINYU ELECTRIC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

During the peeling process, the new energy lines are prone to scattering and rubbing against the outer wall of the peeling machine's outlet, causing scratches and damage. Existing equipment is difficult to guide effectively and recycle stably.

Method used

A stripping device comprising a bottom mold and a top mold was designed. The guide roller is driven by a servo motor and a reducer, and the device is adjusted by a locking buckle and a rotary rod to achieve stable guidance and feeding of the new energy line. The device uses ceramic semi-rings and anti-slip strips to reduce friction, and the slider and pressure roller work together to clamp and ensure smooth guidance of the line.

Benefits of technology

It effectively reduces frictional damage between the new energy production line and the peeling machine, achieves stable guidance and recycling, and improves the stability and convenience of the new energy production line's pumping.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of peeling equipment, in particular to peeling equipment for a new energy wire, which comprises a peeling machine main body, a plate seat for supporting is assembled on the surface of the outer wall of the peeling machine main body through a bolt, a plurality of groups of tube seats for supporting are assembled on the surface of the top end of the plate seat, and the tube seats are arranged on the surface of the top end of the plate seat. A vertical rod used for adjustment is slidably installed in the pipe base, a bottom die used for supporting is assembled at the end, away from the pipe base, of the vertical rod, and multiple sets of rotating rods connected with the vertical rod in a screwed mode are installed on the peripheral surface of the pipe base in a screwed mode; when the stripping equipment is used for stripping the new energy wire, the new energy wire discharged from the discharge port of the stripping machine main body can be pulled, the new energy wire can penetrate through the space between the bottom die and the top die, and the bottom die and the top die can be used for guiding the new energy wire discharged from the stripping machine main body; therefore, the condition that the new energy wire is scratched due to friction between the peeled new energy wire and the peeling machine main body is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of peeling equipment technology, specifically to a peeling device for new energy lines. Background Technology

[0002] New energy lines refer to wires or cables used to connect and transmit electricity or signals, primarily used in new energy fields such as solar energy, wind energy, and electric vehicle charging. These lines play a crucial role in new energy systems, ensuring the efficient transmission and use of energy. However, stripping machines are needed for the recycling of these new energy lines. While these machines facilitate disassembly and recycling, the stripped wires often scatter and exit from the machine's outlet. When workers pull on these scattered wires, they can easily rub against the outer wall of the outlet, causing damage. Therefore, we propose a stripping device for new energy lines. Utility Model Content

[0003] To address the problems in the existing technology, this utility model provides a stripping device for new energy lines.

[0004] The technical solution adopted by this utility model to solve its technical problem is a stripping device for new energy lines, including a stripping machine body. The outer wall surface of the stripping machine body is bolted with a plate base for support, and the top surface of the plate base is equipped with a tube base for support, and there are multiple sets of tube bases. A vertical rod for adjustment is slidably installed inside the tube base, and a bottom mold for support is installed at the end of the vertical rod away from the tube base. A rotating rod connected to the vertical rod is screwed on the outer peripheral surface of the tube base, and there are multiple sets of rotating rods. A top mold that fits with the bottom mold is hinged to the top surface of the bottom mold through a door hinge, and a locking buckle for limiting position is installed between the top mold and the bottom mold, and there are multiple sets of locking buckles.

[0005] The bottom mold has multiple sets of guide rollers rotatably mounted on its inner circumference for guiding materials. The outer wall surface of the bottom mold is equipped with a reducer that is connected to the guide rollers for transmission, and the power input end of the reducer is equipped with a servo motor. The inner circumference of the top mold has multiple sets of sliding grooves on both sides. The sliding grooves are equipped with sliders for adjustment, and pressure rollers corresponding to the guide rollers are rotatably mounted between the two sets of sliders.

[0006] By adopting the above technical solution, when using the peeling equipment to peel the new energy line, it can pull the new energy line discharged from the discharge port of the peeling machine body, and allow the new energy line to pass between the bottom mold and the top mold. The bottom mold and the top mold can guide the new energy line discharged from the peeling machine body, thereby reducing the friction between the new energy line and the peeling machine body after peeling and causing scratches. At the same time, the bottom mold and the top mold are hinged to each other and can be locked with a latch, making it easy to open and close. It is convenient to place the new energy line in the guide groove between the bottom mold and the top mold. It can also pull the bottom mold, so that the bottom mold drives the vertical rod to move in the tube seat on the plate base surface, which is convenient to adjust the height of the bottom mold and the top mold. The guide groove between the bottom mold and the top mold can correspond to the outlet of the peeling machine body, and the adjusted height can be locked with a rotary rod, so that the new energy line can be stably guided after peeling.

[0007] When using the bottom mold and top mold to guide the new energy production line, the servo motor on the outer periphery of the bottom mold can operate and drive the guide roller inside the bottom mold to rotate under the operation of the reducer. This allows the guide roller to cooperate with the pressure roller inside the top mold, which facilitates the auxiliary feeding of the new energy production line, making it convenient for personnel to pick up or cut it, and facilitating the recycling of the stripped new energy production line.

[0008] Specifically, the top surface of the top mold is fitted with a cover plate for sealing by screws, and the top surface of the cover plate is screwed with a screw rod that is rotatably connected to the slider, and there are multiple sets of screw rods.

[0009] By adopting the above technical solution, when the new energy line passes through the bottom mold and the top mold, the screw on the surface of the cover plate can be rotated, so that the screw and the cover plate are screwed together and push the slider in the inner circumferential groove of the top mold, so that the slider can be displaced and drive the pressure roller to move, so that the pressure roller can cooperate with the guide roller to clamp the new energy line, thereby enabling more stable pumping and guiding of the new energy line, which is convenient for personnel to recover.

[0010] Specifically, anti-slip strips are bonded to the outer periphery of both the guide roller and the pressure roller, and there are multiple sets of anti-slip strips.

[0011] By adopting the above technical solution, the anti-slip strips on the outer periphery of the guide roller and the pressure roller can improve the stability of the new energy line during the pumping and guiding process, so that the new energy line can pump and guide the new energy line more smoothly.

[0012] Specifically, the bottom mold and the top mold are each fitted with a matching ceramic semi-ring on their opposite sides, and there are two sets of ceramic semi-rings.

[0013] By adopting the above technical solution, the ceramic semi-ring has good lubricity, which helps to reduce the friction between the new energy line and the bottom and top molds, allowing the new energy line to pass smoothly between the bottom and top molds.

[0014] Specifically, the outer wall surface of the top mold is fitted with a handle for lifting.

[0015] By adopting the above technical solution, the handle is easy for personnel to hold and facilitates the flipping and adjustment of the top mold.

[0016] Specifically, both sides of the outer periphery of the guide roller are equipped with sprockets for transmission, and a chain for transmission is assembled between the two sets of sprockets.

[0017] By adopting the above technical solution, the two sets of sprockets are driven by chains, and the two sets of guide rollers are driven by two sets of sprockets and one set of chains. This allows the rotation of one set of guide rollers inside the bottom mold to enable the other guide rollers in the bottom mold to rotate synchronously, which facilitates the auxiliary pumping and guiding of the new energy production line.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] 1. The technical solution of this application, through the design of a bottom mold, top mold, vertical rod, tube seat, rotating rod, and locking buckle, can pull the new energy line discharged from the discharge port of the peeling machine body when peeling the new energy line using the peeling equipment, allowing the new energy line to pass between the bottom mold and the top mold. The bottom mold and top mold can guide the new energy line discharged from the peeling machine body, thereby reducing the friction between the new energy line and the peeling machine body after peeling and causing scratches. At the same time, the bottom mold and top mold are hinged to each other and can be locked by the locking buckle, making it easy to open and close, facilitating the placement of the new energy line in the guide groove between the bottom mold and the top mold. It can also pull the bottom mold, causing the bottom mold to drive the vertical rod to move in the tube seat on the plate base surface, which facilitates the height adjustment of the bottom mold and the top mold. The guide groove between the bottom mold and the top mold can correspond to the outlet of the peeling machine body, and the rotating rod is used to lock the adjusted height, so that the new energy line can be stably guided after peeling.

[0020] 2. The technical solution of this application, through the design of slider, pressure roller, guide roller, reducer and servo motor, enables the servo motor on the outer periphery of the bottom mold to operate and drive the guide roller inside the bottom mold to rotate under the operation of the reducer when the bottom mold and top mold guide the new energy line. This allows the guide roller to cooperate with the pressure roller inside the top mold, thereby facilitating the auxiliary feeding of the new energy line, making it convenient for personnel to pick up or cut, and facilitating the recycling of the stripped new energy line. Attached Figure Description

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] Figure 1 This is an isometric view of the present invention;

[0023] Figure 2 This is a schematic plan view of the connection structure between the bottom mold and the top mold of this utility model;

[0024] Figure 3 This is a schematic plan view of the internal structure of the bottom mold of this utility model;

[0025] In the diagram: 1. Main body of the peeling machine; 2. Plate base; 3. Tube base; 4. Vertical rod; 5. Bottom mold; 6. Top mold; 7. Rotating rod; 8. Lock; 9. Guide roller; 10. Reducer; 11. Servo motor; 12. Sprocket; 13. Chain; 14. Cover plate; 15. Slide groove; 16. Slider; 17. Pressure roller; 18. Screw; 19. Anti-slip strip; 20. Ceramic semi-ring; 21. Handle. Detailed Implementation

[0026] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0027] Please see Figure 1-3 This utility model provides a technical solution: a stripping device for new energy lines, including a stripping machine body 1. A support plate 2 is bolted to the outer wall surface of the stripping machine body 1, and a support tube seat 3 is mounted on the top surface of the support plate 2. Multiple sets of tube seats 3 are provided. An adjustable vertical rod 4 is slidably installed inside the tube seat 3, and a bottom mold 5 is mounted on the end of the vertical rod 4 away from the tube seat 3. Multiple sets of rotating rods 7 are screwed onto the outer circumferential surface of the tube seat 3 and screwed to the vertical rod 4. The top surface of the bottom mold 5 is hinged to the bottom mold via a hinge. The top mold 6 is matched with the bottom mold 5, and the top mold 6 and the bottom mold 5 are equipped with locking buckles 8 for limiting the position, and there are multiple sets of locking buckles 8; the bottom mold 5 is rotatably mounted with guide rollers 9 for guiding materials, and there are multiple sets of guide rollers 9; the outer wall surface of the bottom mold 5 is equipped with a reducer 10 that is connected to the guide rollers 9 for transmission, and the power input end of the reducer 10 is equipped with a servo motor 11; the inner circumference of the top mold 6 is provided with sliding grooves 15 on both sides, and there are multiple sets of sliding grooves 15; the sliding sliders 16 for adjustment are slidably installed in the sliding grooves 15, and the pressure rollers 17 corresponding to the guide rollers 9 are rotatably installed between the two sets of sliding sliders 16.

[0028] In use, when stripping new energy lines using the stripping equipment, it can pull the new energy lines discharged from the outlet of the stripping machine body 1, allowing the new energy lines to pass between the bottom mold 5 and the top mold 6. The bottom mold 5 and the top mold 6 can guide the new energy lines discharged from the stripping machine body 1, thereby reducing the friction between the new energy lines and the stripping machine body 1 after stripping, which could cause scratches. At the same time, the bottom mold 5 and the top mold 6 are hinged to each other and can be opened and closed using the locking buckle 8. The locking display makes it easy to open and close the two, which facilitates the placement of the new energy line in the guide groove between the bottom mold 5 and the top mold 6. It can also pull the bottom mold 5, so that the bottom mold 5 drives the vertical rod 4 to move in the tube seat 3 on the surface of the plate seat 2. This makes it easy to adjust the height of the bottom mold 5 and the top mold 6, so that the guide groove between the bottom mold 5 and the top mold 6 can correspond to the outlet of the peeling machine body 1. The adjusted height is locked by the rotary rod 7, so that the new energy line can be stably guided after peeling.

[0029] When the bottom mold 5 and the top mold 6 are used to guide the new energy line, the servo motor 11 on the outer periphery of the bottom mold 5 can operate and drive the guide roller 9 inside the bottom mold 5 to rotate under the operation of the reducer 10. This allows the guide roller 9 to cooperate with the pressure roller 17 inside the top mold 6, which facilitates the auxiliary feeding of the new energy line, making it convenient for personnel to pick up or cut it, and facilitating the recycling of the stripped new energy line.

[0030] like Figure 1 and Figure 2 As shown, a cover plate 14 for sealing is assembled on the top surface of the top mold 6 by screws, and a screw rod 18 that is rotatably connected to the slider 16 is screwed onto the top surface of the cover plate 14, and there are multiple sets of screw rods 18.

[0031] When in use, as the new energy line passes through the bottom mold 5 and the top mold 6, the screw 18 on the surface of the cover plate 14 can be rotated, so that the screw 18 and the cover plate 14 are screwed together and push the slider 16 in the inner circumferential groove 15 of the top mold 6, so that the slider 16 can be displaced and drive the pressure roller 17 to move, so that the pressure roller 17 can cooperate with the guide roller 9 to clamp the new energy line, thereby enabling more stable extraction and guidance of the new energy line, which is convenient for personnel to retrieve.

[0032] like Figure 3 As shown, anti-slip strips 19 are bonded to the outer periphery of both the guide roller 9 and the pressure roller 17, and there are multiple sets of anti-slip strips 19.

[0033] When in use, the anti-slip strips 19 on the outer periphery of the guide roller 9 and the pressure roller 17 help improve the stability of the new energy line during the pumping and guiding process, so that the new energy line can be pumped more smoothly.

[0034] like Figure 1 , Figure 2and Figure 3 As shown, the bottom mold 5 and the top mold 6 are each fitted with a ceramic semi-ring 20 that fits into each other, and there are two sets of ceramic semi-rings 20.

[0035] When in use, the ceramic semi-ring 20 has good lubricity, which helps to reduce the friction between the new energy line and the bottom mold 5 and the top mold 6, allowing the new energy line to pass smoothly between the bottom mold 5 and the top mold 6.

[0036] like Figure 1 As shown, the outer wall surface of the top mold 6 is fitted with a handle 21 for lifting.

[0037] When in use, the handle 21 is easy for personnel to hold and facilitates the flipping and adjustment of the top mold 6.

[0038] like Figure 3 As shown, both sides of the outer periphery of the guide roller 9 are equipped with sprockets 12 for transmission, and a chain 13 for transmission is assembled between the two sets of sprockets 12.

[0039] In use, the two sets of sprockets 12 are driven by a chain 13, and the two sets of guide rollers 9 are driven by two sets of sprockets 12 and a chain 13. This allows the rotation of one set of guide rollers 9 inside the bottom mold 5 to enable the other guide rollers 9 in the bottom mold 5 to rotate synchronously, which facilitates the auxiliary pumping and guiding of the new energy line.

[0040] The working principle and usage process of this utility model are as follows: In use, first, install the corresponding structural components in suitable positions. When stripping the new energy wire using the stripping equipment, the new energy wire discharged from the outlet of the stripping machine body 1 can be pulled, allowing it to pass between the bottom mold 5 and the top mold 6. The bottom mold 5 and the top mold 6 guide the new energy wire discharged from the stripping machine body 1, thereby reducing friction and scratches caused by friction between the new energy wire and the stripping machine body 1 after stripping. Simultaneously, the bottom mold 5 and the top mold 6 are hinged together and can be locked using the locking buckle 8, facilitating easy opening and closing. This allows the new energy wire to be placed in the guide groove between the bottom mold 5 and the top mold 6. Furthermore, pulling the bottom mold 5 causes the vertical rod 4 to move within the tube seat 3 on the surface of the plate base 2, facilitating height adjustment of the bottom mold 5 and the top mold 6. This ensures that the guide groove between the bottom mold 5 and the top mold 6 aligns with the outlet of the stripping machine body 1. The opening corresponds to the height adjustment, and the height is locked using the rotary rod 7, which allows for stable guidance of the stripped new energy line. Simultaneously, when the bottom mold 5 and top mold 6 guide the new energy line, the servo motor 11 on the outer periphery of the bottom mold 5 operates and, under the operation of the reducer 10, drives the guide roller 9 inside the bottom mold 5 to rotate. This allows the guide roller 9 to cooperate with the pressure roller 17 inside the top mold 6, facilitating auxiliary feeding of the new energy line. Prior to this, the screw 18 on the surface of the cover plate 14 can be rotated, causing the screw 18 and the cover plate 14 to screw together and push the slider 16 in the inner peripheral groove 15 of the top mold 6. This allows the slider 16 to move and drive the pressure roller 17 to move, enabling the pressure roller 17 to cooperate with the guide roller 9 and clamp the new energy line. This provides more stable feeding and guiding of the new energy line, facilitating personnel to pick it up or cut it, making it easier to recycle the stripped new energy line, and ensuring more stable operation of the stripping equipment.

[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A stripping apparatus for a new energy line, characterized in that, The utility model relates to a stripping machine, including stripping machine body (1), the outer wall surface of stripping machine body (1) is equipped with the plate seat (2) for supporting through bolt assembly, and the plate seat (2) top surface is equipped with the pipe seat (3) for supporting, and the pipe seat (3) has multiple groups, the pipe seat (3) inside sliding installation is equipped with the vertical rod (4) for adjusting, and the vertical rod (4) away from the one end of pipe seat (3) is equipped with the bottom die (5) for supporting, the outer circumferential surface of pipe seat (3) is screwed and is installed with the screw rod (7) that is connected with the screwing of vertical rod (4), and the screw rod (7) has multiple groups, the top end surface of bottom die (5) is hinged with the top die (6) that is matched with bottom die (5) through door shaft, and the lock catch (8) for limiting is equipped between top die (6) and bottom die (5), and the lock catch (8) has multiple groups, The inner periphery of bottom die (5) is rotatably installed with the guide roller (9) for guiding material, and the guide roller (9) has multiple groups, the outer wall surface of bottom die (5) is equipped with the speed reducer (10) that is transmissionally connected with guide roller (9), and the power input end of speed reducer (10) is equipped with servo motor (11), the inner periphery both sides surface of top die (6) is all provided with the sliding slot (15), and the sliding slot (15) has multiple groups, the sliding slot (15) is slidably installed with the sliding block (16) for adjusting, and the pressure roller (17) corresponding with guide roller (9) is rotatably installed between the two groups of sliding blocks (16).

2. The stripping device for new energy wire according to claim 1, characterized in that, The top end surface of top die (6) is equipped with the cover plate (14) for plugging through screw, and the top end surface of cover plate (14) is screwed and is installed with the screw rod (18) that is rotatably connected with sliding block (16), and the screw rod (18) has multiple groups.

3. The stripping device for new energy wire according to claim 1, characterized in that, The outer periphery of guide roller (9) and the outer periphery of pressure roller (17) are all bonded with antiskid strip (19), and the antiskid strip (19) has multiple groups.

4. The stripping device for new energy wire according to claim 1, characterized in that, The opposite side of bottom die (5) and top die (6) is all equipped with the ceramic half ring (20) that is matched with each other, and the ceramic half ring (20) has two groups.

5. The stripping device for new energy wire according to claim 1, characterized in that, The outer wall surface of top die (6) is equipped with the handle (21) for lifting.

6. The stripping device for new energy wire according to claim 1, characterized in that, The outer periphery both sides end surface of guide roller (9) is all equipped with the sprocket (12) for transmission, and the chain (13) for transmission is equipped between the two groups of sprockets (12).