A power transmission line rope winder

CN224604432UActive Publication Date: 2026-08-07LIJIANG XIAOSHENG ELECTRIC POWER SERVICE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
LIJIANG XIAOSHENG ELECTRIC POWER SERVICE CO LTD
Filing Date
2024-10-10
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]现有技术中的绕绳器在使用过程中,虽然有益处较多,但依旧存在以下问题,其对于树枝尺寸的适应性不够完善,其不便于应对不同尺寸的树枝,导致了对不同尺寸的树枝固定效果不一致,影响对树枝的拉扯效果

Benefits of technology

[0018](1)本实用新型所述的一种输电线路绕绳器,支撑杆通过树枝的尺寸能够发生水平移动,支撑杆通过滑块、滑槽和连接杆保证水平移动的流畅性和稳定性,弹簧弹力推动滑块,使支撑杆与树枝外壁相接触,达到了能够调节支撑杆之间间距的目的,保证支撑杆之间的间距能够适应不同尺寸的树枝,从而能够对不同尺寸的树枝进行收纳,提高设备的适应性。

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Abstract

The utility model relates to a winding device technical field, specifically is a kind of power transmission line winding device, including support block, sliding slot and support rod, the sliding slot is established in the both sides of support block upper end outer wall, the connecting rod is installed in the inner wall one side of sliding slot, the sliding block is slidably installed in the connecting rod outside, the support rod is installed in the sliding block upper end outer wall, the pivot is rotatably installed in the support rod one side outer wall, the clamping plate is installed in the pivot one end outer wall, the purpose that the spacing between support rod can be adjusted, the spacing between support rod can be adapted to different sizes of branch, so different sizes of branch can be stored, improve the adaptability of equipment.
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Description

Technical Field

[0001] This utility model relates to the field of rope winder technology, specifically to a power transmission line rope winder. Background Technology

[0002] The power transmission line rope winder is a device used for high-altitude operations in power systems. It is used for felling and clearing trees along power transmission lines. This device uses a mechanical structure to achieve safe and efficient clearing of tree obstructions around power transmission lines, avoiding the dangers and inefficiencies of manually climbing trees and winding ropes. The main purpose of the rope winder is to improve the safety and efficiency of power transmission line maintenance and reduce safety hazards and operational difficulties caused by trees that are too tall or inconveniently located.

[0003] While existing rope winders offer numerous advantages during use, they still suffer from the following problems: their adaptability to branch sizes is not perfect, making them unsuitable for handling branches of different sizes, resulting in inconsistent fixing effects on branches of different sizes and affecting the pulling effect on the branches. Utility Model Content

[0004] To address the problems in the existing technology, this utility model provides a power transmission line rope winder.

[0005] The technical solution adopted by this utility model to solve its technical problem is a power transmission line rope winder, including a support block, a sliding groove and a support rod. The upper outer wall of the support block is provided with sliding grooves on both sides. A connecting rod is installed on one side of the inner wall of the sliding groove. A slider is slidably installed on the outer side of the connecting rod. A support rod is installed on the upper outer wall of the slider. A rotating shaft is rotatably installed on one side of the outer wall of the support rod. A clamping plate is installed on the outer wall of one end of the rotating shaft.

[0006] By adopting the above technical solution, the support rod can move horizontally through the slide and slider, thereby adjusting the distance between the support rods, and the clamping plate can block the branches, ensuring that the position of the branches between the support rods is relatively stable.

[0007] Specifically, lifting rings are installed on both outer walls of the support block, and connecting ropes are connected to the outer walls of the lifting rings.

[0008] By adopting the above technical solution, workers can connect the connecting rope to the hanging ring. This allows workers to control the falling direction of the branch by pulling the supporting block with the connecting rope while the supporting block is located on a high branch, thus maintaining the safety of cutting the branch.

[0009] Specifically, a stud is installed on one side of the lower outer wall of the support block, and an extension rod is threaded onto the outer wall of the stud.

[0010] By adopting the above technical solution, the support block and the extension rod can be connected by studs, thereby ensuring that the extension rod is stably positioned outside the support block. Moreover, the staff can adjust the position of the support block by lifting the extension rod until the support block is moved to the outside of the tree branch.

[0011] Specifically, the slider is slidably installed inside the groove, and a spring is provided on one side of the outer wall of the connecting rod. The slider is elastically connected to the inner wall of the groove through the spring.

[0012] By adopting the above technical solution, the slider can move horizontally through the slide groove and connecting rod, ensuring smooth and stable movement of the slider, and achieving the purpose of limiting the movement trajectory of the support rod, thereby adjusting the spacing between the support rods to ensure that the spacing between the support rods can adapt to branches of different sizes.

[0013] Specifically, a limiting block is installed on one side of the outer wall of the support rod, and the limiting block is in contact with the outer wall of the clamping plate.

[0014] By adopting the above technical solution, the limiting block can limit the rotation angle of the clamping plate, thereby ensuring that the position of the clamping plate is relatively stable. The clamping plate can also squeeze the outer side of the branch with the supporting block, thereby achieving the purpose of pulling the branch.

[0015] Specifically, a torsion spring is installed on one side of the outer wall of the rotating shaft, and the other end of the torsion spring is connected to the outer wall of the support rod.

[0016] By adopting the above technical solution, the torsional force generated by the torsion spring can drive the rotating shaft to rotate, thereby ensuring the stability of the relative position of the clamping plate on the outside of the support rod and ensuring the controlled rotation of the clamping plate.

[0017] The beneficial effects of this utility model are:

[0018] (1) The power transmission line rope winder described in this utility model has a support rod that can move horizontally according to the size of the tree branch. The support rod is made smooth and stable in horizontal movement by means of a slider, a groove and a connecting rod. The spring force pushes the slider so that the support rod contacts the outer wall of the tree branch, thereby achieving the purpose of adjusting the distance between the support rods and ensuring that the distance between the support rods can adapt to tree branches of different sizes. This allows the equipment to collect tree branches of different sizes and improve its adaptability.

[0019] (2) The power transmission line rope winder described in this utility model allows the operator to manually pull the connecting rope and change the force direction of the support rod by pulling force, thereby ensuring the stability of the support rod's position outside the tree branch, ensuring the stability of the equipment's position outside the tree branch, ensuring that the operator can pull the tree branch, control the falling direction of the tree branch, and allow the operator to disassemble the extension rod through the stud, preventing the extension rod from falling when the tree branch falls, thus protecting the extension rod and ensuring its service life. Attached Figure Description

[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0021] Figure 1 This is an enlarged schematic diagram of the support block structure of this utility model;

[0022] Figure 2 This is a schematic diagram of the support block structure of this utility model;

[0023] Figure 3 This is an exploded view of the extension rod structure of this utility model;

[0024] Figure 4 This is an exploded view of the support rod structure of this utility model;

[0025] Figure 5 This is an exploded view of the groove structure of this utility model.

[0026] In the diagram: 1. Support block; 11. Connecting rope; 12. Extension rod; 13. Lifting ring; 14. Stud; 2. Slide groove; 21. Slider; 22. Connecting rod; 23. Spring; 3. Support rod; 31. Limiting block; 32. Rotating shaft; 33. Torsion spring; 34. Clamping plate. Detailed Implementation

[0027] 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.

[0028] To save manpower and improve efficiency, as one embodiment of this utility model, such as Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 As shown, the power transmission line rope winder of this utility model includes a support block 1, a sliding groove 2, and a support rod 3. The upper outer wall of the support block 1 is provided with sliding grooves 2 on both sides. A connecting rod 22 is installed on one side of the inner wall of the sliding groove 2. A slider 21 is slidably installed on the outer side of the connecting rod 22. The upper outer wall of the slider 21 is provided with a support rod 3. A rotating shaft 32 is rotatably installed on one side of the outer wall of the support rod 3. A clamping plate 34 is installed on the outer wall of one end of the rotating shaft 32.

[0029] During use, the support rod 3 can move horizontally through the slide groove 2 and the slider 21, thereby adjusting the distance between the support rods 3, and the clamping plate 34 can block the branches, ensuring that the position of the branches between the support rods 3 is relatively stable.

[0030] For example, to pull, such as Figure 3 As shown, lifting rings 13 are installed on both outer walls of the support block 1, and connecting ropes 11 are connected to the outer walls of the lifting rings 13.

[0031] When in use, the staff takes the connecting rope 11 and connects it to the hanging ring 13. This allows the staff to control the falling direction of the branch by pulling the support block 1 with the connecting rope 11 while the support block 1 is on a high branch, thus maintaining the safety of cutting the branch.

[0032] To lift support block 1, for example, as follows: Figure 3 As shown, a stud 14 is installed on one side of the lower outer wall of the support block 1, and an extension rod 12 is threadedly connected to the outer wall of the stud 14.

[0033] In use, the support block 1 and the extension rod 12 can be connected by the stud 14, which can ensure that the extension rod 12 is in a stable position outside the support block 1. The staff can adjust the position of the support block 1 by lifting the extension rod 12 until the support block 1 is moved to the outside of the tree branch.

[0034] To maintain the movement trajectory, for example, such as Figure 5 As shown, the slider 21 is slidably installed inside the slide groove 2, and a spring 23 is provided on one side of the outer wall of the connecting rod 22. The slider 21 is elastically connected to the inner wall of the slide groove 2 through the spring 23.

[0035] In use, the slider 21 can move horizontally through the slide groove 2 and the connecting rod 22, ensuring that the movement of the slider 21 is smooth and stable, and achieving the purpose of limiting the movement trajectory of the support rod 3, thereby adjusting the spacing between the support rods 3 to ensure that the spacing between the support rods 3 can adapt to branches of different sizes.

[0036] To limit the rotation angle, for example, such as Figure 4 As shown, a limiting block 31 is installed on one side of the outer wall of the support rod 3, and the limiting block 31 is in contact with the outer wall of the clamping plate 34.

[0037] When in use, the limiting block 31 can limit the rotation angle of the clamping plate 34, thereby ensuring that the position of the clamping plate 34 is relatively stable, and the clamping plate 34 can squeeze the outside of the branch with the support block 1, so as to achieve the purpose of pulling the branch.

[0038] To maintain the relative position of the clamping plates 34, for example, such as Figure 4 As shown, a torsion spring 33 is installed on one side of the outer wall of the rotating shaft 32, and the other end of the torsion spring 33 is connected to the outer wall of the support rod 3.

[0039] When in use, the torsional force generated by the torsion spring 33 can drive the rotating shaft 32 to rotate, thereby ensuring that the relative position of the clamping plate 34 on the outside of the support rod 3 is stable and that the clamping plate 34 can be rotated in a controlled manner.

[0040] When using this utility model, the worker takes the extension rod 12, thereby lifting the support block 1, moving the support block 1 to the outside of the branch, and allowing the clamping plate 34 to pass through the branch. The clamping plate 34 is driven to rotate by the branch, causing the clamping plate 34 to rotate circumferentially through the rotating shaft 32, so that the branch can enter between the support rods 3.

[0041] The torsional force of the torsion spring 33 can drive the rotating shaft 32 to rotate until the clamping plate 34 is reset, and the limiting plate can keep the clamping plate 34 in a stable position. The support rod 3 can move horizontally according to the size of the branch. The support rod 3 ensures the smoothness and stability of horizontal movement through the slider 21, the slide groove 2 and the connecting rod 22. The spring 23 pushes the slider 21 to make the support rod 3 contact the outer wall of the branch, thus achieving the purpose of adjusting the distance between the support rods 3 and ensuring that the distance between the support rods 3 can adapt to branches of different sizes.

[0042] Based on the above description, the staff manually pulls the connecting rope 11 on the ground, so that the clamping plate 34 squeezes the outer wall of the branch. By pulling, the force direction of the support rod 3 is changed, thereby ensuring the stability of the support rod 3 on the outside of the branch and controlling the falling direction of the branch.

[0043] Workers can disassemble the extension rod 12 using the stud 14 to prevent it from falling over when tree branches drop.

[0044] It should be noted that this utility model is a power transmission line rope winder. All components in this utility model are known to those skilled in the art, and their structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods.

[0045] 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 power transmission line rope winder, characterized in that, The support includes a support block (1), a sliding groove (2), and a support rod (3). The upper outer wall of the support block (1) is provided with sliding grooves (2) on both sides. A connecting rod (22) is installed on one side of the inner wall of the sliding groove (2). A slider (21) is slidably installed on the outer side of the connecting rod (22). A support rod (3) is installed on the upper outer wall of the slider (21). A rotating shaft (32) is rotatably installed on one side of the outer wall of the support rod (3). A clamping plate (34) is installed on the outer wall of one end of the rotating shaft (32).

2. The power transmission line rope winder according to claim 1, characterized in that, The support block (1) has lifting rings (13) installed on both outer walls, and the outer walls of the lifting rings (13) are connected to connecting ropes (11).

3. A power transmission line rope winder according to claim 1, characterized in that, A stud (14) is installed on one side of the lower outer wall of the support block (1), and an extension rod (12) is threaded onto the outer wall of the stud (14).

4. A power transmission line rope winder according to claim 1, characterized in that, The slider (21) is slidably installed inside the groove (2), and a spring (23) is provided on one side of the outer wall of the connecting rod (22). The slider (21) is elastically connected to the inner wall of the groove (2) through the spring (23).

5. A power transmission line rope winder according to claim 1, characterized in that, A limiting block (31) is installed on one side of the outer wall of the support rod (3), and the limiting block (31) is in contact with the outer wall of the clamping plate (34).

6. A power transmission line rope winder according to claim 1, characterized in that, A torsion spring (33) is installed on one side of the outer wall of the rotating shaft (32), and the other end of the torsion spring (33) is connected to the outer wall of the support rod (3).