Multi-split transmission conductor hanging equipment
Through the drone-assisted multi-split transmission line hanging equipment, remote hanging of grounding wires is realized, which solves the high risk and low efficiency of manual climbing to hang grounding wires and improves safety and efficiency.
Patent Information
- Application Number
- CN202422738292.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-11-08
AI Technical Summary
Manual climbing and hanging of ground wires is highly dangerous, labor-intensive and inefficient.
A multi-split transmission line hanging device is designed. It uses a drone carrying a high-definition camera module to assist ground workers in operation. Through the traction rope system of the hanging tower assembly and the hanging assembly, the ground wire can be remotely hung and installed, avoiding manual high-altitude operation.
It reduces safety risks, improves hanging and taking efficiency, avoids hidden dangers of electric shock and falling from heights, and significantly reduces labor intensity.
Smart Images

Figure CN223487697U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power maintenance technology, and in particular to a multi-split transmission line hanging device. Background Technology
[0002] Before power lines are shut down for maintenance, the power industry needs to install grounding wires for safety short circuits. Due to the special structure of multi-split transmission lines, the installation of grounding wires is now mostly done manually by climbing.
[0003] However, manually climbing to hang the grounding wire poses a great danger, requires workers to climb towers at high altitudes to hang the grounding wire, and results in high labor intensity and low efficiency. Utility Model Content
[0004] The purpose of this utility model is to provide a multi-split transmission line hanging device, which aims to solve the problems of high labor intensity and low hanging efficiency of the existing manual climbing and hanging grounding wire method.
[0005] To achieve the above objectives, this utility model provides a multi-split transmission line hanging device, including a tower hanging assembly, a line hanging assembly, a first traction rope, a second traction rope, and a grounding wire. The first traction rope is respectively disposed on one side of the tower hanging assembly and the line hanging assembly. The grounding wire is respectively connected to the tower hanging assembly and the line hanging assembly. The second traction rope is respectively connected to the first traction rope and the line hanging assembly. The line hanging assembly includes a housing, a second locking member, a guide member, and a pressing member. The housing is connected to the second traction rope and located on one side of the second traction rope. The guide member is rotatably connected to the housing and located at the bottom of the housing. The second locking member is fixedly connected to the housing and located on one side of the housing. The pressing member is disposed between the housing and the second locking member.
[0006] The hanging assembly further includes a metal pin and a locking head. The metal pin is located at the bottom of the guide, and the locking head is fixedly connected to the housing and located at the top of the locking head.
[0007] The tower mounting assembly includes a tower frame, a hanging ring, a first locking member, a wedge-shaped member, and an electrical control unit. The hanging ring is fixedly connected to the tower frame and is located at the top of the tower frame. The first locking member is located on one side of the tower frame, the wedge-shaped member is located on one side of the first locking member, and the electrical control unit is located on the side of the tower frame away from the hanging ring.
[0008] The electrical control component includes an electrical control pin and a ring magnet. The electrical control pin is located on one side of the tower, and the ring magnet is located on one side of the electrical control pin.
[0009] The first locking member includes an upper horizontal buckle and a lower horizontal buckle. The upper horizontal buckle is disposed on one side of the tower, and the lower horizontal buckle is disposed on the side of the tower near the wedge-shaped member.
[0010] This utility model discloses a multi-split transmission line hanging device. During grounding wire operation, after the UAV hangs the tower assembly, the UAV's high-definition camera module provides real-time video to assist ground personnel in pulling the second traction rope towards the transmission line. The second traction rope, under force, adheres to the transmission line. Simultaneously, the guide component guides the transmission line into the second locking component. The traction of the second traction rope causes deformation of the second locking component and the pressure component, thereby locking the transmission line into the second locking component. When the second traction rope is not pulling, the locking pin of the second locking component presses the transmission line upward due to the spring. At the same time, the arc-shaped pressure component, due to the spring... After restoring the compression of the transmission line to ensure good contact during installation, the tower mounting assembly is then remotely unlocked. A drone uses a hook to bring the first and second traction ropes to the ground. The drone then mounts the tower mounting assembly onto the overhead line. Workers remotely operate the drone from the ground to complete the tower mounting and the conductor mounting by pulling the traction ropes. This remotely completes the grounding wire installation without contact with the transmission line, preventing electric shock accidents. Workers do not need to climb, eliminating the risk of falls from heights and reducing safety risks. Furthermore, the installation efficiency is several times higher than manual installation, solving the problems of high labor intensity and low efficiency associated with existing manual grounding wire installation methods. Attached Figure Description
[0011] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0012] Figure 1 This is a schematic diagram of the structure of a multi-split power transmission conductor hanging device according to the present invention.
[0013] Figure 2 This is a rear view of a multi-split power transmission conductor hanging device according to this utility model.
[0014] Figure 3 This is a side view of a multi-split power transmission conductor hanging device according to this utility model.
[0015] Figure 4 yes Figure 1 A magnified view of detail A.
[0016] Figure 5 yes Figure 1 A magnified view of detail B.
[0017] Figure 6 yes Figure 2 A magnified view of detail C.
[0018] Figure 7 yes Figure 3 A magnified view of detail D.
[0019] In the diagram: 1-Tower hanging assembly, 2-Line hanging assembly, 3-First traction rope, 4-Second traction rope, 5-Grounding wire, 6-Tower frame, 7-Hanging ring, 8-First locking component, 9-Wedge-shaped component, 10-Electrical control part, 11-Upper horizontal buckle, 12-Lower horizontal buckle, 13-Electrical control pin, 14-Ring magnet, 15-Outer shell, 16-Second locking component, 17-Wire pressing component, 18-Metal pin, 19-Locking head, 20-Angle steel, 21-Transmission conductor, 22-Guide component. Detailed Implementation
[0020] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to unlock the utility model, and should not be construed as limiting the utility model.
[0021] Please see Figures 1 to 7 This utility model provides a multi-split transmission line hanging device, including a tower hanging assembly 1, a line hanging assembly 2, a first traction rope 3, a second traction rope 4, and a grounding wire 5. The first traction rope 3 is respectively disposed on one side of the tower hanging assembly 1 and the line hanging assembly 2. The grounding wire 5 is respectively connected to the tower hanging assembly 1 and the line hanging assembly 2. The second traction rope 4 is respectively connected to the first traction rope 3 and the line hanging assembly 2. The line hanging assembly 2 includes a housing 15, a second locking member 16, a guide member 22, and a pressing member 17. The housing 15 is connected to the second traction rope 4 and is located on one side of the second traction rope 4. The guide member 22 is rotatably connected to the housing 15 and is located at the bottom of the housing 15. The second locking member 16 is fixedly connected to the housing 15 and is located on one side of the housing 15. The pressing member 17 is disposed between the housing 15 and the second locking member 16.
[0022] In this embodiment, during the operation of the grounding wire 5, after the drone mounts the tower assembly 1, the real-time video provided by the high-definition camera module carried by the drone assists the ground workers in pulling the second traction rope 4 towards the transmission line 21. The second traction rope 4, under force, will adhere to the transmission line 21. Simultaneously, the guide member 22 guides the transmission line 21 to slide into the second locking member 16. Through the traction of the second traction rope 4, the second locking member 16 and the pressure member 17 deform, thereby causing the transmission line 21 to be locked into the second locking member 16. When the second traction rope 4 is not pulling, the locking pin of the second locking member 16 presses the transmission line 21 upwards due to the spring. At the same time, the arc-shaped pressure member 17... Since the spring returns to press the transmission line 21, ensuring good contact during installation, the tower mounting assembly 1 is then remotely unlocked. The drone uses a hook to bring the first traction rope 3 and the second traction rope 4 to the ground. The installation device uses the drone to mount the tower mounting assembly 1 on the overhead line. The operator remotely operates the drone from the ground to complete the tower end installation and pulls the traction rope to complete the conductor end installation, thus remotely completing the grounding wire 5 installation without contact with the transmission line, avoiding electric shock accidents. The operator does not need to climb to work, eliminating the risk of falling from height and reducing safety risks. Moreover, the installation efficiency is several times higher than manual installation, solving the problems of high labor intensity and low efficiency of the existing manual climbing method for installing grounding wires.
[0023] Furthermore, the hanging assembly 2 also includes a metal pin 18 and a locking head 19. The metal pin 18 is disposed at the bottom of the guide 22, and the locking head 19 is fixedly connected to the housing 15 and located at the top of the locking head 19.
[0024] In this embodiment, the locking head 19 is an electric locking head. The locking head 19 passes through the second traction rope 4, and the locking head 19 is controlled to lock the second traction rope 4. The metal pin 18 is inserted into the housing 15. The second traction rope 4 is remotely unlocked by the electronic control part 10 on the tower 6 after installation, and the end of the second traction rope 4 close to the locking head 19 is pulled to adjust the vertical position of the housing 15. After the housing 15 is installed, the locking head 19 is lowered by remote control, so that the second traction rope 4 pressed at the locking head 19 slides out. At the same time, the metal pin 18 inserted into the housing 15 also slides out of the housing 15 due to the sliding of the second traction rope 4, so that the second traction rope 4 is detached from the housing 15 and from the hanging assembly 2.
[0025] Furthermore, the tower mounting assembly 1 includes a tower 6, a hanging ring 7, a first locking member 8, a wedge-shaped member 9, and an electrical control unit 10. The hanging ring 7 is fixedly connected to the tower 6 and is located at the top of the tower 6. The first locking member 8 is disposed on one side of the tower 6, the wedge-shaped member 9 is disposed on one side of the first locking member 8, and the electrical control unit 10 is disposed on the side of the tower 6 away from the hanging ring 7.
[0026] In this embodiment, when the grounding wire 5 is being installed, the operator controls a drone on the ground to carry the tower 6 via the hanging ring 7 and approach the side of the power transmission line 21 that needs to be grounded. The drone contacts the angle steel 20 at the end of the tower. Relying on the weight of the tower 6 and the hanging assembly 2, and with the assistance of the wedge 9, the first locking member 8 is moved out and hooks onto the angle steel 20, so that the second traction rope 4 can touch the power transmission line that needs to be grounded by pulling at an angle, thus completing the installation of the tower 6.
[0027] Furthermore, the electronic control part 10 includes an electronic control pin 13 and an annular magnet 14. The electronic control pin 13 is disposed on one side of the tower 6, and the annular magnet 14 is disposed on one side of the electronic control pin 13.
[0028] In this embodiment, the electrically controlled latch 13 can be loosened remotely, disengaging the second traction rope 4 from the tower 6. After the electrically controlled latch 13 is opened, the first traction rope 3, connected to the hook, can pull the annular magnet 14, thus moving the second traction rope 4 and allowing it to be retrieved by the drone. In abnormal situations where the electrically controlled latch 13 cannot be remotely controlled to detach, the second traction rope 4 can be cut at the ground end, allowing the drone to retrieve the first traction rope 3 and the annular magnet 14.
[0029] Furthermore, the first locking member 8 includes an upper horizontal buckle 11 and a lower horizontal buckle 12. The upper horizontal buckle 11 is disposed on one side of the tower 6, and the lower horizontal buckle 12 is disposed on the side of the tower 6 near the wedge-shaped member 9.
[0030] In this embodiment, during installation, the drone lowers the tower 6, causing the tower 6 to touch the top of the angle steel 20. The weight of the tower 6 and the hanging assembly 2 causes the upper horizontal buckle 11 to rotate and clamp the angle steel 20. Similarly, the lower horizontal buckle 12 is pressed down by the weight of the tower 6 and the hanging assembly 2, causing the wedge-shaped member 9 to push against the lower horizontal buckle 12, thus flipping the lower horizontal buckle 12 to clamp the angle steel 20. During disassembly, the drone only needs to lift the tower 6 to unlock it, enabling remote control of the drone to autonomously disassemble the tower 6.
[0031] The above-disclosed embodiments are merely preferred embodiments of a multi-split transmission line hanging device of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes of the above embodiments can be implemented, and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A device for hanging multi-split transmission conductors, characterized in that... ; The device includes a tower mounting assembly, a wire hanging assembly, a first traction rope, a second traction rope, and a grounding wire. The first traction rope is respectively disposed on one side of the tower mounting assembly and the wire hanging assembly. The grounding wire is respectively connected to the tower mounting assembly and the wire hanging assembly. The second traction rope is respectively connected to the first traction rope and the wire hanging assembly. The wire hanging assembly includes a housing, a second locking member, a guide member, and a wire pressing member. The outer shell is connected to the second traction rope and is located on one side of the second traction rope. The guide is rotatably connected to the outer shell and is located at the bottom of the outer shell. The second locking member is fixedly connected to the outer shell and is located on one side of the outer shell. The pressure member is disposed between the outer shell and the second locking member.
2. The multi-split transmission line hanging device as described in claim 1, characterized in that; The hanging assembly also includes a metal pin and a locking head. The metal pin is located at the bottom of the guide, and the locking head is fixedly connected to the housing and located at the top of the locking head.
3. The multi-split transmission line hanging device as described in claim 1, characterized in that... ; The tower mounting assembly includes a tower, a hanging ring, a first locking member, a wedge-shaped member, and an electrical control unit. The hanging ring is fixedly connected to the tower and is located at the top of the tower. The first locking member is located on one side of the tower, the wedge-shaped member is located on one side of the first locking member, and the electrical control unit is located on the side of the tower away from the hanging ring.
4. The multi-split transmission line hanging device as described in claim 3, characterized in that... ; The electrical control unit includes an electrical control pin and a ring magnet. The electrical control pin is located on one side of the tower, and the ring magnet is located on one side of the electrical control pin.
5. The multi-split transmission line hanging device as described in claim 3, Its characteristics are: The first locking member includes an upper horizontal buckle and a lower horizontal buckle. The upper horizontal buckle is disposed on one side of the tower, and the lower horizontal buckle is disposed on the side of the tower near the wedge-shaped member.