Connecting mechanism, grounding wire and windproof arresting cable
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-15
- Publication Date
- 2026-04-03
Smart Images

Figure CN121790799A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of power grounding wire installation and removal technology, and is a connection mechanism, grounding wire, and windproof barrier cable. Background Technology
[0002] With the development of the power industry and the continuous improvement of the power grid, transmission lines, as an important component of the power grid, play a vital role as the main artery of the power grid. Transmission lines are numerous and widely distributed, with complex environments along their corridors. Moreover, with the intensification of climate change and the frequent occurrence of wind disasters, the situation of transmission lines suffering from wind damage is becoming increasingly serious. Wind damage not only causes direct damage to transmission lines but also leads to serious consequences such as power outages and production accidents. Therefore, the research and practice of wind damage prevention measures and methods for transmission lines are of great significance for maintaining the safe operation of the power grid.
[0003] Overhead transmission lines operate outdoors for extended periods, making them highly susceptible to natural conditions and climate change. Wind damage is typically accompanied by strong winds, thunderstorms, and other severe weather events, complicating fault diagnosis and location. Currently, common preventative measures involve installing jumper strings or counterweights on conductors experiencing wind-induced deflection faults. However, this method is often ineffective in preventing wind deflection. First, conductors with added jumper strings are still prone to wind-induced tripping. Second, the large surface area of the counterweights makes them susceptible to wind catching, potentially causing flashover when strong winds blow against them. Third, the addition of counterweights, each weighing several hundred kilograms, places an additional burden on the towers, requiring a re-evaluation of tower load capacity. This sacrifices design margins, increasing the risk of tower damage during strong winds, potentially leading to tower collapse and line breakage—consequences far more serious than wind-induced tripping, making it a poor trade-off. Fourth, the high cost and inconvenient transportation of counterweights result in high installation and modification costs.
[0004] Furthermore, the electrical safety work regulations clearly stipulate that once it is confirmed that there is no voltage on the line or equipment, a grounding wire should be installed immediately, and both ends of the work section must be short-circuited in three phases and reliably grounded. The grounding wire is a crucial element in ensuring operational safety. During power outage maintenance of transmission lines, the installation and removal of the grounding wire usually requires workers to climb the towers. Some transmission lines are tens of meters high, making high-altitude work extremely strenuous and posing safety risks of falls and electric shock. Summary of the Invention
[0005] This invention provides a connecting mechanism, a grounding wire, and a windproof barrier cable, overcoming the shortcomings of the prior art. It can effectively solve the problem that during power outage maintenance of transmission lines, the installation and removal of the line grounding wire usually requires workers to climb the tower, which involves high labor intensity and is prone to falls from heights and electric shock accidents.
[0006] One of the technical solutions of the present invention is achieved through the following measures: a connecting mechanism, including a fixed plate, a left wire clamp, a right wire clamp, a slider, and a driving mechanism. A baffle is fixed to the lower left side of the fixed plate, and a left wire clamp is fixed to the lower side of the baffle. The left wire clamp is arc-shaped with its opening to the right. A mounting plate is fixed to the lower right side of the fixed plate. A front limiting hole and a rear limiting hole are provided at intervals on the upper side of the fixed plate corresponding to the position between the mounting plate and the baffle. Both the front limiting hole and the rear limiting hole are strip-shaped. A slider is provided in both the front limiting hole and the rear limiting hole. A sliding plate is provided below the fixed plate. The lower side of each slider is fixed to the upper side of the sliding plate at a corresponding position. A right wire clamp is fixed to the lower side of the sliding plate corresponding to the front and rear positions of the left wire clamp. The right wire clamp is arc-shaped with its opening to the left. A driving mechanism is provided on the side of the mounting plate to enable the right wire clamp to move left and right.
[0007] The following are further optimizations and / or improvements to one of the above-mentioned inventive technical solutions: The aforementioned slider can be T-shaped, wider at the top and narrower at the bottom.
[0008] The aforementioned drive mechanism may include a drive motor, a power module, a control module, and a lead screw. A connecting plate is provided on the lower right side of the sliding plate. The left side of the connecting plate is fixedly installed together with the right side of the middle of the two right clamps. A threaded hole is provided on the right side of the middle of the mounting plate. A lead screw with its left end rotatably installed together with the right side of the connecting plate is screwed into the threaded hole. A drive motor is fixedly installed on the lower right side of the mounting plate. The output shaft of the drive motor is connected to the lead screw for transmission. A power module and a control module are provided on the upper right side of the mounting plate. The control module is electrically connected to the power module and the drive motor, respectively.
[0009] A front hinge seat can be fixedly installed on the upper right side of the fixing plate corresponding to the position of the front limit hole. The right side of the front hinge seat has a through front connecting hole. A front connecting pin that can be inserted into the front connecting hole after moving to the left is fixed on the upper side of the front slider. A rear hinge seat corresponding to the front hinge seat is fixedly installed on the upper right side of the fixing plate corresponding to the position of the rear limit hole. A rear connecting hole that can be inserted to the left is provided on the right side of the rear hinge seat. A rear connecting pin that can be inserted into the rear connecting hole after moving to the left is fixed on the upper side of the rear slider.
[0010] The right side of the aforementioned fixed plate has several left grooves with openings facing right, and a left magnet is fixedly installed in each left groove. The left side of the sliding plate has several right grooves with openings facing left, and a right magnet is installed in each right groove. The polarity of the left side of the right magnet is opposite to the polarity of the right side of the left magnet.
[0011] Both the inner sides of the left and right cable clamps can be detachably fitted with anti-slip pads.
[0012] The second technical solution of the present invention is achieved through the following measures: a grounding wire, including a connecting mechanism, a connecting wire, and a fixing mechanism. The fixing mechanism has the same structure as the connecting mechanism and is symmetrically distributed. A conductive plate is fixedly installed on the upper right side of the fixing plate. Two vertically penetrating fixing holes are provided on the upper side of the conductive plate at intervals. A first terminal is fixedly installed at the first end of the connecting wire. The first terminal is fixedly installed together with the conductive plate by connecting bolts passing through the fixing holes. A second terminal is fixedly installed at the second end of the connecting wire. The second terminal is fixedly installed together with the corresponding position on the left side of the fixing mechanism.
[0013] The third technical solution of the present invention is achieved through the following measures: a windproof barrier cable, including a connecting mechanism, a connecting member, and a clamping mechanism. The clamping mechanism and the connecting mechanism have the same structure and are symmetrically distributed. A first bowl-shaped hanging plate is fixedly installed on the upper right side of the fixing plate. A first ball-shaped hanging ring is fixedly installed on the first end of the connecting member. The first ball-shaped hanging ring is installed together with the first bowl-shaped hanging plate. A second bowl-shaped hanging plate is fixedly installed on the second end of the connecting member. A second ball-shaped hanging ring is fixedly installed on the left side of the clamping mechanism. The second ball-shaped hanging ring is installed together with the second bowl-shaped hanging plate. Several insulating umbrella skirts are spaced apart on the outside of the connecting member.
[0014] This invention has a reasonable and compact structure and is easy to use. The connection mechanism can be carried by operators or drones, which can reduce the installation intensity. The connection mechanism can be used as a standard part. Two connection mechanisms are used. When one connection mechanism is fixed to the conductor and the other connection mechanism is fixed to the tower, the grounding operation of the conductor can be achieved by connecting the two connection mechanisms with a conductive cable. When one connection mechanism is fixed to the conductor and the other connection mechanism is fixed to another conductor, the conductor can be fixed by connecting the two connection mechanisms with a spacer or connector. This can prevent the conductor from vibrating in high wind environments. Attached Figure Description
[0015] Appendix Figure 1 These are schematic diagrams of partial cross-sectional views of embodiments one through six of the present invention.
[0016] Appendix Figure 2 This is a schematic diagram of the left-side structure of embodiments one to six of the present invention.
[0017] Appendix Figure 3 This is a schematic diagram of the front sectional view of the structure when used in Embodiments 1 to 6 of the present invention.
[0018] Appendix Figure 4 This is a schematic diagram of the front sectional view of the structure before installation in Embodiment 7 of the present invention.
[0019] Appendix Figure 5 This is a schematic diagram of the main sectional view of the structure after installation in Embodiment 7 of the present invention.
[0020] Appendix Figure 6 This is a schematic diagram of the front sectional view of the structure before installation in Embodiment 8 of the present invention.
[0021] Appendix Figure 7 This is a schematic diagram of the front sectional view of the structure after installation in Embodiment 8 of the present invention.
[0022] The codes in the attached diagram are as follows: 1 is the fixing plate, 2 is the left wire clamp, 3 is the right wire clamp, 4 is the slider, 5 is the baffle, 6 is the mounting plate, 7 is the front limit hole, 8 is the drive motor, 9 is the power module, 10 is the control module, 11 is the lead screw, 12 is the connecting plate, 13 is the front hinge seat, 14 is the rear hinge seat, 15 is the front connecting pin, 16 is the rear connecting pin, 17 is the left magnet, 18 is the right magnet, 19 is the anti-slip pad, 20 is the conductive plate, 21 is the first terminal block, 22 is the second terminal block, 23 is the connecting bolt, 24 is the fixing mechanism, 25 is the clamping mechanism, 26 is the connector, 27 is the first bowl head hanging plate, 28 is the first ball head hanging ring, 29 is the second bowl head hanging plate, 30 is the second ball head hanging ring, 31 is the insulating umbrella skirt, 32 is the connecting frame, 33 is the connecting wire, 34 is the angle iron, 35 is the sliding plate, and 36 is the target wire. Detailed Implementation
[0023] The present invention is not limited to the following embodiments, and the specific implementation can be determined according to the technical solution of the present invention and the actual situation.
[0024] In this invention, for ease of description, the description of the relative positions of the components is based on the appendix to the specification. Figure 1 The layout is described using a diagrammatic method, such as the positional relationships of front, back, top, bottom, left, and right, which are based on the instructions attached. Figure 1 The orientation of the layout is determined by the direction of the map.
[0025] The present invention will be further described below with reference to embodiments and accompanying drawings: Example 1: As shown in the attached document Figure 1 , 2As shown in Figure 3, the connecting mechanism includes a fixed plate 1, a left wire clamp 2, a right wire clamp 3, a slider 4, and a driving mechanism. A baffle 5 is fixed to the lower left side of the fixed plate 1, and a left wire clamp 2 is fixed to the lower side of the baffle 5. The left wire clamp 2 is an arc shape with its opening to the right. A mounting plate 6 is fixed to the lower right side of the fixed plate 1. A front limiting hole 7 and a rear limiting hole are provided on the upper side of the fixed plate 1 at intervals between the mounting plate 6 and the baffle 5. Both the front limiting hole 7 and the rear limiting hole are strip-shaped. A slider 4 is provided in both the front limiting hole 7 and the rear limiting hole. A sliding plate 35 is provided below the fixed plate 1. The lower side of each slider 4 is fixed to the upper side of the sliding plate 35 at the corresponding position. A right wire clamp 3 is fixed to the lower side of the sliding plate 35 at the front and rear positions of the left wire clamp 2. The right wire clamp 3 is an arc shape with its opening to the left. A driving mechanism is provided on the side of the mounting plate 6 to enable the right wire clamp 3 to move left and right.
[0026] During use, the connecting mechanism can be carried by a drone, which can reduce the installation intensity. The connecting mechanism can be used as a standard part. Two connecting mechanisms can be used. When one connecting mechanism is fixed to the conductor and the other connecting mechanism is fixed to the tower, the conductor can be grounded by connecting the two connecting mechanisms with a conductive cable. When one connecting mechanism is fixed to the conductor and the other connecting mechanism is fixed to another conductor, the conductor can be fixed by connecting the two connecting mechanisms with a spacer or connector 26. This can prevent the conductor from vibrating in high wind environments.
[0027] The above-mentioned connection mechanism can be further optimized and / or improved according to actual needs: Example 2: As an optimization of the above examples, as shown in the appendix. Figure 1 , 3 As shown, the slider 4 is T-shaped, wider at the top and narrower at the bottom. During use, this design allows the fixed plate 1 to support the sliding plate 35 via the slider 4, enabling the drive mechanism to smoothly move the sliding plate 35 left and right along the lower side of the fixed plate 1 when in operation.
[0028] Example 3: As an optimization of the above examples, as shown in the appendix. Figure 1 , 3 As shown, the drive mechanism includes a drive motor 8, a power module 9, a control module 10, and a lead screw 11. A connecting plate 12 is provided on the lower right side of the sliding plate 35. The left side of the connecting plate 12 is fixedly installed together with the right side of the middle of the two right wire clamps 3. A threaded hole is provided on the right side of the middle of the mounting plate 6. A lead screw 11 with its left end rotatably installed together with the right side of the connecting plate 12 is screwed into the threaded hole. The drive motor 8 is fixedly installed on the lower right side of the mounting plate 6. The output shaft of the drive motor 8 is connected to the lead screw 11 for transmission. The power module 9 and the control module 10 are provided on the upper right side of the mounting plate 6. The control module 10 is electrically connected to the power module 9 and the drive motor 8 respectively.
[0029] Depending on the requirements, the drive motor 8 and the lead screw 11 form a known through-screw motor, such as the 28BYZ series linear motor. The control module 10 uses known technology, such as the KGS series motor wireless remote control switch or the KTW wireless remote control kit. During use, this allows for remote control of the start, stop, and forward / reverse rotation of the drive motor 8, enabling rapid installation of the connecting mechanism with the conductor or tower.
[0030] Example 4: As an optimization of the above examples, as shown in the appendix. Figure 1 , 2 As shown in Figure 3, a front hinge seat 13 is fixedly installed on the upper right side of the fixing plate 1 corresponding to the position of the front limiting hole 7. The front hinge seat 13 has a through front connecting hole on the right side. A front connecting pin 15 is fixed on the upper side of the front slider 4, which can be inserted into the front connecting hole after moving to the left. A rear hinge seat 14 corresponding to the front hinge seat 13 is fixedly installed on the upper right side of the fixing plate 1 corresponding to the position of the rear limiting hole. A rear connecting hole is provided on the right side of the rear hinge seat 14, which can be inserted into the rear connecting hole after moving to the left. A rear connecting pin 16 is fixed on the upper side of the rear slider 4, which can be inserted into the rear connecting hole after moving to the left.
[0031] According to requirements, the front hinge 13 and the rear hinge 14 have the same structure, both being plate-like structures or U-shaped structures with upward openings. During use, the front hinge 13 and the rear hinge 14 are installed together with the downward-opening U-shaped connecting frame 32 via front connecting pin 15 and rear connecting pin 16. The upper side of the connecting frame 32 is fixedly installed to the lower side of the drone. This allows the connecting mechanism to be transported to the target location by the drone. Then, the drive motor 8 is remotely controlled to move the connecting plate 12 to the left. After the connecting plate 12 moves to the left, the left wire clamp 2 and the right wire clamp 3 approach and clamp the wire. At the same time, the left and right connecting pins separate from the connecting frame 32, thus separating the connecting structure from the drone for convenient high-altitude operations.
[0032] Example 5: As an optimization of the above examples, as shown in the appendix. Figure 1 , 2 As shown in Figure 3, the right side of the fixed plate 1 has several left grooves with openings facing right, and a left magnet 17 is fixedly installed in each left groove. The left side of the sliding plate 35 has several right grooves with openings facing left, and a right magnet 18 is installed in each right groove. The polarity of the left side of the right magnet 18 is opposite to the polarity of the right side of the left magnet 17.
[0033] As required, both the left magnet 17 and the right magnet 18 are existing, known permanent magnets. During use, when one side of the angle iron 34 of the transmission tower or the crossarm angle iron 34 is located between the fixed plate 1 and the sliding plate 35, the left magnet 17 and the right magnet 18 attract one side of the angle iron 34 together, which can guide the fixed plate 1 into place quickly, reducing the installation difficulty of quickly fixing the fixed plate 1 and the sliding plate 35 to the outside of the transmission tower or the crossarm angle iron 34, thereby improving work efficiency.
[0034] Example 6: As an optimization of the above examples, as shown in the appendix. Figure 1 , 2 As shown in Figures 1 and 3, anti-slip pads 19 can be detachably installed on the inner side of both the left clamp 2 and the right clamp 3.
[0035] During use, this setting increases the contact area between the wire clamp and the wire or angle iron 34, making it easier to clamp the wire or angle iron 34 to the side, thereby improving the connection strength. It also protects the wire and angle iron 34 from damage.
[0036] Example 7: As attached Figure 4 , 5 As shown, the grounding wire includes a connecting mechanism, a connecting wire 33, and a fixing mechanism 24. The fixing mechanism 24 has the same structure as the connecting mechanism and is symmetrically distributed. A conductive plate 20 is fixedly installed on the upper right side of the fixing plate 1. Two vertically penetrating fixing holes are provided on the upper side of the conductive plate 20 at intervals. A first terminal 21 is fixedly installed at the first end of the connecting wire 33. The first connecting terminal and the conductive plate 20 are fixedly installed together by connecting bolts 23 passing through the fixing holes. A second terminal 22 is fixedly installed at the second end of the connecting wire 33. The second connecting terminal is fixedly installed together with the corresponding position on the left side of the fixing mechanism 24.
[0037] Depending on the requirements, the connecting wire 33 is a known existing technology, such as a copper wire with a cross-sectional area of 25 square millimeters, and the anti-slip pad 19 is made of conductive or insulating material.
[0038] In use, the front hinge seat 13 and the rear hinge seat 14 are installed together with the left side of the U-shaped connecting frame 32 with the opening facing downwards via the front connecting pin 15 and the rear connecting pin 16. The right side of the connecting frame 32 is fixedly installed together with the upper side of the fixing mechanism 24 via two connecting pins. The upper side of the connecting frame 32 is fixedly installed together with the lower side of the drone. In this way, the grounding wire can be transported to the target location by the drone. When the left wire clamp 2 is located outside the target conductor 36 and the fixing mechanism 24 is located on the side of the angle iron 34 of the transmission tower, the drive motor 8 of the remote control connecting mechanism is activated, causing the connecting plate 12 of the connecting mechanism to move to the left. After the connecting plate 12 of the connecting mechanism moves to the left, the left wire clamp 2 and the right wire clamp 3 of the connecting mechanism approach and clamp the target conductor 36. At the same time, the front connecting pin 15 and the rear connecting pin 16 separate from the connecting frame 32, so that the left side of the connecting frame 32 can be separated from the connecting mechanism.
[0039] At the same time, the drive motor of the remote control fixing mechanism 24 is activated, causing the connecting plate of the fixing mechanism 24 to move to the right. After the connecting plate of the fixing mechanism 24 moves to the right, the left and right clamps of the fixing mechanism 24 approach and clamp one side of the angle iron 34 of the transmission tower. Simultaneously, the two connecting pins separate from the right side of the connecting frame 32, thus separating the connecting frame 32 from the grounding wire, i.e., separating the grounding wire from the drone. As the drone separates from the grounding wire, the grounding wire connects the target conductor 36 to the transmission tower, thereby realizing the grounding operation. High-altitude grounding operations can be achieved with the help of drones, shortening the grounding operation time.
[0040] Example 8: As attached Figure 6 , 7 As shown, the windproof barrier cable includes a connecting mechanism, a connector 26, and a clamping mechanism 25. The clamping mechanism 25 has the same structure as the connecting mechanism and is symmetrically distributed. A first bowl-shaped hanging plate 27 is fixedly installed on the upper right side of the fixing plate 1. A first ball-shaped hanging ring 28 is fixedly installed on the first end of the connector 26. The first ball-shaped hanging ring 28 is installed together with the first bowl-shaped hanging plate 27. A second bowl-shaped hanging plate 29 is fixedly installed on the second end of the connector 26. A second ball-shaped hanging ring 30 is fixedly installed on the left side of the clamping mechanism 25. The second ball-shaped hanging ring 30 is installed together with the second bowl-shaped hanging plate 29. Several insulating umbrella skirts 31 are spaced apart on the outer side of the connector 26.
[0041] According to the requirements, the connector 26 is a known technology, such as a spacer or connecting rope. The first bowl-head hanging plate 27 and the second bowl-head hanging plate 29 have the same structure and are both known technologies. The first ball-head hanging ring 28 and the second ball-head hanging ring 30 have the same structure and are both known technologies. The insulating skirt 31 can ensure the safety between phase conductors. The anti-slip pad 19 is made of insulating material.
[0042] If the connector 26 is a spacer bar, in use, the front hinge seat 13 and the rear hinge seat 14 are installed together with the left side of the U-shaped connecting frame 32 with the opening facing downwards via the front connecting pin 15 and the rear connecting pin 16. The right side of the connecting frame 32 is fixedly installed together with the upper side of the fixing mechanism 24 via two connecting pins. The upper side of the connecting frame 32 is fixedly installed together with the lower side of the drone. In this way, the windproof arresting cable can be transported to the target position by the drone. When the left line clamp 2 is located outside one of the target wires 36 and the fixing mechanism 24 is located outside the other target wire 36, the drive motor 8 of the remote control connecting mechanism is activated, causing the connecting plate 12 of the connecting mechanism to move to the left. After the connecting plate 12 of the connecting mechanism moves to the left, the left line clamp 2 and the right line clamp 3 of the connecting mechanism approach and clamp one of the target wires 36. At the same time, the front connecting pin 15 and the rear connecting pin 16 separate from the connecting frame 32, so that the left side of the connecting frame 32 can be separated from the connecting mechanism.
[0043] At the same time, the drive motor of the remote control fixing mechanism 24 operates, causing the connecting plate of the fixing mechanism 24 to move to the right. After the connecting plate of the fixing mechanism 24 moves to the right, the left and right wire clamps of the fixing mechanism 24 approach and clamp another target wire 36. Simultaneously, the two connecting pins separate from the right side of the connecting frame 32, thus separating the connecting frame 32 from the windproof arresting cable, that is, separating the windproof arresting cable from the drone. While the drone is separating from the windproof arresting cable, the windproof arresting cable connects the two target wires 36 together. This can prevent failure when the target wires 36 sway significantly during strong winds, thereby realizing the installation of the windproof arresting cable. The installation of the windproof arresting cable can be carried out at high altitudes with the help of drones, shortening the installation time.
[0044] If the connector 26 is a connecting rope (insulated material), during use, the front hinge seat 13 and the rear hinge seat 14 are installed together with the left side of the U-shaped connecting frame 32 with the opening facing downwards via the front connecting pin 15 and the rear connecting pin 16. The right side of the connecting frame 32 is fixedly installed together with the upper side of the fixing mechanism 24 via two connecting pins. The upper side of the connecting frame 32 is fixedly installed together with the lower side of the drone. In this way, the windproof arresting cable can be transported to the target position by the drone. When the left line clamp 2 is located outside one of the crossarm angle irons and the fixing mechanism 24 is located outside the other crossarm angle iron 34, the drive motor 8 of the remote control connecting mechanism is activated, causing the connecting plate 12 of the connecting mechanism to move to the left. After the connecting plate 12 of the connecting mechanism moves to the left, the left line clamp 2 and the right line clamp 3 of the connecting mechanism approach and clamp one side of the crossarm angle iron. At the same time, the front connecting pin 15 and the rear connecting pin 16 separate from the connecting frame 32, so that the left side of the connecting frame 32 can be separated from the connecting mechanism.
[0045] At the same time, the drive motor of the remote-controlled fixing mechanism 24 operates, causing the connecting plate of the fixing mechanism 24 to move to the right. After the connecting plate of the fixing mechanism 24 moves to the right, the left and right clamps of the fixing mechanism 24 approach and clamp another crossarm angle iron 34. Simultaneously, the two connecting pins separate from the right side of the connecting frame 32, thus separating the connecting frame 32 from the windproof barrier cable, i.e., separating the windproof barrier cable from the drone. While the drone is separated from the windproof barrier cable, the windproof barrier cable connects the two target conductors 36 together. By setting up a windproof barrier cable between the transmission tower and the suspended insulator string, the connecting rope can act as a barrier when the insulator string sways significantly in strong winds, preventing collisions between the swaying insulator string and the transmission tower, thus improving the safety of the power grid.
[0046] The above technical features constitute various embodiments of the present invention, which have strong adaptability and implementation effect. Unnecessary technical features can be added or removed according to actual needs to meet the needs of different situations.
Claims
1. A connecting mechanism, characterized in that... The device includes a fixed plate, a left wire clamp, a right wire clamp, sliders, and a drive mechanism. A baffle is fixed to the lower left side of the fixed plate, and a left wire clamp is fixed to the lower side of the baffle. The left wire clamp is an arc shape with its opening to the right. A mounting plate is fixed to the lower right side of the fixed plate. A front limit hole and a rear limit hole are provided at intervals on the upper side of the fixed plate corresponding to the position between the mounting plate and the baffle. Both the front limit hole and the rear limit hole are strip-shaped. A slider is provided in both the front limit hole and the rear limit hole. A sliding plate is provided below the fixed plate. The lower side of each slider is fixed to the corresponding position on the upper side of the sliding plate. A right wire clamp is fixed to the lower side of the sliding plate corresponding to the front and rear positions of the left wire clamp. The right wire clamp is an arc shape with its opening to the left. A drive mechanism is provided on the side of the mounting plate to enable the right wire clamp to move left and right.
2. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 1, characterized in that... The slider is T-shaped, wider at the top and narrower at the bottom.
3. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 1 or 2, characterized in that... The drive mechanism includes a drive motor, a power module, a control module, and a lead screw. A connecting plate is located on the lower right side of the sliding plate. The left side of the connecting plate is fixedly installed together with the right side of the middle of the two right clamps. A threaded hole is provided on the right side of the middle of the mounting plate. A lead screw with its left end rotatably installed together with the right side of the connecting plate is screwed into the threaded hole. A drive motor is fixedly installed on the lower right side of the mounting plate. The output shaft of the drive motor is connected to the lead screw for transmission. A power module and a control module are located on the upper right side of the mounting plate. The control module is electrically connected to the power module and the drive motor, respectively.
4. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 3, characterized in that... A front hinge seat is fixedly installed on the upper right side of the fixing plate corresponding to the position of the front limit hole. The right side of the front hinge seat has a through front connecting hole. A front connecting pin is fixed on the upper side of the front slider, which can be inserted into the front connecting hole after moving to the left. A rear hinge seat corresponding to the front hinge seat is fixedly installed on the upper right side of the fixing plate corresponding to the position of the rear limit hole. A rear connecting hole is provided on the right side of the rear hinge seat. A rear connecting pin is fixed on the upper side of the rear slider, which can be inserted into the rear connecting hole after moving to the left.
5. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 1, 2, or 4, characterized in that... The right side of the fixed plate has several left grooves with openings facing right, and a left magnet is fixedly installed in each left groove. The left side of the sliding plate has several right grooves with openings facing left, and a right magnet is installed in each right groove. The polarity of the left side of the right magnet is opposite to the polarity of the right side of the left magnet.
6. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 3, characterized in that... The right side of the fixed plate has several left grooves with openings facing right, and a left magnet is fixedly installed in each left groove. The left side of the sliding plate has several right grooves with openings facing left, and a right magnet is installed in each right groove. The polarity of the left side of the right magnet is opposite to the polarity of the right side of the left magnet.
7. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 1, 2, 4, or 6, characterized in that... Anti-slip pads can be detachably installed on the inside of both the left and right cable clamps.
8. The connecting mechanism, grounding wire, and windproof barrier cable according to claim 3, characterized in that... Anti-slip pads can be detachably installed on the inside of both the left and right cable clamps.
9. A grounding wire using the connection mechanism as described in any one of claims 1 to 8, characterized in that... The device includes a connecting mechanism, a connecting wire, and a fixing mechanism. The fixing mechanism has the same structure as the connecting mechanism and is symmetrically distributed. A conductive plate is fixedly installed on the upper right side of the fixing plate. Two vertically penetrating fixing holes are provided on the upper left and right sides of the conductive plate. A first terminal is fixedly installed at the first end of the connecting wire. The first terminal is fixedly installed together with the conductive plate by connecting bolts passing through the fixing holes. A second terminal is fixedly installed at the second end of the connecting wire. The second terminal is fixedly installed together with the corresponding position on the left side of the fixing mechanism.
10. A windproof barrier cable using the connecting mechanism as described in any one of claims 1 to 8, characterized in that... It includes a connecting mechanism, a connecting member, and a clamping mechanism. The clamping mechanism has the same structure as the connecting mechanism and is symmetrically distributed. A first bowl-shaped hanging plate is fixedly installed on the upper right side of the fixing plate. A first ball-shaped hanging ring is fixedly installed on the first end of the connecting member. The first ball-shaped hanging ring is installed together with the first bowl-shaped hanging plate. A second bowl-shaped hanging plate is fixedly installed on the second end of the connecting member. A second ball-shaped hanging ring is fixedly installed on the left side of the clamping mechanism. The second ball-shaped hanging ring is installed together with the second bowl-shaped hanging plate. Several insulating umbrella skirts are provided at intervals on the outer side of the connecting member.