Parallel groove clamp installation equipment and installation system
By designing the installation equipment and drone system of the trench clamp, the problems of power outages and safety risks in power line repair are solved, and safe and efficient wire repair is achieved, which is suitable for the trench clamp of various specifications.
Patent Information
- Application Number
- CN202510274089.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-10
- Publication Date
- 2025-07-18
AI Technical Summary
The existing power line repair methods pose a safety risk of large-scale power outages or live operations, especially in narrow environments, which are difficult to achieve safe and efficient repair.
A drift clamp installation device is designed, including a clamping mechanism and a locking mechanism, and the driver carries the equipment to move to the repair position. The clamping member and locking assembly are automatically clamped the clamping wire to achieve repair of damaged wires without power outage.
It realizes the repair of wires safely and efficiently without power outage, reduces labor costs, improves operational safety and repair efficiency, and is suitable for the repair of trench clamps and single and double trench clamps of different specifications.
Smart Images

Figure CN120341606A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electric power equipment, and in particular to a parallel groove wire clamp installation device and an installation system. Background Art
[0002] The existing power lines usually use steel core aluminum stranded wire, which often has loose strands or broken strands. The occurrence of this situation affects the reliable operation of the line, and the conductor needs to be repaired at this time.
[0003] In the current repair method, when the line is damaged, the state of the steel core cannot be judged from a distance. When personnel perform repairs at close range, once the steel core of the steel-core aluminum stranded wire has been damaged and is abnormally disconnected due to stress, the conductor with great stress will bring great safety hazards to on-site workers. If the environment around the damaged point is good and meets the parking conditions of the insulated boom truck, live working can be used for repair, but at least one insulated boom truck and a four-person working group are required for handling, and there are certain safety risks in the live handling process; if the environment around the damaged point is narrow and does not meet the parking conditions of the insulated boom truck, the line power outage method can be used for handling, but it will expand the scope of the power outage, causing power outages for back-end users without reason, thereby causing service quality incidents. Summary of the invention
[0004] Aiming at the problem that currently when repairing lines, power outage operations or live operations are often adopted, which is prone to large-scale power outages or installation risks, the present invention proposes a parallel groove wire clamp installation device and an installation system.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions: In a first aspect, the present invention provides a parallel groove line clamp installation device for installing the parallel groove line clamp, the parallel groove line clamp includes an upper clamping plate, a lower clamping plate and a plurality of bolts, the device includes a main body, the main body is provided with a clamping mechanism and a locking mechanism, the clamping mechanism includes a first clamping member and a second clamping member, the first clamping member is at least used to clamp the upper clamping plate, the second clamping member is at least used to clamp the lower clamping plate, there is an installation space between the first clamping member and the second clamping member, the locking mechanism includes a locking assembly and an unlocking assembly, the locking assembly is connected to the bolt, and is at least used to drive the bolt to rotate to abut the upper clamping plate and the lower clamping plate, the unlocking assembly is connected to the clamping mechanism, and is at least used to release the parallel groove line clamp from the clamping mechanism.
[0006] Furthermore, the body includes a first fixing platform and a second fixing platform, the first clamping member is arranged on the first fixing platform, the second clamping member is arranged on the second fixing platform, and there is a distance between the first fixing platform and the second fixing platform to form an installation space.
[0007] Further, the first clamping member includes a clamping jaw and a receiving space. The clamping jaw is fixedly connected to the first fixed platform, and the clamping jaw is engaged with the edge of the upper clamping plate to clamp the upper clamping plate in the receiving space.
[0008] Further, the outer edge of the clamping jaw is an arc-shaped structure.
[0009] Further, the locking assembly is provided at one end of the second fixed platform away from the first fixed platform. The locking assembly includes a sleeve and a driving motor. One end of the sleeve is in transmission connection with a bolt, and the other end of the sleeve is in transmission connection with the output end of the driving motor.
[0010] Further, the locking assembly includes a gear transmission box and a plurality of sleeves. The gear transmission box is provided with a main gear and a plurality of secondary gears. The plurality of secondary gears are engaged with the main gear. The main gear is in transmission connection with the output end of the driving motor, and the plurality of sleeves are in transmission connection with the plurality of secondary gears.
[0011] Further, the gear transmission box is made of non-conductive material.
[0012] Further, the locking assembly includes a remote control device, and the remote control device is electrically connected to the driving motor to control the opening and closing of the driving motor.
[0013] Further, a switch button is provided at one end of the driving motor relative to the sleeve, and the switch button is at least used to open and close the driving motor.
[0014] Further, a third clamping member is movably connected to the body. The third clamping member clamps the driving motor, and the third clamping member can move axially along the sleeve on the body.
[0015] Further, the second clamping member includes a plurality of clamping rod bodies. The clamping rod bodies are movably connected to the second fixed platform, and the clamping rod bodies can move on the second fixed platform. A clamping portion is provided at one end of the clamping rod body away from the second fixed platform, and the clamping portion can movably clamp or separate from the edge of the lower clamping plate.
[0016] Further, the clamping portion is an inverted "L" shaped structure.
[0017] Further, the second clamping member includes an upper fixing plate and a lower fixing plate. The upper fixing plate is provided with a plurality of clamping rod bodies, and the lower fixing plate is provided with a plurality of clamping rod bodies. The unlocking assembly includes a rotating rod body and an unlocking gear. An articulated portion is provided in the middle of the rotating rod body, and the articulated portion is fixedly connected to the unlocking gear. Both the upper fixing plate and the lower fixing plate are provided with teeth that cooperate with the unlocking gear. The unlocking gear is arranged between the upper fixing plate and the lower fixing plate, and the unlocking gear is meshed and connected with the upper fixing plate and the lower fixing plate. By rotating the rotating rod body around the articulated portion, the unlocking gear rotates to drive the clamping rod body to move.
[0018] Further, a first operation part and a second operation part are provided on both sides of the rotating rod body at the hinge part. The unlocking assembly includes an unlocking motor and a pulling rope. The unlocking motor is fixed on the main body, and the output end of the unlocking motor is drivingly connected with a winding shaft body. One end of the pulling rope is connected to the winding shaft body, and the other end of the pulling rope is connected to the second operation part.
[0019] Further, the second fixed platform is provided with a locking protrusion, and the first operation part is provided with a locking through hole. When the rotating rod body rotates to the state where the clamping rod body clamps the lower clamping plate, the locking protrusion is clamped in the locking through hole.
[0020] Further, the second fixed platform is movably connected to the main body, and the second fixed platform can move on the main body along the clamping direction of the upper clamping plate and the lower clamping plate.
[0021] Further, a lead screw is connected to the platform, the second fixed platform is provided with a lead screw thread hole matched with the lead screw, and the lead screw passes through the lead screw thread hole.
[0022] Further, a rotating handle is provided at one end of the lead screw.
[0023] Further, the main body includes at least two clamping modules, each clamping module includes a clamping mechanism and a locking mechanism, and the plurality of clamping modules are arranged at intervals.
[0024] In a second aspect, the present invention provides an installation system, including a parallel groove clamp installation device as described in any one of the above and a drone. The drone is provided with a connecting frame, and the connecting frame is connected to the main body to drive the main body to move. Further, the drone is provided with a camera mechanism.
[0025] It can be seen from the above technical solutions that the advantages of the present invention are as follows: 1. By setting the first clamping member and the second clamping member to clamp the upper clamping plate and the lower clamping plate of the parallel groove clamp respectively, the main body can carry the parallel groove clamp to move to the corresponding position, and then the upper clamping plate and the lower clamping plate are clamped through the locking assembly, so as to realize the clamping between the wire to be repaired and the replacement wire. Finally, the clamped parallel groove clamp is separated from the main body through the unlocking assembly, which is convenient to bring the main body back to complete the repair work. When repairing the damaged wire, there is no need to cut off the power supply, and the damaged wire can be automatically repaired, which greatly reduces the labor cost, improves the operation safety, and further improves the efficiency of the repair work.
[0026] 2. By setting two clamping modules on the main body, the present invention can support both double parallel groove clamps and single parallel groove clamps. The double parallel groove clamp can realize rapid wire repair, and the single parallel groove clamp can realize wire bypass operation. Different functions are integrated and solved by this device.
[0027] 3. The present invention drives the main body to move to the position to be repaired and be recycled by a drone, reducing the working intensity of on-site operators, enhancing the safety of on-site personnel, and improving the reliability of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the technical solutions of the present invention, the drawings required for description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0029] Figure 1 is a side view of the parallel groove clamp installation device in an embodiment of the present invention; Figure 2 is a front view of the parallel groove clamp installation device in an embodiment of the present invention; Figure 3 is a schematic structural diagram of the connection between the second clamping member and the unlocking assembly in an embodiment of the present invention; Figure 4 is a front view of the installation system in an embodiment of the present invention.
[0030] MAIN REFERENCE NUMERAL DESCRIPTION: 100, parallel groove clamp; 110, upper clamping plate; 120, lower clamping plate; 130, bolt; 140, nut; 150, clamping semi-groove; 200, main body; 210, first fixed platform; 220, second fixed platform; 221, locking protrusion; 230, third clamping member; 240, lead screw; 241, rotating handle; 310, first clamping member; 311, clamping claw; 312, accommodating space; 320, second clamping member; 321, clamping rod body; 322, clamping portion; 323, upper fixing plate; 324, lower fixing plate; 325, tooth; 330, installation space; 410, sleeve; 420, drive motor; 430, gear transmission box; 440, remote control device; 450, switch button; 510, rotating rod body; 511, hinge portion; 512, first operating portion; 513, second operating portion; 514, locking through hole; 520, unlocking gear; 530, unlocking motor; 540, pull rope; 600, drone; 610, connecting frame; 620, camera mechanism; 700, elastic gasket body. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0031] In order to make the objectives, features, and advantages of the present invention more obvious and understandable, the technical solutions of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the specific embodiments of the present invention. Obviously, the embodiments described below are only a part of the embodiments of the present invention, rather than all embodiments. Based on the embodiments in this patent, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of this patent.
[0032] When a single-strand steel core aluminum stranded wire of a power line shows loose strands or broken strands, a wire of the same specification can be connected in parallel to the same section of the wire to play a current-carrying role. Usually, a parallel groove clamp 100 is used to connect a wire of the same specification in parallel at the damaged part to play a current-carrying role and also strengthen the mechanical strength of the wire. The parallel groove clamp 100 includes an upper clamping plate 110, a lower clamping plate 120, and a plurality of bolts 130. The plurality of bolts 130 are evenly spaced along the length direction of the upper clamping plate 110. At least two clamping half-grooves 150 are provided on the upper clamping plate 110, and at least two corresponding clamping half-grooves 150 are also provided on the lower clamping plate 120. The plurality of bolts 130 sequentially pass through the lower clamping plate 120 and the upper clamping plate 110 and are connected to nuts 140 so that the upper clamping plate 110 and the lower clamping plate 120 are in mutual abutment, and the clamping half-grooves 150 of the upper clamping plate 110 and the clamping half-grooves 150 of the lower clamping plate 120 form a clamping groove to clamp the wire.
[0033] Embodiment 1 Please refer to Figures 1-3 The present invention provides a parallel groove clamp installation device, including a main body 200. The main body 200 is provided with a clamping mechanism and a locking mechanism. The clamping mechanism includes a first clamping member 310 and a second clamping member 320. The first clamping member 310 is at least used to clamp the upper clamping plate 110, and the second clamping member 320 is at least used to clamp the lower clamping plate 120. There is an installation space 330 between the first clamping member 310 and the second clamping member 320. The locking mechanism includes a locking component and an unlocking component. The locking component is connected to the bolt 130 and is at least used to drive the bolt 130 to rotate to abut the upper clamping plate 110 and the lower clamping plate 120. The unlocking component is connected to the clamping mechanism and is at least used to release the parallel groove clamp 100 from the clamping mechanism.
[0034] In this embodiment, as Figure 1As shown in the figure, first, the upper clamping plate 110 and the lower clamping plate 120 are pre-connected by bolts 130 and nuts 140. Herein, the upper clamping plate 110 and the lower clamping plate 120 are in a loose state. The body 200 is a rectangular plate-like structure. The body 200 is arranged in the vertical direction, such that the length direction of the body 200 is consistent with the vertical direction. The clamping mechanism on the body 200 includes a first clamping member 310 and a second clamping member 320. Among them, the first clamping member 310 is located above the second clamping member 320. The first clamping member 310 clamps the upper clamping plate 110, wherein the clamping half groove 150 of the upper clamping plate 110 is arranged with the opening facing downward. The second clamping member 320 clamps the lower clamping plate 120, such that the opening of the clamping half groove 150 of the lower clamping plate 120 faces upward, and the clamping half groove 150 of the upper clamping plate 110 and the clamping half groove 150 of the lower clamping plate 120 are opposite to each other. The installation space 330 between the first clamping member 310 and the second clamping member 320 is used to accommodate the parallel groove clamp 100 and the wire. During use, first, cut a suitable wire according to the length of the wire to be repaired. Clamp the upper clamping plate 110 on the first clamping member 310, clamp the lower clamping plate 120 on the second clamping member 320, then pass the wire through the two clamping half grooves 150 between an upper clamping plate 110 and a lower clamping plate 120, and make this part pre-tightened by rotating the bolt 130, such that the wire is pre-tightened between the upper clamping plate 110 and the lower clamping plate 120, and adjust the relative position of the upper clamping plate 110 and the lower clamping plate 120, such that the opening between the upper clamping plate 110 and the lower clamping plate 120 faces outward to facilitate clamping the wire to be repaired. Then move the body 200 to the position of the wire to be repaired, such that the wire to be repaired enters the clamping half groove 150 between another upper clamping plate 110 and lower clamping plate 120 through the opening. Then drive the bolt 130 to rotate through the locking assembly of the locking mechanism, thereby clamp the upper clamping plate 110 and the lower clamping plate 120, such that the upper clamping plate 110 and the lower clamping plate 120 are in contact with each other, such that the wire to be repaired and the new wire are clamped in the clamping groove. Finally, release and separate the upper clamping plate 110 from the first clamping member 310 through the unlocking assembly, release and separate the lower clamping plate 120 from the second clamping member 320, thereby separate the parallel groove clamp 100 from the body 200, and move the body 200 out of the repair position to achieve the repair work.
[0035] In the above structure, by setting the first clamping member 310 and the second clamping member 320 to clamp the upper clamping plate 110 and the lower clamping plate 120 of the parallel groove clamp 100 respectively, the body 200 can carry the parallel groove clamp 100 to move to the corresponding position, and then the upper clamping plate 110 and the lower clamping plate 120 are clamped through the locking assembly, so as to realize the clamping between the wire to be repaired and the replacement wire. Finally, the clamped parallel groove clamp 100 is separated from the body 200 through the unlocking assembly, which is convenient to bring the body 200 back to complete the repair work. When repairing the damaged wire, this device does not need to perform power outage treatment, can automatically complete the repair of the damaged wire, greatly reduces the labor cost, improves the operation safety, and further improves the efficiency of the repair work.
[0036] In another embodiment, the device further includes an elastic gasket body 700. The elastic gasket body 700 includes a flat end face and an inclined end face which are oppositely arranged. The elastic gasket body 700 is arranged between the bolt 130 and the lower clamping plate 120. The flat end face is in contact with the bolt 130, and the inclined end face is in contact with the lower clamping plate 120. In this structure, by setting the elastic gasket body 700, the lower clamping plate 120 is in an inclined state before being clamped with the upper clamping plate 110. Specifically, one end of the replacement wire held is higher than the end without the held wire, so that the opening between the lower clamping plate 120 and the upper clamping plate 110 is increased, which is more convenient for the wire to be repaired to enter between the upper clamping plate 110 and the lower clamping plate 120. The bottom of the parallel groove clamp 100 can form an inclined state with an outward opening by the elastic gasket body 700. On the one hand, it is convenient for installation. On the other hand, when the bolt 130 drives the upper clamping plate 110 and the lower clamping plate 120 to clamp and abut, the elastic gasket body 700 will be flattened, which can well give a holding force to the bolt 130 and enhance the stability and reliability of the parallel groove clamp 100.
[0037] In the specific structure of the body 200, as Figure 1 、 2 shown, the body 200 includes a first fixed platform 210 and a second fixed platform 220. The first clamping member 310 is arranged on the first fixed platform 210, the second clamping member 320 is arranged on the second fixed platform 220, and there is a spacing between the first fixed platform 210 and the second fixed platform 220 to form an installation space 330.
[0038] In this embodiment, the main body 200 is a vertically arranged rectangular plate-like structure. At the top of the main body 200, a first fixing platform 210 is provided along its width direction. In the vertical section, the main body 200 and the first fixing platform 210 are perpendicularly arranged. The first clamping member 310 is connected to the first fixing platform 210. The second fixing platform 220 is located below the first fixing platform 210, and the second fixing platform 220 is also arranged along the width direction of the main body 200. Among them, in the vertical section, the main body 200 and the second fixing platform 220 are perpendicular. The second clamping member 320 is installed on the second fixing platform 220. The first fixing platform 210 and the second fixing platform 220 are spaced a certain distance in the vertical direction, and an installation space 330 is formed between the first fixing platform 210 and the second fixing platform 220. Among them, the distance between the first fixing platform 210 and the second platform is adjusted according to the different specifications of the parallel groove clamp 100 to be clamped. By setting the first fixing platform 210 and the second fixing platform 220, the first clamping member 310 and the second clamping member 320 are installed, which improves the clamping stability of the parallel groove clamp 100 by the main body 200 during the movement process.
[0039] In the specific structure of the first clamping member 310, the first clamping member 310 includes a clamping claw 311 and an accommodation space 312. The clamping claw 311 is fixedly connected to the first fixing platform 210. The clamping claw 311 is clamped with the edge of the upper clamping plate 110 to clamp the upper clamping plate 110 in the accommodation space 312. The outer edge of the clamping claw 311 is an arc-shaped structure.
[0040] In this embodiment, as Figure 1 shown, the first clamping member 310 is provided with a clamping claw 311. The clamping claw 311 encloses an internal accommodation space 312. Among them, the top of the clamping claw 311 is fixedly connected to the first fixing platform 210. The bottom of the clamping claw 311 can be clamped with the upper clamping plate 110. The accommodation space 312 can accommodate the upper clamping plate 110, a part of the bolt 130 passing through the upper clamping plate 110, and the nut 140. In addition, the outer surface of the clamping claw 311 is an arc-shaped structure. After the clamping claw 311 clamps the upper clamping plate 110, the bottom of the clamping claw 311 extends into the clamping half groove 150 of the upper clamping plate 110, so that the wire to be repaired can more easily enter between the upper clamping plate 110 and the lower clamping plate 120, further improving the clamping efficiency. By adopting the clamping method of clamping the upper clamping plate 110 with the clamping claw 311, it is convenient for clamping and releasing the upper clamping plate 110, with a simple structure and convenient operation.
[0041] In addition, in the specific structure of the locking assembly, as Figure 1 、 2As shown in the figure, the locking assembly is provided at one end of the second fixed platform 220 away from the first fixed platform 210. The locking assembly includes a sleeve 410 and a driving motor 420. One end of the sleeve 410 is in transmission connection with the bolt 130, and the other end of the sleeve 410 is in transmission connection with the output end of the driving motor 420. The locking assembly includes a gear transmission box 430 and a plurality of sleeves 410. The gear transmission box 430 is provided with a main gear and a plurality of secondary gears. The plurality of secondary gears are meshed with the main gear. The main gear is in transmission connection with the output end of the driving motor 420. The plurality of sleeves 410 are in transmission connection with the plurality of secondary gears. The body 200 is movably connected with a third clamping member 230. The third clamping member 230 clamps the driving motor 420, and the third clamping member 230 can move along the axial direction of the sleeve 410 on the body 200.
[0042] In this embodiment, the locking assembly includes a driving motor 420 and a sleeve 410. The driving motor 420 is located on the lower side of the second fixed platform 220. The output end of the driving motor 420 is in transmission connection with the sleeve 410. The other end of the sleeve 410 is fixedly connected with the bolt 130. The driving motor 420 drives the sleeve 410 to rotate, thereby driving the bolt 130 to rotate, and further driving the upper clamping plate 110 and the lower clamping plate 120 to clamp. In this process, the lower clamping plate 120 clamps on the second clamping member 320 and remains fixed. When the screw rod rotates and drives the upper clamping plate 110 and the lower clamping plate 120 to clamp, the upper clamping plate 110 is subjected to a vertically downward force and moves downward to disengage from the clamping of the clamping jaw 311, thereby realizing the release of the upper clamping plate 110 from the first clamping member 310. This structure is simple, easy to operate, and has a high degree of automation, effectively improving the locking stability and accuracy. Since a plurality of bolts 130 can be provided between the upper clamping plate 110 and the lower clamping plate 120, a gear transmission box 430 is provided between the sleeve 410 and the driving motor 420. The gear transmission box 430 is provided with a main gear and a plurality of secondary gears. The number of secondary gears can be the same as the number of bolts 130. The plurality of secondary gears are meshed with the main gear. The main gear is in transmission connection with the output end of the driving motor 420. The plurality of secondary gears are in transmission connection with the plurality of sleeves 410. The specifications of the plurality of secondary gears are the same, so as to ensure that the rotation speeds of the plurality of sleeves 410 are the same, and further ensure that the torques of the bolts 130 clamping the upper clamping plate 110 and the lower clamping plate 120 are the same, improving the clamping stability. The driving motor 420 drives the main gear to rotate, thereby driving the secondary gears and the sleeves 410 to rotate, and further driving the bolts 130 to rotate. Thus, the connection requirements of a plurality of bolts 130 are met. In addition, the gear transmission box 430 is made of a non-conductive material. For example, the gear transmission box 430 can be a plastic structure. On the one hand, it realizes high-voltage and low-voltage electrical isolation, avoiding damage to the driving motor 420. On the other hand, it can realize mass production, increasing both the service life and reducing the interference of the driving motor 420 by the on-site electric field.
[0043] Further, in this embodiment, the driving motor 420 can be an ordinary electric screwdriver tool and can be replaced at any time. The driving motor 420 has a cylindrical structure or a cuboid structure. A third clamping member 230 is also movably connected to the main body 200. The third clamping member 230 is used to clamp and fix the driving motor 420, and the third clamping member 230 can move in the vertical direction to accommodate driving motors 420 and sleeves 410 of different specifications, further improving the applicability of the device.
[0044] In the structure for controlling the driving motor 420, the locking assembly includes a remote control device 440. The remote control device 440 is electrically connected to the driving motor 420 to control the opening and closing of the driving motor 420. In addition, a switch button 450 is provided at one end of the driving motor 420 opposite to the sleeve 410. The switch button 450 is at least used to open and close the driving motor 420.
[0045] In this embodiment, the driving motor 420 can be controlled by the remote control device 440, so that the operator can perform the control even when away from the live operating environment, improving the degree of automation and further enhancing the operation safety. In addition, a manual switch button 450 is provided at the bottom of the driving motor 420. When the remote control device 440 fails for any reason, the insulating rod can be manually operated to press the switch button 450 to forcibly start the driving motor 420. If it is ineffective, unlock the device and drive the device back. If it is effective, after installing the parallel groove clamp 100, unlock the device by itself and then drive the device back. A dual protection mechanism is set to further improve the safety.
[0046] In the specific structure of the second clamping member 320, as Figure 2 、 3 shown, the second clamping member 320 includes a plurality of clamping rod bodies 321. The clamping rod bodies 321 are movably connected to the second fixed platform 220, and the clamping rod bodies 321 can move on the second fixed platform 220. A clamping portion 322 is provided at one end of the clamping rod body 321 away from the second fixed platform 220. The clamping portion 322 can movably clamp or separate from the edge of the lower clamping plate 120. The clamping portion 322 has an inverted "L" shape structure.
[0047] In this embodiment, the bottoms of the plurality of clamping rod bodies 321 on the second clamping member 320 are movably connected to the second fixed platform 220, so that the clamping rod bodies 321 can move to clamp the lower clamping plate 120. Among them, a clamping portion 322 is provided at the top of the clamping rod body 321. The clamping portion 322 can be an inverted "L" - shaped structure. The short side of the clamping portion 322 is clamped with the edge of the lower clamping plate 120, and the long side of the clamping portion 322 forms a part of the clamping rod body 321. By moving the clamping rod body 321 on the second fixed platform 220, the clamping portion 322 can move to be clamped with or separated from the lower clamping plate 120, which is convenient for clamping and releasing, and the operation is simple.
[0048] In the structure for releasing the lower clamping plate 120 from the second clamping member 320, as Figure 3 shown, the second clamping member 320 includes an upper fixing plate 323 and a lower fixing plate 324. The upper fixing plate 323 is provided with a plurality of clamping rod bodies 321, and the lower fixing plate 324 is provided with a plurality of clamping rod bodies 321. The unlocking assembly includes a rotating rod body 510 and an unlocking gear 520. An articulated portion 511 is provided in the middle of the rotating rod body 510, and the articulated portion 511 is fixedly connected to the unlocking gear 520. Both the upper fixing plate 323 and the lower fixing plate 324 are provided with teeth 325 that cooperate with the unlocking gear 520. The unlocking gear 520 is arranged between the upper fixing plate 323 and the lower fixing plate 324, and the unlocking gear 520 is meshed and connected with the upper fixing plate 323 and the lower fixing plate 324. By rotating the rotating rod body 510 around the articulated portion 511, the unlocking gear 520 rotates to drive the clamping rod body 321 to move. The rotating rod body 510 is provided with a first operation portion 512 and a second operation portion 513 on both sides of the articulated portion 511. The unlocking assembly includes an unlocking motor 530 and a pulling rope 540. The unlocking motor 530 is fixed on the body 200. The output end of the unlocking motor 530 is drivingly connected with a winding shaft body. One end of the pulling rope 540 is connected to the winding shaft body, and the other end of the pulling rope 540 is connected to the second operation portion 513. The second fixed platform 220 is provided with a locking protrusion 221, and the first operation portion 512 is provided with a locking through - hole 514. When the rotating rod body 510 rotates to the state where the clamping rod body 321 clamps the lower clamping plate 120, the locking protrusion 221 is clamped in the locking through - hole 514.
[0049] In this embodiment, a plurality of clamping rod bodies 321 are fixedly connected to the upper fixing plate 323 and the lower fixing plate 324 of the second clamping member 320 respectively. For example, a clamping rod body 321 is fixedly arranged at each end of the upper fixing plate 323, and a clamping rod body 321 is also fixedly arranged at each end of the lower fixing plate 324. The lower fixing plate 324 is arranged on the lower side of the upper fixing plate 323. The lengths of the two clamping rod bodies 321 of the lower fixing plate 324 are longer than the length of the upper fixing plate 323, so that the clamping portions 322 of the four clamping rod bodies 321 on the upper fixing plate 323 and the lower fixing plate 324 are located on the same horizontal plane, facilitating the clamping of the lower clamping plate 120. Tooth teeth 325 are arranged on the lower end face of the upper fixing plate 323, and tooth teeth 325 are also arranged on the upper end face of the lower fixing plate 324. The unlocking gear 520 of the unlocking assembly is arranged between the upper fixing plate 323 and the lower fixing plate 324, and the unlocking gear 520 meshes with the upper fixing plate 323 and the lower fixing plate 324. A rotating rod body 510 is fixed on the unlocking gear 520. The middle part of the rotating rod body 510 is hinged to the second fixing platform 220 to form a hinge portion 511, and the hinge portion 511 is fixed to the unlocking gear 520. When the rotating rod body 510 is rotated around the hinge portion 511 by an external force, the rotating rod body 510 drives the unlocking gear 520 to rotate, and then drives the upper fixing plate 323 and the lower fixing plate 324 to move in opposite directions, realizing the clamping and release of the lower clamping plate 120. If the lengths of the upper fixing plate 323 and the lower fixing plate 324 are relatively long, in order to improve the moving stability, a secondary unlocking gear 520 can be arranged between the upper fixing plate 323 and the lower fixing plate 324. The secondary unlocking gear 520 has the same specification as the unlocking gear 520, and the secondary unlocking gear 520 meshes with the upper fixing plate 323 and the lower fixing plate 324. When the upper fixing plate 323 and the lower fixing plate 324 move, the secondary unlocking gear 520 is driven to rotate, ensuring the guiding property and stability of the movement. The movement of the clamping rod body 321 is realized by the rotation of the rotating rod body 510, and then the clamping or release of the lower clamping plate 120 is realized, which is convenient for operation.
[0050] In addition, to further improve automation, the unlocking assembly further includes an unlocking motor 530 and a pulling rope 540. The unlocking motor 530 is installed at the upper end of the main body 200. The output end of the unlocking motor 530 is fixedly connected to a winding shaft body. One end of the pulling rope 540 is wound around the winding shaft body. Opposite ends of the rotating rod body 510 are respectively provided with a first operating portion 512 and a second operating portion 513. Among them, the other end of the pulling rope 540 is connected to the second operating portion 513. The first operating portion 512 is provided with a locking through hole 514, and a locking projection 221 is provided on the second fixed platform 220. During use, first place the lower clamping plate 120 between the clamping rod bodies 321. Apply a force to the first operating portion 512 manually, so that the rotating rod body 510 rotates along the hinge portion 511, driving the clamping rod bodies 321 to move and clamp the lower clamping plate 120. When the rotating rod body 510 rotates to the clamping position, the locking projection 221 is opposite to the locking through hole 514, and the locking projection 221 is snapped into the locking through hole 514, thereby restricting the rotation of the rotating rod body 510 and ensuring the clamping stability of the lower clamping plate 120. When it is necessary to release the lower clamping plate 120 from the second clamping member 320, the unlocking motor 530 drives the winding shaft body to rotate, thereby tightening the pulling rope 540 and gradually winding the pulling rope 540 around the winding shaft body, thereby applying a force to the second operating portion 513, driving the rotating rod body 510 to rotate in the opposite direction around the hinge portion 511, so that the locking projection 221 disengages from the locking through groove, and further enabling the clamping rod bodies 321 to separate from the lower clamping plate 120 to complete the release.
[0051] In the structure of the second fixed platform 220, the second fixed platform 220 is movably connected to the main body 200, and the second fixed platform 220 can move on the main body 200 along the clamping direction of the upper clamping plate 110 and the lower clamping plate 120. The platform is connected with a lead screw 240. The second fixed platform 220 is provided with a lead screw 240 screw hole that cooperates with the lead screw 240, and the lead screw 240 passes through the lead screw 240 screw hole. One end of the lead screw 240 is provided with a rotating handle 241.
[0052] In this embodiment, in order to adapt to different specifications of the parallel groove clamp 100, the second fixed platform 220 is set as a movable structure and can move vertically, improving the applicability of the device and facilitating the use of different specifications of the parallel groove clamp 100. In the specific movable structure, a lead screw 240 is arranged on the main body 200 in the vertical direction, and a lead screw 240 screw hole is arranged on the second fixed platform 220. Pass the lead screw 240 through the lead screw 240 screw hole, and rotate the lead screw 240 by an external force, so that the second fixed platform 220 moves vertically. This structure is simple, improves the guiding and limiting functions when the second fixed platform 220 moves, and ensures the accuracy of the movement. In addition, in order to better rotate the lead screw 240, a rotating handle 241 is arranged at one end of the lead screw 240.
[0053] Embodiment 2 Please refer to Figure 2 , a parallel groove clamp installation device, the body 200 includes at least two clamping modules, each clamping module includes a clamping mechanism and a locking mechanism, and a plurality of clamping modules are arranged at intervals.
[0054] In this embodiment, two clamping modules are arranged on the body 200, which can support double parallel groove clamps 100 and also single parallel groove clamps 100. The double parallel groove clamp 100 can realize rapid repair of the wire, and the single parallel groove clamp 100 can realize wire bypass operation. Different functions are integrated and solved by this device.
[0055] Embodiment 3 Please refer to Figure 4 , the present invention provides an installation system, including a parallel groove clamp installation device as described in any one of the above and a drone 600. The drone 600 is provided with a connecting frame 610, and the connecting frame 610 is connected to the body 200 to drive the body 200 to move.
[0056] In this embodiment, the drone 600 drives the body 200 to move to the position to be repaired and recovered, reducing the working intensity of on-site operators, improving the safety of on-site personnel, and improving the reliability of the equipment.
[0057] In addition, the drone 600 is provided with a camera mechanism 620. The wire repair situation can be observed through the hole position at the top of the parallel groove clamp installation device, and at the same time, the wire to be repaired can be observed.
[0058] In addition, the drone 600, the drive motor 420, the sleeve 410, etc. can all be interchanged. While providing convenience to users, the reliability of the system is enhanced.
[0059] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A parallel groove clamp installation device for installing a parallel groove clamp, the parallel groove clamp including an upper clamping plate, a lower clamping plate and a plurality of bolts, characterized in that, It includes a body, and the body is provided with a clamping mechanism and a locking mechanism. The clamping mechanism includes a first clamping member and a second clamping member. The first clamping member is at least used to clamp the upper clamping plate, and the second clamping member is at least used to clamp the lower clamping plate. There is an installation space between the first clamping member and the second clamping member. The locking mechanism includes a locking component and an unlocking component. The locking component is connected to the bolt and is at least used to drive the bolt to rotate to abut the upper clamping plate and the lower clamping plate. The unlocking component is connected to the clamping mechanism and is at least used to release the parallel groove clamp from the clamping mechanism.
2. The installation device for a parallel groove clamp according to claim 1, characterized in that, The body includes a first fixed platform and a second fixed platform. The first clamping member is arranged on the first fixed platform, and the second clamping member is arranged on the second fixed platform. There is a distance between the first fixed platform and the second fixed platform to form an installation space.
3. The installation device for parallel groove clamp according to claim 2, characterized in that, The first clamping member includes a clamping claw tool and an accommodation space. The clamping claw tool is fixedly connected to the first fixed platform, and the clamping claw tool is clamped with the edge of the upper clamping plate to clamp the upper clamping plate in the accommodation space. And / or, the outer edge of the clamping claw tool is an arc structure.
4. The installation device for a parallel groove clamp according to claim 3, characterized in that, The locking component is arranged at one end of the second fixed platform away from the first fixed platform. The locking component includes a sleeve and a driving motor. One end of the sleeve is in transmission connection with the bolt, and the other end of the sleeve is in transmission connection with the output end of the driving motor. And / or, the locking component includes a gear transmission box and multiple sleeves. The gear transmission box is provided with a main gear and multiple secondary gears. The multiple secondary gears are meshed with the main gear. The main gear is in transmission connection with the output end of the driving motor, and the multiple sleeves are in transmission connection with the multiple secondary gears. And / or, the gear transmission box is made of non-conductive material. And / or, the locking component includes a remote control device. The remote control device is electrically connected to the driving motor and is used to control the opening and closing of the driving motor. And / or, a switch button is arranged at one end of the driving motor relative to the sleeve. The switch button is at least used to open and close the driving motor. And / or, a third clamping member is movably connected to the body. The third clamping member clamps the driving motor, and the third clamping member can move along the axial direction of the sleeve on the body.
5. The installation device for a parallel groove clamp according to claim 2, characterized in that, The second clamping member includes multiple clamping rod bodies. The clamping rod bodies are movably connected to the second fixed platform, and the clamping rod bodies can move on the second fixed platform. A clamping part is arranged at one end of the clamping rod body away from the second fixed platform. The clamping part can movably clamp or separate from the edge of the lower clamping plate. And / or, the clamping part is an inverted "L" type structure.
6. The installation device for a parallel groove clamp according to claim 5, wherein, The second clamping member includes an upper fixing plate and a lower fixing plate. The upper fixing plate is provided with a plurality of the clamping rod bodies, and the lower fixing plate is provided with a plurality of the clamping rod bodies. The unlocking assembly includes a rotating rod body and an unlocking gear. An articulated portion is provided in the middle of the rotating rod body, and the articulated portion is fixedly connected to the unlocking gear. The upper fixing plate and the lower fixing plate are both provided with teeth that cooperate with the unlocking gear. The unlocking gear is arranged between the upper fixing plate and the lower fixing plate, and the unlocking gear is meshed and connected with the upper fixing plate and the lower fixing plate. By rotating the rotating rod body around the articulated portion, the unlocking gear rotates to drive the clamping rod body to move; and / or, the rotating rod body is provided with a first operation portion and a second operation portion on both sides of the articulated portion. The unlocking assembly includes an unlocking motor and a pulling rope. The unlocking motor is fixed on the body, and an output end of the unlocking motor is drivingly connected with a winding shaft body. One end of the pulling rope is connected to the winding shaft body, and the other end of the pulling rope is connected to the second operation portion; and / or, the second fixed platform is provided with a locking protrusion, and the first operation portion is provided with a locking through hole. When the rotating rod body rotates to a state where the clamping rod body clamps the lower clamping plate, the locking protrusion is clamped in the locking through hole.
7. The installation device for parallel groove clamp according to claim 2, characterized in that, The second fixed platform is movably connected to the body, and the second fixed platform can move on the body along the clamping direction of the upper clamping plate and the lower clamping plate; and / or, a lead screw is connected to the platform, and the second fixed platform is provided with a lead screw thread hole that cooperates with the lead screw, and the lead screw passes through the lead screw thread hole; and / or, a rotating handle is provided at one end of the lead screw.
8. The installation device of a parallel groove clamp according to any one of claims 1-7, characterized in that, The body includes at least two clamping modules, and each clamping module includes the clamping mechanism and the locking mechanism. A plurality of the clamping modules are arranged at intervals.
9. An installation system, characterized in that, It includes a parallel groove clamp installation device and a drone according to any one of claims 1-8. The drone is provided with a connecting frame, and the connecting frame is connected to the body to drive the body to move.
10. The mounting system according to claim 9, characterized in that, The drone is provided with a camera mechanism.