A cable connection device and method for emergency repair
By designing emergency repair platforms and modules for cable connection devices, the cable connection parts can be cleaned, solving the corrosion and aging problems caused by soil coverage, and improving the emergency repair effect and cable life.
Patent Information
- Application Number
- CN202510975979.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-16
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2045-07-16
AI Technical Summary
During emergency repairs of underground cables, soil covers the connection parts, causing corrosion and aging, affecting the repair effect and the service life of the cables.
A cable connection device including a repair platform, an anti-corrosion module and a repair auxiliary module was designed. The cable connection parts are cleaned by spraying water, brushing and wiping to prevent soil coverage and damage from corrosive substances.
Effectively clean cable connection parts to avoid dirt coverage and corrosion, thereby improving repair results and cable service life.
Smart Images

Figure CN120473903B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cable emergency repair, and in particular to a cable connection device and method for emergency repair. Background Art
[0002] Cables are typically composed of several or several groups of conductors twisted together into a rope-like structure. Each group of conductors is insulated from each other and often twisted around a core, covered in a highly insulating covering. During cable installation, they can be damaged or broken by various factors, including the environment and natural disasters. Emergency repairs are often necessary to ensure rapid power restoration.
[0003] During the emergency repair and connection of existing cables buried under the surface, the cable surface will be contaminated with mud, and the mud will cover the connection parts. The moisture and corrosive substances in the mud will damage the cable joints after the repair, causing corrosion and aging at the joints, shortening the service life of the cable, thereby affecting the repair effect and the service life of the cable. Summary of the Invention
[0004] The present invention discloses a cable connection device and method for emergency repair, aiming to solve the technical problem in the background art that during emergency repair of cables buried under the surface, soil will cover the connection parts, affecting the repair effect and the service life of the cables.
[0005] The present invention proposes a cable connection device for emergency repair, comprising:
[0006] The emergency repair platform has two movable support legs on both sides connected by bolts;
[0007] An anti-corrosion module is provided above the emergency repair platform and is used to clean the dirt at the connection part of the cable body;
[0008] Emergency repair auxiliary module, which is arranged above the emergency repair platform and is used to lift and move the cable body during emergency repair;
[0009] The anti-corrosion module includes:
[0010] The pump body is arranged below the emergency repair platform. Four slide grooves are symmetrically opened on the upper portion of the emergency repair platform. Horizontal slide seats are slidably connected to the interior of each of the multiple slide grooves. One side of each of the multiple horizontal slide seats is fixedly connected to one side of a return spring 1, and the other side of the return spring 1 is fixedly connected to the corresponding side wall of the slide groove.
[0011] The upper end surfaces of the horizontal slides are connected to the tooling support rods by bolts, and one side of the two tooling support rods on the same side is fixedly connected to the same tooling circular frame, and hollow circular frames are provided inside the two tooling circular frames. One side of the two hollow circular frames is provided with mounting circular holes at equal distances, and the interiors of the multiple mounting circular holes are fixedly connected to metal telescopic tubes, and the water outlet ends of the multiple metal telescopic tubes are fixedly connected to sprinkler heads.
[0012] In a preferred embodiment, the anti-corrosion module further comprises:
[0013] Two water pumps are symmetrically arranged below the emergency repair platform. The water outlet of the water pump passes through the tooling frame through a water supply hose and is connected to the interior of the hollow frame.
[0014] Two hollow cylinders are fixedly connected to the emergency repair platform. Two sealed circular slides are slidably connected to the interior of the two hollow cylinders. One side of the multiple sealed circular slides is fixedly connected to a rope. One side of the rope is fixedly connected to one side of the horizontal slide. The suction end of the pump body is connected to the interior of the hollow cylinder through a suction pipe. A gas compressor is provided under the emergency repair platform.
[0015] In a preferred embodiment, the anti-corrosion module further comprises:
[0016] The mounting seat is fixedly connected to one side of the tooling circular frame, and a driving motor is fixedly connected to one side of the mounting seat. Circular holes 1 are opened at equal distances on one side of the two tooling circular frames. The interiors of the plurality of circular holes 1 are connected to limited driving rollers through bearings, and the driving end of the driving motor is connected to one end of one of the limited driving rollers through a coupling.
[0017] The tooling rotating circular plate is slidably connected to the inside of multiple limit driving rollers. The inner wall of the tooling rotating circular plate is fixedly connected to the tooling support frame at equal distances. One side of the multiple tooling support frames is provided with a circular hole two. The inside of the multiple circular holes two is slidably connected with a circular column. The side of the circular column opposite to the tooling support frame is fixedly connected to a limit spring, and the other side of the multiple circular columns is fixedly connected to a cleaning brush plate.
[0018] In a preferred embodiment, the anti-corrosion module further comprises:
[0019] Multiple mounting blocks are fixedly connected to the inner wall of the tooling rotating circular plate, and a circular hole three is opened on one side of each of the multiple mounting blocks. The interiors of the multiple circular holes three are connected to rotating cylinders through bearings, and the exteriors of the multiple rotating cylinders are fixedly connected to support arms, and a cleaning sponge plate is fixedly connected to one side of each of the multiple support arms;
[0020] A plurality of extrusion springs are provided, and two sides of the extrusion springs are respectively fixedly connected to the inner wall of the tooling rotating circular plate and one side of the support arm, and the cable body passes through the interior of the tooling circular frame.
[0021] In a preferred solution, the emergency repair auxiliary module includes:
[0022] Four tooling rods are distributed on the emergency repair platform at the four corners of a rectangle. One side of the two tooling rods in the length direction is fixedly connected to the same limit track. Two adjustment sliders are slidably connected to the inside of the two limit tracks. One side of the multiple adjustment sliders is fixedly connected to a linkage gear plate.
[0023] Two adjusting motors are respectively arranged on one side of the two limiting rails. A circular hole four is opened on one side of the two limiting rails. The interiors of the two circular holes four are connected to rotating shafts through bearings. The exteriors of the two rotating shafts are fixedly connected to adjusting gears, which are engaged with the linkage gear plate.
[0024] In a preferred solution, the emergency repair auxiliary module further includes:
[0025] Multiple movable support rods are connected to the upper end surface of the adjusting slider through bolts, and one side of each movable support rod is provided with a slot, and the interior of each slot is slidably connected to a clamping rod;
[0026] Multiple electric telescopic rods are arranged on one side of the mobile support rod, the driving end of the electric telescopic rods is fixedly connected to one side of the clamping rod, both sides of the multiple clamping rods are fixedly connected with tooling blocks, one side of the multiple tooling blocks is provided with a circular hole five, the interior of the multiple circular holes five is connected to a rotating shaft through a bearing, the outside of the multiple rotating shafts is fixedly connected to an adaptive adjustment arm, one end of the multiple adaptive adjustment arms is movably connected to a rubber clamping block, one side of the adaptive adjustment arm is fixedly connected to a reset spring two, and one side of the reset spring two is fixedly connected to one side of the clamping rod.
[0027] In a preferred solution, the emergency repair auxiliary module further includes:
[0028] Two guide rails are symmetrically arranged above the emergency repair platform. Two limiting round rods are fixedly connected to the opposite sides of the two guide rails, and two adjusting slides are slidably connected to the outsides of the two limiting round rods on the same side.
[0029] A plurality of guide rollers are connected to one side of the adjusting slide through bearings. Two telescopic springs are fixedly connected to both sides of the inside of the two guide rails, and one side of the telescopic spring is fixedly connected to one side of the adjusting slide.
[0030] In a preferred solution, the emergency repair auxiliary module further includes:
[0031] The two guide rollers 2 are connected to one side of the movable support leg through bearings, and the telescopic spring is located outside the limiting round rod.
[0032] A method for using a cable connection device for emergency repair, using the cable connection device for emergency repair as described above, comprises the following steps:
[0033] Step 1: When performing emergency repairs on the cable, push the cable body onto the guide roller 1 and the guide roller 2, then pass the cable body through the tooling frame, and drive the clamping rod to clamp the outside of the cable body;
[0034] Step 2: Then start the adjustment motor, which drives the rotating shaft and the adjustment gear to rotate. The adjustment gear engages with the linkage gear plate, driving the linkage gear plate and the adjustment slider fixed thereto to slide in the limit track, thereby pulling the cable body.
[0035] Step 3: During the traction process, the water pump is started to deliver clean water to the inside of the hollow circular frame through the water supply hose. The water is sprayed on the outside of the cable through the water spray heads on the multiple metal telescopic tubes on the inner wall of the hollow circular frame to dilute the mud. At the same time, the drive motor is started to drive one of the limit drive rollers to rotate, thereby driving the tooling rotating circular plate to rotate. At this time, the cleaning brush plate on the round column is used to brush the outside of the cable body. The round column is tightly fitted to the outside of the cable body due to the extrusion force of the limit spring;
[0036] Step 4: While scrubbing, the air inside the hollow cylinder is sucked through the pump body. At this time, the sealing circular slide moves relatively inside the hollow cylinder and pulls the corresponding horizontal slide to move through the rope. At this time, the return springs on both sides of the horizontal slide are compressed and stretched respectively. At this time, the suction operation inside the hollow cylinder is stopped, and the gas filled by the gas compressor re-enters the interior of the hollow cylinder. At this time, the sealing circular slide quickly resets, thereby causing the horizontal slide to quickly reset and produce horizontal reciprocating vibration;
[0037] Step 5: While the rotating circular plate of the tooling rotates, pressure is applied to the support arm by squeezing the spring, pushing the cleaning sponge plate at the end of the support arm close to the outside of the cable body, and wiping the outside of the cable body after brushing.
[0038] From the above, it can be seen that the cable connection device for emergency repair provided by the present invention has the function of cleaning the external soil of the cable connection part when the cable is under emergency repair, so as to prevent the soil from covering the connection part, and at the same time prevent the moisture and corrosive substances in the soil from damaging the cable joint after the repair, resulting in corrosion and aging at the joint, shortening the service life of the cable, thereby improving the repair effect and the service life of the cable. BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Figure 1 This is a schematic diagram of the main structure of a cable connection device for emergency repair proposed by the present invention;
[0040] Figure 2 This is a side structural schematic diagram of a cable connection device for emergency repair proposed by the present invention;
[0041] Figure 3 This is a schematic structural diagram of an anti-corrosion module of a cable connection device for emergency repair proposed by the present invention;
[0042] Figure 4 This is a schematic diagram of the structure of the anti-corrosion module of a cable connection device for emergency repair proposed by the present invention;
[0043] Figure 5 This is a schematic diagram of the tooling circular frame structure of a cable connection device for emergency repair proposed by the present invention;
[0044] Figure 6 This is a schematic diagram of the metal telescopic tube structure of a cable connection device for emergency repair proposed by the present invention;
[0045] Figure 7 This is a schematic diagram of the internal structure of a hollow cylinder of a cable connection device for emergency repair proposed by the present invention;
[0046] Figure 8 This is a schematic structural diagram of a repair auxiliary module of a cable connection device for emergency repair proposed by the present invention;
[0047] Figure 9 This is a schematic diagram of the structure of a repair auxiliary module of a cable connection device for emergency repair proposed by the present invention;
[0048] Figure 10 This is a schematic structural diagram of a rubber clamping block of a cable connection device for emergency repair proposed by the present invention.
[0049] In the figure: 1. Emergency repair platform; 2. Cable body; 3. Anti-corrosion module; 301. Horizontal slide; 302. Return spring 1; 303. Rope; 304. Hollow cylinder; 305. Suction pipe; 306. Pump body; 307. Gas compressor; 308. Tool support rod; 309. Tool round frame; 310. Mounting seat; 311. Drive motor; 312. Hollow round frame; 313. Water supply hose; 314. Water pump; 315. Limit drive roller; 316. Tool rotating circular plate; 317. Extrusion spring; 318. Rotating cylinder; 319. Support arm; 320. Cleaning sponge plate; 321. Tool support frame; 322. Limit spring; 323. Round column; 324. Cleaning brush plate; 32 5. Metal telescopic tube; 326. Sprinkler head; 327. Sealed circular slide; 328. Mounting block; 4. Mobile support leg; 5. Emergency repair auxiliary module; 501. Tooling rod; 502. Limiting track; 503. Adjusting motor; 504. Rotating shaft; 505. Adjusting gear; 506. Adjusting slider; 507. Linking gear plate; 508. Mobile support rod; 509. Guide rail; 510. Adjusting slide; 511. Telescopic spring; 512. Limiting circular rod; 513. Guide roller 1; 514. Guide roller 2; 515. Electric telescopic rod; 516. Clamping rod; 517. Tooling block; 518. Rotating shaft; 519. Adaptive adjusting arm; 520. Return spring 2; 521. Rubber clamping block. DETAILED DESCRIPTION
[0050] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.
[0051] The present invention discloses a cable connection device for emergency repair, which is mainly used in scenarios where, during emergency repair of cables buried underground, soil may cover the connection parts, affecting the repair effect and the service life of the cables.
[0052] Reference Figures 1-10 , a cable connection device for emergency repair, comprising:
[0053] The emergency repair platform 1 has two movable support legs 4 connected on both sides by bolts;
[0054] The anti-corrosion module 3 is arranged above the emergency repair platform 1 and is used to clean the dirt at the connection part of the cable body 2;
[0055] Emergency repair auxiliary module 5, which is arranged above the emergency repair platform 1 and is used to lift and move the cable body 2 during emergency repair;
[0056] Anti-corrosion module 3 includes:
[0057] The pump body 306 is arranged below the emergency repair platform 1. Four chute grooves are symmetrically opened on the emergency repair platform 1. The interiors of the multiple chute grooves are slidably connected to the horizontal slides 301. One side of the multiple horizontal slides 301 is fixedly connected to one side of the return spring 1 302, and the other side of the return spring 1 302 is fixedly connected to the corresponding side wall of the chute.
[0058] The upper end surface of the horizontal slide 301 is connected to the tooling support rod 308 by bolts, and one side of the two tooling support rods 308 located on the same side is fixedly connected to the same tooling circular frame 309, and a hollow circular frame 312 is provided inside the two tooling circular frames 309. One side of the two hollow circular frames 312 is provided with mounting circular holes at equal distances, and the interiors of the multiple mounting circular holes are fixedly connected to metal telescopic tubes 325, and the water outlet ends of the multiple metal telescopic tubes 325 are fixedly connected to the sprinkler heads 326.
[0059] Reference Figure 1-Figure 7 In a preferred embodiment, the anti-corrosion module 3 further includes:
[0060] Two water pumps 314 are symmetrically arranged below the emergency repair platform 1. The water outlets of the water pumps 314 pass through the tooling circular frame 309 via the water supply hose 313 and are connected to the interior of the hollow circular frame 312.
[0061] Two hollow cylinders 304 are fixedly connected to the emergency repair platform 1. Two sealed circular slides 327 are slidably connected to the inside of the two hollow cylinders 304. One side of the multiple sealed circular slides 327 is fixedly connected to a rope 303. One side of the rope 303 is fixedly connected to one side of the horizontal slide 301. The suction end of the pump body 306 is connected to the inside of the hollow cylinder 304 through the suction pipe 305. A gas compressor 307 is provided under the emergency repair platform 1.
[0062] In the present invention, the anti-corrosion module 3 further includes:
[0063] The mounting base 310 is fixedly connected to one side of the tooling circular frame 309. A driving motor 311 is fixedly connected to one side of the mounting base 310. Round holes 1 are evenly spaced apart on one side of the two tooling circular frames 309. The interiors of the multiple round holes 1 are connected to limited driving rollers 315 through bearings. The driving end of the driving motor 311 is connected to one end of one of the limited driving rollers 315 through a coupling.
[0064] The tooling rotating circular plate 316 is slidably connected to the inside of multiple limiting drive rollers 315. The inner wall of the tooling rotating circular plate 316 is fixedly connected to the tooling support frame 321 at equal distances. One side of the multiple tooling support frames 321 is provided with a circular hole 2, and the inside of the multiple circular holes 2 is slidably connected with a circular column 323. The side of the circular column 323 opposite to the tooling support frame 321 is fixedly connected to the limiting spring 322, and the other side of the multiple circular columns 323 is fixedly connected to a cleaning brush plate 324.
[0065] In the present invention, the anti-corrosion module 3 further includes:
[0066] Multiple mounting blocks 328 are fixedly connected to the inner wall of the tooling rotating circular plate 316. A circular hole 3 is formed on one side of each mounting block 328. A rotating cylinder 318 is connected to the interior of each circular hole 3 via a bearing. A support arm 319 is fixedly connected to the exterior of each rotating cylinder 318. A cleaning sponge plate 320 is fixedly connected to one side of each support arm 319.
[0067] A plurality of extrusion springs 317 are provided, and two sides of the extrusion springs 317 are respectively fixedly connected to the inner wall of the tooling rotating circular plate 316 and one side of the support arm 319 , and the cable body 2 passes through the interior of the tooling circular frame 309 .
[0068] In a specific application scenario, during emergency repair of the cable, the cable body 2 is passed through the tooling circular frame 309, and the water pump 314 is started at this time. Clean water is transported to the inside of the hollow circular frame 312 through the water supply hose 313, and water is sprayed on the outside of the cable to dilute the soil through the spray heads 326 on the multiple metal telescopic tubes 325 on the inner wall of the hollow circular frame 312. At the same time, the drive motor 311 is started to drive one of the limit drive rollers 315 to rotate, thereby driving the tooling rotating circular plate 316 to rotate. At this time, the cleaning brush plate 324 on the circular column 323 is used to scrub the outside of the cable body 2. The circular column 323 is tightly attached to the outside of the cable body 2 due to the extrusion force of the limit spring 322. While scrubbing, the air inside the hollow cylinder 304 is sucked through the pump body 306. At this time, the sealing circular slide 327 moves relatively inside the hollow cylinder 304 and pulls the corresponding horizontal slide 301 to move through the rope 303. At this time, the return springs 302 on both sides of the horizontal slide 301 are respectively To compression and stretching, at this time, the suction operation inside the hollow cylinder 304 is stopped, and the gas filled in by the gas compressor 307 re-enters the inside of the hollow cylinder 304. At this time, the sealing circular slide 327 is quickly reset, so that the horizontal slide 301 is quickly reset to produce horizontal reciprocating vibration, thereby improving the effect of brushing the dirt on the surface of the connection part of the cable body 2. While the tooling rotating circular plate 316 rotates, pressure is applied to the support arm 319 through the extrusion spring 317, pushing the cleaning sponge plate 320 at the end of the support arm 319 close to the outside of the cable body 2, and wiping the outside of the cable body 2 after brushing. Through the anti-corrosion module 3, when the cable is repaired in an emergency, the dirt on the outside of the cable connection part is effectively cleaned to prevent the dirt from covering the connection part, and at the same time, the moisture and corrosive substances in the dirt are prevented from damaging the cable joint after the repair, resulting in corrosion and aging at the joint, shortening the service life of the cable, thereby improving the repair effect and the service life of the cable.
[0069] Reference Figure 1 、 Figure 8 and Figure 10 In a preferred embodiment, the emergency repair auxiliary module 5 includes:
[0070] Four tooling rods 501 are distributed at the four corners of a rectangle on the repair platform 1. One side of each of the two tooling rods 501 in the length direction is fixedly connected to the same limiting track 502. Two adjusting sliders 506 are slidably connected to the interior of the two limiting tracks 502. One side of each of the multiple adjusting sliders 506 is fixedly connected to a linkage toothed plate 507.
[0071] Two adjusting motors 503 are respectively arranged on one side of the two limiting rails 502. A circular hole four is opened on one side of the two limiting rails 502. The interior of the two circular holes four is connected to the rotating shaft 504 through a bearing. The outside of the two rotating shafts 504 is fixedly connected with an adjusting gear 505, which is engaged with the linkage gear plate 507.
[0072] In the present invention, the emergency repair auxiliary module 5 also includes:
[0073] Multiple movable support rods 508 are connected to the upper end surface of the adjustment slider 506 by bolts. One side of each movable support rod 508 is provided with a slot, and the interior of each slot is slidably connected to a clamping rod 516;
[0074] Multiple electric telescopic rods 515 are arranged on one side of the movable support rod 508, and the driving end of the electric telescopic rod 515 is fixedly connected to one side of the clamping rod 516. Both sides of the multiple clamping rods 516 are fixedly connected with tooling blocks 517, and one side of the multiple tooling blocks 517 is provided with a circular hole five. The interior of the multiple circular holes five is connected to a rotating shaft 518 through a bearing, and the exterior of the multiple rotating shafts 518 is fixedly connected to an adaptive adjustment arm 519. One end of the multiple adaptive adjustment arms 519 is movably connected to a rubber clamping block 521, and one side of the adaptive adjustment arm 519 is fixedly connected to a reset spring 2 520, and one side of the reset spring 2 520 is fixedly connected to one side of the clamping rod 516.
[0075] In the present invention, the emergency repair auxiliary module 5 also includes:
[0076] Two guide rails 509 are symmetrically arranged above the emergency repair platform 1. Two limiting round rods 512 are fixedly connected to opposite sides of the two guide rails 509. Two adjusting slides 510 are slidably connected to the outsides of the two limiting round rods 512 on the same side.
[0077] Multiple guide rollers 513 are connected to one side of the adjustment slide 510 through bearings. Two telescopic springs 511 are fixedly connected to both sides of the inside of the two guide rails 509, and one side of the telescopic spring 511 is fixedly connected to one side of the adjustment slide 510.
[0078] In the present invention, the emergency repair auxiliary module 5 also includes:
[0079] The two guide rollers 514 are connected to one side of the movable support leg 4 through bearings, and the telescopic spring 511 is located outside the limiting round rod 512.
[0080] In a specific application scenario, when emergency repairs are performed on the cable, the cable body 2 is pushed onto the guide roller 1 513 and the guide roller 2 514, and then the electric telescopic rod 515 is started to drive the clamping rod 516 to clamp the outside of the cable body 2. When the clamping rod 516 contacts the cable body 2, the adaptive adjustment arm 519 rotates around the rotating shaft 518, stretching the reset spring 2 520, so that the rubber clamping block 521 adaptively fits to clamp the cable body 2 of different diameters, and then the adjustment motor 50 is started. 3. The adjusting motor 503 drives the rotating shaft 504 and the adjusting gear 505 to rotate, and the adjusting gear 505 engages with the linkage tooth plate 507, driving the linkage tooth plate 507 and the adjusting slider 506 fixed thereto to slide in the limiting track 502, so that when the cable is repaired in an emergency, the adjusting sliders 506 on both sides can move toward or away from each other, and can accurately adjust and move the disconnected cable ends for alignment without manual lifting, so that the force on both ends of the cable is kept balanced during the repair connection process, reducing the risk of secondary breakage caused by uneven force after connection.
[0081] A method for using a cable connection device for emergency repair, using the cable connection device for emergency repair as described above, comprises the following steps:
[0082] Step 1: When performing emergency repairs on the cable, the cable body 2 is pushed onto the guide roller 1 513 and the guide roller 2 514, and then the cable body 2 is passed through the tooling circular frame 309, and the clamping rod 516 is driven to clamp the outside of the cable body 2. When the clamping rod 516 contacts the cable body 2, the adaptive adjustment arm 519 rotates around the rotating shaft 518, stretching the reset spring 2 520, so that the rubber clamping block 521 adaptively fits and clamps cable bodies 2 of different diameters;
[0083] Step 2: Then start the adjustment motor 503, which drives the rotating shaft 504 and the adjustment gear 505 to rotate. The adjustment gear 505 engages with the linkage gear plate 507, driving the linkage gear plate 507 and the adjustment slider 506 fixed thereto to slide within the limiting track 502, thereby pulling the cable body 2;
[0084] Step 3: During the traction process, the water pump 314 is started, and clean water is delivered to the inside of the hollow circular frame 312 through the water supply hose 313. The water spray heads 326 on the multiple metal telescopic tubes 325 on the inner wall of the hollow circular frame 312 spray water to dilute the mud on the outside of the cable. At the same time, the drive motor 311 is started to drive one of the limit drive rollers 315 to rotate, thereby driving the tool rotating circular plate 316 to rotate. At this time, the cleaning brush plate 324 on the round column 323 is used to brush the outside of the cable body 2. The round column 323 is tightly attached to the outside of the cable body 2 due to the extrusion force of the limit spring 322;
[0085] Step 4: While scrubbing, the air inside the hollow cylinder 304 is sucked through the pump body 306. At this time, the sealed circular slide 327 moves relatively inside the hollow cylinder 304 and pulls the corresponding horizontal slide 301 to move through the rope 303. At this time, the return springs 302 on both sides of the horizontal slide 301 are compressed and stretched respectively. At this time, the suction operation inside the hollow cylinder 304 is stopped, and the gas filled by the gas compressor 307 re-enters the interior of the hollow cylinder 304. At this time, the sealed circular slide 327 is quickly reset, so that the horizontal slide 301 is quickly reset to produce horizontal reciprocating vibration;
[0086] Step 5: While the tool rotating circular plate 316 rotates, the support arm 319 is pressed by the extrusion spring 317 to push the cleaning sponge plate 320 at the end of the support arm 319 close to the outside of the cable body 2 to wipe the outside of the cable body 2 after brushing.
[0087] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. A cable connection device for emergency repair, characterized in that: include: The emergency repair platform has two movable support legs on both sides connected by bolts; An anti-corrosion module is provided above the emergency repair platform and is used to clean the dirt at the connection part of the cable body; Emergency repair auxiliary module, which is arranged above the emergency repair platform and is used to lift and move the cable body during emergency repair; The anti-corrosion module includes: The pump body is arranged below the emergency repair platform. The emergency repair platform is symmetrically provided with four slide grooves, and the interiors of the multiple slide grooves are slidably connected to horizontal slide seats. One side of the multiple horizontal slide seats is fixedly connected to one side of the return spring 1, and the other side of the return spring 1 is fixedly connected to the corresponding side wall of the slide groove; The upper end surfaces of the horizontal slides are connected to tooling support rods by bolts, and one side of the two tooling support rods on the same side is fixedly connected to the same tooling circular frame, and a hollow circular frame is provided inside the two tooling circular frames. One side of the two hollow circular frames is evenly spaced with mounting circular holes, and the interiors of the multiple mounting circular holes are fixedly connected to metal telescopic tubes, and the water outlet ends of the multiple metal telescopic tubes are fixedly connected to sprinkler heads; the anti-corrosion module also includes: Two water pumps are symmetrically arranged below the emergency repair platform. The water outlet of the water pump passes through the tooling frame through a water supply hose and is connected to the interior of the hollow frame. Two hollow cylinders are fixedly connected to the emergency repair platform. Two sealed circular slides are slidably connected to the interior of the two hollow cylinders. One side of the multiple sealed circular slides is fixedly connected to a rope. One side of the rope is fixedly connected to one side of the horizontal slide. The suction end of the pump body is connected to the interior of the hollow cylinder through a suction pipe. A gas compressor is provided below the emergency repair platform. The anti-corrosion module also includes: The mounting seat is fixedly connected to one side of the tooling circular frame, and a driving motor is fixedly connected to one side of the mounting seat. Circular holes 1 are opened at equal distances on one side of the two tooling circular frames. The interiors of the plurality of circular holes 1 are connected to limited driving rollers through bearings, and the driving end of the driving motor is connected to one end of one of the limited driving rollers through a coupling. The tooling rotating circular plate is slidably connected to the inside of multiple limit driving rollers. The inner wall of the tooling rotating circular plate is fixedly connected to the tooling support frame at equal distances. One side of the multiple tooling support frames is provided with a circular hole two. The inside of the multiple circular holes two is slidably connected with a circular column. The side of the circular column opposite to the tooling support frame is fixedly connected to a limit spring, and the other side of the multiple circular columns is fixedly connected to a cleaning brush plate.
2. A cable connection device for emergency repair according to claim 1, characterized in that: The anti-corrosion module also includes: Multiple mounting blocks are fixedly connected to the inner wall of the tooling rotating circular plate, and a circular hole three is opened on one side of each of the multiple mounting blocks. The interiors of the multiple circular holes three are connected to rotating cylinders through bearings, and the exteriors of the multiple rotating cylinders are fixedly connected to support arms, and a cleaning sponge plate is fixedly connected to one side of each of the multiple support arms; A plurality of extrusion springs are provided, and two sides of the extrusion springs are respectively fixedly connected to the inner wall of the tooling rotating circular plate and one side of the support arm, and the cable body passes through the interior of the tooling circular frame.
3. A cable connection device for emergency repair according to claim 2, characterized in that: The emergency repair auxiliary module includes: Four tooling rods are distributed on the emergency repair platform at the four corners of a rectangle. One side of the two tooling rods in the length direction is fixedly connected to the same limit track. Two adjustment sliders are slidably connected to the inside of the two limit tracks. One side of the multiple adjustment sliders is fixedly connected to a linkage gear plate. Two adjusting motors are respectively arranged on one side of the two limiting rails. A circular hole four is opened on one side of the two limiting rails. The interiors of the two circular holes four are connected to rotating shafts through bearings. The exteriors of the two rotating shafts are fixedly connected to adjusting gears, which are engaged with the linkage gear plate.
4. A cable connection device for emergency repair according to claim 3, characterized in that: The emergency repair auxiliary module also includes: Multiple movable support rods are connected to the upper end surface of the adjusting slider through bolts, and one side of each movable support rod is provided with a slot, and the interior of each slot is slidably connected to a clamping rod; Multiple electric telescopic rods are arranged on one side of the mobile support rod, the driving end of the electric telescopic rods is fixedly connected to one side of the clamping rod, both sides of the multiple clamping rods are fixedly connected with tooling blocks, one side of the multiple tooling blocks is provided with a circular hole five, the interior of the multiple circular holes five is connected to a rotating shaft through a bearing, the outside of the multiple rotating shafts is fixedly connected to an adaptive adjustment arm, one end of the multiple adaptive adjustment arms is movably connected to a rubber clamping block, one side of the adaptive adjustment arm is fixedly connected to a reset spring two, and one side of the reset spring two is fixedly connected to one side of the clamping rod.
5. A cable connection device for emergency repair according to claim 4, characterized in that: The emergency repair auxiliary module also includes: Two guide rails are symmetrically arranged above the emergency repair platform. Two limiting round rods are fixedly connected to the opposite sides of the two guide rails, and two adjusting slides are slidably connected to the outsides of the two limiting round rods on the same side. A plurality of guide rollers are connected to one side of the adjusting slide through bearings. Two telescopic springs are fixedly connected to both sides of the inside of the two guide rails, and one side of the telescopic spring is fixedly connected to one side of the adjusting slide.
6. A cable connection device for emergency repair according to claim 5, characterized in that: The emergency repair auxiliary module also includes: The two guide rollers 2 are connected to one side of the movable support leg through bearings, and the telescopic spring is located outside the limiting round rod.
7. A method for using a cable connection device for emergency repair, using the cable connection device for emergency repair according to claim 6, characterized in that: The steps include: Step 1: When performing emergency repairs on the cable, push the cable body onto the guide roller 1 and the guide roller 2 and pass through the tooling frame. Drive the clamping rod to clamp the outside of the cable body. When the clamping rod contacts the cable body, the rubber clamping block adaptively fits and clamps the cable bodies of different diameters. Step 2: The adjustment motor drives the rotating shaft and the adjustment gear to rotate, and the adjustment gear engages with the linkage gear plate, driving the linkage gear plate and the adjustment slider fixed thereto to slide in the limit track to pull the cable body; Step 3: During the traction process, start the water pump to deliver clean water to the inside of the hollow circular frame through the water supply hose. Use the water spray heads on the multiple metal telescopic tubes on the inner wall of the hollow circular frame to spray water on the outside of the cable to dilute the mud. At the same time, start the drive motor to drive one of the limit drive rollers to rotate, thereby driving the tooling rotating circular plate to rotate. At this time, the cleaning brush plate on the round column is used to brush the outside of the cable body. The round column is tightly fitted to the outside of the cable body due to the extrusion force of the limit spring. Step 4: While scrubbing, the air inside the hollow cylinder is sucked through the pump body. At this time, the sealing circular slide moves relatively inside the hollow cylinder and pulls the corresponding horizontal slide to move through the rope. At this time, the reset spring is compressed and stretched, and the suction operation inside the hollow cylinder is stopped. The gas filled by the gas compressor re-enters the hollow cylinder. At this time, the sealing circular slide is quickly reset, so that the horizontal slide is quickly reset to produce horizontal reciprocating vibration; Step 5: While the rotating circular plate of the tooling rotates, pressure is applied to the support arm by squeezing the spring, pushing the cleaning sponge plate at the end of the support arm close to the outside of the cable body, and wiping the outside of the cable body after brushing.
Citation Information
Patent Citations
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CN215696107U