Line arrangement device for power communication relocation

By designing a cable management device for power and communication relocation, a locking mechanism is used to fix the cable, and a drive motor drives the reel to rotate. Combined with a reciprocating sliding positioning and cleaning mechanism, the problems of unstable fixing, inability to reel evenly, and poor cleaning effect of existing equipment are solved, achieving cable management with high safety and good cleaning effect.

CN116812663BActive Publication Date: 2025-11-18STATE GRID HENAN ELECTRIC POWER CO GUSHI COUNTY POWER SUPPLY CO
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Patent Information

Application Number
CN202310727086.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-19
Publication Date
2025-11-18
Estimated Expiration
2043-06-19

AI Technical Summary

Technical Problem

Existing line sorting equipment lacks a fixing device during winding, making operation highly dangerous. The equipment is not securely fixed, cannot achieve uniform winding, and cannot effectively clean the lines, resulting in serious line contamination and affecting the sorting work.

Method used

A line relocation and relocation equipment for power communication was designed, comprising a frame, a winding mechanism, a locking mechanism, a reciprocating sliding positioning mechanism, and a cleaning mechanism. The locking mechanism fixes the end of the line, the drive motor drives the winding wheel to rotate, the reciprocating sliding positioning mechanism achieves uniform winding, and the cleaning mechanism performs thorough cleaning.

Benefits of technology

It achieves uniform winding and efficient cleaning of the cable, secure and reliable fixing, improves work efficiency, reduces the risk of cable loss during transportation, and facilitates the secondary use and storage of the cable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a line arrangement device for power communication migration, which comprises a rack and a coiling mechanism, the right side of the rack is provided with the coiling mechanism, the coiling mechanism comprises a stand column which is movably connected with the right end of the rack, a rotary driving motor is arranged below the connecting position of the stand column and the rack, an L-shaped plate is arranged on the right side of the stand column, a driving motor is arranged above the L-shaped plate, a coiling wheel is arranged on the left side of the stand column, hoisting skeletons are arranged on the left and right sides of the coiling wheel, a driving shaft is arranged in the coiling wheel, a back-and-forth sliding positioning and cleaning mechanism is arranged in front of the coiling mechanism; the device has the advantages of simple structure, good cleaning effect, uniform coiling arrangement, firm and reliable fixation, and good safety.
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Description

Technical Field

[0001] This invention belongs to the field of power communication relocation technology, specifically relating to a line reorganization device for power communication relocation. Background Technology

[0002] With technological advancements and rising consumer demands, the need for electricity and networks is increasing. This necessitates the relocation and reconstruction of existing power lines to meet modern living requirements. During dismantling, the dismantled cables must be collected, assembled, and categorized for proper packaging. Cable sorting equipment is required for easy organization. Existing cable sorting equipment typically uses reels to wind up the cables, but this method has several drawbacks: First, when winding up the cables, one end must first be secured to the reel before winding. Current reels lack this securing mechanism. Most existing power and communication line relocation equipment relies on manual fixing by operators, securing it after several turns of winding. This method is highly dangerous, prone to instability, and poses potential threats. Secondly, winding can only occur in one direction, failing to achieve uniform winding by the reel. Thirdly, the line cannot be cleaned during winding, resulting in dirty and heavily contaminated lines, and even causing the equipment to jam due to dirt, hindering the relocation process. Therefore, it is essential to provide a power and communication relocation line relocation equipment that is simple in structure, provides good cleaning results, achieves uniform winding and relocation, is securely and reliably fixed, and offers high safety. Summary of the Invention

[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a power communication relocation line sorting device that is simple in structure, has good cleaning effect, achieves uniform winding and sorting, is firmly and reliably fixed, and has good safety.

[0004] The objective of this invention is achieved as follows: a power communication relocation line tidying device, comprising a frame and a winding mechanism, wherein the winding mechanism is provided on the right side of the frame, the winding mechanism includes a column movably connected to the right end of the frame, a rotary drive motor is provided at the connection between the column and the frame, an L-shaped plate is provided on the right side of the column, a drive motor is provided above the L-shaped plate, a winding wheel is provided on the left side of the column, a lifting frame is provided on both sides of the winding wheel, a drive shaft is provided inside the winding wheel, and a reciprocating sliding positioning and cleaning mechanism is provided in front of the winding mechanism.

[0005] The frame has a channel inside on the left side, and an incomplete bushing is provided below the channel corresponding to the drive shaft. An adjusting wheel is provided in front of the incomplete bushing, and the winding wheel is poweredly connected to the drive motor through the drive shaft.

[0006] A locking mechanism is provided on one side of the front of the winding wheel. The locking mechanism includes a fixing plate, an inner ring plate is provided in front of the fixing plate, and a number of locking blocks are evenly arranged on the inner circumference of the inner ring plate. Each locking block has a locking groove on its inner side and a U-shaped groove on its outer side. Each U-shaped groove has a telescopic rod inside it.

[0007] The locking blocks are evenly arranged in three circumferences inside the inner ring plate, and the locking blocks are fan-shaped structures, while the locking grooves are arc-shaped structures.

[0008] The reciprocating sliding positioning and cleaning mechanism includes a reciprocating sliding positioning mechanism and a cleaning mechanism, wherein the cleaning mechanism is connected to the reciprocating sliding positioning mechanism via a lifting rod.

[0009] The reciprocating sliding positioning mechanism includes a first base plate and a second base plate. A sliding rod is provided on the top of both the first base plate and the second base plate. The left and right ends of the sliding rod are connected by connecting plates. A positioning sensor is provided on the inner side of each connecting plate. A movable seat is provided on the left side of the first base plate and the second base plate. The movable seat is slidably connected to the corresponding sliding rod through a sliding block.

[0010] Positioning plates are provided on both the left and right sides of the movable seat corresponding to the positioning sensors. A connecting plate is provided on the lower right side of the movable seat. A guide seat is provided below the connecting plate. A guide rod is provided below the guide seat. An installation plate is provided on the left side of the connecting plate. A support plate is provided below the installation plate. A cable chain is provided inside the support plate. One end of the cable chain is connected to the installation plate, and the other end is connected to one end of the support plate.

[0011] The cleaning mechanism includes a housing, a power unit is provided on the top of the housing, a groove is provided on the left side of the power unit, an oblong groove is provided inside the groove, and a cleaning device is provided on the right side of the oblong groove.

[0012] The power unit includes a power motor mounted on top of the housing, a power bevel gear penetrating the housing on the right side of the power motor, the power bevel gear being poweredly connected to a driven bevel gear disk mounted inside the housing, a first coupling being mounted on the left side of the driven bevel gear disk, a driven shaft being mounted on the left side of the first coupling, and the power unit being poweredly connected to a cleaning device.

[0013] The cleaning device includes a second coupling connected to the driven shaft, and a cleaning component is provided on the left side of the second coupling;

[0014] The cleaning component includes a movable ring disposed inside the housing, an arc-shaped plate disposed inside the movable ring, a connecting seat disposed above the arc-shaped plate, a connecting rod disposed above the connecting seat and passing through a waist-shaped groove, a cylinder disposed above the connecting rod and disposed in a groove, a cylinder rod disposed on the left side of the cylinder, and the cylinder rod being connected to the connecting rod via a hinge device.

[0015] The movable ring is provided with an outer ring sleeve on the left side. Several cleaning plates are evenly arranged on the inner circumference of the outer ring sleeve. The cleaning plates are wedge-shaped structures that are wider on the left and narrower on the right. The cleaning plates are arranged inside the outer ring sleeve, pass through the movable ring, and a part of them extend into the second coupling.

[0016] The outer side of the cleaning plate is provided with a "U"-shaped slot, and the upper part of the slot is provided with a waist-shaped movable groove. The movable groove is provided with a pin that is slidably connected to the movable groove. The outer side of the pin is provided with a spring that is connected to the inner wall of the movable ring. The inner side of the cleaning plate is provided with a cleaning block, and the inner side of the cleaning block is provided with an arc-shaped cleaning groove.

[0017] The beneficial effects of this invention are as follows: This invention is a line arrangement device for power communication relocation. In use, it achieves two functions through a reciprocating sliding positioning and cleaning mechanism: cleaning the line and evenly winding the line onto a winding wheel. First, the cleaning mechanism performs a rotating, thorough cleaning of the line surface, improving the cleaning effect and ensuring the cleanliness of the line surface, which is conducive to the arrangement work. On the other hand, a locking mechanism presses and locks one end of the line, and then the drive motor is started. The drive motor drives the winding wheel to rotate and wind the line. When the winding wheel rotates and winds the line, the reciprocating sliding positioning mechanism drives the cleaning mechanism and the line inside the cleaning mechanism to slide back and forth, thereby achieving even winding and arrangement. Moreover, the winding, left and right reciprocating sliding, and cleaning actions are performed simultaneously, greatly improving work efficiency. After the reel finishes winding, the rotary drive motor is started, which drives the column and the reel to rotate, causing the end of the drive shaft connected to the frame to detach from the frame. This allows the reel to be removed, completing the unloading process. The cables can then be neatly organized and stored with minimal manual labor, facilitating their reuse. A new reel can then be placed. The rotary drive motor drives the column and the reel to rotate, causing the end of the drive shaft connected to the frame to enter the incomplete bushing through the channel. The adjusting wheel is rotated so that the opening of the incomplete bushing faces downwards. After the reel is installed, the cables can continue to be organized. This facilitates the packing and movement of the stored cables and also makes it easy to install new reels, allowing for continued cable storage. This invention has the advantages of simple structure, good cleaning effect, uniform winding and organization, firm and reliable fixing, and good safety. Attached Figure Description

[0018] Figure 1 This is a front view of a power communication relocation line management device according to the present invention.

[0019] Figure 2 This is a schematic diagram of the coiling mechanism of a power communication relocation line management device according to the present invention.

[0020] Figure 3 This is a schematic diagram of the locking mechanism structure of a power communication relocation line management device according to the present invention.

[0021] Figure 4 For the present invention Figure 2 Left view of part of the structure.

[0022] Figure 5 For the present invention Figure 1 A schematic diagram of the reciprocating sliding positioning and cleaning mechanism.

[0023] Figure 6 This is a top view of the reciprocating sliding positioning mechanism of a power communication relocation line arrangement device according to the present invention.

[0024] Figure 7 For the present invention Figure 6 A three-dimensional image.

[0025] Figure 8 This is a perspective view of the cleaning mechanism of a power communication relocation line management device according to the present invention.

[0026] Figure 9 For the present invention Figure 8 The front view.

[0027] Figure 10 For the present invention Figure 8 A schematic diagram of the internal structure.

[0028] Figure 11 For the present invention Figure 10 The front view.

[0029] Figure 12 For the present invention Figure 10 A partial structural diagram.

[0030] Figure 13 For the present invention Figure 12 A partial structural diagram.

[0031] In the diagram: 1. Frame; 11. Incomplete bushing; 12. Adjusting wheel; 13. Channel; 2. Winding mechanism; 21. Column; 22. Rotary drive motor; 23. L-shaped plate; 24. Drive motor; 25. Winding wheel; 26. Lifting frame; 27. Drive shaft; 3. Reciprocating sliding positioning and cleaning mechanism; 4. Locking mechanism; 41. Fixing plate; 42. Inner ring plate; 43. Locking block; 44. Locking groove; 45. U-shaped groove; 46. Telescopic rod; 5. Reciprocating sliding positioning mechanism; 51. First base plate; 52. Second base plate; 53. Slide rod; 54. Connecting plate; 55. Positioning sensor; 56. Moving seat; 57. Positioning plate; 58. Connecting plate; 59. Guide seat; 510. Guide rod; 511. Installation. Mounting plate 512, support plate 513, cable chain 514, slide 6, lifting rod 7, cleaning mechanism 71, housing 72, power unit 721, power motor 722, power bevel gear 723, driven bevel gear disc 724, first coupling 725, driven shaft 73, groove 74, cleaning device 75, waist-shaped groove 8, second coupling 9, cleaning assembly 91, movable ring 92, arc plate 93, connecting seat 94, connecting rod 95, cylinder 96, cylinder rod 97, hinge device 98, outer ring sleeve 99, cleaning plate 910, slot 911, movable groove 912, pin 913, spring 914, cleaning block 915, cleaning groove. Detailed Implementation

[0032] The present invention will now be further described with reference to the accompanying drawings.

[0033] Example 1

[0034] like Figure 1-13 As shown, a power communication relocation line tidying device includes a frame 1 and a coiling mechanism 2. The coiling mechanism 2 is located on the right side of the frame 1. The coiling mechanism 2 includes a column 21 movably connected to the right end of the frame 1. A rotary drive motor 22 is located at the connection between the column 21 and the frame 1. An L-shaped plate 23 is located on the right side of the column 21. A drive motor 24 is located above the L-shaped plate 23. A coiling wheel 25 is located on the left side of the column 21. Lifting frames 26 are located on both sides of the coiling wheel 25. A drive shaft 27 is located inside the coiling wheel 25. A reciprocating sliding positioning and cleaning mechanism 3 is located in front of the coiling mechanism 2.

[0035] The frame 1 has a channel 13 inside on the left side. A partial bushing 11 is provided below the channel 13 corresponding to the drive shaft 27. An adjusting wheel 12 is provided in front of the partial bushing 11. The winding wheel 25 is poweredly connected to the drive motor 24 through the drive shaft 27.

[0036] A locking mechanism 4 is provided on one side of the front of the coiling wheel 25. The locking mechanism 4 includes a fixing plate 41. An inner ring plate 42 is provided on the front of the fixing plate 41. A plurality of locking blocks 43 are evenly arranged on the inner circumference of the inner ring plate 42. A locking groove 44 is provided on the inner side of each locking block 43. A U-shaped groove 45 is provided on the outer side of each locking block 43. A telescopic rod 46 is provided inside each U-shaped groove 45.

[0037] The locking blocks 43 are evenly arranged in three on the inner circumference of the inner ring plate 42, and the locking blocks 43 are fan-shaped structures, while the locking grooves 44 are arc-shaped structures.

[0038] This invention relates to a line arrangement device for power communication relocation. In use, the device utilizes a reciprocating sliding positioning and cleaning mechanism 3 to achieve two functions: cleaning the line and evenly winding the line onto a winding wheel 25. First, the cleaning mechanism 7 performs a thorough, rotating cleaning of the line surface, improving cleaning efficiency and ensuring a clean surface, which facilitates the arrangement process. Second, a locking mechanism 4 presses and locks one end of the line, ensuring a secure and reliable fixation. Then, the drive motor 24 is activated, causing the winding wheel 25 to rotate and wind the line. As the winding wheel 25 rotates and winds the line, the reciprocating sliding positioning mechanism 5 drives the cleaning mechanism 7 and the line inside the cleaning mechanism 7 to slide back and forth, achieving even winding and arrangement. Moreover, the winding, reciprocating sliding, and cleaning actions are performed simultaneously, greatly improving work efficiency. After the winding wheel 25 has finished winding, the rotary drive motor 22 is activated, causing the column 21 and the winding wheel 25 to rotate, connecting the drive shaft 27 to the frame 1. One end of the cable is detached from the frame 1, allowing the reel 25 to be removed. After disassembling the reel 25, the cable can be unloaded, and the cable can be neatly organized and stored with minimal manual labor, facilitating its reuse. Then, a new reel 25 is placed. The rotating drive motor 22 drives the column 21 and the reel 25 to rotate, causing the end of the drive shaft 27 connected to the frame 1 to enter the incomplete bushing 11 through the channel 13. The adjusting wheel 12 is rotated so that the opening of the incomplete bushing 11 faces downwards. After installing the reel 25, the cable can be further organized. This design facilitates the packing and movement of the stored cables, and also makes it easy to install new reel 25 for continued cable storage. In actual use, locking mechanisms 4 can be installed on one side of the reel 25 and at other suitable locations on the reel 25 to press and lock the two ends of the cable. Locking the two ends of the cable prevents the cable from scattering, reducing the problem of loss during transportation and the need for reorganization. This invention has the advantages of simple structure, good cleaning effect, uniform winding and organization, firm and reliable fixing, and good safety.

[0039] Example 2

[0040] like Figure 1-13 As shown, a power communication relocation line tidying device includes a frame 1 and a coiling mechanism 2. The coiling mechanism 2 is located on the right side of the frame 1. The coiling mechanism 2 includes a column 21 movably connected to the right end of the frame 1. A rotary drive motor 22 is located at the connection between the column 21 and the frame 1. An L-shaped plate 23 is located on the right side of the column 21. A drive motor 24 is located above the L-shaped plate 23. A coiling wheel 25 is located on the left side of the column 21. Lifting frames 26 are located on both sides of the coiling wheel 25. A drive shaft 27 is located inside the coiling wheel 25. A reciprocating sliding positioning and cleaning mechanism 3 is located in front of the coiling mechanism 2.

[0041] The reciprocating sliding positioning and cleaning mechanism 3 includes a reciprocating sliding positioning mechanism 5 and a cleaning mechanism 7. The cleaning mechanism 7 is connected to the reciprocating sliding positioning mechanism 5 via a lifting rod 6.

[0042] The reciprocating sliding positioning mechanism 5 includes a first base plate 51 and a second base plate 52. A slide rod 53 is provided on the top of both the first base plate 51 and the second base plate 52. The left and right ends of the slide rod 53 are connected by a connecting plate 54. A positioning sensor 55 is provided on the inner side of the connecting plate 54. A movable seat 56 is provided on the left side of the first base plate 51 and the second base plate 52. The movable seat 56 is slidably connected to the corresponding slide rod 53 through a slide block 514.

[0043] Positioning plates 57 are provided on both the left and right sides of the movable seat 56 corresponding to the positioning sensors 55. A connecting plate 58 is provided on the lower right side of the movable seat 56. A guide seat 59 is provided below the connecting plate 58. A guide rod 510 is provided below the guide seat 59. An mounting plate 511 is provided on the left side of the connecting plate 58. A support plate 512 is provided below the mounting plate 511. A drag chain 513 is provided inside the support plate 512. One end of the drag chain 513 is connected to the mounting plate 511, and the other end is connected to one end of the support plate 512.

[0044] The cleaning mechanism 7 includes a housing 71, a power unit 72 is provided on the top of the housing 71, a groove 73 is provided on the left side of the power unit 72, an oblong groove 75 is provided inside the groove 73, and a cleaning device 74 is provided on the right side of the oblong groove 75.

[0045] The power unit 72 includes a power motor 721 disposed above the housing 71. A power bevel gear 722 is disposed on the right side of the power motor 721 and passes through the housing 71. The power bevel gear 722 is poweredly connected to a driven bevel gear disk 723 disposed inside the housing 71. A first coupling 724 is disposed on the left side of the driven bevel gear disk 723. A driven shaft 725 is disposed on the left side of the first coupling 724. The power unit 72 is poweredly connected to the cleaning device 74.

[0046] The cleaning device 74 includes a second coupling 8 connected to the driven shaft 725, and a cleaning component 9 is provided on the left side of the second coupling 8;

[0047] The cleaning component 9 includes a movable ring 91 disposed inside the housing 71, an arc-shaped plate 92 disposed inside the movable ring 91, a connecting seat 93 disposed above the arc-shaped plate 92, a connecting rod 94 disposed above the connecting seat 93 and passing through the waist-shaped groove 75, a cylinder 95 disposed above the connecting rod 94 and disposed in the groove 73, a cylinder rod 96 disposed on the left side of the cylinder 95, and the cylinder rod 96 is connected to the connecting rod 94 through a hinge device 97.

[0048] The movable ring 91 is provided with an outer ring sleeve 98 on the left side. Several cleaning plates 99 are evenly arranged on the inner circumference of the outer ring sleeve 98. The cleaning plates 99 are wedge-shaped structures that are wider on the left and narrower on the right. The cleaning plates 99 are arranged inside the outer ring sleeve 98, pass through the movable ring 91, and a part of them extend into the second coupling 8.

[0049] The cleaning plate 99 is provided with a U-shaped slot 910 on its outer side. Above the slot 910, there is a waist-shaped movable groove 911. Inside the movable groove 911, there is a pin 912 that is slidably connected to the movable groove 911. The outer side of the pin 912 is provided with a spring 913 that is connected to the inner wall of the movable ring 91. The inner side of the cleaning plate 99 is provided with a cleaning block 914. The inner side of the cleaning block 914 is provided with an arc-shaped cleaning groove 915.

[0050] In this embodiment, the working principle of the reciprocating sliding positioning and cleaning mechanism is as follows: the cylinder pushes the connecting rod to move in the waist-shaped groove through the cylinder rod, the connecting rod drives the movable ring to move through the connecting seat, the movable ring drives the pin to move in the movable groove through the spring, thereby driving the cleaning plate to move inward, and the cleaning plate drives the cleaning block to move inward, so that the cleaning block contacts the cable through the cleaning groove under the action of the cylinder and achieves the cleaning function of the cable; the power motor drives the power bevel gear to rotate, the power bevel gear drives the driven bevel gear to rotate, and the driven bevel gear drives the cleaning component to rotate through the first coupling, the driven shaft and the second coupling, thereby realizing the cleaning component to perform a rotational cleaning of the cable without dead angles, greatly improving the cleaning effect of the cable; when the power motor rotates, the power conversion of the power bevel gear and the driven bevel gear reduces the rotation speed of the cleaning component, which facilitates the cleaning work;

[0051] The height of the cleaning mechanism can also be adjusted by lifting rods to better adapt to cable cleaning work. While the cleaning mechanism is working, the slide of the reciprocating sliding positioning mechanism slides on the slide rod to realize the left and right sliding function of the moving seat. After the positioning plates on both sides of the moving seat contact the positioning sensors, the left and right reciprocating sliding function of the moving seat is realized. Finally, the cleaning mechanism above the moving seat moves left and right along the X-axis direction to achieve uniform winding and sorting of cables.

[0052] This invention relates to a line arrangement device for power communication relocation. In use, the device utilizes a reciprocating sliding positioning and cleaning mechanism 3 to achieve two functions: cleaning the line and evenly winding the line onto a winding wheel 25. First, the cleaning mechanism 7 performs a thorough, rotating cleaning of the line surface, improving cleaning efficiency and ensuring a clean surface, which facilitates the arrangement process. Second, a locking mechanism 4 presses and locks one end of the line. Then, the drive motor 24 is activated, causing the winding wheel 25 to rotate and wind the line. As the winding wheel 25 rotates and winds the line, the reciprocating sliding positioning mechanism 5 drives the cleaning mechanism 7 and the line inside the cleaning mechanism 7 to slide back and forth, achieving even winding and arrangement. Moreover, the winding, reciprocating sliding, and cleaning actions are performed simultaneously, greatly improving work efficiency. After the winding wheel 25 has finished winding, the rotary drive motor 22 is activated, causing the column 21 and the winding wheel 25 to rotate, so that the drive shaft 27 connected to the frame 1... After detaching from the frame 1, the coiling wheel 25 can be removed, completing the unloading process. This allows for efficient cable organization and storage with minimal manual labor, facilitating cable reuse. A new coiling wheel 25 can then be installed. The rotating drive motor 22 drives the column 21 and the coiling wheel 25 to rotate, causing the end of the drive shaft 27 connected to the frame 1 to enter the incomplete bushing 11 through the channel 13. Rotating the adjusting wheel 12 causes the opening of the incomplete bushing 11 to face downwards. After installing the coiling wheel 25, cable organization can continue. This facilitates the packing and movement of the stored cables and also makes it easier to install a new coiling wheel 25 for continued cable organization. In practical use, a locking mechanism 4 can be installed on one side of the coiling wheel 25 and at other suitable locations on the coiling wheel 25 to press and lock the two ends of the cable. Locking the two ends of the cable prevents it from scattering, reducing the risk of loss during transportation and the need for reorganization. This invention has the advantages of simple structure, good cleaning effect, uniform winding and organization, firm and reliable fixing, and good safety.

Claims

1. A power communication relocation line organizing device, comprising a frame and a winding mechanism, characterized in that: A winding mechanism is provided on the right side of the frame. The winding mechanism includes a column movably connected to the right end of the frame. A rotary drive motor is provided at the connection between the column and the frame. An L-shaped plate is provided on the right side of the column. A drive motor is provided above the L-shaped plate. A winding wheel is provided on the left side of the column. Lifting frames are provided on both sides of the winding wheel. A drive shaft is provided inside the winding wheel. A reciprocating sliding positioning and cleaning mechanism is provided in front of the winding mechanism. The reciprocating sliding positioning and cleaning mechanism includes a reciprocating sliding positioning mechanism and a cleaning mechanism, wherein the cleaning mechanism is connected to the reciprocating sliding positioning mechanism via a lifting rod; The cleaning mechanism includes a housing, a power unit is provided on the top of the housing, a groove is provided on the left side of the power unit, an oblong groove is provided inside the groove, and a cleaning device is provided on the right side of the oblong groove. The power unit includes a power motor mounted on top of the housing, a power bevel gear penetrating the housing on the right side of the power motor, the power bevel gear being poweredly connected to a driven bevel gear disk mounted inside the housing, a first coupling being mounted on the left side of the driven bevel gear disk, a driven shaft being mounted on the left side of the first coupling, and the power unit being poweredly connected to the cleaning device. The cleaning device includes a second coupling connected to the driven shaft, and a cleaning component is provided on the left side of the second coupling; The cleaning component includes a movable ring disposed inside the housing, an arc-shaped plate disposed inside the movable ring, a connecting seat disposed above the arc-shaped plate, a connecting rod disposed above the connecting seat and passing through a waist-shaped groove, a cylinder disposed above the connecting rod and disposed in a groove, a cylinder rod disposed on the left side of the cylinder, and the cylinder rod being connected to the connecting rod via a hinge device. The movable ring is provided with an outer ring sleeve on the left side. Several cleaning plates are evenly arranged on the inner circumference of the outer ring sleeve. The cleaning plates are wedge-shaped structures that are wider on the left and narrower on the right. The cleaning plates are arranged inside the outer ring sleeve, pass through the movable ring, and a part of them extend into the second coupling. The outer side of the cleaning plate is provided with a "U"-shaped slot, and the upper part of the slot is provided with a waist-shaped movable groove. The movable groove is provided with a pin that is slidably connected to the movable groove. The outer side of the pin is provided with a spring that is connected to the inner wall of the movable ring. The inner side of the cleaning plate is provided with a cleaning block, and the inner side of the cleaning block is provided with an arc-shaped cleaning groove.

2. The power communication relocation line management equipment as described in claim 1, characterized in that: The frame has a channel inside on the left side, and an incomplete bushing is provided below the channel corresponding to the drive shaft. An adjusting wheel is provided in front of the incomplete bushing, and the winding wheel is poweredly connected to the drive motor through the drive shaft.

3. The power communication relocation line management equipment as described in claim 2, characterized in that: A locking mechanism is provided on one side of the front of the winding wheel. The locking mechanism includes a fixing plate, an inner ring plate is provided in front of the fixing plate, and a number of locking blocks are evenly arranged on the inner circumference of the inner ring plate. Each locking block has a locking groove on its inner side and a U-shaped groove on its outer side. Each U-shaped groove has a telescopic rod inside it.

4. The power communication relocation line management equipment as described in claim 3, characterized in that: The locking blocks are evenly arranged in three circumferences inside the inner ring plate, and the locking blocks are fan-shaped structures, while the locking grooves are arc-shaped structures.

5. The power communication relocation line management equipment as described in claim 4, characterized in that: The reciprocating sliding positioning mechanism includes a first base plate and a second base plate. A sliding rod is provided on the top of both the first base plate and the second base plate. The left and right ends of the sliding rod are connected by connecting plates. A positioning sensor is provided on the inner side of each connecting plate. A movable seat is provided on the left side of the first base plate and the second base plate. The movable seat is slidably connected to the corresponding sliding rod through a sliding block.

6. The power communication relocation line management equipment as described in claim 5, characterized in that: Positioning plates are provided on both the left and right sides of the movable seat corresponding to the positioning sensors. A connecting plate is provided on the lower right side of the movable seat. A guide seat is provided below the connecting plate. A guide rod is provided below the guide seat. An installation plate is provided on the left side of the connecting plate. A support plate is provided below the installation plate. A cable chain is provided inside the support plate. One end of the cable chain is connected to the installation plate, and the other end is connected to one end of the support plate.

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