Power distribution network fault detection device with rapid plugging wiring assembly

By designing quick-plug wiring components and a magnetic adsorption fixing method, the problems of cumbersome operation and insufficient protection of existing power distribution network fault detection devices in high-altitude operations have been solved, achieving efficient and stable wiring and detection, and improving the applicability and reliability of the detection device.

CN121385535APending Publication Date: 2026-01-23SHAN DONG SHUN TU XIN XI JI SHU YOU XIAN GONG SI
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Patent Information

Application Number
CN202511704367.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-19
Publication Date
2026-01-23

AI Technical Summary

Technical Problem

Existing power distribution network fault detection devices are cumbersome to operate in high-altitude environments, are not securely fixed, have poor adaptability, are inconvenient to plug and unplug wiring components, are prone to loosening and falling off wire harnesses, and have insufficient protection performance, which affects the accuracy and reliability of detection results.

Method used

A power distribution network fault detection device with a quick-plug wiring assembly was designed, including a detection box, a fixing component, and a plug-in assembly. The device is securely connected to the distribution tower by using magnetic adsorption and shaft rotation. The sliding plate and cover seat can be adjusted to ensure the protection of the plug-in assembly during transportation and testing. The clamping connector and telescopic rod are used for multiple fixation of the wiring harness, and the cover seat provides additional fixation in windy weather.

Benefits of technology

It improves the operational flexibility and testing efficiency of high-altitude operations, enhances the fixation of equipment to power distribution towers, avoids wiring harness confusion and damage, and improves the applicability and reliability of the device in severe weather conditions.

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Abstract

The invention discloses a power distribution network fault detection device with a rapid plugging wiring assembly, and relates to the technical field of power distribution network detection, the power distribution network fault detection device comprises a detection box, a fixing assembly and a plugging assembly, the outer end of the detection box is provided with a first rotating shaft, the outer end of the first rotating shaft is provided with the fixing assembly, and the fixing assembly comprises a first rotating seat; and an extending seat is arranged in the first rotating seat. The fixing stability of the equipment and the cross beam of the power distribution tower can be further improved, the fixing structure in the device extends out of the detection box body, so that the equipment does not need to be assisted by external parts in the fixing process, and under the design, the protection effect of the plugging assembly in the transportation and hoisting process can be guaranteed, and the safety of the equipment is improved. And stable fixation with the power distribution tower can be realized without the help of external parts, so that the equipment has extremely high adaptability to high-altitude operation.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of power distribution network detection, in particular to a power distribution network fault detection device with a quick plug-in wiring assembly. BACKGROUND

[0002] As an important part of the power system, the operation stability of the power distribution network is directly related to the power supply reliability and the power safety. In the power distribution network, fault detection is one of the key links to ensure the stable operation of the system. At present, there are various types of power distribution network fault detection devices on the market, which are used for real-time monitoring and analysis of the operation state of the power distribution line, so as to timely discover and handle faults.

[0003] However, the existing power distribution network fault detection devices still have many deficiencies in high-altitude operation environment, for example, the installation and fixation of the detection devices on the power distribution tower usually need to rely on external tools or auxiliary components, which not only is cumbersome to operate, but also has the problems of poor fixation and poor adaptability. In addition, the wiring assembly of the traditional detection device often lacks effective protection during transportation and hoisting, and is easily damaged due to collision or vibration, affecting the subsequent use.

[0004] On the other hand, the existing wiring assembly mostly adopts a fixed structure, which is inconvenient to plug in and out, especially in the case of limited space in high-altitude operation, the detection personnel have difficulty in operation, and the wiring efficiency is low. At the same time, some devices lack effective arrangement and fixation of the wire harness after wiring, which is easily caused by the self-weight of the wire or external force to cause connection loosening or even falling off, affecting the accuracy of the detection result. In addition, under the condition of bad weather (such as strong wind, rain and snow, etc.), the protection performance of the existing detection device is insufficient, which further limits its applicability and reliability in high-altitude environment. SUMMARY

[0005] The purpose of the present application is to provide a power distribution network fault detection device with a quick plug-in wiring assembly to solve the problems raised in the background art.

[0006] To achieve the above purpose, the present application provides the following technical scheme: The utility model provides a kind of power distribution network fault detection device with quick plug-in wiring assembly, including detection box, fixed component and plug-in assembly, the outer end of the detection box is equipped with first pivot, and the outer end of first pivot is provided with fixed component, the fixed component includes first swivel seat, the inside of first swivel seat is provided with extension seat, and the other end of extension seat is connected with fixed plate, the first magnet is arranged on the side of fixed plate close to detection box, the outer end of fixed plate is equipped with first ring, the outer end of the detection box is provided with second pivot, and the outer end of second pivot is provided with covering component, the covering component includes covering seat, second swivel seat is arranged between covering seat and second pivot, and the bottom outer end of covering seat is equipped with second magnet, and the outer end of covering seat is provided with second ring, the outer end of the detection box and covering seat is equipped with pulley hook, the top outer end of the detection box is equipped with first sliding slot, and the top outer end of detection box is equipped with sliding plate, the top outer end of sliding plate is equipped with handle, the outer end of the detection box is equipped with plug-in assembly, and the inside of plug-in assembly is fixed with power distribution line.

[0007] Further, the first swivel seat is rotated by first pivot, and the first swivel seat rotation drives fixed plate to separate from detection box.

[0008] Further, the fixed plate is magnetically adsorbed and fixed with detection box by first magnet, and the outer contour size of fixed plate matches the outer contour size of detection box.

[0009] Further, the second swivel seat is rotated by second pivot, and the second swivel seat rotation drives covering seat to move to the bottom end of detection box.

[0010] Further, the covering seat moves to the bottom end of detection box to make second magnet magnetically adsorbed with detection box, and fixed rope is connected between first ring and second ring.

[0011] Further, the sliding plate is slid on the top end of detection box by first sliding slot, and the lower surface of sliding plate is attached to the outer surface of covering seat.

[0012] Further, the plug-in assembly includes detection seat, the outer end of detection seat is equipped with plug, and the top outer end of detection seat is equipped with steering seat, the outer end of steering seat is connected with telescopic rod, and the bottom outer end of telescopic rod is equipped with clamping head, the bottom inner side of detection seat is equipped with second sliding slot, and the outer end of second sliding slot is equipped with electric control sliding seat, the bottom outer end of electric control sliding seat is equipped with first clasp, and the bottom end of electric control sliding seat is equipped with electric push seat, the output end of electric push seat is equipped with second clasp, Further, the sliding plate and covering seat constitute full-enclosing structure to detection seat, and plug is electrically connected with detection box by detection seat.

[0013] Furthermore, the steering seat drives the telescopic rod to rotate, and the snap-fit ​​connector engages and fixes with the power distribution cable.

[0014] Furthermore, the electric push base drives the second retaining ring to move, and the second retaining ring engages and fixes with the first retaining ring to the power distribution wire. Beneficial effects

[0015] 1. After the test box and the distribution tower beam are fixed, the tester holds the handle and pushes the sliding plate. The sliding plate can move at the top of the test box through the first sliding groove. When the sliding plate moves to the top of the test box, the plug-in component can be exposed. At this time, the tester rotates the cover seat, which can move along the second axis through the rotation of the second rotating seat. Through this operation, the cover seat can be rotated to the bottom of the test box, so that the plug-in component can be fully exposed. Through the above operations, the plug-in component can be protected by the sliding plate and the cover seat during transportation and hoisting. During the test, the sliding plate and the cover seat can be easily adjusted to expose the plug-in component. Thanks to the overall flipping of the cover seat and the lateral movement of the sliding plate, there are no obstructions around the plug-in component when it is exposed. Since the equipment test process is located on the distribution tower, the operation of the tester is restricted. By ensuring that the area around the plug-in component is open, the subsequent wiring can be guaranteed to be free from interference from external objects, thereby improving the test efficiency and operational flexibility.

[0016] 2、The application detects personnel outside the fixed plate, which makes the fixed plate can be unfolded by rotating along the first rotating shaft through the first rotating seat. After the fixed plate is unfolded, a long gap will be formed between the fixed plate and the detection box. The detection personnel will place the device horizontally and move the long gap to the crossbeam of the distribution tower. The detection personnel can adjust the gap between the fixed plate and the detection box by loosening the bolts between the extension seat and the fixed plate. After adjusting the gap between the fixed plate and the detection box to be consistent with the crossbeam of the distribution tower, the detection personnel will tighten the bolts between the extension seat and the fixed plate. At this time, the fixed plate can be clamped and fixed with the crossbeam of the distribution tower in cooperation with the detection box. The first magnet is arranged on the side of the fixed plate close to the crossbeam of the distribution tower. The first magnet can improve the fixing firmness of the device and the crossbeam of the distribution tower through adsorption. The second magnet at the bottom end of the covering seat can be adsorbed to the outer wall of the detection box after the covering seat is turned to the bottom end of the detection box, thereby ensuring the fixing stability of the covering seat. In this state, the second hanging ring at the outer end of the covering seat is close to the first hanging ring at the bottom end of the fixed plate. At this time, the staff can pass the fixing rope through the two groups of hanging rings and tighten it, which can make the fixed plate be fixed again through the fixing rope. Through the design, the fixing stability of the device and the crossbeam of the distribution tower can be further improved. The above fixing structure is extended from the detection box body, which makes it unnecessary to use external components to assist in the fixing process. Under this design, the protection effect of the plug-in assembly during transportation and hoisting can be ensured, and stable fixing with the distribution tower can be achieved without the aid of external components. This makes the device have high adaptability for high-altitude operation.

[0017] 3、The second clamping ring is driven upward by the electric push seat, which makes the first clamping ring cooperate with the second clamping ring to fix the distribution line. In addition, the detection personnel can fix the line body of the distribution line into the clamping joint, which can fix the distribution line again. Because the length of the distribution line is relatively long and it has a certain gravity, if only the clamping ring is used for fixing, the head and line body of the distribution line are easy to be damaged due to its own gravity. The use of multiple fixings can effectively avoid this situation. In addition, through multiple fixings, the wire harness of the fixed section can be regularized, which can effectively avoid the situation of wire harness confusion. In addition, the clamping joint is connected with the detection seat through the extension rod and the steering seat. Through the use of the extension rod and the steering seat, the distribution line can be freely adjusted during fixing. Because the activities of the detection personnel in high-altitude operation are limited, the distribution line can still be adjusted after fixing, which can greatly avoid the interference between the wire harnesses and affect the operation of the detection personnel. In addition, in windy weather, the detection personnel can cover the covering seat on the outer end of the plug-in assembly after fixing the wire harness, which can greatly reduce the influence of the wind on the detection. At this time, the fixing rope is selected to be long and elastic, which can still assist the fixed plate in fixing after the covering seat. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the present application, the drawings used in the present application will be briefly introduced as follows. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without any creative effort on the basis of these drawings.

[0019] Figure 1 Structure diagram A of the unfolded state of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 2 Structure diagram B of the unfolded state of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 3 Structure diagram of the plug-in assembly of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 4 Structure diagram A of the storage state of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 5 Structure diagram B of the storage state of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 6 Structure diagram C of the storage state of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 7 Structure diagram of the fixing assembly of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application; Figure 8 Structure diagram of the fixing state of the power distribution network fault detection device with the quick plug-in wiring assembly of the present application.

[0020] In the figure: 1, detection box; 2, first rotating shaft; 3, fixing assembly; 301, first rotating seat; 302, extension seat; 303, fixing plate; 304, first magnet; 305, first hanging ring; 4, second rotating shaft; 5, covering assembly; 501, covering seat; 502, second rotating seat; 503, second magnet; 504, second hanging ring; 6, pulley hook; 7, first sliding groove; 8, sliding plate; 9, handle; 10, plug-in assembly; 1001, detection seat; 1002, plug-in connector; 1003, turning seat; 1004, telescopic rod; 1005, clamping connector; 1006, second sliding groove; 1007, electric control sliding seat; 1008, first clamping ring; 1009, electric pushing seat; 1010, second clamping ring; 11, power distribution line; 12, fixing rope. DETAILED DESCRIPTION

[0021] The technical scheme of the present application will be described below in detail with reference to the drawings. The following embodiments are only used to more clearly illustrate the technical scheme of the present application, and therefore only serve as examples, but cannot be used to limit the protection scope of the present application.

[0022] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs; the terminology used in the specification herein is for describing particular embodiments only and is not intended to be limiting of the application; the terms "comprising," "having," "including," and "containing" used in the specification and the appended claims and the above detailed description of the application, are to be construed as containing the meaning typically used by those skilled in the art and not to the exclusion of any other stated features or concepts.

[0023] Please refer to Figures 1 to 8 The power distribution network fault detection device with quick plug-in wiring assembly provided by the present application comprises a detection box 1, a fixing assembly 3 and a plug-in assembly 10. A first rotating shaft 2 is arranged at the outer end of the detection box 1, and the fixing assembly 3 is arranged at the outer end of the first rotating shaft 2. The fixing assembly 3 comprises a first rotating seat 301, and an extension seat 302 is arranged in the first rotating seat 301. A fixing plate 303 is connected to the other end of the extension seat 302. A first magnet 304 is arranged on the side of the fixing plate 303 close to the detection box 1. A first hanging ring 305 is arranged at the outer end of the fixing plate 303. A second rotating shaft 4 is arranged at the outer end of the detection box 1, and a covering assembly 5 is arranged at the outer end of the second rotating shaft 4. The covering assembly 5 comprises a covering seat 501, and a second rotating seat 502 is arranged between the covering seat 501 and the second rotating shaft 4. A second magnet 503 is arranged at the bottom outer end of the covering seat 501, and a second hanging ring 504 is arranged at the outer end of the covering seat 501. Pulley hooks 6 are arranged at the outer ends of the detection box 1 and the covering seat 501. A first sliding groove 7 is formed at the top outer end of the detection box 1, and a sliding plate 8 is arranged at the top outer end of the detection box 1. A handle 9 is arranged at the top outer end of the sliding plate 8. The plug-in assembly 10 is arranged at the outer end of the detection box 1, and a power distribution line 11 is fixed in the plug-in assembly 10. The first rotating seat 301 rotates through the first rotating shaft 2, and the rotation of the first rotating seat 301 drives the fixing plate 303 to separate from the detection box 1. The fixing plate 303 is magnetically attracted and fixed to the detection box 1 through the first magnet 304, and the outer contour size of the fixing plate 303 matches the outer contour size of the detection box 1. The second rotating seat 502 rotates through the second rotating shaft 4, and the rotation of the second rotating seat 502 drives the covering seat 501 to move to the bottom end of the detection box 1. When the covering seat 501 moves to the bottom end of the detection box 1, the second magnet 503 is magnetically attracted to the detection box 1. A fixing rope 12 is connected between the first hanging ring 305 and the second hanging ring 504. The sliding plate 8 slides at the top end of the detection box 1 through the first sliding groove 7, and the lower surface of the sliding plate 8 is attached to the outer surface of the covering seat 501.

[0024] Specific operation as follows, the detection personnel climb on the distribution tower, throw the pulley rope to the tower, the staff under the tower will pulley rope and pulley hook 6 and hoisting equipment complete the connection, through the start of hoisting equipment, the equipment can be hoisted to the detection point of the distribution tower through the pulley hook 6, the equipment is hoisted to the detection point of the distribution tower, the detection personnel turn out the fixed plate 303, which makes the fixed plate 303 can be unfolded by rotating along the first rotating shaft 2 through the first rotating seat 301, after the fixed plate 303 is unfolded, a long strip gap will be formed between the fixed plate 303 and the detection box 1, the detection personnel place the equipment horizontally, and move the long strip gap to the beam of the distribution tower, the detection personnel adjust the gap between the fixed plate 303 and the detection box 1 by loosening the bolt between the extension seat 302 and the fixed plate 303, which can make the fixed plate 303 adjust the gap between the fixed plate 303 and the detection box 1 through displacement, after adjusting the gap between the fixed plate 303 and the detection box 1 to be consistent with the beam of the distribution tower, the detection personnel tighten the bolt between the extension seat 302 and the fixed plate 303, at this time, the fixed plate 303 cooperates with the detection box 1 to be clamped and fixed with the beam of the distribution tower, and the first magnet 304 is arranged on the side of the fixed plate 303 abutting the beam of the distribution tower, through the adsorption of the first magnet 304 and the beam of the distribution tower, the fixing firmness of the equipment and the beam of the distribution tower can be improved; After the detection box 1 is fixed with the beam of the distribution tower, the detection personnel hold the handle 9 and push the sliding plate 8, the sliding plate 8 can displace at the top end of the detection box 1 through the first sliding groove 7, when the sliding plate 8 moves to the top end of the detection box 1, the plug-in assembly 10 can be exposed, at this time, the detection personnel rotate the covering seat 501, the covering seat 501 can move through the rotation of the second rotating shaft 4 through the second rotating seat 502, through the operation, the covering seat 501 can be rotated to the bottom end of the detection box 1, which makes the plug-in assembly 10 can be completely exposed, through the above operation, the plug-in assembly 10 can be protected by the sliding plate 8 and the covering seat 501 during transportation and hoisting, and during detection, the sliding plate 8 and the covering seat 501 can expose the plug-in assembly 10 through convenient positioning, thanks to the overall turning of the covering seat 501 and the horizontal displacement of the sliding plate 8, there is no obstruction around the plug-in assembly 10 when it is exposed, because the equipment detection process is located on the distribution tower, the detection personnel's operation is limited, by ensuring the space around the plug-in assembly 10, it can ensure that the subsequent wiring is not interfered by external objects, thereby improving the detection efficiency and operation flexibility.

[0025] The second magnet 503 at the bottom end of the cover seat 501 can be adsorbed with the outer wall of the detection box 1 after the cover seat 501 is flipped to the bottom end of the detection box 1, so as to ensure the fixing stability of the cover seat 501. In this state, the second hanging ring 504 at the outer end of the cover seat 501 is close to the first hanging ring 305 at the bottom end of the fixed plate 303. At this time, the staff passes the fixing rope 12 through the two groups of hanging rings and tightens it, which makes the fixed plate 303 can be secondarily fixed through the fixing rope 12. Through the design, the fixing stability of the equipment and the power distribution tower beam can be further improved. The above fixing structures are all extended from the detection box 1 body, so that the equipment does not need to use external components for assistance during the fixing process. Under this design, the protection effect of the plug-in assembly 10 during the transportation and hoisting process can be ensured, and stable fixing with the power distribution tower can be realized without the aid of external components. This makes the equipment have very high aerial work adaptability.

[0026] Please refer to Figures 1 to 8 In some embodiments, the plug-in assembly 10 comprises a detection seat 1001, the outer end of the detection seat 1001 is provided with a plug 1002, and the top outer end of the detection seat 1001 is provided with a steering seat 1003. The outer end of the steering seat 1003 is connected with a telescopic rod 1004, and the bottom outer end of the telescopic rod 1004 is provided with a clamping head 1005. The bottom inner side of the detection seat 1001 is provided with a second sliding groove 1006, and the outer end of the second sliding groove 1006 is provided with an electric control sliding seat 1007. The bottom outer end of the electric control sliding seat 1007 is provided with a first clamping ring 1008, and the bottom end of the electric control sliding seat 1007 is provided with an electric push seat 1009. The output end of the electric push seat 1009 is provided with a second clamping ring 1010. The sliding plate 8 and the cover seat 501 form a full-enclosed structure to the detection seat 1001, and the plug 1002 is electrically connected with the detection box 1 through the detection seat 1001. The steering seat 1003 drives the telescopic rod 1004 to rotate, the clamping head 1005 is clamped and fixed with the power distribution wire 11, the electric push seat 1009 drives the second clamping ring 1010 to displace, and the second clamping ring 1010 is clamped and fixed with the power distribution wire 11 together with the first clamping ring 1008.

[0027] Specific operation as follows, the device is complete fixed, the detection personnel will distribution line 11 need to be detected on the distribution tower, the head of the distribution line 11 is inserted into the inside of the first clasp 1008, the electric push seat 1009 works at this time, can drive the second clasp 1010 to move up, which makes the first clasp 1008 can cooperate with the second clasp 1010 to realize the fixing of the distribution line 11, in addition, the detection personnel will line body of distribution line 11 is clamped into the inside of the joint 1005, can make the joint 1005 to the distribution line 11 for secondary fixed, because the length of the distribution line 11 is longer, and it has a certain gravity, if only use the clasp to fix, the head and line body of the distribution line 11 is easy to be pulled and damaged due to its own gravity, through multiple fixed, can effectively avoid the occurrence of this situation, in addition, through multiple fixed, can make the wire harness of the fixed section regular, which can effectively avoid the situation of wire harness confusion.

[0028] In addition, the joint 1005 is connected with the detection seat 1001 through the telescopic rod 1004 and the steering seat 1003. Through the use of the telescopic rod 1004 and the steering seat 1003, the distribution line 11 can be freely adjusted during the fixing process. Because the activities of the detection personnel in high altitude operation are limited, the distribution line 11 can still be adjusted after the fixing is completed, which can greatly avoid the interference between the wire harnesses and affect the operation of the detection personnel.

[0029] It should be noted that in windy weather, the detection personnel can pull the covering seat 501 after the wire harness is fixed, so that the covering seat 501 covers the outer end of the plug-in assembly 10 again. Through the covering of the covering seat 501, the influence of the wind on the detection can be greatly reduced. At this time, the fixing rope 12 is selected to be long and has elasticity. The covering seat 501 can still assist in fixing the fixing plate 303 after the covering seat 501. After the distribution line 11 is fixed, the electric control sliding seat 1007 works in the second sliding groove 1006 to slide, which can drive the distribution line 11 to move towards the plug-in head 1002 until the distribution line 11 is connected with the plug-in head 1002. The plug-in head 1002 is electrically connected with the detection box 1 through the detection seat 1001. At this time, the detection box 1 starts the fault detection program to monitor and analyze the data of the distribution line 11 in real time. Through the displacement of the electric control sliding seat 1007, the quick plug and unplug of the distribution line 11 can be realized. Through the quick plug and unplug of different distribution lines 11, the electrical connection stability between the distribution lines 11 can be detected.

[0030] When the power distribution network fault detection device is used, first, the detection personnel climbs up the power distribution tower, throws the pulley rope to the tower, and the personnel under the tower connects the pulley rope with the pulley hook 6 and the hoisting equipment. After the hoisting equipment is started, the equipment can be hoisted to the detection point of the power distribution tower through the pulley hook 6. After the equipment is hoisted to the detection point of the power distribution tower, the detection personnel turns out the fixing plate 303, which makes the fixing plate 303 rotate along the first rotating shaft 2 through the first rotating seat 301 to unfold. After the fixing plate 303 unfolds, a long strip-shaped gap is formed between the fixing plate 303 and the detection box 1. The detection personnel places the equipment horizontally and moves the long strip-shaped gap to the beam of the power distribution tower. The detection personnel adjusts the gap between the fixing plate 303 and the detection box 1 by loosening the bolts between the extension seat 302 and the fixing plate 303, so that the fixing plate 303 can be adjusted in position. After the gap between the fixing plate 303 and the detection box 1 is adjusted to be consistent with the beam of the power distribution tower, the detection personnel tightens the bolts between the extension seat 302 and the fixing plate 303. At this time, the fixing plate 303 cooperates with the detection box 1 to be clamped and fixed with the beam of the power distribution tower. The first magnet 304 is arranged on the side of the fixing plate 303 abutting the beam of the power distribution tower. Through the adsorption of the first magnet 304 and the beam of the power distribution tower, the fixing firmness of the equipment and the beam of the power distribution tower is improved; Then, after the detection box 1 is fixed with the beam of the power distribution tower, the detection personnel holds the handle 9 and pushes the sliding plate 8. The sliding plate 8 can displace at the top end of the detection box 1 through the first sliding groove 7. When the sliding plate 8 moves to the top end of the detection box 1, the plug-in assembly 10 is exposed. At this time, the detection personnel rotates the covering seat 501, which can move along the second rotating shaft 4 through the second rotating seat 502. Through this operation, the covering seat 501 can be rotated to the bottom end of the detection box 1, which makes the plug-in assembly 10 completely exposed. Through the above operation, the plug-in assembly 10 can be protected by the sliding plate 8 and the covering seat 501 during transportation and hoisting. During detection, the sliding plate 8 and the covering seat 501 can expose the plug-in assembly 10 through convenient positioning. Due to the overall turning of the covering seat 501 and the horizontal movement of the sliding plate 8, there is no obstruction around the plug-in assembly 10 when it is exposed. Since the equipment detection process is located on the power distribution tower, the detection personnel's operation is limited. By ensuring the space around the plug-in assembly 10, the subsequent wiring is not interfered by external objects, thereby improving the detection efficiency and operation flexibility; Then the cover seat 501 is flipped to the bottom end of the detection box 1, the second magnet 503 at the bottom end of the cover seat 501 can be adsorbed with the outer wall of the detection box 1, so as to ensure the fixing stability of the cover seat 501, in this state, the second hanging ring 504 at the outer end of the cover seat 501 is close to the first hanging ring 305 at the bottom end of the fixed plate 303, at this time, the staff passes the fixing rope 12 through the two groups of hanging rings and tightens it, which makes the fixed plate 303 can be fixed again through the fixing rope 12, through the design, the fixing stability of the equipment and the power distribution tower beam can be further improved, and the above fixing structure is extended from the detection box 1 body, which makes the equipment not need to use external components during fixing, under this design, the protection effect of the plug-in assembly 10 during transportation and hoisting can be ensured, and stable fixing with the power distribution tower can be realized without the help of external components, which makes the equipment have high aerial work adaptability; After the equipment is fixed, the detection personnel removes the power distribution line 11 that needs to be detected from the power distribution tower, and inserts the head of the power distribution line 11 into the inside of the first clamping ring 1008, at this time, the electric push seat 1009 works, which can drive the second clamping ring 1010 to move upwards, which makes the first clamping ring 1008 cooperate with the second clamping ring 1010 to fix the power distribution line 11, in addition, the detection personnel inserts the wire body of the power distribution line 11 into the clamping joint 1005, which can make the clamping joint 1005 fix the power distribution line 11 again, because the length of the power distribution line 11 is relatively long and it has a certain gravity, if only the clamping ring is used for fixing, the head and the wire body of the power distribution line 11 are easy to be pulled and damaged due to its own gravity, through multiple fixing, the situation can be effectively avoided, in addition, through multiple fixing, the wire harness of the fixed section can be regularized, which can effectively avoid the situation of wire harness confusion, in addition, the clamping joint 1005 is connected with the detection seat 1001 through the extension rod 1004 and the steering seat 1003, through the use of the extension rod 1004 and the steering seat 1003, the power distribution line 11 can be freely adjusted during fixing, because the activities of the aerial work detection personnel are limited, by allowing the power distribution line 11 to still be adjusted after fixing, the influence of wire harness interference on the operation of the detection personnel can be greatly avoided, in addition, in windy weather, after the detection personnel fixes the wire harness, the cover seat 501 is pulled to cover the outer end of the plug-in assembly 10 again, through the covering of the cover seat 501, the influence of the wind on the detection can be greatly reduced, at this time, the fixing rope 12 selects a relatively long and elastic rope, which can still assist the fixing of the fixed plate 303 after the cover seat 501; Finally, after the completion of the power distribution line 11 fixed, the electric control slide 1007 works in the second sliding groove 1006 sliding, can drive the power distribution line 11 to the direction of the plug 1002 displacement, until the power distribution line 11 and plug 1002 butt joint, plug 1002 through the detection seat 1001 and detection box 1 electrical connection, at this time the detection box 1 start fault detection program, real-time monitoring and data analysis to the power distribution line 11, but through the displacement of the electric control slide 1007, can realize the power distribution line 11 quick plug, but through the quick plug of different power distribution line 11, can make the equipment to the power distribution line 11 between the electrical connection stability detection.

[0031] The principles and implementations of the present application are described herein by applying specific examples, and the above examples are only used to help understand the method of the present application and its core idea. The above description is only the preferred embodiment of the present application. It should be pointed out that due to the limitation of language expression, there are infinite specific structures objectively. For ordinary skilled persons in the art, without departing from the principles of the present application, some improvements, refinements or changes can be made, and the above technical features can be combined in a proper way. These improvements, refinements, changes or combinations, or the direct application of the inventive concept and technical solution to other occasions without improvement, shall be regarded as the protection scope of the present application.

Claims

1. A power distribution network fault detection device with a quick-plug wiring assembly, characterized in that, The device includes a testing box, a fixing component, and a plug-in component. The testing box has a first rotating shaft at its outer end, and a fixing component at its outer end. The fixing component includes a first rotating base, an extension base inside the first rotating base, and a fixing plate connected to the other end of the extension base. A first magnet is placed on the fixing plate near the testing box, and a first hanging ring is placed on the outer end of the fixing plate. The testing box has a second rotating shaft at its outer end, and a covering component at its outer end. The covering component includes a covering base, a second rotating base between the covering base and the second rotating shaft, a second magnet at the bottom outer end of the covering base, and a second hanging ring at the outer end of the covering base. The testing box and the covering base have pulley hooks at their outer ends. The testing box has a first sliding groove at its top outer end, and a sliding plate at its top outer end, with a handle at the top outer end of the sliding plate. The testing box has a plug-in component at its outer end, and a power distribution cable is fixed inside the plug-in component.

2. The power distribution network fault detection device with quick-plug wiring assembly according to claim 1, characterized in that, The first rotating base rotates via the first rotating shaft, and the rotation of the first rotating base causes the fixed plate to separate from the detection box.

3. The power distribution network fault detection device with quick-plug wiring assembly according to claim 2, characterized in that, The fixing plate is magnetically attracted and fixed to the detection box by the first magnet, and the outer contour dimensions of the fixing plate match the outer contour dimensions of the detection box.

4. The power distribution network fault detection device with quick-plug wiring assembly according to claim 3, characterized in that, The second rotating seat rotates via the second rotating shaft, and the rotation of the second rotating seat causes the cover seat to move to the bottom of the detection box.

5. The power distribution network fault detection device with quick-plug wiring assembly according to claim 4, characterized in that, When the cover is moved to the bottom of the test box, the second magnet is magnetically attracted to the test box, and a fixing rope is connected between the first hanging ring and the second hanging ring.

6. The power distribution network fault detection device with quick-plug wiring assembly according to claim 5, characterized in that, The sliding plate slides on the top of the detection box via the first sliding groove, and the lower surface of the sliding plate is in contact with the outer surface of the cover seat.

7. The power distribution network fault detection device with quick-plug wiring assembly according to claim 6, characterized in that, The insertion / removal assembly includes a detection base, an insertion connector at the outer end of the detection base, a steering base at the top outer end of the detection base, a telescopic rod connected to the outer end of the steering base, a retaining connector at the bottom outer end of the telescopic rod, a second sliding groove on the inner side of the bottom of the detection base, an electrically controlled slide at the outer end of the second sliding groove, a first retaining ring at the bottom outer end of the electrically controlled slide, an electrically driven base at the bottom end of the electrically controlled slide, and a second retaining ring at the output end of the electrically driven base.

8. The power distribution network fault detection device with quick-plug wiring assembly according to claim 7, characterized in that, The sliding plate and the cover seat form a fully enclosed structure for the detection seat, and the connector is electrically connected to the detection box through the detection seat.

9. The power distribution network fault detection device with quick-plug wiring assembly according to claim 8, characterized in that, The steering seat drives the telescopic rod to rotate, and the clamping connector engages and fixes with the power distribution cable.

10. The power distribution network fault detection device with quick-plug wiring assembly according to claim 9, characterized in that, The electric push base drives the second retaining ring to move, and the second retaining ring engages and fixes with the first retaining ring to the power distribution wire.