Power construction cable hanging bracket

By designing the power construction cable hanger for mobile mechanisms, scissors and hydraulic mechanisms, the problem of inconvenience in disassembly and assembly in the existing technology is solved, rapid disassembly and assembly and flexible movement are achieved, and construction efficiency is improved.

CN223167921UActive Publication Date: 2025-07-29赖俊吉 +1
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Patent Information

Application Number
CN202421289455.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-06
Publication Date
2025-07-29
Estimated Expiration
2034-06-06

AI Technical Summary

Technical Problem

The existing power construction cable hangers are inconvenient to disassemble and assemble, which causes them to take too long to temporarily replace the position, affecting the progress of the project.

Method used

A power construction cable hanger including a moving mechanism, a workbench and a support table is designed. The universal wheel, a scissor mechanism and a hydraulic mechanism are used to achieve rapid movement and disassembly and assembly. Through the flexibility of the universal wheel, the scissor mechanism is adjusted, the contraction and extension of the scissor mechanism, the rapid support table of the hydraulic mechanism is moved, and combined with the support and rotation of the small crane, the rapid disassembly and assembly are achieved.

Benefits of technology

It realizes the rapid disassembly and assembly of power construction cable hangers, meets the needs of temporary replacement of locations, and greatly improves work efficiency and project progress.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an electric power construction cable hanging bracket which comprises a moving mechanism, a working table and a supporting table, the working table is arranged in the middle of the top of the moving mechanism, the working table is fixedly installed in the middle of the top of the moving mechanism through screws, and a shear fork mechanism is arranged between the working table and the supporting table. The working table and the supporting table are arranged at the bottom and the top of the shear fork mechanism correspondingly, the working table is parallel to the supporting table, dismounting and mounting are convenient, the requirement for temporary position replacement in the electric power construction process can be met, dismounting and mounting are completed in a very short time, the working efficiency is greatly improved, and meanwhile the project progress is accelerated to a certain degree.
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Description

Technical Field

[0001] The utility model relates to the technical field of cable hanging brackets, and particularly to a cable hanging bracket for electric power construction. Background Art

[0002] Cables are mainly used for multiple functions such as control installation, connecting devices, and transmitting electric power. They are a common and indispensable thing in daily life. Cable hanging brackets play a crucial role in the process of electric power construction, greatly improving work efficiency. In the process of large-scale electric power construction, there are often high requirements for the flexibility of cable hanging brackets, and it is necessary to move the cable hanging brackets at different distances.

[0003] However, through analysis, it is found that the existing cable hanging brackets for electric power construction are not convenient to disassemble and assemble. When it is necessary to temporarily change the position, it takes a long time to disassemble and assemble, reducing work efficiency and affecting the project progress. Content of the Utility Model

[0004] Therefore, in order to solve the above deficiencies, the utility model provides a cable hanging bracket for electric power construction here. It is convenient to disassemble and assemble, can meet the need to temporarily change the position during the electric power construction process, complete the disassembly and assembly in a very short time, greatly improving work efficiency, and to a certain extent, accelerating the project progress.

[0005] The utility model is realized as follows: A cable hanging bracket for electric power construction is constructed, which includes a moving mechanism, a workbench, and a support platform. A workbench is arranged at the middle position on the top of the moving mechanism. The workbench is fixedly installed at the middle position on the top of the moving mechanism through screws. A scissor mechanism is arranged between the workbench and the support platform. The bottom and top of the scissor mechanism are respectively provided with the workbench and the support platform, and the workbench is parallel to the support platform.

[0006] Furthermore, the moving mechanism includes universal wheels, a support mechanism, and a bottom plate. Universal wheels and support mechanisms with the same structure are sequentially arranged at the four corners of the bottom of the bottom plate. The top of the universal wheels is fixedly connected to the bottom plate through screws. By moving the universal wheels, the bottom plate fixedly connected thereto is driven to move. At the same time, the workbench fixedly connected to the bottom plate also moves accordingly. The workbench drives the support platform fixedly connected thereto to move, enabling the entire cable hanging bracket to move. Through the flexibility of the universal wheels, the direction can be adjusted arbitrarily, so that the movement is convenient and the work efficiency is greatly improved.

[0007] Further, the support mechanism includes a fixing plate A, support feet, T-shaped connecting rods, screws, and threaded sleeves. One end of the fixing plate A of the support mechanism is welded to the four corners of the bottom of the base plate. The threaded sleeve is embedded and connected to the other end of the fixing plate A. The screw is movably connected to the inner side of the threaded sleeve through threads. T-shaped connecting rods and support feet are respectively arranged at both ends of the screw. By rotating the T-shaped connecting rod, the screw fixedly connected thereto is driven to rotate. The screw is moved downward through the thread cooperation with the threaded sleeve, and at the same time, the support feet fixed to the bottom of the screw are driven to move downward to fit with the ground, so as to support the moving mechanism fixedly connected to the support mechanism, and at the same time support the workbench fixedly connected to the moving mechanism, and support the support platform fixedly connected to the workbench, thereby improving the stability of the cable hanger.

[0008] Further, the workbench includes a workbench bottom plate, slideways, a hydraulic mechanism, a scissor mechanism, support seat A, support seat B, and sliders. At both corners at one end of the top of the workbench bottom plate, support seats A of the same specification are provided, and the support seats A are fixedly connected to the workbench bottom plate by welding. Slideways, sliders, and support seats B of the same specification are symmetrically arranged at the edge position of the top of the workbench bottom plate. The slideways are fixedly connected to the workbench bottom plate by screws. The sliders are nested inside the slideways and are kept in sliding connection. The support seat B is welded to the top position of the slider. The hydraulic mechanism is arranged between the two slideways of the same specification. The hydraulic mechanism is fixedly installed at one end of the top of the workbench bottom plate and is arranged in parallel. At the corresponding position at the bottom of the support platform on the top of the workbench, there are the same slideways, support seat A, support seat B, and sliders. One end of the scissor mechanism is kept in rotational connection with the support seat A through a bearing, and the other end of the scissor mechanism is kept in rotational connection with the support seat B through a bearing, and is kept in sliding connection with the slideways through the fixedly connected sliders. By providing the support seat A, one end of the scissor mechanism is kept in rotational connection. By providing the sliders, the fixedly connected support seat B is driven to slide on the slideways, and at the same time, one end of the scissor mechanism rotationally connected to the support seat B is driven to slide, so as to contract the scissor mechanism, saving a large amount of time for temporary disassembly and assembly and improving work efficiency.

[0009] Furthermore, the hydraulic mechanism includes a fixed plate B, a movable plate, a support plate A, an outer sleeve, a telescopic rod A, a connecting rod A, a connecting rod B, a fixed shaft, a curved connecting rod, telescopic rod B, telescopic rod C, telescopic sleeve A, telescopic sleeve B and a pressing block. One end of the movable plate is rotatably connected to one side of the fixed plate B through a bearing, and a movable plate with the same structure is provided on the opposite side of the fixed plate B. The top of the movable plate is welded with a support plate A. The outer sleeve is arranged at one end of the top of the support plate A. The other end of the top of the support plate A is provided with a telescopic sleeve A and a telescopic sleeve B in parallel. The inside of the telescopic sleeve A is movably connected to the telescopic rod B, the inside of the telescopic sleeve B is movably connected to the telescopic rod C, the top of the telescopic rod B is welded with a curved connecting rod, one end of the curved connecting rod is provided with a pressing block, the inside of the outer sleeve is movably connected to the telescopic rod A, the inside of the telescopic rod A is movably connected to the connecting rod A, and the top of the connecting rod A is welded with a connecting rod. The top of the connecting rod is fixedly connected to the fixed shaft through a fixed sleeve, and the fixed shaft is welded to the side of the scissors-fork mechanism; by reciprocatingly pressing the curved connecting rod, the curved connecting rod drives the telescopic rod B at one end to perform reciprocating telescopic motion, and the fixedly connected pressing block presses the telescopic rod C back and forth, so that the hydraulic oil in the telescopic sleeve B enters the outer sleeve, and the telescopic rod A on the inside of the outer sleeve is extended outward through the pressure principle, and at the same time, the fixedly connected connecting rod A drives the connecting rod B to extend upward, so that the fixed shaft fixed on the side of the scissors-fork mechanism moves upward, and the fixed shaft drives the support seat B fixedly connected to one end of the scissors-fork mechanism to move on the slide through the slider, so as to extend the scissors-fork mechanism and drive the support platform fixed on the top of the scissors-fork mechanism to move upward, so that disassembly and assembly are convenient, which can meet the need for temporary change of position during power construction, and can complete disassembly and assembly in a very short time, greatly improving work efficiency.

[0010] Furthermore, the support platform includes a support plate B, a small crane and a cable bracket, a support plate C, a rolling shaft, screws, and a support platform movable plate. Small cranes and cable brackets are respectively provided at both ends of the top of the support plate B, and support plates C, screws and support platform movable plates of the same specifications are respectively provided at both ends of the rolling shaft. The support plate C is fixedly installed at one end of the top of the support platform, and the rolling shaft is nested between the support plate C and the support platform movable plate. The support platform movable plate is fixedly connected to the support plate C by screws; the cable rack is lifted to the top of the support platform by the set small crane, and the rolling shaft is used to pass through the cable rack and support it through the support plate C, and the support platform movable plate is fixed to the top of the support plate C with screws. The rolling shaft is rotated by cooperating with the motor, and the cable rack is driven to rotate at the same time.

[0011] The utility model is easy to disassemble and assemble, and can meet the need for temporary replacement of positions during power construction. It can complete disassembly and assembly in a very short time, greatly improving work efficiency and speeding up the progress of the project to a certain extent. Specifically, it is reflected in:

[0012] Advantage 1: The universal wheels are moved to drive the workbench bottom plate fixedly connected thereto to move. Meanwhile, the workbench fixedly connected to the workbench bottom plate also moves accordingly. The workbench drives the support platform fixedly connected thereto to move, causing the entire cable hanger to move. The direction can be adjusted arbitrarily due to the flexibility of the universal wheels. One end of the scissor mechanism is kept in rotational connection through the provided support seat A. The slider drives the fixedly connected support seat B to slide on the slideway, and simultaneously drives one end of the scissor mechanism rotationally connected to the support seat B to slide, thereby contracting the scissor mechanism. As a result, the movement is convenient and the work efficiency is greatly improved.

[0013] Advantage 2: By reciprocally pressing the curved connecting rod, the curved connecting rod drives the telescopic rod B at one end to perform reciprocating telescopic motion. The fixedly connected pressing block reciprocally presses the telescopic rod C, causing the hydraulic oil in the telescopic sleeve B to enter the outer sleeve. According to the pressure principle, the telescopic rod A inside the outer sleeve extends outwards. Meanwhile, the fixedly connected connecting rod A drives the connecting rod B to extend upwards, causing the fixed shaft on the side of the scissor mechanism to move upwards. The fixed shaft drives the support seat B fixedly connected to one end of the scissor mechanism to move on the slideway through the slider, thereby extending the scissor mechanism, and simultaneously driving the support platform fixedly arranged at the top of the scissor mechanism to move upwards.

[0014] Advantage 3: The cable rack is lifted to the top of the support platform by the provided small crane. The rolling shaft passes through the cable rack and is supported by the support plate C. The movable plate of the support platform is fixed on the top of the support plate C with screws. The rolling shaft is rotated by cooperating with the motor, and simultaneously drives the cable rack to rotate. Description of the Drawings

[0015] Figure 1 is a schematic structural diagram of a cable hanger for electric power construction;

[0016] Figure 2 is Figure 1 an enlarged view of part A of

[0017] Figure 3 a schematic structural diagram of a hydraulic mechanism;

[0018] Figure 4 a schematic structural diagram of a cable support;

[0019] Figure 5 is a schematic diagram of a partial structure of the slideway.

[0020] The serial numbers shown in the figure: moving mechanism 1; universal wheel 11; supporting mechanism 12; fixing plate A121; supporting foot 122; T-shaped connecting rod 123; screw 124; threaded sleeve 125; bottom plate 13; workbench 2; workbench bottom plate 21; slideway 22; hydraulic mechanism 23; fixing plate B231; movable plate 232; supporting plate A233; outer sleeve 234; telescopic rod A235; connecting rod A236; connecting rod 237; fixed shaft 238; curved connecting rod 239; telescopic rod B2310; telescopic rod C2311; telescopic sleeve A2312; telescopic sleeve B2313; pressing block 2314; scissor mechanism 24; supporting seat A25; supporting seat B26; slider 27; supporting platform 3; supporting plate B31; small crane 32; cable support 33; supporting plate C331; rolling shaft 332; screw 333 and supporting platform movable plate 334. Detailed implementation mode

[0021] The utility model provides an electric power construction cable hanger through improvement, as shown in the attached drawings of the specification, and can be implemented in the following manner; it includes a moving mechanism 1, a workbench 2 and a supporting platform 3. A workbench 2 is arranged at the middle position on the top of the moving mechanism 1. The workbench 2 is fixedly installed at the middle position on the top of the moving mechanism 1 through screws. A scissor mechanism 24 is arranged between the workbench 2 and the supporting platform 3. The bottom and the top of the scissor mechanism 24 are respectively provided with the workbench 2 and the supporting platform 3, and the workbench 2 and the supporting platform 3 are parallel.

[0022] In the utility model, the moving mechanism 1 includes a universal wheel 11, a supporting mechanism 12 and a bottom plate 13. Universal wheels 11 and supporting mechanisms 12 with the same structure are sequentially arranged at the four corners of the bottom of the bottom plate 13. The top of the universal wheel 11 is fixedly connected to the bottom plate 13 through screws. By moving the universal wheel 11, the bottom plate 13 fixedly connected to it is driven to move. At the same time, the workbench 2 fixedly connected to the bottom plate 13 also moves accordingly. The workbench 2 drives the supporting platform 3 fixedly connected to it to move, so that the whole cable hanger moves. The direction can be adjusted arbitrarily through the flexibility of the universal wheel 11, so the movement is convenient.

[0023] The support mechanism 12 includes a fixing plate A121, support feet 122, T-shaped connecting rods 123, screw rods 124, and threaded sleeves 125. One end of the fixing plate A121 of the support mechanism 12 is welded to the four corner positions at the bottom of the bottom plate 13. The threaded sleeve 125 is embedded and connected to the other end of the fixing plate A121. The screw rod 124 is movably connected to the inner side of the threaded sleeve 125 by threads. T-shaped connecting rods 123 and support feet 122 are respectively arranged at both ends of the screw rod 124. By rotating the T-shaped connecting rod 123, the screw rod 124 fixedly connected thereto is driven to rotate. The screw rod 124 moves downward through the threaded cooperation with the threaded sleeve 125, and at the same time drives the support feet 122 fixed at the bottom of the screw rod 124 to move downward to fit with the ground, playing a supporting role for the moving mechanism 1 fixedly connected to the support mechanism 12, and at the same time playing a supporting role for the workbench 2 fixedly connected to the moving mechanism 1, and playing a supporting role for the support table 3 fixedly connected to the workbench 2, thereby improving the stability of the cable hanger.

[0024] The workbench 2 includes a workbench bottom plate 21, slideways 22, a hydraulic mechanism 23, a scissor mechanism 24, support seats A25, support seats B26, and sliders 27. At both corner positions at one end of the top of the workbench bottom plate 21, support seats A25 of the same specification are provided, and the support seats A25 are fixedly connected to the workbench bottom plate 21 by welding. Slideways 22, sliders 27, and support seats B26 of the same specification are symmetrically arranged at the edge position of the top of the workbench bottom plate 21. The slideways 22 are fixedly connected to the workbench bottom plate 21 by screws. The sliders 27 are nested inside the slideways 22 and are kept in sliding connection. The support seats B26 are welded to the top positions of the sliders 27. The hydraulic mechanism 23 is arranged between the two slideways 22 of the same specification. The hydraulic mechanism 23 is fixedly installed at one end position of the top of the workbench bottom plate 21 and is arranged in parallel. At the corresponding position at the bottom of the support table 3 at the top of the workbench 2, there are the same slideways 22, support seats A25, support seats B26, and sliders 27. One end of the scissor mechanism 24 is rotatably connected to the support seat A25 through a bearing, and the other end of the scissor mechanism 24 is rotatably connected to the support seat B26 through a bearing, and is kept in sliding connection with the slideways 22 through the fixedly connected sliders 27. By providing the support seat A25, one end of the scissor mechanism 24 is kept in rotational connection. By providing the sliders 27, the fixedly connected support seats B26 are driven to slide on the slideways 22, and at the same time drive one end of the scissor mechanism 24 rotatably connected to the support seats B26 to slide, so as to contract the scissor mechanism 24.

[0025] The hydraulic mechanism 23 includes a fixed plate B231, a movable plate 232, a support plate A233, an outer sleeve 234, a telescopic rod A235, a connecting rod A236, a connecting rod B237, a fixed shaft 238, a curved connecting rod 239, a telescopic rod B2310, a telescopic rod C2311, a telescopic sleeve A2312, a telescopic sleeve B2313, and a pressing block 2314. One end of the movable plate 232 is rotatably connected to one side of the fixed plate B231 through a bearing, and a movable plate 232 with the same structure is provided on the opposite side of the fixed plate B231. The support plate A233 is welded to the top of the movable plate 232. The outer sleeve 234 is arranged at one end of the top of the support plate A233. The telescopic sleeve A2312 and the telescopic sleeve B2313 are arranged in parallel at the other end of the top of the support plate A233. The telescopic rod B2310 is movably connected to the inside of the telescopic sleeve A2312, and the telescopic rod C2311 is movably connected to the inside of the telescopic sleeve B2313. The curved connecting rod 239 is welded to the top of the telescopic rod B2310. The pressing block 2314 is provided at one end of the curved connecting rod 239. The telescopic rod A235 is movably connected to the inside of the outer sleeve 234, the connecting rod A236 is movably connected to the inside of the telescopic rod A235, the connecting rod 237 is welded to the top of the connecting rod A236, the top of the connecting rod 237 is fixedly connected to the fixed shaft 238 through a fixed sleeve, and the fixed shaft 238 is welded to the side of the scissor mechanism 24. By reciprocally pressing the curved connecting rod 239, the curved connecting rod 239 drives the telescopic rod B2310 at one end to perform reciprocating telescopic motion, and the fixedly connected pressing block 2314 reciprocally presses the telescopic rod C2311, so that the hydraulic oil in the telescopic sleeve B2313 enters the outer sleeve 234. According to the pressure principle, the telescopic rod A235 inside the outer sleeve 234 extends outwards, and at the same time, the fixedly connected connecting rod A236 drives the connecting rod B237 to extend upwards, so that the fixed shaft 238 fixed to the side of the scissor mechanism 24 moves upwards, and the fixed shaft 238 drives the support seat B26 fixedly connected to one end of the scissor mechanism 24 to move on the slideway 22 through the slider 27, thereby extending the scissor mechanism 24, and at the same time driving the support platform 3 fixedly arranged at the top of the scissor mechanism 24 to move upwards.

[0026] The support platform 3 includes a support plate B31, a small crane 32 and a cable bracket 33, a support plate C331, a rolling shaft 332, a screw 333, and a support platform movable plate 334. A small crane 32 and a cable bracket 33 are respectively provided at both ends of the top of the support plate B31, and a support plate C331, a screw 333 and a support platform movable plate 334 of the same specifications are respectively provided at both ends of the rolling shaft 332. The support plate C331 is fixedly installed at one end of the top of the support platform 3, and the rolling shaft 332 is nested between the support plate C331 and the support platform movable plate 334. The support platform movable plate 334 is fixedly connected to the support plate C331 by screws 333. The cable rack is lifted to the top of the support platform 3 by the set small crane 32, and the rolling shaft 332 is used to pass through the cable rack and support it through the support plate C331. The support platform movable plate 334 is fixed to the top of the support plate C331 by screws 333. The rolling shaft 332 is rotated by cooperating with the motor, and the cable rack is driven to rotate at the same time.

[0027] The working principle of this power construction cable hanger is: by moving the universal wheel 11, the base plate 13 fixedly connected to it is driven to move, and at the same time, the workbench 2 fixedly connected to the base plate 13 also moves, and the workbench 2 drives the support platform 3 fixedly connected to it to move, so that the entire cable hanger moves, and the direction can be adjusted at will through the flexibility of the universal wheel 11, and the T-type connecting rod is rotated to make the supporting foot 122 fit with the ground to support the power construction cable hanger, and the curved connecting rod 239 is pressed back and forth, and the curved connecting rod 239 drives the telescopic rod B2310 at one end to do reciprocating telescopic movement, and the fixedly connected pressing block 2314 presses the telescopic rod C2311 back and forth, so that the hydraulic oil in the telescopic sleeve B2313 enters the outer sleeve 234, and the telescopic rod A235 inside the outer sleeve 234 is extended outward by the pressure principle, and the fixed connecting rod The connected connecting rod A236 drives the connecting rod B237 to extend upward, so that the fixed shaft 238 fixed on the side of the scissors-fork mechanism 24 moves upward, and the fixed shaft 238 drives the support seat B26 fixedly connected to one end of the scissors-fork mechanism 24 to move on the slide 22 through the slider 27, thereby extending the scissors-fork mechanism 24, and at the same time drives the support platform 3 fixed on the top of the scissors-fork mechanism 24 to move upward. When the scissors-fork mechanism 24 needs to be retracted, the hydraulic oil is released through control to make it retract, and the cable rack is lifted to the top of the support platform 3 by the set small crane 32, and the rolling shaft 332 is used to pass through the cable rack and support it through the support plate C331, and the support platform movable plate 334 is fixed to the top of the support plate C331 with screws 333. The rolling shaft 332 is rotated by cooperating with the motor, and the cable rack is driven to rotate at the same time.

Claims

1. A cable hanger for electric power construction, comprising a moving mechanism (1), a workbench (2) and a support table (3), characterized in that: A workbench (2) is provided at the middle position on the top of the moving mechanism (1). The workbench (2) is fixedly installed at the middle position on the top of the moving mechanism (1) by screws. A scissor mechanism (24) is provided between the workbench (2) and the support platform (3). The bottom and top of the scissor mechanism (24) are respectively provided with the workbench (2) and the support platform (3), and the workbench (2) is parallel to the support platform (3).

2. The cable hanger for electric power construction according to claim 1, characterized in that: The moving mechanism (1) includes universal wheels (11), a support mechanism (12), and a bottom plate (13). Universal wheels (11) and support mechanisms (12) with the same structure are sequentially provided at the four corners of the bottom of the bottom plate (13). The top of the universal wheels (11) is fixedly connected to the bottom plate (13) by screws.

3. The cable hanger for electric power construction according to claim 2, characterized in that: The support mechanism (12) includes a fixing plate A (121), a support foot (122), a T-shaped connecting rod (123), a screw rod (124), and a threaded sleeve (125). One end of the fixing plate A (121) of the support mechanism (12) is welded to the four corners of the bottom of the bottom plate (13). The threaded sleeve (125) is embedded and connected to the other end of the fixing plate A (121). The screw rod (124) is movably connected to the inside of the threaded sleeve (125) by threads. A T-shaped connecting rod (123) and a support foot (122) are respectively provided at both ends of the screw rod (124).

4. The cable hanger for electric power construction according to claim 1, characterized in that: The workbench (2) includes a workbench bottom plate (21), a slideway (22), a hydraulic mechanism (23), a scissor mechanism (24), a support seat A (25), a support seat B (26), and a slider (27). Support seats A (25) with the same specifications are provided at the two corners at one end of the top of the workbench bottom plate (21), and the support seats A (25) are fixedly connected to the workbench bottom plate (21) by welding. Slideways (22), sliders (27), and support seats B (26) with the same specifications are symmetrically provided at the edge position of the top of the workbench bottom plate (21). The slideways (22) are fixedly connected to the workbench bottom plate (21) by screws. The sliders (27) are nested inside the slideways (22) and kept in sliding connection. The support seats B (26) are welded to the top positions of the sliders (27). The hydraulic mechanism (23) is arranged between the two slideways (22) with the same specifications. The hydraulic mechanism (23) is fixedly installed at one end of the top of the workbench bottom plate (21) and is arranged in parallel. At the corresponding position of the bottom of the support platform (3) on the top of the workbench (2), there are the same slideways (22), support seats A (25), support seats B (26), and sliders (27). One end of the scissor mechanism (24) is kept in rotational connection with the support seat A (25) through a bearing. The other end of the scissor mechanism (24) is kept in rotational connection with the support seat B (26) through a bearing, and is kept in sliding connection with the slideway (22) through the fixedly connected slider (27).

5. The cable hanger for electric power construction according to claim 4, wherein: The hydraulic mechanism (23) includes a fixed plate B (231), a movable plate (232), a support plate A (233), an outer sleeve (234), a telescopic rod A (235), a connecting rod A (236), a connecting rod (237), a fixed shaft (238), a curved connecting rod (239), a telescopic rod B (2310), a telescopic rod C (2311), a telescopic sleeve A (2312), a telescopic sleeve B (2313), and a pressing block (2314). One end of the movable plate (232) is rotatably connected to one side of the fixed plate B (231) through a bearing, and a movable plate (232) with the same structure is provided on the opposite side of the fixed plate B (231). The support plate A (233) is welded to the top of the movable plate (232). The outer sleeve (234) is arranged at one end of the top of the support plate A (233). The telescopic sleeve A (2312) and the telescopic sleeve B (2313) are arranged in parallel at the other end of the top of the support plate A (233). The telescopic rod B (2310) is movably connected inside the telescopic sleeve A (2312). The telescopic rod C (2311) is movably connected inside the telescopic sleeve B (2313). The curved connecting rod (239) is welded to the top of the telescopic rod B (2310). A pressing block (2314) is provided at one end of the curved connecting rod (239). The telescopic rod A (235) is movably connected inside the outer sleeve (234). The connecting rod A (236) is movably connected inside the telescopic rod A (235). The connecting rod (237) is welded to the top of the connecting rod A (236). The top of the connecting rod (237) is fixedly connected to the fixed shaft (238) through a fixed sleeve. The fixed shaft (238) is welded to the side of the scissors mechanism (24).

6. The cable hanger for electric power construction according to claim 1, characterized in that: The support platform (3) includes a support plate B (31), a small crane (32), a cable bracket (33), a support plate C (331), a rolling shaft (332), a screw (333), and a support platform movable plate (334). The small crane (32) and the cable bracket (33) are respectively provided at both ends of the top of the support plate B (31). The same specifications of the support plate C (331), the screw (333), and the support platform movable plate (334) are respectively provided at both ends of the rolling shaft (332). The support plate C (331) is fixedly installed at one end of the top of the support platform (3). The rolling shaft (332) is nested between the support plate C (331) and the support platform movable plate (334). The support platform movable plate (334) is fixedly connected to the support plate C (331) through the screw (333).