Rapid installation device for power pipeline

By using components such as a fixed base frame, a driving lifting mechanism, and a driving installation mechanism, the problems of time-consuming, labor-intensive, and safety hazards in power pipeline installation are solved, enabling fast, flexible, and safe power pipeline installation.

CN224289043UActive Publication Date: 2026-05-26ANHUI HAON ENVIRONMENTAL CONSTR GRP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI HAON ENVIRONMENTAL CONSTR GRP CO LTD
Filing Date
2025-04-07
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing methods for installing power pipelines require a large amount of manual labor, and cannot adjust the height and position according to the scenario, resulting in time-consuming, labor-intensive, and safety hazards.

Method used

It adopts components such as a fixed base frame, a drive lifting mechanism, a drive installation mechanism, and a three-jaw chuck. Height adjustment, position movement, and stable positioning are achieved through electric telescopic rods and casters. Combined with buffer pads and limit blocks, the equipment's flexibility and safety are improved.

Benefits of technology

It enables fast, flexible, and safe installation of power pipelines, reduces manual labor intensity, and improves equipment lifespan and operational efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electric power pipeline rapid installation device, and relates to the technical field of electric power pipeline equipment. Comprising a fixed bottom frame, rotating frames distributed at equal intervals are rotationally connected to the top of the fixed bottom frame, by arranging the fixed bottom frame, a top mounting plate, a driving lifting mechanism and a driving mounting mechanism, position adjustment of an auxiliary positioning rod is driven, limiting of one side of a pipeline is assisted, and a mounting frame is driven to move towards one side through operation of a second electric telescopic rod; meanwhile, two limiting guide rails are used for limiting when the mounting frame slides, the matching position is finely adjusted, and four universal wheels are used for driving the whole equipment to move conveniently, so that the requirements of different operation sites are met, and the flexibility of the equipment is improved; and the positioning plate and the top mounting plate are reinforced and mounted through the positioning bolts, so that the stability when the pipeline is placed on the surface of the placing plate is improved, and the placed power pipeline is conveniently provided when the mounting mechanism is driven to be used subsequently.
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Description

Technical Field

[0001] This utility model relates to the field of power pipeline equipment technology, and in particular to a rapid installation device for power pipelines. Background Technology

[0002] The installation of power lines is a crucial task in the construction of modern buildings and infrastructure. With the continuous increase in electricity demand, the laying and maintenance of power lines are becoming increasingly demanding.

[0003] In practice, existing power pipeline installation methods typically require a large amount of manual operation. Furthermore, the overall equipment cannot be adjusted in height or moved in position according to different scenarios, which increases the labor intensity of manual assistance operations. This is not only time-consuming and labor-intensive, but also poses certain safety hazards and causes many inconveniences.

[0004] Therefore, this utility model provides a rapid installation device for power pipelines. Utility Model Content

[0005] The purpose of this invention is to overcome the shortcomings of existing technologies and provide a rapid installation device for power pipelines.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a rapid installation device for power pipelines, including a fixed base frame.

[0007] The top of the fixed base frame is rotatably connected to equidistant rotating frames, with two rotating frames on the same side being distributed in a cross pattern. The interior of the fixed base frame is equipped with a drive lifting mechanism that works in conjunction with the rotating frames.

[0008] A top mounting plate is installed above the rotating frame. A movable horizontal plate is installed on the top of the top mounting plate. A rotating disk is installed on the top of the movable horizontal plate. A mounting platform is fixedly connected to the top of the rotating disk. A mounting frame is slidably connected to the top of the mounting platform. A first drive motor is installed inside the mounting frame. The output end of the first drive motor passes through the mounting frame and is fixedly connected to a three-jaw chuck. The three-jaw chuck is used to position the power pipeline.

[0009] The top of the top mounting plate is fixedly connected to two symmetrically distributed second mounting seats. A reciprocating screw is rotatably connected between the two second mounting seats. A limit slider is threaded to the outer side of the reciprocating screw. The top of the limit slider is fixedly connected to the moving cross plate. The top of the top mounting plate and both sides of the second mounting seats are fixedly connected to first mounting seats. A limit slide rod is installed between the two first mounting seats on the same side. A moving slider is sleeved on the outer side of each limit slide rod. The top of each moving slider is connected to the moving cross plate.

[0010] A support base is installed on the top of the mounting platform and on one side of the mounting frame. A connecting support plate is installed on the top of the support base. Two limiting blocks are installed on the top of the connecting support plate. The two limiting blocks are symmetrically distributed. A clamping plate is installed on the side of the two limiting blocks that are close to each other. A buffer pad is installed on the side of the two clamping plates that are close to each other. The two limiting blocks limit the pipe. When limiting, the buffer pad installed inside the clamping plate provides a buffering and protective effect, extending the service life of the equipment.

[0011] In a preferred embodiment, the driving lifting mechanism includes a bottom mounting plate. The bottom mounting plate is installed inside the fixed base frame. Two symmetrically distributed first mounting blocks are mounted on the top of the bottom mounting plate. Each of the two first mounting blocks is rotatably connected to a first electric telescopic rod. The output end of each first electric telescopic rod is connected to a push rod. Two limiting rods are installed inside the top mounting plate and on one side of the bottom mounting plate. Each of the two limiting rods has a limiting shaft installed inside. Both ends of the limiting shaft extend into the fixed base frame. The two limiting rods are rotatably connected to the fixed base frame via the limiting shaft. One end of each push rod extends into the corresponding limiting rod and is rotatably connected to it. The lowermost rotating frame side is connected to the corresponding limiting rod via a limiting shaft, thereby... When the first electric telescopic rod is in operation, it drives the limit rod to rotate. Under the connection of the limit shaft, it drives the lowest rotating frame to rotate, thereby driving the top rotating frame to rotate, realizing the height adjustment of the top mounting plate. This meets the needs of different scenarios and improves the flexibility of the equipment. One of the second mounting seats has a handwheel installed on its outer side. One end of the handwheel is connected to the reciprocating screw. The outer side of the handwheel has a mounting hole. A limit rod is installed inside the mounting hole. After one adjustment is completed, the limit rod is inserted into the mounting hole to lock the handwheel and prevent self-reset. When the handwheel is rotated to drive the reciprocating screw, it will drive the moving horizontal plate to slide under the movement of the limit slider. During the sliding, the movement trajectory is limited by the movement slider and the limit slider.

[0012] The technical effect of adopting the above-mentioned further solution is that when the first electric telescopic rod is running, it drives the limit rod to rotate. Under the connection of the limit shaft, it drives the lowest rotating frame to rotate, thereby driving the top rotating frame to rotate, realizing the effect of adjusting the height of the top mounting plate, meeting the needs of different scenarios and improving the flexibility of the equipment.

[0013] In a preferred embodiment, a second electric telescopic rod is fixedly connected to the top of the mounting platform and to the side of the mounting frame away from the support base. The output end of the second electric telescopic rod is connected to the mounting frame. Two symmetrically distributed limiting guide rails are installed between the mounting platform and the mounting frame. A third electric telescopic rod is installed on one side of the mounting frame. An auxiliary positioning rod is fixedly connected to the output end of the third electric telescopic rod. The operation of the third electric telescopic rod drives the position adjustment of the auxiliary positioning rod, limiting the position of the auxiliary pipe on one side. The operation of the second electric telescopic rod drives the mounting frame to move to one side until the installation position of the three-jaw chuck is finely adjusted. At the same time, the two limiting guide rails limit the sliding of the mounting frame to cooperate with the position fine adjustment. A control panel is fixedly connected to one side of the fixed base frame. The first electric telescopic rod, the first drive motor, the three-jaw chuck, the second electric telescopic rod, and the third electric telescopic rod are all electrically connected to the control panel. The control panel is used to control the operation of the first electric telescopic rod, the first drive motor, the three-jaw chuck, the second electric telescopic rod, and the third electric telescopic rod, realizing unified management of power equipment.

[0014] The technical effect of adopting the above-mentioned further solution is as follows: by operating the third electric telescopic rod, the position of the auxiliary positioning rod is adjusted, and the auxiliary pipeline is limited on one side. By operating the second electric telescopic rod, the installation frame is moved to one side until the installation position of the three-jaw chuck is finely adjusted. At the same time, the two limit guide rails limit the sliding of the installation frame and cooperate with the position fine adjustment.

[0015] In a preferred embodiment, the top of the fixed base frame is equipped with equidistant fixed plates, and the bottom of each fixed plate is equipped with casters. Two of the fixed plates are equipped with push frames on their tops. The four casters are used to drive the overall equipment for easy movement, meeting the needs of different work locations and improving the flexibility of the equipment. The push frames facilitate manual pushing of the overall equipment, and the fixed plates position and install the fixed base frame and casters, facilitating daily maintenance and disassembly.

[0016] The technical effects of adopting the above-mentioned further solution are as follows: the four casters are used to drive the overall equipment to move easily, which meets the needs of different work locations and improves the flexibility of the equipment. The push frame facilitates manual pushing of the overall equipment. The fixed plate positions and installs the fixed base and casters, which facilitates daily maintenance and disassembly.

[0017] In a preferred embodiment, a positioning plate is installed on the top of the top mounting plate and on one side of the movable horizontal plate. A placement plate is installed on the top of the positioning plate. The placement plate has an arc-shaped cross-section. The positioning plate is internally threaded with symmetrically distributed positioning bolts that extend into the top mounting plate. The positioning bolts reinforce the positioning plate and the top mounting plate, improving the stability when placing pipes on the surface of the placement plate and facilitating the placement of power pipes for subsequent use by the drive installation mechanism.

[0018] The technical effect of adopting the above-mentioned further solution is that the positioning plate and the top mounting plate are reinforced by positioning bolts, which improves the stability when placing pipes on the surface of the placement plate and facilitates the placement of power pipes for subsequent drive installation mechanism use.

[0019] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0020] By setting up a fixed base frame, a top mounting plate, a drive lifting mechanism, and a drive mounting mechanism, the power pipeline is positioned using a three-jaw chuck, and the pipeline is limited by two limit blocks. During limiting, a buffer pad installed inside the clamping plate provides cushioning and protection, extending the equipment's service life. One side of the bottom rotating frame is connected to a corresponding limit rod via a limit shaft. When the first electric telescopic rod is running, it drives the limit rod to rotate, which in turn drives the bottom rotating frame to rotate, thereby rotating the top rotating frame. This achieves height adjustment of the top mounting plate, meeting the needs of different scenarios and improving the equipment's flexibility. When the handwheel is turned to drive the reciprocating screw, the movement of the limit slider drives the sliding horizontal plate to slide. During sliding, the sliding slider and the limit blocks... The sliding rod limits the movement trajectory. The third electric telescopic rod drives the auxiliary positioning rod to adjust its position, limiting the auxiliary pipe on one side. The second electric telescopic rod drives the mounting frame to move to one side until the three-jaw chuck mounting position is fine-tuned. At the same time, two limit guide rails limit the sliding of the mounting frame and coordinate with the position fine-tuning. Four universal wheels are used to drive the entire equipment for easy movement, meeting the needs of different work locations and improving the flexibility of the equipment. The push frame facilitates manual pushing of the entire equipment. The fixed plate positions and installs the fixed base and universal wheels, facilitating daily maintenance and disassembly. The positioning bolts reinforce the positioning plate and the top mounting plate, improving the stability when placing pipes on the surface of the placement plate and facilitating the placement of power pipes for subsequent use of the drive installation mechanism. Attached Figure Description

[0021] Figure 1 A schematic diagram of the overall structure of a rapid installation device for power pipelines provided by this utility model. Figure 1 ;

[0022] Figure 2 A schematic diagram of the overall structure of a rapid installation device for power pipelines provided by this utility model. Figure 2 ;

[0023] Figure 3 An enlarged structural diagram of the top mounting plate of a rapid installation device for power pipelines provided by this utility model;

[0024] Figure 4 An enlarged schematic diagram of the drive lifting mechanism of a rapid installation device for power pipelines provided by this utility model;

[0025] Figure 5 An enlarged schematic diagram of the drive installation mechanism of a rapid installation device for power pipelines provided by this utility model;

[0026] Figure 6 The present invention provides an accessory for a rapid installation device for power pipelines. Figure 1 Enlarged schematic diagram of the structure at point A in the diagram.

[0027] Legend:

[0028] 1. Fixed base frame; 11. Fixed plate; 12. Casters; 13. Control panel; 14. Push frame; 15. Positioning plate; 16. Placement plate; 17. Positioning bolts;

[0029] 2. Top mounting plate; 21. Movable horizontal plate; 22. First mounting seat; 23. Movable slider; 24. Limiting slide bar; 25. Handwheel; 26. Second mounting seat; 27. Reciprocating lead screw;

[0030] 3. Drive lifting mechanism; 31. Rotating frame; 32. Bottom mounting plate; 33. First mounting block; 34. First electric telescopic rod; 35. Push rod; 36. Limiting rod; 37. Limiting shaft;

[0031] 4. Drive mounting mechanism; 41. Rotary disk; 42. Mounting platform; 43. Mounting frame; 44. First drive motor; 45. Three-jaw chuck; 46. Second electric telescopic rod; 47. Third electric telescopic rod; 48. Limit guide rail; 49. Auxiliary positioning rod;

[0032] 5. Support base; 51. Connecting support plate; 52. Limiting block; 53. Clamping plate; 54. Buffer pad. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] like Figures 1-6 As shown, this embodiment provides a technical solution: a power pipeline quick installation device, including a fixed base frame 1, with equidistantly distributed rotating frames 31 rotatably connected to the top of the fixed base frame 1, two rotating frames 31 on the same side being distributed crosswise, and a drive lifting mechanism 3 for use with the rotating frames 31 is installed inside the fixed base frame 1.

[0035] In this scheme, a top mounting plate 2 is installed above the rotating frame 31, a movable horizontal plate 21 is installed on the top of the top mounting plate 2, a rotating disk 41 is installed on the top of the movable horizontal plate 21, a mounting platform 42 is fixedly connected to the top of the rotating disk 41, a mounting frame 43 is slidably connected to the top of the mounting platform 42, a first drive motor 44 is installed inside the mounting frame 43, the output end of the first drive motor 44 passes through the mounting frame 43 and is fixedly connected to a three-jaw chuck 45, and the power pipeline is positioned by the three-jaw chuck 45.

[0036] In this design, the top of the top mounting plate 2 is fixedly connected to two symmetrically distributed second mounting seats 26. A reciprocating screw 27 is rotatably connected between the two second mounting seats 26. A limit slider is threadedly connected to the outer side of the reciprocating screw 27. The top of the limit slider is fixedly connected to the moving horizontal plate 21. The top of the top mounting plate 2 and both sides of the second mounting seats 26 are fixedly connected to first mounting seats 22. A limit slide rod 24 is installed between the two first mounting seats 22 on the same side. A moving slider 23 is sleeved on the outer side of the limit slide rod 24. The top of the moving slider 23 is connected to the moving horizontal plate 21.

[0037] In this design, a support base 5 is installed on the top of the mounting platform 42 and on one side of the mounting frame 43. A connecting support plate 51 is installed on the top of the support base 5. Two limit blocks 52 are installed on the top of the connecting support plate 51. The two limit blocks 52 are symmetrically distributed. A clamping plate 53 is installed on the side of the two limit blocks 52 that are close to each other. A buffer pad 54 is installed on the side of the two clamping plates 53 that are close to each other. The pipe is limited by the two limit blocks 52. When the pipe is limited, the buffer pad 54 installed inside the clamping plate 53 provides a buffering and protection effect, thus extending the service life of the equipment.

[0038] Going a step further, such as Figures 1-4As shown: In this scheme, the driving lifting mechanism 3 includes a bottom mounting plate 32. The bottom mounting plate 32 is installed inside the fixed base frame 1. Two symmetrically distributed first mounting blocks 33 are installed on the top of the bottom mounting plate 32. A first electric telescopic rod 34 is rotatably connected inside each of the two first mounting blocks 33. A push rod 35 is connected to the output end of each of the first electric telescopic rods 34. Two limiting rods 36 are installed inside the top mounting plate 2 and on one side of the bottom mounting plate 32. A limiting shaft 37 is installed inside each of the two limiting rods 36. Both ends of the limiting shaft 37 extend into the fixed base frame 1. All the positioning rods 36 are rotatably connected to the fixed base frame 1 via the limiting shaft 37. One end of each push rod 35 extends into the corresponding limiting rod 36 and is rotatably connected to the limiting rod 36. One side of the lowest rotating frame 31 is connected to the corresponding limiting rod 36 via the limiting shaft 37. Thus, when the first electric telescopic rod 34 is in operation, it drives the limiting rod 36 to rotate. Under the connection of the limiting shaft 37, it drives the lowest rotating frame 31 to rotate, thereby driving the top rotating frame 31 to rotate, achieving the effect of adjusting the height of the top mounting plate 2, meeting the needs of different scenarios and improving the flexibility of the equipment.

[0039] Going a step further, such as Figures 1-3 As shown: In this scheme, a handwheel 25 is installed on the outer side of one of the second mounting bases 26. One end of the handwheel 25 is connected to the reciprocating lead screw 27. A mounting hole is installed on the outer side of the handwheel 25. A limit rod is installed inside the mounting hole. After one adjustment is completed, the limit rod is inserted into the mounting hole to lock the handwheel 25 and prevent self-reset. When the handwheel 25 is rotated to drive the reciprocating lead screw 27, the moving horizontal plate 21 will slide under the movement of the limit slider. During the sliding, the movement trajectory is limited by the movement slider 23 and the limit slider 24.

[0040] Going a step further, such as Figure 5 As shown, in this scheme, a second electric telescopic rod 46 is fixedly connected to the top of the mounting platform 42 and to the side of the mounting frame 43 away from the support base 5. The output end of the second electric telescopic rod 46 is connected to the mounting frame 43. Two symmetrically distributed limiting guide rails 48 are installed between the mounting platform 42 and the mounting frame 43. A third electric telescopic rod 47 is installed on one side of the mounting frame 43. An auxiliary positioning rod 49 is fixedly connected to the output end of the third electric telescopic rod 47. The operation of the third electric telescopic rod 47 drives the position adjustment of the auxiliary positioning rod 49, limiting the position of the auxiliary pipe on one side. The operation of the second electric telescopic rod 46 drives the mounting frame 43 to move to one side until the installation position of the three-jaw chuck 45 is finely adjusted. At the same time, the two limiting guide rails 48 limit the sliding of the mounting frame 43, coordinating with the position fine adjustment.

[0041] In this scheme, a control panel 13 is fixedly connected to one side of the fixed base frame 1. The first electric telescopic rod 34, the first drive motor 44, the three-jaw chuck 45, the second electric telescopic rod 46, and the third electric telescopic rod 47 are all electrically connected to the control panel 13. The control panel 13 is used to control the operation of the first electric telescopic rod 34, the first drive motor 44, the three-jaw chuck 45, the second electric telescopic rod 46, and the third electric telescopic rod 47, thereby realizing unified management of the power equipment.

[0042] Going a step further, such as Figures 1-3 , Figure 6 As shown in the figure, in this solution, the top of the fixed base frame 1 is equipped with equidistant fixed plates 11, and the bottom of each fixed plate 11 is equipped with casters 12. The top of two fixed plates 11 is equipped with push frames 14. The four casters 12 are used to drive the overall equipment to move easily, which meets the needs of different work locations and improves the flexibility of the equipment. The push frames 14 facilitate manual pushing of the overall equipment. The fixed plates 11 are used to position and install the fixed base frame 1 and the casters 12, which facilitates daily maintenance and disassembly.

[0043] In this scheme, a positioning plate 15 is installed on the top of the top mounting plate 2 and on one side of the movable horizontal plate 21. A placement plate 16 is installed on the top of the positioning plate 15. The cross-section of the placement plate 16 is an arc-shaped structure. The positioning plate 15 is internally threaded with symmetrically distributed positioning bolts 17 that extend into the top mounting plate 2. The positioning bolts 17 reinforce the positioning plate 15 and the top mounting plate 2, improving the stability when placing pipes on the surface of the placement plate 16 and facilitating the placement of power pipes for the subsequent drive installation mechanism 4.

[0044] Working principle:

[0045] like Figures 1-6 As shown:

[0046] By setting up a fixed base frame 1, a top mounting plate 2, a drive lifting mechanism 3, and a drive mounting mechanism 4, when in use, the control panel 13 is opened, the power pipeline is positioned by the three-jaw chuck 45, and the pipeline is limited by two limit blocks 52. When limiting, the buffer pad 54 installed inside the clamping plate 53 provides a buffering and protective effect, extending the service life of the equipment.

[0047] The rotating frame 31 at the bottom is connected to the corresponding limiting rod 36 on one side via the limiting shaft 37. When the first electric telescopic rod 34 is in operation, it drives the limiting rod 36 to rotate. Under the connection of the limiting shaft 37, it drives the rotating frame 31 at the bottom to rotate, thereby driving the rotating frame 31 at the top to rotate. This achieves the effect of adjusting the height of the top mounting plate 2, meeting the needs of different scenarios and improving the flexibility of the equipment.

[0048] The handwheel 25 has a mounting hole on its outer side, and a limit rod is installed inside the mounting hole. After one adjustment is completed, the limit rod is inserted into the mounting hole to lock the handwheel 25 and prevent it from resetting on its own. When the handwheel 25 is rotated to drive the reciprocating screw 27, the moving horizontal plate 21 will slide under the movement of the limit slider. During the sliding, the moving slider 23 and the limit rod 24 work together to limit the movement trajectory.

[0049] The third electric telescopic rod 47 operates, driving the auxiliary positioning rod 49 to adjust its position and limiting the auxiliary pipeline on one side. The second electric telescopic rod 46 operates, driving the installation frame 43 to move to one side until the installation position of the three-jaw chuck 45 is finely adjusted. At the same time, the two limit guide rails 48 limit the sliding of the installation frame 43, coordinating with the position fine adjustment.

[0050] The two limiting guide rails 48 are equipped with positioning sliders that are connected to the mounting frame 43 for limiting. The positioning sliders slide inside the two limiting guide rails 48 to limit the movement of the mounting frame 43.

[0051] The control panel 13 is used to control the operation of the first electric telescopic pole 34, the first drive motor 44, the three-jaw chuck 45, the second electric telescopic pole 46, and the third electric telescopic pole 47, realizing unified management of power equipment.

[0052] Four casters 12 are used to drive the overall equipment for easy movement, which meets the needs of different work locations and improves the flexibility of the equipment. The push frame 14 facilitates manual pushing of the overall equipment. The fixed plate 11 positions and installs the fixed base frame 1 and casters 12, which facilitates daily maintenance and disassembly.

[0053] The positioning plate 15 and the top mounting plate 2 are reinforced by positioning bolts 17, which improves the stability when placing pipes on the surface of the placement plate 16 and facilitates the placement of power pipes for the subsequent drive installation mechanism 4.

[0054] Two clamping plates 53 and a buffer pad 54 limit one of the power pipes, and a three-jaw chuck 45 limits the other power pipe. The second electric telescopic rod 46 operates, driving the mounting frame 43 to move until the two power pipes are in contact. The first drive motor 44 operates, driving the three-jaw chuck 45 to rotate, thereby facilitating the assembly operation.

[0055] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A rapid installation device for power pipelines, comprising a fixed base frame (1), characterized in that, The top of the fixed base frame (1) is rotatably connected to equidistant rotating frames (31), and two rotating frames (31) on the same side are distributed in a cross pattern. The fixed base frame (1) is equipped with a drive lifting mechanism (3) that works in conjunction with the rotating frames (31). A top mounting plate (2) is installed above the rotating frame (31). A movable horizontal plate (21) is installed on the top of the top mounting plate (2). A rotating disk (41) is installed on the top of the movable horizontal plate (21). A mounting platform (42) is fixedly connected to the top of the rotating disk (41). A mounting frame (43) is slidably connected to the top of the mounting platform (42). A first drive motor (44) is installed inside the mounting frame (43). The output end of the first drive motor (44) passes through the mounting frame (43) and is fixedly connected to a three-jaw chuck (45). The top of the top mounting plate (2) is fixedly connected to two symmetrically distributed second mounting seats (26), and a reciprocating screw (27) is rotatably connected between the two second mounting seats (26). The outer side of the reciprocating screw (27) is threadedly connected to a limit slider, and the top of the limit slider is fixedly connected to the moving horizontal plate (21). A support base (5) is installed on the top of the mounting platform (42) and on one side of the mounting frame (43). A connecting support plate (51) is installed on the top of the support base (5). Two limiting blocks (52) are installed on the top of the connecting support plate (51). A clamping plate (53) is installed on the side of the two limiting blocks (52) that are close to each other.

2. The power conduit quick installation device of claim 1, wherein: The driving lifting mechanism (3) includes a bottom mounting plate (32). The bottom mounting plate (32) is installed inside the fixed base frame (1). Two symmetrically distributed first mounting blocks (33) are installed on the top of the bottom mounting plate (32). The interior of each of the two first mounting blocks (33) is rotatably connected to a first electric telescopic rod (34). The output end of each of the first electric telescopic rods (34) is connected to a push rod (35). The interior of the top mounting plate (2) and on one side of the bottom mounting plate (32) are each equipped with two limiting rods (36). The interior of each of the two limiting rods (36) is equipped with a limiting shaft (37). Both ends of the limiting shaft (37) extend into the interior of the fixed base frame (1). The two limiting rods (36) are rotatably connected to the fixed base frame (1) through the limiting shaft (37). One end of each push rod (35) extends into the interior of the corresponding limiting rod (36) and is rotatably connected to the limiting rod (36).

3. The power conduit quick installation device of claim 1, wherein: One of the second mounting bases (26) has a handwheel (25) mounted on its outer side. One end of the handwheel (25) is connected to a reciprocating screw (27). The outer side of the handwheel (25) has a mounting hole, and a limit rod is installed inside the mounting hole.

4. The rapid installation device for power pipelines according to claim 2, characterized in that: A second electric telescopic rod (46) is fixedly connected to the top of the mounting platform (42) and to the side of the mounting frame (43) away from the support base (5). The output end of the second electric telescopic rod (46) is connected to the mounting frame (43). Two symmetrically distributed limiting guide rails (48) are installed between the mounting platform (42) and the mounting frame (43). A third electric telescopic rod (47) is installed on one side of the mounting frame (43). An auxiliary positioning rod (49) is fixedly connected to the output end of the third electric telescopic rod (47).

5. The rapid installation device for power pipelines according to claim 4, characterized in that: A control panel (13) is fixedly connected to one side of the fixed base frame (1). The first electric telescopic rod (34), the first drive motor (44), the three-jaw chuck (45), the second electric telescopic rod (46) and the third electric telescopic rod (47) are all electrically connected to the control panel (13).

6. The rapid installation device for power pipelines according to claim 1, characterized in that: The top of the fixed base frame (1) is equipped with equidistant fixed plates (11), and the bottom of each fixed plate (11) is equipped with casters (12). The top of two of the fixed plates (11) is equipped with push frames (14).

7. The rapid installation device for power pipelines according to claim 1, characterized in that: A positioning plate (15) is installed on the top of the top mounting plate (2) and on one side of the movable horizontal plate (21). A placement plate (16) is installed on the top of the positioning plate (15). The positioning plate (15) is internally threaded with symmetrically distributed positioning bolts (17) that extend into the top mounting plate (2).