Electric pole inclination correction device for electric power engineering design

The automated correction method of the pole tilt correction device solves the complex and dangerous problem of manual correction of poles, and achieves efficient and safe restoration of poles.

CN223446746UActive Publication Date: 2025-10-17HUNAN SHENLONG ELECTRIC POWER SURVEY & DESIGN CO LTD
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Patent Information

Application Number
CN202422669805.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-04
Publication Date
2025-10-17
Estimated Expiration
2034-11-04

AI Technical Summary

Technical Problem

The existing manual correction method of pole tilt is complicated, dangerous and inefficient. Especially in areas with poor terrain, it is difficult to accurately control the force on the pole, which poses a safety hazard.

Method used

A pole tilt correction device is used, including a fixed structure, a stabilizing mechanism and a correction mechanism. Through driving equipment and a verticality detector, automatic correction of the pole is achieved to ensure that the pole is restored to a vertical state.

Benefits of technology

It improves the safety and efficiency of pole correction, reduces the complexity and danger of manual operation, and is suitable for various terrain conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an electric power engineering design electric pole inclination correction device, and relates to the technical field of electric pole correction, the electric pole inclination correction device comprises an electric pole, a fixing structure, a stabilizing mechanism, a correction mechanism and a fixing clamping jaw, the fixing structure is fixed on the ground, and the fixing clamping jaw is clamped on the electric pole; one end of the stabilizing mechanism and one end of the correcting mechanism are rotationally connected to the side end of the fixed clamping jaw, and the other end of the stabilizing mechanism and the other end of the correcting mechanism are connected to the fixed structure; a driving device and a connecting piece are arranged on the fixing structure, the connecting piece is installed on the fixing structure in a sliding mode, and the connecting piece is connected with the other end of the stabilizing mechanism and the other end of the correcting mechanism; a perpendicularity detector is arranged between the stabilizing mechanism and the correcting mechanism. The problems that in the prior art, the mode of manually correcting the inclined electric pole is troublesome and complex in process, relatively dangerous and low in efficiency are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electric pole correction technical field especially relates to a power engineering design electric pole inclination correction device. BACKGROUND

[0002] Electric pole inclination is a common defect in line construction and daily operation and maintenance, which is mainly affected by topographic conditions, meteorological factors or human factors. If not corrected in time, serious cases may occur, such as pole falling, pole breaking and line breaking, which affects the safe and stable operation of low-voltage power grid. There are many methods for correcting electric pole inclination, and the most common method in daily life is to use large equipment or manual counterforce correction. Large equipment can only be used in good geographical environment, so when the terrain is not wide enough, large equipment cannot be used. Therefore, the manual recovery method for electric poles is still common. However, it is difficult to accurately control the stress of the electric pole during manual operation. If the force is not appropriate or the supporting measures are not in place, the electric pole may suddenly fall during the recovery process. The electric pole falling not only damages the surrounding power facilities, communication lines, etc., but also poses a great threat to the life safety of on-site workers. Therefore, the manual correction method for inclined electric poles is complicated and dangerous, and the efficiency is low. SUMMARY

[0003] The utility model embodiment provides a kind of electric pole inclination correction device for power engineering design to solve the problems in the background art.

[0004] The utility model embodiment adopts the following technical scheme: a kind of electric pole inclination correction device for power engineering design, including electric pole, fixed structure, stable mechanism, correction mechanism and fixed jaw, the fixed structure is fixed on ground, the fixed jaw is clamped on electric pole, one end of the stable mechanism and correction mechanism is rotatably connected on the side end of fixed jaw, the other end of the stable mechanism and correction mechanism is connected on fixed structure;Driving equipment and connecting piece are provided on the fixed structure, the connecting piece is slidably installed on fixed structure, and the connecting piece is connected with the working end of driving equipment, the connecting piece can be vertically moved on fixed structure by the driving equipment, the connecting piece is connected with the other end of stable mechanism and correction mechanism;Perpendicularity detector is provided between the stable mechanism and correction mechanism, the perpendicularity detector is rotatably connected between the stable mechanism and correction mechanism, the perpendicularity detector is prior art, and it detects perpendicularity by angle change. The problems that the manual correction method for inclined electric poles in prior art is complicated and dangerous, and the efficiency is low are solved.

[0005] Further, the stabilizing mechanism comprises a fixed connecting rod, a pushing connecting plate one and a rotating mounting frame one, one end of the fixed connecting rod is connected to the connecting piece, the other end of the fixed connecting rod is connected to the pushing connecting plate one, the rotating mounting frame one is mounted on the side end of the fixed clamping jaw, and the pushing connecting plate one is rotationally connected to the rotating mounting frame.

[0006] Further, the correcting mechanism comprises a driving connecting piece and a moving connecting piece, the driving connecting piece is mounted on the connecting piece, one end of the moving connecting piece is mounted on the driving connecting piece, the other end of the moving connecting piece is connected to the working end of the driving connecting piece, and the other end of the moving connecting piece is connected to the side end of the fixed clamping jaw.

[0007] Further, the driving connecting piece comprises a driving placing frame, a driving motor and a moving placing frame, one end of the driving placing frame is mounted on the connecting piece, the driving motor is arranged in the driving placing frame, the moving placing frame is arranged on one side of the driving placing frame, the moving placing frame is provided with a threaded rod and two limiting rods, the threaded rod is rotationally arranged in the moving placing frame, one end of the threaded rod is connected to the output end of the driving motor, the two limiting rods are located on the two sides of the threaded rod, and the threaded rod is connected to the moving connecting piece.

[0008] Further, the moving connecting piece comprises a moving connecting frame, a pushing connecting plate two and a rotating mounting frame two, one end of the moving connecting frame is slidably arranged in the moving placing frame and on the two limiting rods, the end of the moving connecting frame in the moving placing frame is also threadedly connected to the threaded rod, the pushing connecting plate two is connected to the other end of the moving connecting frame, the rotating mounting frame two is arranged on the side end of the fixed clamping jaw, and the pushing connecting plate two is rotationally connected to the rotating mounting frame two.

[0009] The above at least one technical scheme adopted by the embodiment of the utility model can achieve the following beneficial effects:

[0010] In the present application, when correcting the electric pole, the present application is moved to one side of the electric pole in the direction of the inclination of the electric pole, and then the fixed clamping jaw is clamped on the electric pole. The fixed clamping jaw is in the same inclined state as the electric pole at this time. The stabilizing mechanism is located below the correcting mechanism. The stabilizing mechanism is mainly used to connect the fixed clamping jaw so that it can be connected with the connecting piece. In this way, the stabilizing mechanism can make the fixed clamping jaw clamped on the electric pole. The correcting mechanism is used to push the upper end of the fixed clamping jaw. The stabilizing mechanism does not provide a pushing force. In this way, through the pushing of the correcting mechanism, the fixed clamping jaw can drive the electric pole to restore to a vertical state. The perpendicularity detector provided between the stabilizing mechanism and the correcting mechanism will also move from the angular deviation to the vertical state under the movement of the correcting mechanism. The movement of the correcting mechanism can be monitored through the perpendicularity detector. In this way, the problem of the existing technology that the manual correction of the inclined electric pole is complicated and dangerous and has low efficiency is solved. BRIEF DESCRIPTION OF DRAWINGS

[0011] The accompanying drawings, which are included to provide a further understanding of the present application and are incorporated in and constitute a part of this application, illustrate embodiments of the present application and serve to explain the present application. In the drawings:

[0012] Figure 1 A schematic view of the three-dimensional structure of the present application Figure One ;

[0013] Figure 2 A schematic view of the three-dimensional structure of the present application Figure Two ;

[0014] Figure 3 A schematic view of the local structure of the present application Figure One ;

[0015] Figure 4 A schematic view of the local structure of the present application Figure Two .

[0016] The accompanying drawings, which are included to provide a further understanding of the present application and are incorporated in and constitute a part of this application, illustrate embodiments of the present application and serve to explain the present application. In the drawings: Electric pole 1, fixed structure 2, driving device 21, connecting piece 22, stabilizing mechanism 3, fixed connecting rod 31, pushing connecting plate one 32, rotating mounting frame one 33, correcting mechanism 4, driving connecting piece 41, driving placement frame 411, driving motor 412, moving placement frame 413, threaded rod 414, limiting rod 415, moving connecting piece 42, moving connecting frame 421, pushing connecting plate two 422, rotating mounting frame two 423, fixed clamping jaw 5, perpendicularity detector 6. DETAILED DESCRIPTION

[0017] In order to make the purpose, technical scheme and advantages of the utility model clearer, the utility model technical scheme will be described clearly and completely in combination with specific embodiments of the utility model and corresponding drawings. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0018] The technical scheme provided by each embodiment of the utility model will be described in detail in combination with the drawings.

[0019] With reference to Figures 1-4 The utility model embodiment provides a kind of electric pole inclination correction device for electric power engineering design, including electric pole 1, fixed structure 2, firm mechanism 3, correction mechanism 4 and fixed jaw 5, the fixed structure 2 is fixed on ground, the fixed jaw 5 is clamped on electric pole 1, one end of firm mechanism 3 and correction mechanism 4 is rotatably connected on the side end of fixed jaw 5, another end of firm mechanism 3 and correction mechanism 4 is connected on fixed structure 2;Driving equipment 21 and connecting piece 22 are provided on the fixed structure 2, the connecting piece 22 is slidably installed in fixed structure 2, and the connecting piece 22 is connected with the working end of driving equipment 21, the connecting piece 22 can be vertically moved on fixed structure 2 by the driving equipment 21, the connecting piece 22 is connected with another end of firm mechanism 3 and correction mechanism 4;Perpendicularity detector 6 is provided between firm mechanism 3 and correction mechanism 4, perpendicularity detector 6 is rotatably connected between firm mechanism 3 and correction mechanism 4, and the perpendicularity detector 6 is prior art, which detects perpendicularity by angle change.

[0020] In the application, when correcting electric pole 1, the application is moved to the side of the inclination direction of electric pole 1, then the fixed jaw 5 is clamped on electric pole 1, and the fixed jaw 5 is in the same inclined state as electric pole 1 at this time, firm mechanism 3 is located below correction mechanism 4, firm mechanism 3 is mainly used to connect fixed jaw 5 so that it can be connected with connecting piece 22, so that firm mechanism 3 can fix and clamp fixed jaw 5 on electric pole 1, and correction mechanism 4 is used to push the upper end of fixed jaw 5, firm mechanism 3 does not provide a pushing force, so that the fixed jaw 5 can drive electric pole 1 to restore to a vertical state by the pushing of correction mechanism 4, and the perpendicularity detector arranged between firm mechanism 3 and correction mechanism 4 will also move from the angle deviation to the vertical state under the movement of correction mechanism 4, so that the movement of correction mechanism 4 can be monitored by the perpendicularity detector 6, which solves the problems of complex process, high risk and low efficiency in the manual correction of inclined electric pole 1 in the prior art.

[0021] The stabilizing mechanism 3 comprises a fixed connecting rod 31, a pushing connecting plate 32 and a rotating mounting frame 33, the fixed connecting rod 31 is a telescopic rod, one end of the fixed connecting rod 31 is connected to the connecting piece 22, the other end of the fixed connecting rod 31 is connected to the pushing connecting plate 32, the rotating mounting frame 33 is mounted on the side end of the fixed clamping jaw 5, and the pushing connecting plate 32 is rotationally connected to the rotating mounting frame.

[0022] In the application, the fixed connecting rod 31 is a telescopic rod, which can move synchronously with the pushing connecting plate 32, and the fixed connecting rod 31 is mainly used to connect the pushing connecting plate to the connecting piece 22, so that the connection of the pushing connecting plate 32 and the rotating mounting frame 33 can make the fixed clamping jaw 5 stably clamped on the pole 1, and the rotating connection of the pushing connecting plate 32 and the rotating mounting frame 33 can make the fixed clamping jaw 5 keep horizontal when it is inclined on the pole 1.

[0023] The correction mechanism 4 comprises a driving connecting piece 41 and a moving connecting piece 42, the driving connecting piece 41 is mounted on the connecting piece 22, one end of the moving connecting piece 42 is mounted on the driving connecting piece 41, and the other end of the moving connecting piece 42 is connected to the working end of the driving connecting piece 41, and the other end of the moving connecting piece 42 is connected to the side end of the fixed clamping jaw 5.

[0024] In the application, the driving connecting piece 41 is used to drive the moving connecting piece 42 to move horizontally, so that the moving connecting piece 42 can push the fixed clamping jaw 5 to move, and since the bottom end of the pole 1 is also located in the ground when it is inclined, the fixed clamping jaw 5 cannot move when its bottom end is fixed to the ground when pushing the cylinder, and the pole 1 can only change its angle when it cannot move, so that the fixed clamping jaw 5 can only change the angle of the pole 1 to the vertical state when pushing the pole 1 in the inclined state, until the pole 1 returns to the vertical state.

[0025] In the application, the driving connecting piece 41 and the fixed connecting rod 31 of the stabilizing mechanism 3 are both mounted on the side end of the connecting piece 22, so that the connecting piece 22 can drive the driving connecting piece 41 and the fixed connecting rod 31 to move synchronously when it is vertically driven on the fixed structure 2 by the driving device 21, so that the two can respectively drive the fixed clamping jaw 5 to adjust the height through the moving connecting piece 42 and the pushing connecting plate 32, so that the fixed clamping jaw 5 can be clamped at the appropriate position when it moves on the pole 1.

[0026] The driving connecting piece 41 comprises a driving placing rack 411, a driving motor 412 and a moving placing rack 413, one end of the driving placing rack 411 is installed on the connecting piece 22, the driving motor 412 is arranged in the driving placing rack 411, the moving placing rack 413 is arranged on one side of the driving placing rack 411, the moving placing rack 413 is provided with a threaded rod 414 and two limiting rods 415, the threaded rod 414 is rotationally arranged in the moving placing rack 413, and one end of the threaded rod 414 is connected with the output end of the driving motor 412, the two limiting rods 415 are located on the two sides of the threaded rod 414 respectively, and the threaded rod 414 is connected with the moving connecting piece 42.

[0027] In the application, the driving motor 412 is used for driving the threaded rod 414 to rotate in the moving placing rack 413, and the threaded rod 414 can drive the moving connecting piece 42 to move horizontally on the moving placing rack 413 through the cooperation of the two limiting rods 415 when rotating.

[0028] The moving connecting piece 42 comprises a moving connecting rack 421, a pushing connecting plate two 422 and a rotating installation rack two 423, one end of the moving connecting rack 421 is slidingly installed on the two limiting rods 415 in the moving placing rack 413, and the end of the moving connecting rack 421 in the moving placing rack 413 is also threadedly connected with the threaded rod 414, the pushing connecting plate two 422 is connected on the other end of the moving connecting rack 421, the rotating installation rack two 423 is arranged on the side end of the fixed clamping jaw 5, and the pushing connecting plate two 422 is rotationally connected with the rotating installation rack two 423.

[0029] In the application, the moving connecting rack 421 in the moving placing rack 413 is driven to move by the rotation of the threaded rod 414, and the moving connecting rack 421 can drive the pushing connecting plate two 422 to move synchronously when moving in the moving placing rack 413, so that the pushing connecting plate two 422 can push the fixed clamping jaw 5 to move through the rotating installation rack two 423, and the upper and lower ends of the verticality detector 6 are rotationally installed on the pushing connecting plate one 32 and the pushing connecting plate two 422 respectively, so that when the fixed clamping jaw 5 follows the electric pole 1 to be in an inclined state, the positions of the pushing connecting plate one 32 and the pushing connecting plate two 422 are in a horizontal state but the front and back positions are different, and at this time, the verticality detector 6 rotationally installed on the pushing connecting plate one 32 and the pushing connecting plate two 422 is inclined according to the different positions, so that the angle change of the verticality detector 6 is consistent with the inclination angle of the electric pole 1, and when the electric pole 1 is restored by the movement of the pushing connecting plate two 422, the verticality detector 6 changes synchronously, so that when the verticality detector 6 is in a vertical state, the electric pole 1 is also in a vertical state.

[0030] The above merely describes the embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the scope of claims of the present application.

Claims

1. A device for correcting the tilt of a pole in an electric power engineering design, characterized in that: The utility model comprises an electric pole (1), a fixing structure (2), a stabilizing mechanism (3), a correction mechanism (4) and a fixing clamp (5), wherein the fixing structure (2) is fixed on the ground, the fixing clamp (5) is clamped on the electric pole (1), one end of the stabilizing mechanism (3) and the correction mechanism (4) are both rotatably connected to the side end of the fixing clamp (5), and the other ends of the stabilizing mechanism (3) and the correction mechanism (4) are connected to the fixing structure (2); The fixed structure (2) is provided with a driving device (21) and a connecting member (22), the connecting member (22) is slidably mounted on the fixed structure (2), and the connecting member (22) is connected to a working end of the driving device (21), and the connecting member (22) can be vertically moved on the fixed structure (2) through the driving device (21), and the connecting member (22) is connected to the other end of the stabilizing mechanism (3) and the correction mechanism (4); A verticality detector (6) is provided between the stabilizing mechanism (3) and the correction mechanism (4). The verticality detector (6) is connected to the stabilizing mechanism (3) and the correction mechanism (4) by rotation. The verticality detector (6) is a prior art and detects verticality by changing the angle.

2. The electric power engineering pole tilt correction device according to claim 1, characterized in that: The stabilizing mechanism (3) comprises a fixed connecting rod (31), a pushing connecting plate (32) and a rotating mounting frame (33), wherein the fixed connecting rod (31) is a telescopic rod, one end of the fixed connecting rod (31) is connected to the connecting member (22), and the other end of the fixed connecting rod (31) is connected to the pushing connecting plate (32), and the rotating mounting frame (33) is installed on the side end of the fixed clamp (5), and the pushing connecting plate (32) is rotatably connected to the rotating mounting frame.

3. The electric power engineering pole tilt correction device according to claim 1, characterized in that: The correction mechanism (4) comprises a driving connection member (41) and a moving connection member (42), wherein the driving connection member (41) is mounted on the connection member (22), one end of the moving connection member (42) is mounted on the driving connection member (41), and the moving connection member (42) is connected to the working end of the driving connection member (41), and the other end of the moving connection member (42) is connected to the side end of the fixed clamp (5).

4. The electric power engineering pole tilt correction device according to claim 3, characterized in that: The driving connecting member (41) includes a driving placement frame (411), a driving motor (412) and a movable placement frame (413). One end of the driving placement frame (411) is mounted on the connecting member (22). The driving motor (412) is arranged in the driving placement frame (411). The movable placement frame (413) is arranged on one side of the driving placement frame (411). A threaded rod (414) and two limiting rods (415) are arranged in the movable placement frame (413). The threaded rod (414) is rotatably arranged in the movable placement frame (413), and one end of the threaded rod (414) is connected to the output end of the driving motor (412). The two limiting rods (415) are respectively located on both sides of the threaded rod (414). The threaded rod (414) is connected to the movable connecting member (42).

5. The electric power engineering pole tilt correction device according to claim 4, characterized in that: The movable connecting member (42) includes a movable connecting frame (421), a second pushing connecting plate (422) and a second rotating mounting frame (423). One end of the movable connecting frame (421) is located in the movable placement frame (413) and is slidably mounted on two limit rods (415). One end of the movable connecting frame (421) located in the movable placement frame (413) is also threadedly connected to the threaded rod (414). The second pushing connecting plate (422) is connected to the other end of the movable connecting frame (421). The second rotating mounting frame (423) is arranged on the side end of the fixed clamp (5). The second pushing connecting plate (422) is rotatably connected to the second rotating mounting frame (423).