Concrete pole detection platform

The concrete pole inspection platform is equipped with a gear system and threaded rod driven by servo motors, power motors, and stepper motors, enabling convenient clamping, rotation, and multi-position inspection, thus solving the problems of convenience and inspection range limitations of existing platforms.

CN224182916UActive Publication Date: 2026-05-01YINGDE YOUPENG BUILDING MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
YINGDE YOUPENG BUILDING MATERIALS CO LTD
Filing Date
2025-05-31
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing concrete pole inspection platforms are not convenient for clamping poles of different lengths, affecting the ease of adjusting the position. They are also not convenient for centering and clamping the poles and for rotating them, thus limiting the inspection range and convenience.

Method used

The length is adjusted by using a servo motor-driven gear system, sliding plate, fixed ring, and small rollers. It is combined with a power motor to drive a rotating disk and roller frame for rotation, and a stepper motor to drive a threaded rod and a detection device for position movement, so as to realize the detection of poles at different positions.

Benefits of technology

The platform improves the ease of clamping poles of different lengths, facilitates pole center positioning and rotation, expands the inspection range, and enhances the convenience and efficiency of multi-position inspection.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224182916U_ABST
Patent Text Reader

Abstract

The utility model discloses a concrete pole detection platform which comprises a machine frame and a movable support, the movable support is installed at the top end of the machine frame, guide rails are symmetrically installed at the top end of the machine frame below the movable support, a detection device is arranged on the outer portion of the movable support, racks are symmetrically installed on the inner wall of the machine frame, and the rack is arranged on the rack. A sliding plate is arranged outside the guide rail, and fixing rings are installed at the top end of the sliding plate and the top end of the rack. According to the utility model, the electric pole detection platform can conveniently move to clamp electric poles with different lengths, the convenience of adjusting the position of the electric pole detection platform is improved, the center of the electric pole can be conveniently positioned and clamped to rotate, the electric poles at different positions can be conveniently detected, the detection range of the electric pole detection platform is increased, and the detection efficiency of the electric pole detection platform is improved. And the multi-position detection convenience of the electric pole detection platform is improved.
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Description

A concrete pole inspection platform Technical Field

[0001] This utility model relates to the technical field of utility pole inspection platforms, specifically a concrete utility pole inspection platform. Background Technology

[0002] The concrete pole inspection platform, with its sliding rails and transmission screws, allows for adjustment to accommodate poles of varying sizes, ensuring both accuracy and applicability. Its rotary adjustment function allows for rotational adjustment of the pole's outer circumference, making the inspection process more flexible and enabling comprehensive coverage of all parts of the pole, thus improving the overall comprehensiveness and accuracy of the inspection. Through automated and intelligent design features, such as wireless data transmission and real-time monitoring, the platform is more efficient, significantly reducing inspection time, especially in large-scale pole inspection tasks, where it significantly improves work efficiency.

[0003] For example, the concrete pole inspection platform disclosed in the authorization announcement number CN210243335U includes a first support and a second support. A horizontal hydraulic telescopic cylinder is provided between the first support and the second support. A first telescopic support is hinged to the free end of the first support, and a second telescopic support is hinged to the free end of the second support. The second telescopic support includes a first horizontal connecting rod. A first lifting hydraulic telescopic cylinder is provided on the upper side of both ends of the first horizontal connecting rod. The upper end of the first lifting hydraulic telescopic cylinder is hinged to the side wall of the second support. A first roller is provided on both ends of the first horizontal connecting rod, and a first arc-shaped support groove is provided on the lower end of the first horizontal connecting rod.

[0004] Although it allows for adjustment of the length of the testing platform via a horizontal hydraulic telescopic cylinder, thereby adjusting the position of the guide wheels to suit poles of different lengths and thus having a wider range of applications; moreover, when the testing platform is moved, the horizontal hydraulic telescopic cylinder can be retracted to shorten the length of the entire device, making it easier to move the entire device directly; the concrete pole testing platform can also be divided into a first support, a horizontal hydraulic telescopic cylinder, and a second support for easy carrying and transportation.

[0005] However, this does not solve the problem that existing pole inspection platforms of this type are generally not conducive to clamping poles of different lengths during use, which affects the convenience of adjusting the position of the pole inspection platform, makes it inconvenient to rotate the pole center positioning clamp, and makes it inconvenient to inspect poles in different positions, thus affecting the inspection range of the pole inspection platform and the convenience of multi-position inspection of the pole inspection platform. Summary of the Invention

[0006] The purpose of this utility model is to provide a concrete pole inspection platform to solve the problems mentioned in the background art, such as the inconvenience of moving the pole inspection platform to clamp poles of different lengths, which affects the convenience of adjusting the position of the pole inspection platform, the inconvenience of rotating the pole center clamp, the inconvenience of inspecting poles at different positions, the limitation of the inspection range of the pole inspection platform, and the inconvenience of multi-position inspection of the pole inspection platform.

[0007] To achieve the above objectives, this utility model provides the following technical solution: a concrete pole inspection platform, comprising a frame and a movable support. The movable support is installed at the top of the frame, and guide rails are symmetrically installed at the top of the frame below the movable support. An inspection device is provided on the outside of the movable support. Racks are symmetrically installed on the inner wall of the frame. A sliding plate is provided on the outside of the guide rails. A fixing ring is installed at the top of both the sliding plate and the frame. Four sets of small rollers with equal spacing are provided on the outside of the fixing rings. Servo motors are symmetrically installed at the top of the sliding plate outside the fixing rings. A first gear is installed at the output end of each servo motor, and the first gear meshes with the rack. Two sets of sliders are symmetrically installed at the bottom of the sliding plate, and the sliders are slidably connected to the guide rails.

[0008] Preferably, the surface of the fixing ring is fitted with an annular sleeve, and the inner wall of the annular sleeve is provided with multiple sets of rotating columns at equal intervals. The annular sleeve is movably connected to the rotating columns, and a rotating disk is provided on the outside of the annular sleeve. The rotating columns are connected to the rotating disk.

[0009] Preferably, a large gear is installed on the side wall of the rotating disk, a power motor is installed on the side wall of the fixed ring, and a small gear is installed at the output end of the power motor, the small gear meshing with the large gear.

[0010] Preferably, four sets of L-shaped plates with equal spacing are installed on the side of the rotating disk away from the large gear, and a second electric push rod is installed on the side wall of each L-shaped plate.

[0011] Preferably, each of the output ends of the second electric push rod is equipped with a roller frame, and a small roller is movably mounted on the end of the roller frame away from the second electric push rod.

[0012] Preferably, a stepper motor is mounted on the side wall of the movable bracket, and a threaded rod is mounted on the output end of the stepper motor.

[0013] Preferably, the threaded rod extends into the interior of the movable bracket and is movably connected thereto, and the surface of the threaded rod is fitted with a threaded block.

[0014] Preferably, a first electric push rod is installed on the side wall of the threaded block, and the output end of the first electric push rod is connected to the detection device.

[0015] Compared with the prior art, the beneficial effects of this utility model are: the pole inspection platform not only realizes the convenient movement of the pole inspection platform to clamp poles of different lengths, improves the convenience of adjusting the position of the pole inspection platform, facilitates the rotation of the pole center positioning clamp, but also facilitates the inspection of poles at different positions, increases the inspection range of the pole inspection platform, and improves the convenience of multi-position inspection of the pole inspection platform;

[0016] (1) The servo motor drives the first gear to rotate. The first gear drives the sliding plate, fixed ring, and small roller to move along the rack, so that a set of fixed rings and small rollers move to the required length and place the pole inside the two sets of fixed rings. This facilitates convenient movement and enables the pole detection platform to clamp poles of different lengths, improving the convenience of adjusting the position of the pole detection platform.

[0017] (2) The second electric push rod drives the roller frame to move, and the roller frame drives the small roller to move in opposite directions to center and clamp the pole. The power motor drives the small gear to rotate, and the small gear drives the large gear to rotate. Under the limit of the rotating column, the large gear drives the rotating disk, the second electric push rod, the L-shaped plate, the roller frame, the small roller, and the pole to rotate inside the annular sleeve, which facilitates the pole to rotate easily. This realizes that the pole inspection platform can easily center and clamp the pole to rotate, and improves the inspection efficiency of the pole inspection platform.

[0018] (3) The stepper motor drives the threaded rod to rotate, the threaded rod drives the threaded block to move, and the threaded block drives the first electric push rod and the detection device to move, which facilitates the detection device to detect poles at different positions, realizes the pole detection platform to detect poles at different positions, increases the detection range of the pole detection platform, and improves the convenience of multi-position detection of the pole detection platform. Attached Figure Description

[0019] Figure 1 is a three-dimensional structural diagram of this utility model;

[0020] Figure 2 is a front view of the structure of this utility model;

[0021] Figure 3 is a schematic diagram of the three-dimensional structure of the slider of this utility model;

[0022] Figure 4 is a three-dimensional structural diagram of the threaded block of this utility model;

[0023] Figure 5 is a front view of the exploded structure of the annular sleeve of this utility model;

[0024] Figure 6 is a three-dimensional structural diagram of the small gear of this utility model.

[0025] In the diagram: 1. Frame; 2. Guide rail; 3. Rack; 4. Sliding plate; 5. Fixing ring; 6. Moving bracket; 7. Detection device; 8. Servo motor; 9. First gear; 10. Slider; 11. Stepper motor; 12. Threaded rod; 13. Threaded block; 14. First electric push rod; 15. Power motor; 16. Ring sleeve; 17. Rotating column; 18. Rotating disk; 19. Large gear; 20. Second electric push rod; 21. L-shaped plate; 22. Roller frame; 23. Small gear; 24. Small roller. Detailed Implementation

[0026] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.

[0027] Please refer to Figures 1-6. One embodiment of this utility model is a concrete pole inspection platform, including a frame 1 and a movable support 6. The movable support 6 is installed at the top of the frame 1. Guide rails 2 are symmetrically installed at the top of the frame 1 below the movable support 6. An inspection device 7 is provided on the outside of the movable support 6. A rack 3 is symmetrically installed on the inner wall of the frame 1. A sliding plate 4 is provided on the outside of the guide rail 2. A fixing ring 5 is installed at the top of both the sliding plate 4 and the frame 1. Four sets of small rollers 24 with equal spacing are provided on the outside of the fixing ring 5. A servo motor 8 is symmetrically installed at the top of the sliding plate 4 outside the fixing ring 5. A first gear 9 is installed at the output end of each servo motor 8. The first gear 9 meshes with the rack 3. Two sets of sliders 10 are symmetrically installed at the bottom of the sliding plate 4. The sliders 10 are slidably connected to the guide rail 2.

[0028] When using the concrete pole inspection platform, two sets of servo motors 8 are turned on. Supported by the sliding plate 4, the servo motors 8 drive the first gear 9 to rotate. Under the meshing of the first gear 9 and the rack 3, the first gear 9 drives the sliding plate 4, the fixing ring 5, and the small roller 24 to move along the rack 3, so that a set of fixing rings 5 ​​and small rollers 24 move to the required length and place the pole inside the two sets of fixing rings 5. This facilitates convenient movement and enables the pole inspection platform to clamp poles of different lengths, improving the convenience of adjusting the position of the pole inspection platform.

[0029] The surface of the fixed ring 5 is fitted with an annular sleeve 16. The inner wall of the annular sleeve 16 is provided with multiple sets of rotating columns 17 at equal intervals. The annular sleeve 16 is movably connected to the rotating columns 17. The outer side of the annular sleeve 16 is provided with a rotating disk 18. The rotating columns 17 are connected to the rotating disk 18.

[0030] A large gear 19 is installed on the side wall of the rotating disk 18, and a power motor 15 is installed on the side wall of the fixed ring 5. A small gear 23 is installed at the output end of the power motor 15, and the small gear 23 meshes with the large gear 19.

[0031] Four sets of L-shaped plates 21 with equal spacing are installed on the side of the rotating disk 18 away from the large gear 19. A second electric push rod 20 is installed on the side wall of each L-shaped plate 21.

[0032] The output end of the second electric push rod 20 is equipped with a roller frame 22, and a small roller 24 is movably installed at the end of the roller frame 22 away from the second electric push rod 20.

[0033] When it is necessary to clamp the pole, multiple sets of second electric push rods 20 are opened. Supported by the L-shaped plate 21, the second electric push rods 20 drive the roller frame 22 to move. The roller frame 22 drives the small rollers 24 to move in opposite directions, thus centering and clamping the pole. The power motor 15 is then opened. Supported by the fixed ring 5, the power motor 15 drives the pinion 23 to rotate. With the pinion 23 meshing with the large gear 19, the pinion 23 drives the large gear 19 to rotate. Under the limit of the rotating column 17, the large gear 19 drives the rotating disk 18, the second electric push rods 20, the L-shaped plate 21, the roller frame 22, the small rollers 24, and the pole to rotate inside the annular sleeve 16. This facilitates the convenient rotation of the pole, enabling the pole inspection platform to conveniently center and clamp the pole for rotation, thus improving the inspection efficiency of the pole inspection platform.

[0034] A stepper motor 11 is installed on the side wall of the movable bracket 6. A threaded rod 12 is installed at the output end of the stepper motor 11. The threaded rod 12 extends into the interior of the movable bracket 6 and is movably connected thereto. A threaded block 13 is fitted on the surface of the threaded rod 12.

[0035] A first electric push rod 14 is installed on the side wall of the threaded block 13, and the output end of the first electric push rod 14 is connected to the detection device 7.

[0036] When pole inspection is required, stepper motor 11 is turned on. Supported by moving bracket 6, stepper motor 11 drives threaded rod 12 to rotate. Under the meshing of threaded rod 12 and threaded block 13, threaded rod 12 drives threaded block 13 to move. Threaded block 13 drives first electric push rod 14 and inspection device 7 to move, which facilitates inspection device 7 to inspect poles at different positions. This enables the pole inspection platform to inspect poles at different positions, increases the inspection range of the pole inspection platform, and improves the convenience of multi-position inspection of the pole inspection platform.

[0037] Working principle: When using the concrete pole inspection platform, the servo motor 8 drives the first gear 9 to rotate. The first gear 9 drives the sliding plate 4, the fixing ring 5, and the small roller 24 to move along the rack 3, so that a set of fixing rings 5 ​​and small rollers 24 move to the required length, placing the pole inside the two sets of fixing rings 5, facilitating convenient movement. When it is necessary to clamp the pole, the second electric push rod 20 drives the roller frame 22 to move. The roller frame 22 drives the small rollers 24 to move in opposite directions, centering and clamping the pole. The power motor 15 drives the small gear 23 to rotate. Stepper 13 drives the large gear 19 to rotate. Under the limit of the rotating column 17, the large gear 19 drives the rotating disk 18, the second electric push rod 20, the L-shaped plate 21, the roller frame 22, the small roller 24, and the pole to rotate inside the annular sleeve 16, which facilitates the pole's rotation. When the pole needs to be inspected, stepper motor 11 drives the threaded rod 12 to rotate. The threaded rod 12 drives the threaded block 13 to move. The threaded block 13 drives the first electric push rod 14 and the detection device 7 to move, which facilitates the detection device 7 to inspect the pole at different positions, thus completing the use of the pole inspection platform.

[0038] 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 way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any indirect modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.

Claims

1. A concrete pole inspection platform characterized by: The device includes a frame (1) and a movable support (6). The movable support (6) is installed at the top of the frame (1). Guide rails (2) are symmetrically installed at the top of the frame (1) below the movable support (6). A detection device (7) is provided on the outside of the movable support (6). A rack (3) is symmetrically installed on the inner wall of the frame (1). A sliding plate (4) is provided on the outside of the guide rail (2). A fixing ring (5) is installed at the top of both the sliding plate (4) and the frame (1). Four sets of small rollers (24) with equal spacing are provided on the outside of the fixing ring (5). A servo motor (8) is symmetrically installed at the top of the sliding plate (4) outside the fixing ring (5). A first gear (9) is installed at the output end of each servo motor (8). The first gear (9) meshes with the rack (3). Two sets of sliders (10) are symmetrically installed at the bottom of the sliding plate (4). The sliders (10) are slidably connected to the guide rail (2).

2. The concrete pole inspection platform of claim 1, wherein: The surface of each fixed ring (5) is fitted with an annular sleeve (16), and the inner wall of each annular sleeve (16) is provided with multiple sets of rotating columns (17) at equal intervals. The annular sleeve (16) is movably connected to the rotating columns (17), and a rotating disk (18) is provided on the outside of the annular sleeve (16). The rotating columns (17) are connected to the rotating disk (18).

3. The concrete pole inspection platform of claim 2, wherein: A large gear (19) is installed on the side wall of the rotating disk (18), and a power motor (15) is installed on the side wall of the fixed ring (5). A small gear (23) is installed at the output end of the power motor (15), and the small gear (23) meshes with the large gear (19).

4. The concrete pole inspection platform according to claim 3, characterized in that: The rotating disk (18) is equipped with four sets of L-shaped plates (21) at equal intervals on the side away from the large gear (19), and a second electric push rod (20) is installed on the side wall of each L-shaped plate (21).

5. The concrete pole inspection platform of claim 4, wherein: The output end of the second electric push rod (20) is equipped with a roller frame (22), and a small roller (24) is movably installed at the end of the roller frame (22) away from the second electric push rod (20).

6. The concrete pole inspection platform according to claim 1, characterized in that: A stepper motor (11) is installed on the side wall of the movable support (6), and a threaded rod (12) is installed at the output end of the stepper motor (11).

7. The concrete pole inspection platform of claim 6, wherein: The threaded rod (12) extends into the interior of the movable bracket (6) and is movably connected thereto, and the surface of the threaded rod (12) is fitted with a threaded block (13).

8. The concrete pole inspection platform of claim 7, wherein: A first electric push rod (14) is installed on the side wall of the threaded block (13), and the output end of the first electric push rod (14) is connected to the detection device (7).

Citation Information

Patent Citations

  • Concrete pole detection platform

    CN210243335U