Concrete pole detection platform
By designing a concrete pole inspection platform that includes a platform base, track body, inspection and flipping mechanism, adjustment and moving mechanism, and rotation auxiliary mechanism, the problem of inconvenient position adjustment of the auxiliary rotation mechanism is solved, and stable rotation and efficient inspection of the pole are achieved.
Patent Information
- Application Number
- CN202520651209.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-04-09
AI Technical Summary
The auxiliary rotation mechanism of the existing concrete pole inspection platform is not convenient enough when adjusting the position, which affects the inspection efficiency.
A concrete pole inspection platform was designed, comprising a platform base, a track body, a detection and flipping mechanism, an adjustment and moving mechanism, a rotation auxiliary mechanism, and a rotation clamping mechanism. Through the cooperation of components such as a rotary motor, a lead screw body, and rolling ball bearings, the platform enables stable rotation and position adjustment of the concrete pole.
The stability and efficiency of concrete pole inspection have been improved, making pole rotation inspection more convenient and efficient. The use of the adjustment and movement mechanism makes it easier to change the position of the rotation auxiliary mechanism, and the use of rolling ball bearings enhances the contact stability between the pole and the platform.
Smart Images

Figure CN223883010U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to concrete pole detection technical field, concretely is concrete pole detection platform. BACKGROUND
[0002] Concrete pole detection refers to the comprehensive quality inspection of concrete poles to ensure that they can safely and reliably support power lines, cables and other facilities during use. When detecting concrete poles, a concrete pole detection platform is needed.
[0003] When the concrete pole detection platform clamps the concrete pole for rotation, the auxiliary rotating mechanism at the other end is used for auxiliary support, so that the concrete pole can be stably rotated for detection. However, the auxiliary rotating mechanism is not very convenient to adjust the position.
[0004] Therefore, we propose a new type of concrete pole detection platform to solve the above technical problems. UTILITY MODEL CONTENTS
[0005] (I) Technical problems solved
[0006] In view of the deficiencies of the prior art, the utility model provides a concrete pole detection platform, which solves the problem that the auxiliary rotating mechanism of the concrete pole detection platform is not very convenient to adjust the position.
[0007] (II) Technical solutions
[0008] To achieve the above purpose, the utility model provides the following technical scheme: a concrete pole detection platform, comprising:
[0009] A platform base;
[0010] A track body is symmetrically installed on the platform base;
[0011] A detection turnover mechanism is installed and fixed on the upper left side of the platform base;
[0012] An adjusting and moving mechanism is installed on the platform base;
[0013] A rotating auxiliary mechanism is installed and connected to the upper end of the adjusting and moving mechanism;
[0014] A rotating clamping mechanism is installed and connected to the detection turnover mechanism;
[0015] A concrete pole body is installed and connected between the rotating clamping mechanism and the rotating auxiliary mechanism.
[0016] Preferably, the detection overturning mechanism comprises a supporting vertical plate fixed on the platform base, a rotary motor is mounted on the upper end of the supporting vertical plate, a first coupling is mounted on the output shaft rod end of the rotary motor, and the first coupling is mounted on the rotating clamping mechanism.
[0017] Preferably, the rotating clamping mechanism comprises a rear end shaft rod fixed on the first coupling, a hollow sleeve is fixed on the outer end of the rear end shaft rod, clamping telescopic cylinders are mounted on the outer walls of the two ends of the hollow sleeve, clamping rubbers are mounted on the telescopic rods of the clamping telescopic cylinders and pass through the inner side of the hollow sleeve, and an installation sleeve cavity is formed in the hollow sleeve.
[0018] Preferably, the adjusting and moving mechanism comprises a lead screw body, a lead screw motor is mounted on the left end of the lead screw body, a lead screw sliding block is mounted on the upper end of the lead screw body, a movable panel is mounted on the upper end of the lead screw sliding block, track sliding blocks are mounted on the two lower sides of the movable panel, the movable panel is sleeved on the track body through the track sliding blocks, an installation sleeve seat is mounted on the upper end of the movable panel, and a rotating auxiliary mechanism is mounted on the upper end of the installation sleeve seat.
[0019] Preferably, the rotating auxiliary mechanism comprises a concave wrapping block, a rotating sleeve cavity is formed in the concave wrapping block, a rolling ball is rotatably mounted on the inner side of the rotating sleeve cavity, installation sleeves are mounted on the two sides of the lower end of the concave wrapping block, a lifting telescopic cylinder is mounted on the lower end of the installation sleeve, the installation sleeve and the lifting telescopic cylinder are fixedly connected through assembly bolts, an installation disc is mounted on the periphery of the lifting telescopic cylinder, and the lifting telescopic cylinder is mounted on the installation sleeve seat through the installation disc.
[0020] Preferably, the concave wrapping block is sleeved on the periphery of the concrete pole body through the rotating sleeve cavity.
[0021] Preferably, the supporting vertical plate and the platform base are fixedly connected through welding, and the connecting positions are aligned.
[0022] (Three) beneficial effects
[0023] Compared with the prior art, the concrete pole detection platform has the following beneficial effects:
[0024] 1. In the rotation of the concrete pole body, the other end can be assisted to rotate through the rotating auxiliary mechanism, the adjusting and moving mechanism is mounted on the platform base, the adjusting and moving mechanism can be positioned and moved on the track body at the upper end of the platform base, so that the position of the rotating auxiliary mechanism can be stably changed for assisting rolling in the adjusting and moving.
[0025] 2, the utility model discloses a rotating auxiliary mechanism structure is set up, can roll and assist to rotate, the recessed wrapping block of rotating auxiliary mechanism passes through the area of rotating sleeve cavity, can effectively wrap and limit, the inboard of rotating sleeve cavity is located on the inner wall of recessed wrapping block and is rotatably installed rolling ball, and the recessed wrapping block can be contacted with the concrete pole body by rolling ball, so that the concrete pole body is more convenient when rotating detection, and the telescopic rod of lifting telescopic cylinder can drive the installation sleeve pipe fixed by assembling bolt to go up and down when telescoping, and the installation sleeve pipe can drive the recessed wrapping block to go up and down, so that the auxiliary position height can be changed, and the peripheral installation disc of lifting telescopic cylinder is installed, and lifting telescopic cylinder is installed and is connected on the installation sleeve seat through the installation disc, so that can be placed correspondingly. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is the three-dimensional structure schematic diagram of the utility model;
[0027] Figure 2 It is the rotating auxiliary mechanism and adjusting mobile mechanism combined structure schematic diagram of the utility model;
[0028] Figure 3 It is the rotating auxiliary mechanism section structure schematic diagram of the utility model;
[0029] Figure 4 It is the rotating clamping mechanism structure schematic diagram of the utility model;
[0030] Figure 5 It is the detection turnover mechanism structure schematic diagram of the utility model.
[0031] In the drawing:
[0032] 1, support vertical plate;11, rotating motor;12, first coupling;2, clamping telescopic cylinder;21, clamping rubber;22, installation sleeve cavity;23, hollow sleeve pipe;24, rear end shaft;3, concrete pole body;4, platform base;5, track body;6, movable panel;61, track slider;62, screw slider;63, screw machine body;64, screw motor;7, installation sleeve seat;8, recessed wrapping block;81, installation disc;82, rolling ball;83, rotating sleeve cavity;84, lifting telescopic cylinder;85, installation sleeve pipe;86, assembling bolt. DETAILED DESCRIPTION
[0033] In the utility model, under the condition of not making opposite statement, the direction such as " upper, lower " that using is usually for the direction shown in the drawing, or it is for vertical, perpendicular or gravity direction;Similarly, for the convenience of understanding and description, " left, right " is usually for the left, right of the drawing;" inner, outer " refers to the inner, outer of the contour of each component itself, but the above-mentioned direction word is not used to limit the utility model.
[0034] Example 1
[0035] This embodiment provides a technical solution: a concrete pole inspection platform, such as... Figures 1-5 As shown, it includes a platform base 4, a track body 5, a detection and flipping mechanism, an adjustment and moving mechanism, a rotation auxiliary mechanism, a rotation clamping mechanism, and a concrete pole body 3.
[0036] The track body 5 is symmetrically welded and installed on the platform base 4, allowing for corresponding installation and placement. The detection and flipping mechanism is installed and fixed on the upper left side of the platform base 4, and can be driven to rotate on the upper left side of the platform base 4. The adjustment and moving mechanism is installed on the platform base 4, and can move left and right on the platform base 4. The rotation auxiliary mechanism is installed and connected to the upper end of the adjustment and moving mechanism, and can drive the rotation auxiliary mechanism to move left and right during the adjustment and moving mechanism's movement. The rotation clamping mechanism is installed and connected to the detection and flipping mechanism, and can drive the rotation clamping mechanism to rotate. The concrete pole body 3 is installed and connected between the rotation clamping mechanism and the rotation auxiliary mechanism. When the rotation clamping mechanism rotates, it can drive the concrete pole body 3 to rotate. During the rotation of the concrete pole body 3, the other end can be assisted in rotating via the rotation auxiliary mechanism.
[0037] The detection flipping mechanism includes a support plate 1 fixed to the platform base 4, so that the support plate 1 can be placed stably. A rotary motor 11 is screwed on the inner side of the upper end of the support plate 1, which facilitates installation and removal. A first coupling 12 is installed on the output shaft end of the rotary motor 11. When the output shaft of the rotary motor 11 rotates, it can drive the first coupling 12 to rotate. The first coupling 12 is installed and connected to the rotary clamping mechanism, and the first coupling 12 can drive the rotary clamping mechanism to rotate.
[0038] The support plate 1 and the platform base 4 are fixedly connected by welding, and the connection points are aligned to ensure effective fixation. The alignment of the connection points also prevents obstruction during use.
[0039] The rotating clamping mechanism comprises a rear end shaft 24 fixed to the first shaft 12, the first shaft 12 can drive the rear end shaft 24 to rotate, the outer end of the rear end shaft 24 is fixedly connected with a hollow sleeve 23, the rear end shaft 24 can drive the hollow sleeve 23 to rotate, the outer wall of both ends of the hollow sleeve 23 is provided with a clamping telescopic cylinder 2, the telescopic rod of the clamping telescopic cylinder 2 is connected with a clamping rubber 21 through the inside of the hollow sleeve 23, the telescopic rod of the clamping telescopic cylinder 2 can drive the clamping rubber 21 to be clamped in the hollow sleeve 23 when the telescopic rod is telescoped, the inside of the hollow sleeve 23 is provided with an installation sleeve cavity 22, the hollow sleeve 23 is placed in the installation sleeve cavity 22, so that the concrete pole body 3 can be correspondingly placed.
[0040] As shown in Figure 1 and Figure 2 , the adjusting moving mechanism comprises a screw body 63, the left end of the screw body 63 is provided with a screw motor 64, the upper end of the screw body 63 is provided with a screw block 62, the output shaft of the screw motor 64 drives the internal screw of the screw body 63 to rotate in reverse when the output shaft rotates in reverse, the internal screw of the screw body 63 is threadedly connected with the screw block 62, so that the screw block 62 can move left and right, the upper end of the screw block 62 is provided with a movable panel 6, the screw block 62 drives the movable panel 6 to move left and right when the screw block 62 moves left and right, the both ends of the lower side of the movable panel 6 are provided with a track block 61, the movable panel 6 drives the track block 61 to move, the movable panel 6 is sleeved on the track body 5 through the track block 61, the track block 61 is limited by the track body 5, so that the movable panel 6 is more stable when moving, the upper end of the movable panel 6 is provided with an installation sleeve 7, the position of the installation sleeve 7 can be changed when the movable panel 6 moves, the upper end of the inside of the installation sleeve 7 is provided with a rotating auxiliary mechanism, the position of the rotating auxiliary mechanism can be changed to assist, the whole adjusting moving is limited by the track body 5, so that the moving is more stable.
[0041] In use, personnel install the concrete pole body 3 on the rotating clamping mechanism, and the other end is placed on the rotating auxiliary mechanism, the rotating clamping mechanism is connected to the detection overturning mechanism, the detection overturning mechanism can drive the rotating clamping mechanism to rotate, the rotating clamping mechanism can drive the concrete pole body 3 to rotate when rotating, the other end of the concrete pole body 3 can be assisted to rotate through the rotating auxiliary mechanism when rotating, the adjusting moving mechanism is installed on the platform base 4, the adjusting moving mechanism can be positioned and moved on the track body 5 on the upper end of the platform base 4, so that the position of the rotating auxiliary mechanism can be stably changed to assist rolling when adjusting and moving.
[0042] Example two
[0043] The embodiment is further optimized on the basis of embodiment one, and the same parts as the foregoing technical solutions will not be described here again, such as Figure 1 and Figure 3 As shown in the figure, further, in order to better achieve the utility model, in particular, the following setting mode is adopted: the rotating auxiliary mechanism comprises a concave wrapping block 8, a rotating sleeve cavity 83 is arranged in the interior of the concave wrapping block 8, the concave wrapping block 8 passes through the area of the rotating sleeve cavity 83, so that effective wrapping and limiting can be achieved, the inner side of the rotating sleeve cavity 83 is rotatably installed with a rolling ball 82 on the inner wall of the concave wrapping block 8, the concave wrapping block 8 can be in rolling contact with the concrete pole body 3 through the rolling ball 82, so that the concrete pole body 3 is more convenient to rotate and detect, the personnel can rotate and detect to check when the concrete pole body 3 rotates, so that the detection is more efficient and comprehensive, the lower ends of both sides of the concave wrapping block 8 are installed with a mounting sleeve 85, the lower end of the mounting sleeve 85 is installed with a lifting telescopic cylinder 84, the mounting sleeve 85 and the lifting telescopic cylinder 84 are fixedly connected through an assembly bolt 86, when the personnel loosens the assembly bolt 86, the mounting sleeve 85 and the lifting telescopic cylinder 84 can be disassembled, the telescopic rod of the lifting telescopic cylinder 84 can drive the mounting sleeve 85 fixed through the assembly bolt 86 to ascend and descend when the telescopic rod telescopes, the mounting sleeve 85 can drive the concave wrapping block 8 to ascend and descend, so that the height of the auxiliary position can be changed, the peripheral side of the lifting telescopic cylinder 84 is installed with a mounting disc 81, the lifting telescopic cylinder 84 is installed and connected on the mounting sleeve 7 through the mounting disc 81, so that the mounting and placement can be correspondingly achieved.
[0044] The concave wrapping block 8 is sleeved on the peripheral side of the concrete pole body 3 through the rotating sleeve cavity 83, so that the sleeve wrapping can be correspondingly achieved.
[0045] The above is only a specific embodiment of the utility model, but the technical features of the utility model are not limited to this. Any simple change, equivalent replacement or modification made on the basis of the utility model to solve basically the same technical problem and achieve basically the same technical effect is all covered in the protection scope of the utility model.
Claims
1. A concrete pole inspection platform, characterized in that, Include: Platform base (4); Track body (5) is symmetrically installed on platform base (4); Detection turnover mechanism is fixedly installed on the upper end left side of platform base (4); Adjusting movement mechanism is installed on platform base (4); Rotary auxiliary mechanism is installed and connected on the upper end of adjusting movement mechanism; Rotary clamping mechanism is installed and connected on detection turnover mechanism; Concrete pole body (3) is installed and connected between rotary clamping mechanism and rotary auxiliary mechanism.
2. The concrete pole inspection platform of claim 1, wherein: The detection turnover mechanism includes a support vertical plate (1) fixed to the platform base (4), a rotary motor (11) is installed on the inner side of the upper end of the support vertical plate (1), a first coupling (12) is installed and connected on the rotary motor (11), and the output shaft rod end of the rotary motor (11) is installed and connected on the rotary clamping mechanism.
3. The concrete pole inspection platform of claim 2, wherein: The rotary clamping mechanism includes a rear end shaft (24) fixed to the first coupling (12), a hollow sleeve (23) is fixed to the outer end of the rear end shaft (24), clamping telescopic cylinders (2) are installed on the outer wall of both ends of the hollow sleeve (23), the telescopic rods of the clamping telescopic cylinders (2) are installed and connected with clamping rubbers (21) through the inner side of the hollow sleeve (23), and an installation sleeve cavity (22) is arranged in the hollow sleeve (23).
4. The concrete pole inspection platform of claim 1, wherein: The adjusting movement mechanism includes a lead screw body (63), a lead screw motor (64) is installed on the left end of the lead screw body (63), a lead screw slide block (62) is installed on the upper end of the lead screw body (63), a movable panel (6) is installed on the upper end of the lead screw slide block (62), track slide blocks (61) are installed on the lower side of both ends of the movable panel (6), the movable panel (6) is sleeved on the track body (5) through the track slide blocks (61), an installation sleeve seat (7) is installed on the upper end of the movable panel (6), and a rotary auxiliary mechanism is installed on the inner side of the upper end of the installation sleeve seat (7).
5. The concrete pole inspection platform of claim 4, wherein: The rotary auxiliary mechanism includes a concave wrapping block (8), a rotary sleeve cavity (83) is arranged in the concave wrapping block (8), a rolling ball (82) is rotatably installed on the inner wall of the concave wrapping block (8), installation sleeves (85) are installed on both sides of the lower end of the concave wrapping block (8), a lifting telescopic cylinder (84) is installed on the lower end of the installation sleeve (85), the installation sleeve (85) and the lifting telescopic cylinder (84) are fixedly connected through assembly bolts (86), an installation disc (81) is installed on the circumference of the lifting telescopic cylinder (84), and the lifting telescopic cylinder (84) is installed and connected on the installation sleeve seat (7) through the installation disc (81).
6. The concrete pole inspection platform of claim 5, wherein: The concave wrapping block (8) is sleeved on the circumference of the concrete pole body (3) through the rotary sleeve cavity (83).
7. The concrete pole inspection platform of claim 2, wherein: The support vertical plate (1) and the platform base (4) are fixedly connected by welding, and the connection positions are aligned.