A type of concrete pipe lifting tool

By designing a combination of boom and lifting components, the problem of fixed hook position of existing pipe lifting tools was solved, enabling flexible lifting of concrete pipes and improving lifting efficiency.

CN224513066UActive Publication Date: 2026-07-17CHONGQING JULONG PIPE IND CO LTD
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Patent Information

Application Number
CN202521791890.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-22
Publication Date
2026-07-17
Estimated Expiration
2035-08-22

AI Technical Summary

Technical Problem

Existing pipe hangers have fixed hook positions on the lifting rods, making it impossible to adjust the lateral position of the hooks according to the different placement of the pipes, which leads to inconvenience in lifting.

Method used

A lifting device for concrete pipes was designed, including a boom, lifting components, a moving structure, a translation rail, a translation frame, active and passive translation parts, and lifting parts. By coordinating the moving structure and translation parts, the lateral position of the lifting parts can be adjusted to achieve flexible lifting of concrete pipes.

Benefits of technology

This technology allows for flexible adjustment of the lateral position of the hooks based on the different placement locations of the concrete pipes, solving the problem of inconvenient hoisting and improving hoisting efficiency.

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Abstract

This utility model relates to the field of concrete pipe hoisting technology, specifically to a concrete pipe hoisting tool, including a boom and a hoisting assembly. The hoisting assembly includes two moving structures, a translation rail, a translation frame, two active translation components, multiple driven translation rollers, and a hoisting component. The two moving structures are used to move the overall position of the boom. Then, according to the position of the concrete pipe, the active translation components on both sides of the translation frame are controlled to rotate on the translation rail. Then, in conjunction with the rotation of the multiple driven translation rollers, the translation frame is moved on the translation rail, adjusting the lateral position of the hoisting component. Then, the hoisting wire mounted on the concrete pipe is assembled with the hoisting component, and the hoisting component is controlled to lift the concrete pipe. This solves the problem that existing pipe hoisting tools, because the position of the hook on the boom is fixed, cannot adjust the lateral position of the hook according to the different placement positions of the pipe, resulting in inconvenience in pipe hoisting.
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Description

Technical Field

[0001] This utility model relates to the field of concrete pipe hoisting technology, and in particular to a concrete pipe hoisting tool. Background Technology

[0002] Reinforced concrete pipes are conveying pipes made of reinforced concrete. They are generally laid underground for drainage, sewage discharge, and other purposes. Existing reinforced concrete pipes require hoisting after they are manufactured, and the existing pipe hoisting tools do not have anchoring points, making construction difficult.

[0003] Prior art (CN204251193U) discloses a pipe lifting device, comprising: a first support beam and a second support beam, which are arranged alternately; and a lifting rod, which is erected between the first and second support beams; wherein the first and second support beams are erected on the pipe to be constructed. By arranging the first and second support beams alternately on the pipe to be constructed, and by erecting the lifting rod on the first and second support beams, workers can suspend objects to be lifted from the lifting rod.

[0004] However, with the above method, since the position of the hook on the boom is fixed, it is impossible to adjust the lateral position of the hook according to the different placement of the pipe, which makes it inconvenient to lift the pipe. Utility Model Content

[0005] The purpose of this utility model is to provide a concrete pipe lifting tool, which aims to solve the problem that existing pipe lifting tools have fixed hook positions on the lifting rods, making it impossible to adjust the lateral position of the hooks according to the different placement positions of the pipes, resulting in inconvenience in lifting the pipes.

[0006] To achieve the above objectives, this utility model provides a concrete pipe lifting tool, including a boom and lifting components; The lifting assembly includes two moving structures, a translation rail, a translation frame, two active translation components, multiple driven translation rollers, and lifting components; Two movable structures are respectively disposed on both sides of the boom; the translation rail is fixedly connected to the boom and located on one side of the boom; the translation frame is slidably connected to the translation rail and located on one side of the translation rail; two active translation components are respectively disposed on both sides of the translation frame; a plurality of driven translation rollers are respectively rotatably connected to the translation frame and located on both sides of the translation frame; the lifting component is disposed on one side of the translation frame.

[0007] The movable structure includes a movable frame, a first movable wheel, a second movable wheel, and a driving component. The movable frame is fixedly connected to the boom and located on one side of the boom. The first movable wheel is rotatably connected to the movable frame and located on one side of the movable frame. The second movable wheel is rotatably connected to the movable frame and located on one side of the movable frame. The driving component is located on one side of the movable frame.

[0008] The driving component includes a synchronous motor, a driving sprocket, a driven sprocket, and a synchronous chain. The synchronous motor is fixedly connected to the moving frame and located on one side of the moving frame. The driving sprocket is fixedly connected to the output end of the synchronous motor and located on one side of the synchronous motor. The driven sprocket is fixedly connected to the first moving wheel and located on one side of the first moving wheel. The synchronous chain is respectively disposed on one side of the driving sprocket and the driven sprocket.

[0009] The active translation component includes a frame, a drive motor, a seated bearing, a drive rod, and an active translation roller. The frame is fixedly connected to the translation frame and located on one side of the translation frame; the drive motor is fixedly connected to the frame and located on one side of the frame; the seated bearing is fixedly connected to the frame and located on one side of the frame; the drive rod is disposed inside the seated bearing and fixedly connected to the output end of the drive motor, and located on one side of the seated bearing; the active translation roller is fixedly connected to the drive rod and located on one side of the drive rod.

[0010] The lifting components include a wire rope winding machine, a wire rope, and a hook. The wire rope winding machine is fixedly connected to the boom and located on one side of the boom. The wire rope is disposed on one side of the wire rope winding machine. The hook is fixedly connected to the wire rope and located on one side of the wire rope.

[0011] This utility model discloses a concrete pipe lifting tool. During the lifting operation of a concrete pipe, two movable structures are used to move the overall position of the boom. Then, based on the position of the concrete pipe, the active translation components on both sides of the translation frame are controlled to rotate on the translation rail. This, in conjunction with the rotation of multiple driven translation rollers, causes the translation frame to translate on the translation rail, adjusting the lateral position of the lifting components. Finally, the lifting wires mounted on the concrete pipe are assembled with the lifting components, controlling the lifting components to lift the concrete pipe. This solves the problem of existing pipe lifting tools where the hook position on the boom is fixed, making it impossible to adjust the lateral position of the hook according to the different placement positions of the pipe, thus causing inconvenience in pipe lifting. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0014] Figure 2 This is a front view of the entire utility model.

[0015] Figure 3 This is a structural schematic diagram of the entire utility model from another angle.

[0016] Figure 4 This is a side view of the entire utility model.

[0017] 101-Boom, 102-Moving structure, 103-Transfer rail, 104-Transfer frame, 105-Active transfer component, 106-Driven transfer roller, 107-Lifting component, 108-Moving frame, 109-First transfer wheel, 110-Second transfer wheel, 111-Drive component, 112-Synchronous motor, 113-Active sprocket, 114-Driven sprocket, 115-Synchronous chain, 116-Frame, 117-Drive motor, 118-Bearing with seat, 119-Drive rod, 120-Active transfer roller, 121-Wire rope winding machine, 122-Wire rope, 123-Hook. Detailed Implementation

[0018] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model. Please see Figures 1-4 ,in, Figure 1 This is a schematic diagram of the overall structure of this utility model. Figure 2 This is a front view of the entire utility model. Figure 3 This is a structural schematic diagram of the entire utility model from another angle. Figure 4 This is a side view of the entire utility model.

[0019] This utility model provides a concrete pipe lifting device, including a boom 101 and a lifting assembly. The lifting assembly includes two moving structures 102, a translation rail 103, a translation frame 104, two active translation components 105, multiple driven translation rollers 106, and a lifting component 107. The moving structure 102 includes a moving frame 108, a first moving wheel 109, a second moving wheel 110, and a drive component 111. The drive component 111 includes a synchronous motor 112, a drive sprocket 113, and a driven sprocket 114. The active translation component 105 includes a frame 116, a drive motor 117, a seated bearing 118, a drive rod 119, and an active translation roller 120. The lifting component 107 includes a wire rope winding machine 121, a wire rope 122, and a hook 123. The aforementioned solution solves the problem that existing pipe lifting tools cannot adjust the lateral position of the hook according to the different placement positions of the pipes because the position of the hook on the lifting rod is fixed, which leads to inconvenience in lifting the pipes.

[0020] In this specific embodiment, the boom 101, in conjunction with the lifting assembly, is used to lift concrete pipes.

[0021] Two movable structures 102 are respectively disposed on both sides of the boom 101; the translation rail 103 is fixedly connected to the boom 101 and located on one side of the boom 101; the translation frame 104 is slidably connected to the translation rail 103 and located on one side of the translation rail 103; two active translation components 105 are respectively disposed on both sides of the translation frame 104; multiple driven translation rollers 106 are respectively rotatably connected to the translation frame 104 and located on both sides of the translation frame 104; the lifting component 107 is disposed on one side of the translation frame 104; the two movable structures 102 are used to move the overall position of the boom 101, and then... Then, based on the position of the concrete pipe, the active translation components 105 on both sides of the translation frame 104 are controlled to rotate on the translation rail 103. Then, multiple driven translation rollers 106 rotate in coordination, causing the translation frame 104 to translate on the translation rail 103, adjusting the lateral position of the lifting component 107. Then, the lifting wire mounted on the concrete pipe is assembled with the lifting component 107, and the lifting component 107 is controlled to lift the concrete pipe. This solves the problem that existing pipe lifting tools cannot adjust the lateral position of the hooks according to the different placement positions of the pipes because the hooks on the lifting rods are fixed, resulting in inconvenience in lifting the pipes.

[0022] Secondly, the movable frame 108 is fixedly connected to the boom 101 and located on one side of the boom 101; the first movable wheel 109 is rotatably connected to the movable frame 108 and located on one side of the movable frame 108; the second movable wheel 110 is rotatably connected to the movable frame 108 and located on one side of the movable frame 108; the driving member 111 is disposed on one side of the movable frame 108, and when it is necessary to move the position of the boom 101, the driving member 111 is controlled to drive the first movable wheel 109 to rotate, and the rotation of the first movable wheel 109 cooperates with the second movable wheel 110 to perform auxiliary rotation, thereby completing the overall displacement of the boom 101.

[0023] Meanwhile, the synchronous motor 112 is fixedly connected to the movable frame 108 and located on one side of the movable frame 108; the driving sprocket 113 is fixedly connected to the output end of the synchronous motor 112 and located on one side of the synchronous motor 112; the driven sprocket 114 is fixedly connected to the first movable wheel 109 and located on one side of the first movable wheel 109; the synchronous chain 115 is respectively disposed on one side of the driving sprocket 113 and the driven sprocket 114, controlling the synchronous motor 112 to drive the driving sprocket 113 to rotate, the rotation of the driving sprocket 113 to drive the synchronous chain 115 to rotate, the rotation of the synchronous chain 115 to drive the driven sprocket 114 to rotate, and the driven sprocket 114 to drive the first movable wheel 109 to rotate.

[0024] Additionally, the frame 116 is fixedly connected to the translation frame 104 and located on one side of the translation frame 104; the drive motor 117 is fixedly connected to the frame 116 and located on one side of the frame 116; the bearing 118 is fixedly connected to the frame 116 and located on one side of the frame 116; the drive rod 119 is disposed inside the bearing 118 and fixedly connected to the output end of the drive motor 117 and located on one side of the bearing 118; the active translation roller 120 is fixedly connected to the drive rod 119 and located on one side of the drive rod 119. The frame 116 is used to support the assembly of the drive motor 117, control the drive motor 117 to drive the drive rod 119 to rotate in conjunction with the bearing 118, and the drive rod 119 drives the active translation roller 120 to rotate on the translation rail 103, cooperating with the rotation of multiple driven translation rollers 106 to complete the translation of the translation frame 104.

[0025] Furthermore, the wire rope winding machine 121 is fixedly connected to the boom 101 and located on one side of the boom 101; the wire rope 122 is disposed on one side of the wire rope winding machine 121; the hook 123 is fixedly connected to the wire rope 122 and located on one side of the wire rope 122. The wire rope winding machine 121 is used to wind up and unwind the wire rope 122 and the hook 123 when hoisting the concrete pipe. The wire rope winding machine 121 is existing technology, specifically referring to the JM electric control slow speed large tonnage winch model JM10-JM65.

[0026] When using this utility model, the drive component 111 is controlled to drive the first moving wheel 109 to rotate. The rotation of the first moving wheel 109, in conjunction with the second moving wheel 110, assists in the rotation, completing the overall displacement of the boom 101, so that the boom 101 moves to the hoisting position. Then, according to the position of the concrete pipe, the drive motor 117, in conjunction with the bearing 118, is controlled to drive the drive rod 119 to rotate. The drive rod 119 drives the active translation roller 120 to rotate on the translation rail 103, in conjunction with multiple... The driven translation roller 106 rotates to complete the translation of the translation frame 104, adjust the lateral position of the lifting component 107, and then assemble the lifting wire on the concrete pipe with the hook 123. The wire rope winding machine 121 is controlled to wind up the wire rope 122 and the hook 123 to lift the concrete pipe. This solves the problem that existing pipe lifting tools cannot adjust the lateral position of the hook according to the different placement of the pipe because the position of the hook on the lifting rod is fixed, which leads to the inconvenience of lifting the pipe.

[0027] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A concrete pipe lifting device, comprising a boom, characterized in that, It also includes lifting components; The lifting assembly includes two moving structures, a translation rail, a translation frame, two active translation components, multiple driven translation rollers, and lifting components; Two movable structures are respectively disposed on both sides of the boom; the translation rail is fixedly connected to the boom and located on one side of the boom; the translation frame is slidably connected to the translation rail and located on one side of the translation rail; two active translation components are respectively disposed on both sides of the translation frame; a plurality of driven translation rollers are respectively rotatably connected to the translation frame and located on both sides of the translation frame; the lifting component is disposed on one side of the translation frame.

2. The concrete pipe lifting tool as described in claim 1, characterized in that, The movable structure includes a movable frame, a first movable wheel, a second movable wheel, and a driving component. The movable frame is fixedly connected to the boom and located on one side of the boom. The first movable wheel is rotatably connected to the movable frame and located on one side of the movable frame. The second movable wheel is rotatably connected to the movable frame and located on one side of the movable frame. The driving component is disposed on one side of the movable frame.

3. A concrete pipe lifting tool as described in claim 2, characterized in that, The driving component includes a synchronous motor, a driving sprocket, a driven sprocket, and a synchronous chain. The synchronous motor is fixedly connected to the moving frame and located on one side of the moving frame. The driving sprocket is fixedly connected to the output end of the synchronous motor and located on one side of the synchronous motor. The driven sprocket is fixedly connected to the first moving wheel and located on one side of the first moving wheel. The synchronous chain is respectively disposed on one side of the driving sprocket and the driven sprocket.

4. A concrete pipe lifting tool as described in claim 3, characterized in that, The active translation component includes a frame, a drive motor, a mounted bearing, a drive rod, and an active translation roller. The frame is fixedly connected to the translation frame and located on one side of the translation frame; the drive motor is fixedly connected to the frame and located on one side of the frame; the mounted bearing is fixedly connected to the frame and located on one side of the frame; the drive rod is disposed inside the mounted bearing and fixedly connected to the output end of the drive motor, and located on one side of the mounted bearing; the active translation roller is fixedly connected to the drive rod and located on one side of the drive rod.

5. A concrete pipe lifting tool as described in claim 4, characterized in that, The lifting components include a wire rope winding machine, a wire rope, and a hook. The wire rope winding machine is fixedly connected to the boom and located on one side of the boom. The wire rope is disposed on one side of the wire rope winding machine. The hook is fixedly connected to the wire rope and located on one side of the wire rope.

Citation Information

Patent Citations

  • Hanger for pipeline

    CN204251193U