Adjustable frame body transportation device
By designing an adjustable scaffolding transport device, utilizing scaffolding steel pipes and pulley structures, the problem of low scaffolding transport efficiency was solved, enabling fast and safe scaffolding transport, improving construction efficiency and reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-11
- Publication Date
- 2026-04-07
AI Technical Summary
Existing technologies have low efficiency in transporting scaffolding, especially when hoisting is restricted, making it difficult to quickly and safely transport the dismantled scaffolding to the designated location, and manual transport is time-consuming and labor-intensive.
An adjustable frame transport device was designed, including an adjustable frame stacking device and an adjustable transport track. Utilizing the adjustable structure composed of frame steel pipes and pulleys, the frame can be transported quickly by manual pushing, adapting to different site conditions.
It enables rapid and efficient transportation of the frame, saves manpower, improves construction efficiency, adapts to various transportation needs, does not affect the main structure, is easy to assemble and disassemble, and reduces construction costs.
Smart Images

Figure CN224090807U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of adjustable frame body transport device, which is a device for transporting frame body used in construction. BACKGROUND
[0002] Frame body is the most used turnover tool material in construction site, and frame body transportation is an important link restricting construction progress, which needs to adapt to various requirements in different construction stages and different site environments during construction. At present, the common method of frame body transportation is to use large mechanical equipment such as tower crane for hoisting and transportation, and the next process is carried out after transportation to construction site or storage yard. When it is affected by site, mechanical equipment hoisting radius or site construction and cannot be directly hoisted to the pointing location, how to transport frame body becomes a problem. When frame body is removed, it cannot be directly hoisted due to the influence of completed horizontal structure in site, and needs to be transported to the specified location before hoisting. If manual transportation is used, it is time-consuming and laborious, and the efficiency is low. Therefore, a frame body transportation device capable of quickly and efficiently transporting removed frame body to the specified location is urgently needed. SUMMARY
[0003] In view of the above problems existing in the prior art, the utility model provides a frame body transportation device with simple structure, easy assembly and adjustability, which can quickly and efficiently transport frame body to the specified location.
[0004] The utility model is realized by the following technical scheme: a kind of adjustable frame body transport device, characterized by: including adjustable frame body stacking device and adjustable transport track, adjustable transport track includes two long steel pipes parallelly arranged along the direction of frame body transport device, multiple wood squares and multiple first short steel pipes vertically arranged at the lower part of the long steel pipe, the long steel pipe is detachably fixedly connected with the wood square and the first short steel pipe at its lower part;Adjustable frame body stacking device is arranged on the upper part of adjustable transport track, and the adjustable frame body stacking device includes four vertical steel pipes arranged at four corner positions, two middle steel pipes, and multiple second short steel pipes, the bottom end of the four vertical steel pipes is connected with pulley that can cooperate with the long steel pipe of adjustable transport track, two middle steel pipes are arranged on both sides along the direction of frame body transport device and are connected with the lower part of two vertical steel pipes on the same side by fastener respectively, multiple second short steel pipes are arranged at the upper part between two middle steel pipes, the second short steel pipe is connected with middle steel pipe by fastener, one second short steel pipe is arranged at the lower part of both ends of two middle steel pipes and connected with vertical steel pipe, the second short steel pipe is connected with vertical steel pipe by fastener, and the adjustable frame body stacking device is movably arranged on the two long steel pipes of adjustable transport track by four pulleys;Long steel pipe, middle steel pipe, first short steel pipe and second short steel pipe all adopt frame steel pipe of scaffold.
[0005] The adjustable frame body stacking device is arranged on the adjustable transportation track through a pulley and can move along the adjustable transportation track, When in use, the frame body steel pipes to be transported are placed on the adjustable frame body stacking device, and the transportation of the frame body steel pipes can be realized by manually pushing, The adjustable frame body stacking device can be adjusted, and the length, width and height of the adjustable frame body stacking device can be adjusted by adjusting the fixing positions of the steel pipes according to requirements, so that various transportation requirements and site conditions can be adapted, and the adjustable transportation track can also be adjusted in width by adjusting the fixing positions of the long steel pipes.
[0006] Further, the wheel surface of the pulley is provided with an arc-shaped groove.
[0007] The adjustable frame body stacking device is arranged on the adjustable transportation track through a pulley and can move along the adjustable transportation track, When in use, the frame body steel pipes to be transported are placed on the adjustable frame body stacking device, and the transportation of the frame body steel pipes can be realized by manually pushing, The adjustable frame body stacking device can be adjusted, and the length, width and height of the adjustable frame body stacking device can be adjusted by adjusting the fixing positions of the steel pipes according to requirements, so that various transportation requirements and site conditions can be adapted, and the adjustable transportation track can also be adjusted in width by adjusting the fixing positions of the long steel pipes. BRIEF DESCRIPTION OF DRAWINGS
[0008] Figure 1 is a front view of the utility model;
[0009] Figure 2 is Figure 1 A-A sectional view of the utility model;
[0010] Figure 3 is Figure 2 the enlarged schematic view of the B part in
[0011] Figure 4 and Figure 5 is a use state schematic view of the utility model;
[0012] In the drawing, 1 is a batten, 2 is a first short steel pipe, 3 is a long steel pipe, 4 is a pulley, 5 is a middle steel pipe, 6 is a vertical steel pipe, 7 is a second short steel pipe, and 8 is a frame body steel pipe. Detailed Implementation
[0013] The present invention will be further described below through non-limiting embodiments and in conjunction with the accompanying drawings:
[0014] As shown in the attached figure, an adjustable scaffolding transport device includes an adjustable scaffolding stacking device and an adjustable transport track. The adjustable transport track includes two long steel pipes 3 arranged parallel to each other along the transport direction of the scaffolding device, multiple timber beams 1 and multiple first short steel pipes 2 arranged perpendicularly to the two long steel pipes 3 at their lower parts. The timber beams 1 and first short steel pipes 2 are spaced apart. The long steel pipes 3 are detachably fixed to the timber beams 1 and first short steel pipes 2 below them using fasteners or other connecting structures. The timber beams 1 have dimensions of 50×80×1000mm. The long steel pipes 3 and first short steel pipes 2 are both scaffolding steel pipes used for construction scaffolding. The long steel pipes 3 have a diameter of 48mm, a wall thickness of 35mm, and a length of 6000mm, while the first short steel pipes 2 have a diameter of 48mm, a wall thickness of 35mm, and a length of 1000mm. The fasteners are also steel pipe scaffolding fasteners. An adjustable stacking device is movably mounted on an adjustable transport track. The adjustable stacking device includes four vertical steel pipes 6 positioned at the four corners, two middle steel pipes 5, and several second short steel pipes 7. The bottom ends of the four vertical steel pipes 6 are each connected to a rotatable pulley 4 that can cooperate with the long steel pipes 3 of the adjustable transport track. The two middle steel pipes 5 are positioned on both sides along the direction of travel of the stacking device and are respectively connected to the lower parts of the two vertical steel pipes 6 on the same side by fasteners. Several second short steel pipes 7 are spaced apart on the upper part of the two middle steel pipes 5. The second short steel pipes 7 are connected and fixed to the middle steel pipes 5 by fasteners. At the lower ends of the two middle steel pipes 5, a second short steel pipe 7 is respectively connected to the vertical steel pipe 6. The second short steel pipes 7 are detachably connected to the vertical steel pipes 6 by fasteners. The adjustable stacking device is movably mounted on the two long steel pipes 3 of the adjustable transport track by four pulleys 4. The central steel pipe 5, vertical steel pipe 6, and second short steel pipe 7 all use scaffolding steel pipes for construction scaffolding. The central steel pipe 5 has a diameter of 48mm, a wall thickness of 35mm, and a length of 3000mm. The vertical steel pipe 6 and the second short steel pipe 7 have a diameter of 48mm, a wall thickness of 35mm, and a length of 1000mm. The fasteners for connecting the steel pipes are steel pipe scaffolding fasteners.
[0015] To ensure the reliability of the pulley 4's movement on the long steel pipe 3, it is preferable that the pulley 4 has an arc-shaped groove on its wheel surface, and the pulley 4 reliably matches the surface of the long steel pipe 3 through its arc-shaped groove.
[0016] When using this utility model: First, lay the timber 1 and the first short steel pipe 2 vertically at a fixed interval according to the direction of travel of the frame transport device. Then, lay the two long steel pipes 3 parallel to the direction of travel of the frame transport device and fix them with the timber 1 and the first short steel pipe 2 to form an adjustable transport track.
[0017] Then assemble the adjustable frame stacking device. Place the assembled adjustable frame stacking device on the adjustable transport track using four pulleys 4, thus completing the assembly. Place the frame steel pipes to be transported onto the adjustable frame stacking device, and transport the frame steel pipes by manually pushing it.
[0018] Both the adjustable frame stacking device and the adjustable transport track can be adjusted according to the on-site transportation needs and conditions. The length, width, and height of the frame transport device can be adjusted by changing the fixed position of each steel pipe as needed to adapt to various on-site transportation needs and conditions.
[0019] This utility model has a simple structure, is easy to assemble and disassemble, and can be assembled using locally sourced materials. It can be used to conveniently and quickly transport dismantled scaffold steel pipes to designated hoisting sites, saving manpower and increasing construction efficiency. It is especially suitable for use in situations where hoisting operations are restricted.
[0020] The other parts in this embodiment are all existing technologies and will not be described in detail here.
Claims
1. An adjustable frame transport device, characterized in that: The system includes an adjustable frame stacking device and an adjustable transport track. The adjustable transport track comprises two long steel pipes arranged parallel to the direction of travel of the frame transport device, multiple wooden beams and multiple first short steel pipes positioned perpendicular to the two long steel pipes at their lower parts, and the long steel pipes are detachably fixed to the wooden beams and first short steel pipes below them. The adjustable frame stacking device is located on the upper part of the adjustable transport track and includes four vertical steel pipes positioned at the four corners, two middle steel pipes, and several second short steel pipes. The bottom ends of the four vertical steel pipes are all connected to pulleys that can cooperate with the long steel pipes of the adjustable transport track. The two middle steel pipes... Steel pipes are arranged on both sides along the direction of travel of the scaffolding transport device and are connected to the lower part of two vertical steel pipes on the same side by fasteners. Multiple second short steel pipes are arranged at intervals on the upper part between the two middle steel pipes. The second short steel pipes are connected to the middle steel pipes by fasteners. A second short steel pipe is arranged at the lower part of each end of the two middle steel pipes and connected to the vertical steel pipe. The second short steel pipes are connected to the vertical steel pipes by fasteners. The adjustable scaffolding stacking device is movably set on the two long steel pipes of the adjustable transport track by four pulleys. The long steel pipes, middle steel pipes, first short steel pipes, and second short steel pipes are all scaffolding scaffolding steel pipes.
2. The adjustable frame transport device according to claim 1, characterized in that: The pulley surface has an arc-shaped groove.