Scaffold position stabilizing and clamping device for building construction

By designing a support mechanism and a motor-driven scaffolding stabilization and clamping device, the problem of insufficient stability of scaffolding after installation was solved, achieving a balance between enhanced stability and rapid assembly and disassembly, adapting to different terrains, and improving construction safety and efficiency.

CN224259829UActive Publication Date: 2026-05-19CHINA OVERSEAS CONSTR LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHINA OVERSEAS CONSTR LTD
Filing Date
2025-06-30
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

Existing construction scaffolding lacks effective support mechanisms after installation, resulting in insufficient stability. It is prone to swaying or tilting, especially on uneven ground or under heavy loads, posing safety hazards.

Method used

A scaffolding position stabilization and clamping device was designed, which includes a support mechanism, a moving mechanism and an electric motor drive. Through components such as limit frames, fixing plates, threaded rods, cylinders, sliding wheels and timing belts, the device can achieve stable fixation of the scaffolding and adapt to different terrains.

Benefits of technology

It enhances the overall stability of the scaffolding, prevents swaying or tilting, improves construction safety, maintains rapid assembly and disassembly performance, adapts to different terrain conditions, and improves construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a scaffold position stabilizing and clamping device for building construction, which relates to the field of building construction and is characterized in that supporting mechanisms are arranged on two sides of a scaffold body, each supporting mechanism comprises a pair of limiting frames, a pair of fixing plates are arranged on the inner sides of the limiting frames, the fixing plates are matched with the scaffold body, and the limiting frames are arranged on the fixing plates. And a first threaded rod is installed on the fixing plate, the first threaded rod penetrates through the limiting frame, the first threaded rod is rotatably installed on the fixing plate, and supporting frames are arranged on the two sides of the scaffold body. The supporting mechanism has the advantages that the overall stability of the scaffold body is effectively enhanced, the scaffold body is prevented from shaking or inclining under complex working conditions, the supporting mechanism is simple in structure, convenient and fast to install and capable of adapting to different topographic conditions, construction safety is remarkably improved, meanwhile, the design does not affect the quick disassembly and assembly performance of the scaffold, and the construction cost is reduced. And on the basis of guaranteeing the structural strength, the construction operation efficiency is improved, and high practical value and popularization significance are achieved.
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Description

Technical Field

[0001] This utility model relates to the field of building construction, and in particular to a scaffolding position stabilization and clamping device for building construction. Background Technology

[0002] Construction scaffolding is a temporary support structure mainly used to provide workers with a safe and stable high-altitude working platform and to assist in material transportation and construction operations. It is usually composed of components such as uprights, horizontal bars, diagonal braces, scaffold boards, connectors and protective facilities. Through modular design, it can be quickly assembled and disassembled to meet the needs of different building heights, shapes and construction stages.

[0003] Currently, scaffolding serves as a temporary support structure during construction. However, existing scaffolding often lacks effective auxiliary support mechanisms after installation, resulting in insufficient overall stability. This is especially true when the ground is uneven or under heavy loads, making it prone to swaying or even tilting, posing safety hazards. Utility Model Content

[0004] The purpose of this invention is to provide a stabilizing clamping device for scaffolding used in construction, which solves the problem that in the prior art, scaffolding lacks a supporting mechanism after installation, resulting in instability and potential collapse.

[0005] To achieve the aforementioned objectives, the technical solution adopted by this utility model is as follows:

[0006] The scaffold body is provided with support mechanisms on both sides. Each support mechanism includes a pair of limiting frames. A pair of fixing plates are provided on the inner side of each limiting frame. The fixing plates are matched with the scaffold body. A first threaded rod is installed on each fixing plate. The first threaded rod passes through the limiting frame and is rotatably mounted on the fixing plate. Support frames are provided on both sides of the scaffold body. Hinges are installed on the support frames and the limiting frames respectively. A cylinder is hinged between a pair of hinge blocks.

[0007] The installation of the limit bracket facilitates the support function, thus simplifying the setting of the fixing plate. The installation of the first threaded rod allows the fixing plate to move when rotated, thus facilitating the fixing plate's fixation of the scaffold body. The installation of the support frame facilitates the support function, making it convenient to install the moving mechanism on it. The installation of the cylinder facilitates the adjustment of the fixing angle of the fixing plate on the scaffold body, making the fixing plate's fixation of the scaffold body more adaptable.

[0008] As an improvement, the moving mechanism includes a pair of support chambers, which are fixedly installed under the support frame, and anti-slip pads are installed under the support chambers.

[0009] The installation of the support chamber facilitates support on the ground, thereby increasing the friction between the anti-slip mat and the ground and ensuring overall stability.

[0010] As an improvement, the support chamber is provided with a pair of sliding wheels, and the sliding chamber is fixedly installed on the sliding wheels.

[0011] The installation of pulleys facilitates rotation, which in turn facilitates the movement of the entire assembly. The installation of sliding chambers facilitates the descent of the pulleys, allowing them to be supported on the ground.

[0012] As an improvement, the support chamber is provided with grooves that match the sliding wheel and the sliding chamber, and a pair of second threaded rods are rotatably mounted under the support frame.

[0013] The installation of the second threaded rod facilitates rotational movement, which in turn drives the sliding chamber to descend.

[0014] As an improvement, the sliding chamber is matched with a second threaded rod, on which a timing pulley is mounted.

[0015] The installation of the timing pulley facilitates rotation based on the rotation of the second threaded rod, thus making it easy to transmit rotational power to the timing belt, which in turn drives the pair of second threaded rods to move synchronously when rotating.

[0016] As an improvement, a timing belt is fitted between the pair of timing pulleys, and a motor is fixedly installed on the support frame. The motor passes through the support frame and is connected to the second threaded rod.

[0017] The installation of the electric motor facilitates the conversion of electrical energy into mechanical energy, which in turn helps to drive the rotation of the second threaded rod.

[0018] The beneficial effects of this utility model are as follows: by setting up the corresponding mechanism, the overall stability of the frame is effectively enhanced, preventing it from swaying or tilting under complex working conditions. The support mechanism has a simple structure, is easy to install, and can adapt to different terrain conditions, significantly improving construction safety. At the same time, the design does not affect the quick assembly and disassembly performance of the scaffolding, and improves the efficiency of construction operations while ensuring structural strength. It has high practical value and promotion significance. Attached Figure Description

[0019] Figure 1 This is a front view of a scaffolding position stabilization and clamping device for building construction according to the present invention.

[0020] Figure 2 for Figure 1 Schematic diagram of the structure at point A in the middle.

[0021] In the diagram: 1. Scaffold body; 2. Support mechanism; 201. Limiting frame; 202. Fixing plate; 203. First threaded rod; 204. Support frame; 205. Hinge block; 206. Cylinder; 3. Moving mechanism; 301. Support compartment; 302. Anti-slip mat; 303. Sliding wheel; 304. Sliding compartment; 305. Second threaded rod; 306. Synchronous pulley; 307. Synchronous belt; 308. Electric motor. Detailed Implementation

[0022] To make the content of this utility model easier to understand, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of this utility model. Identical components are represented by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "up," and "down" used in the following description refer to directions in the accompanying drawings, while the terms "inner" and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.

[0023] like Figure 1 and Figure 2 As shown, the scaffold body 1 is provided with support mechanisms 2 on both sides. The support mechanism 2 includes a pair of limiting frames 201. A pair of fixing plates 202 are provided on the inner side of the limiting frames 201. The fixing plates 202 are matched with the scaffold body 1. A first threaded rod 203 is installed on the fixing plate 202. The first threaded rod 203 passes through the limiting frame 201 and is rotatably installed on the fixing plate 202. The scaffold body 1 is provided with support frames 204 on both sides. Hinges 205 are respectively installed on the support frames 204 and the limiting frames 201. A cylinder 206 is hinged between the pair of hinges 205.

[0024] The installation of the limiting bracket 201 facilitates the support function, thus making it easier to set up the fixing plate 202. The installation of the first threaded rod 203 facilitates the movement of the fixing plate 202 by rotating the first threaded rod 203, thus facilitating the fixing plate 202 to fix the scaffold body 1. The installation of the support bracket 204 facilitates the support function, thus facilitating the installation of the moving mechanism 3 on it. The installation of the cylinder 206 facilitates the adjustment of the angle at which the fixing plate 202 fixes the scaffold body 1, making the fixing plate 202 more adaptable to fixing the scaffold body 1.

[0025] like Figure 1 and Figure 2 As shown, the moving mechanism 3 includes a pair of support chambers 301, which are fixedly installed under the support frame 204, and anti-slip pads 302 are installed under the support chambers 301.

[0026] The installation of the support chamber 301 facilitates support on the ground, thereby increasing the friction between the anti-slip mat 302 and the ground and ensuring overall stability.

[0027] The support chamber 301 is equipped with a pair of sliding wheels 303, and a sliding chamber 304 is fixedly installed on the sliding wheels 303.

[0028] The installation of the sliding wheel 303 facilitates rotation, thereby enabling the subsequent movement of the entire assembly. The installation of the sliding chamber 304 facilitates the descent of the sliding wheel 303, allowing it to be supported on the ground.

[0029] The support chamber 301 has grooves that match the sliding wheel 303 and the sliding chamber 304, and a pair of second threaded rods 305 are rotatably installed under the support frame 204.

[0030] The installation of the second threaded rod 305 facilitates the rotational motion effect, thus driving the sliding chamber 304 to descend.

[0031] The sliding chamber 304 is matched with the second threaded rod 305, and the second threaded rod 305 is equipped with a synchronous pulley 306.

[0032] The installation of the timing pulley 306 facilitates rotation based on the rotation of the second threaded rod 305, thus facilitating the transmission of rotational power to the timing belt 307, which in turn drives the pair of second threaded rods 305 to move synchronously when rotating.

[0033] A timing belt 307 is fitted between a pair of timing pulleys 306. A motor 308 is fixedly installed on the support frame 204. The motor 308 passes through the support frame 204 and is connected to the second threaded rod 305.

[0034] The installation of the electric motor 308 facilitates the conversion of electrical energy into mechanical energy, which in turn helps to drive the rotation of the second threaded rod 305.

[0035] During use, the motor 308 drives the second threaded rod 305 to rotate, which in turn causes the sliding chamber 304 to move downward. This movement of the sliding chamber 304 causes the sliding wheel 303 to descend, and when the sliding wheel 303 is supported on the ground, it moves the entire clamping device. Once it reaches the appropriate position, the operation can be reversed, retracting the sliding wheel 303 into the support chamber 301. The anti-slip pad 302 then increases friction with the ground. By extending the hinge of the cylinder 206, the limiting frame 201 can be adjusted to the appropriate position. Subsequently, rotating the first threaded rod 203 causes it to move within the limiting frame 201, which in turn causes the fixing plate 202 to clamp and fix the scaffold body 1, thus ensuring the stability of the scaffold body 1.

[0036] The above description is only a preferred embodiment of this utility model patent and is not intended to limit this utility model patent. Any modifications, equivalent substitutions and improvements made within the spirit and principles of this utility model patent should be included within the protection scope of this utility model patent.

Claims

1. A scaffolding position stabilization and clamping device for building construction, characterized in that, include: Scaffold body (1); A support mechanism (2) is installed on both sides of the scaffold body (1). The support mechanism (2) includes a pair of limiting frames (201). A pair of fixing plates (202) are provided on the inner side of the limiting frame (201). The fixing plate (202) matches the scaffold body (1). A first threaded rod (203) is installed on the fixing plate (202). The first threaded rod (203) passes through the limiting frame (201) and is rotatably installed on the fixing plate (202). Support frames (204) are provided on both sides of the scaffold body (1). Hinges (205) are respectively installed on the support frame (204) and the limiting frame (201). A cylinder (206) is hinged between a pair of hinge blocks (205). The moving mechanism (3) is installed on both sides of the scaffold body (1).

2. The scaffolding position stabilization and clamping device for building construction according to claim 1, characterized in that, The moving mechanism (3) includes a pair of support chambers (301), which are fixedly installed under the support frame (204), and an anti-slip pad (302) is installed under the support chamber (301).

3. The scaffolding position stabilization and clamping device for building construction according to claim 2, characterized in that, The support chamber (301) is provided with a pair of sliding wheels (303), and a sliding chamber (304) is fixedly installed on the sliding wheels (303).

4. The scaffolding position stabilization and clamping device for building construction according to claim 3, characterized in that, The support chamber (301) has grooves that match the sliding wheel (303) and the sliding chamber (304), and a pair of second threaded rods (305) are rotatably installed under the support frame (204).

5. A scaffolding position stabilization and clamping device for building construction according to claim 4, characterized in that, The sliding chamber (304) is matched with the second threaded rod (305), on which a synchronous pulley (306) is mounted.

6. The scaffolding position stabilization and clamping device for building construction according to claim 5, characterized in that, A timing belt (307) is sleeved between a pair of timing pulleys (306), and a motor (308) is fixedly installed on the support frame (204). The motor (308) passes through the support frame (204) and is connected to the second threaded rod (305).