Industrial building construction scaffold

CN224621050UActive Publication Date: 2026-08-11GUIZHOU XINHONGLIN CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-18
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]本实用新型的目的在于提供一种工业建筑施工脚手架,以解决上述背景技术中提出的常规的工业建筑施工脚手架,是通过螺栓螺母对脚手架的连接件进行固定,但是螺栓螺母在长时间的使用后,雨水、湿气会使螺栓螺纹和螺母内壁生锈,轻则导致后续拆卸困难,重则锈蚀导致螺栓强度下降,降低了脚手架的稳定性和安全性的问题

Benefits of technology

本实用新型的一种工业建筑施工脚手架,在立杆之间设有连接组件、支撑组件和稳定组件,在支撑组件之间设有承载组件,连接组件不仅可以对相互连接的立杆进行固定,而且可以快速与支撑组件进行连接,在连接的过程中没有使用容易生锈的螺栓螺母,使脚手架在搭建的过程中可以快速的拆卸和稳定的安装,而稳定组件和承载组件都可以快速在脚手架上进行安装和拆卸,这些设计提高了脚手架的稳定性和安全性。

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Abstract

This utility model discloses an industrial building construction scaffold, including uprights, with a connecting cylinder fixed to the top of the upright and a connecting groove opened on the bottom surface of the upright. Limiting rings are fixed in an array on the surface of the upright. It also includes connecting components disposed on the surface of the upright for fixed connection of the scaffold; support components disposed between the connecting components for quick installation and disassembly of the scaffold; load-bearing components disposed between the support components for quickly erecting a construction platform for the scaffold; and stabilizing components disposed between the connecting components to improve the stability of the scaffold. The connecting components can fix the interconnected uprights, and the connection process does not use easily rusting bolts and nuts, allowing for quick disassembly and stable installation of the scaffold during construction. Both the stabilizing and load-bearing components can be quickly installed and disassembled on the scaffold. These designs improve the stability and safety of the scaffold.
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Description

Technical Field

[0001] This utility model relates to the field of scaffolding technology, specifically to an industrial building construction scaffolding. Background Technology

[0002] Industrial construction scaffolding is a temporary support and operating platform system erected during the construction of industrial buildings (such as factories, warehouses, large equipment foundations, power plant structures, etc.) to meet the needs of workers for safe operation, material transportation, and component installation. Compared with civil construction scaffolding, it is more focused on adapting to the characteristics of industrial buildings, such as "large component size, high construction load, complex working space, and frequent collaboration with heavy equipment," and is a core temporary facility for ensuring safety and improving efficiency in industrial construction.

[0003] Conventional industrial construction scaffolding uses bolts and nuts to secure the connecting parts. However, after prolonged use, rainwater and moisture can cause the bolt threads and the inner walls of the nuts to rust. This can lead to difficulties in disassembly or, in severe cases, corrosion that reduces the strength of the bolts, thereby decreasing the stability and safety of the scaffolding. Therefore, there is an urgent need for a new type of industrial construction scaffolding to solve these problems. Utility Model Content

[0004] The purpose of this utility model is to provide an industrial building construction scaffold to solve the problem mentioned in the background art that conventional industrial building construction scaffolds use bolts and nuts to fix the scaffold connectors. However, after a long period of use, rainwater and moisture will cause the bolt threads and the inner wall of the nut to rust. This can lead to difficulties in subsequent disassembly or, in severe cases, corrosion that reduces the strength of the bolts, thereby reducing the stability and safety of the scaffold.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an industrial building construction scaffold, comprising uprights, a connecting cylinder fixed to the top of the uprights, a connecting groove formed on the bottom surface of the uprights, and limit rings fixed in an array on the surface of the uprights; further comprising connecting components disposed on the surface of the uprights for fixed connection of the scaffold; support components disposed between the connecting components for quick installation and disassembly of the scaffold; load-bearing components disposed between the support components for quickly erecting a construction platform for the scaffold; and stabilizing components disposed between the connecting components for improving the stability of the scaffold.

[0006] Furthermore, the connecting component includes a limiting frame, a connecting block is fixed to the surface of the limiting frame, and the connecting block has an axisymmetric structure about the limiting frame. The surface of the limiting frame is provided with a fixing rod.

[0007] Furthermore, the support assembly includes a support rod, with fixing blocks at both ends of the support rod. A connecting groove is formed on the bottom surface of the fixing block, and the connecting block is movably connected to the connecting groove.

[0008] Furthermore, the surface of the fixing block is provided with a limiting piece, and the limiting piece penetrates the side of the connecting groove. The surface of the limiting piece is provided with a movable groove, and a positioning block is provided in the movable groove. The positioning block is movably connected to the movable groove. The surface of the support rod is arrayed with positioning grooves, and the positioning grooves penetrate the support rod.

[0009] Furthermore, the bearing component includes a bearing plate, and a positioning plate is fixedly arranged on the bottom surface of the bearing plate. The positioning plate is movably connected to the positioning groove. An adjustment groove is provided in the positioning plate. A limiting post is provided in the adjustment groove. The two ends of the limiting post pass through the two sides of the positioning plate respectively. A friction block is fixed on the surface of the limiting post. The friction block is movably connected to the adjustment groove.

[0010] Furthermore, the stabilizing component includes a stabilizing rod, the surface of which is provided with a stabilizing groove, and a fixed rod is movably connected to the stabilizing groove. The inner side of the stabilizing groove is provided with a telescopic groove, and a threaded rod is provided in the telescopic groove and is threadedly connected to the telescopic groove. An adjusting nut is fixed on the surface of the threaded rod, and a pressing block is provided at one end of the threaded rod, and the pressing block is rotatably connected to one end of the threaded rod.

[0011] Compared with the prior art, the beneficial effects of this utility model are: This utility model discloses an industrial building construction scaffold, which includes connecting components, supporting components, and stabilizing components between the uprights, and load-bearing components between the supporting components. The connecting components not only fix the interconnected uprights but also allow for quick connection to the supporting components. The connection process eliminates the use of easily rusting bolts and nuts, enabling rapid disassembly and stable installation of the scaffold during erection. Both the stabilizing and load-bearing components can be quickly installed and disassembled on the scaffold. These design features enhance the stability and safety of the scaffold. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is an exploded view of the overall structure of this utility model; Figure 3 This is a schematic diagram of the structure of the upright pole of this utility model; Figure 4 This is a sectional view of the upright pole of this utility model; Figure 5 This is a schematic diagram of the structure of the connecting component of this utility model; Figure 6This is a schematic diagram of the structure of the support component of this utility model; Figure 7 This is a cross-sectional view of the support component of this utility model; Figure 8 This is an exploded view of the structure of the support component of this utility model; Figure 9 This is a schematic diagram of the structure of the load-bearing component of this utility model; Figure 10 This is a cross-sectional view of the load-bearing component of this utility model; Figure 11 This is an exploded view of the structure of the load-bearing component of this utility model; Figure 12 This is a cross-sectional view of the stabilizing component of this utility model; Figure 13 This is an exploded view of the structure of the stabilizing component of this utility model.

[0013] In the diagram: 1. Connecting assembly; 101. Limiting frame; 102. Fixing rod; 103. Connecting block; 2. Supporting assembly; 201. Fixing block; 202. Supporting rod; 203. Positioning groove; 204. Connecting groove; 205. Limiting piece; 206. Positioning block; 207. Movable groove; 3. Bearing assembly; 301. Bearing plate; 302. Positioning plate; 303. Limiting post; 304. Adjusting groove; 305. Friction block; 4. Stabilizing assembly; 401. Telescopic groove; 402. Threaded rod; 403. Stabilizing rod; 404. Pressing block; 405. Adjusting nut; 406. Stabilizing groove; 5. Upright pole; 6. Limiting ring; 7. Connecting cylinder; 8. Connecting groove. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0015] Please see Figures 1-13 This utility model provides an industrial building construction scaffold, including uprights 5, with a connecting tube 7 fixed at the top of the uprights 5, a connecting groove 8 on the bottom surface of the uprights 5, and limit rings 6 fixed in an array on the surface of the uprights 5; it also includes connecting components 1, which are disposed on the surface of the uprights 5 for fixed connection of the scaffold; support components 2, which are disposed between the connecting components 1 for quick installation and disassembly of the scaffold; load-bearing components 3, which are disposed between the support components 2 for quick construction of the scaffold construction platform; and stabilizing components 4, which are disposed between the connecting components 1 for improving the stability of the scaffold. Specifically, the connecting component 1 can not only fix the interconnected uprights 5, but also quickly connect to the support component 2. No bolts and nuts that are prone to rust are used in the connection process, which allows the scaffolding to be quickly disassembled and stably installed during the construction process. The stabilizing component 4 and the load-bearing component 3 can be quickly installed and disassembled on the scaffolding. These designs improve the stability and safety of the scaffolding. The connecting component 1 includes a limiting frame 101, a connecting block 103 is fixed on the surface of the limiting frame 101, and the connecting block 103 is axially symmetrical about the limiting frame 101. A fixing rod 102 is provided on the surface of the limiting frame 101. Specifically, the limiting frame 101 in the connecting component 1 can be rotated and opened to easily engage with the limiting ring 6 on the surface of the upright 5, while the fixing rod 102 on the surface of the limiting frame 101 is for installing the connecting stabilizing component 4. The support assembly 2 includes a support rod 202, with fixing blocks 201 at both ends of the support rod 202. The bottom surface of the fixing blocks 201 has a connecting groove 204, and the connecting block 103 is movably connected to the connecting groove 204. The surface of the fixing blocks 201 has a limiting piece 205, which penetrates the side of the connecting groove 204. The surface of the limiting piece 205 has a movable groove 207, and a positioning block 206 is provided in the movable groove 207. The positioning block 206 is movably connected to the movable groove 207. The surface of the support rod 202 has a series of positioning grooves 203, which penetrate the support rod 202. Specifically, the fixing blocks 201 at both ends of the support rod 202 can slide into the top surface of the connecting block 103 through the connecting groove 204 to fix the limiting frame 101. Then, the connecting block 103 is limited by the limiting piece 205, and the limiting piece 205 is fixed by the positioning block 206. This design makes the installation and disassembly of the scaffold uprights 5 and the support rod 202 convenient and quick. The support component 3 includes a support plate 301, and a positioning plate 302 is fixedly arranged on the bottom surface of the support plate 301. The positioning plate 302 is movably connected to the positioning groove 203. An adjustment groove 304 is provided in the positioning plate 302. A limiting post 303 is provided in the adjustment groove 304. The two ends of the limiting post 303 pass through the two sides of the positioning plate 302 respectively. A friction block 305 is fixed on the surface of the limiting post 303. The friction block 305 is movably connected to the adjustment groove 304. Specifically, the bearing plate 301 can be quickly installed on the top of the support rod 202 via the positioning plate 302. After the bearing assembly 3 is installed, the limiting post 303 in the moving adjustment groove 304 is moved to make the limiting post 303 protrude out of the positioning plate 302, preventing the bearing plate 301 from slipping off the support rod 202 during vibration. The stabilizing component 4 includes a stabilizing rod 403, a stabilizing groove 406 is formed on the surface of the stabilizing rod 403, and a fixing rod 102 is movably connected to the stabilizing groove 406. A telescopic groove 401 is formed on the inner side of the stabilizing groove 406, and a threaded rod 402 is provided in the telescopic groove 401. The threaded rod 402 is threadedly connected to the telescopic groove 401. An adjusting nut 405 is fixed on the surface of the threaded rod 402. A pressing block 404 is provided at one end of the threaded rod 402, and the pressing block 404 is rotatably connected to one end of the threaded rod 402. Specifically, after the stabilizer bar 403 is connected to the fixed bar 102 on the connecting assembly 1 through the stabilizer groove 406, the adjusting nut 405 on the surface of the threaded bar 402 is rotated to press and fix the fixed bar 102 by the pressing block 404 at one end of the threaded bar 402. This design allows the stabilizer bar 403 to be quickly installed between uprights 5 at different intervals, enhancing the adaptability of the stabilizer assembly 4.

[0016] Working principle: The limiting frame 101 in the connecting assembly 1 can be rotated and opened to easily engage with the limiting ring 6 on the surface of the upright 5. The fixing rod 102 on the surface of the limiting frame 101 is for installing the connecting stabilizing assembly 4. The fixing blocks 201 at both ends of the support rod 202 can slide into the top surface of the connecting block 103 through the connecting groove 204 to fix the limiting frame 101. Then, the connecting block 103 is limited by the limiting piece 205, and the limiting piece 205 is fixed by the positioning block 206. This design makes the installation and disassembly between the upright 5 and the support rod 202 of the scaffold convenient and quick. The bearing plate 301 can be quickly installed on the top of the support rod 202 via the positioning plate 302. After the bearing assembly 3 is installed, the limiting post 303 in the adjustment groove 304 is moved to extend out of the positioning plate 302, preventing the bearing plate 301 from slipping off the support rod 202 during vibration. After the stabilizing rod 403 is connected to the fixing rod 102 on the connecting assembly 1 via the stabilizing groove 406, the adjusting nut 405 on the surface of the threaded rod 402 is rotated to press and fix the fixing rod 102 with the pressing block 404 at one end of the threaded rod 402. This design allows the stabilizing rod 403 to be quickly installed between uprights 5 at different intervals, enhancing the adaptability of the stabilizing assembly 4. The connecting component 1 can not only fix the interconnected uprights 5, but also quickly connect to the support component 2. No bolts and nuts that are prone to rust are used in the connection process, which allows the scaffolding to be quickly disassembled and stably installed during the construction process. The stabilizing component 4 and the load-bearing component 3 can be quickly installed and disassembled on the scaffolding. These designs improve the stability and safety of the scaffolding.

[0017] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. An industrial building construction scaffold, comprising uprights (5), with a connecting tube (7) fixed at the top of the uprights (5), a connecting groove (8) provided on the bottom surface of the uprights (5), and limit rings (6) fixed in an array on the surface of the uprights (5). Its features are, Also includes: A connecting component (1) is disposed on the surface of the upright (5) for the fixed connection of the scaffold; Support component (2), which is disposed between the connecting components (1) for quick installation and disassembly of the scaffold; A load-bearing component (3) is disposed between the support components (2) to form a construction platform for quickly erecting scaffolding; Stabilizing component (4), which is disposed between connecting components (1) to improve the stability of the scaffold.

2. The industrial building construction scaffolding according to claim 1, characterized in that: The connecting component (1) includes a limiting frame (101), a connecting block (103) is fixed on the surface of the limiting frame (101), and the connecting block (103) is axially symmetrical about the limiting frame (101). The surface of the limiting frame (101) is provided with a fixing rod (102).

3. The industrial building construction scaffolding according to claim 1, characterized in that: The support assembly (2) includes a support rod (202), with fixing blocks (201) at both ends of the support rod (202). A connecting groove (204) is provided on the bottom surface of the fixing block (201), and the connecting block (103) is movably connected to the connecting groove (204).

4. The industrial building construction scaffolding according to claim 3, characterized in that: The surface of the fixed block (201) is provided with a limiting piece (205), and the limiting piece (205) passes through the side of the connecting groove (204). The surface of the limiting piece (205) is provided with a movable groove (207), and a positioning block (206) is provided in the movable groove (207). The positioning block (206) is movably connected to the movable groove (207). The surface of the support rod (202) is provided with a positioning groove (203), and the positioning groove (203) passes through the support rod (202).

5. The industrial building construction scaffolding according to claim 4, characterized in that: The bearing component (3) includes a bearing plate (301), and a positioning plate (302) is fixedly arranged on the bottom surface of the bearing plate (301). The positioning plate (302) is movably connected to the positioning groove (203). An adjustment groove (304) is provided in the positioning plate (302). A limiting post (303) is provided in the adjustment groove (304). The two ends of the limiting post (303) pass through the two sides of the positioning plate (302) respectively. A friction block (305) is fixed on the surface of the limiting post (303), and the friction block (305) is movably connected to the adjustment groove (304).

6. The industrial building construction scaffolding according to claim 2, characterized in that: The stabilizing component (4) includes a stabilizing rod (403), a stabilizing groove (406) is provided on the surface of the stabilizing rod (403), and a fixing rod (102) is movably connected to the stabilizing groove (406). A telescopic groove (401) is provided on the inner side of the stabilizing groove (406), and a threaded rod (402) is provided in the telescopic groove (401). The threaded rod (402) is threadedly connected to the telescopic groove (401). An adjusting nut (405) is fixed on the surface of the threaded rod (402). A pressing block (404) is provided at one end of the threaded rod (402), and the pressing block (404) is rotatably connected to one end of the threaded rod (402).