Wind-resistant construction scaffold
By designing symmetrical semicircles, connecting ears, horizontal and vertical connecting components and triangular flow guide structures on the construction scaffolding, the construction scaffolding has solved the problem of high wind resistance and insufficient wind resistance in strong wind weather, and the structural stability and safety have been improved.
Patent Information
- Application Number
- CN202510684590.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2025-08-08
AI Technical Summary
The existing construction scaffolding has greater stroke resistance and insufficient wind resistance in strong wind weather, resulting in shaking and reduced safety.
A plurality of fixed vertical pipes are equipped with symmetrical semicircles and connecting ears, which are connected by horizontal and vertical connecting components, and combine triangular blocks and triangle plates to form a flow guide structure to enhance the connection solidity, and fix the support of the running plate through plug-in and limit blocks.
Effectively reduce wind resistance, improve the wind resistance and safety of the scaffolding, and ensure structural stability and convenient disassembly.
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Figure CN120443831A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of scaffolds, and in particular to a wind-resistant construction scaffold. Background Art
[0002] Scaffolding refers to various supports erected on construction sites for workers to operate and facilitate vertical and horizontal transportation. A common term in the construction industry, it refers to the structures used on construction sites for exterior walls, interior decoration, or high-rise areas where direct construction is impeded. These structures primarily allow for workers to ascend and descend, provide safety nets for external structures, and install components at height. During scaffolding installation, the vertical frame structure must be installed first, followed by the installation of components such as walkways and mesh panels, completing the scaffolding.
[0003] At present, when construction scaffolding is actually used, it is mostly connected together by U-shaped buckles and the like to connect horizontal and vertical round tubes. Such a structure has a large wind resistance and insufficient wind resistance when encountering strong winds. The scaffolding is prone to shaking, and long-term shaking will reduce the safety of the scaffolding. Summary of the Invention
[0004] The purpose of the present invention is to provide a wind-resistant construction scaffold to solve the above-mentioned shortcomings in the technology.
[0005] In order to achieve the above object, the present invention provides the following technical solution: a wind-resistant construction scaffold, comprising:
[0006] A plurality of fixed vertical tubes, the plurality of fixed vertical tubes being arranged in two rows, front and back, the outer ends of the fixed vertical tubes being provided with a plurality of groups of mutually symmetrical first and second semicircular rings, both ends of the first and second semicircular rings being integrally connected with connecting ears, a transverse connecting assembly being provided between the left and right adjacent fixed vertical tubes, and a longitudinal connecting assembly being provided between the front and back adjacent fixed vertical tubes;
[0007] Multiple triangular blocks are fixed on the connecting ears at the front ends of the first semicircular ring and the second semicircular ring at the outer ends of the fixed vertical pipes in the front row. A triangular plate is provided at the front end of the fixed vertical pipes in the front row. The triangular plate is provided between the four triangular blocks. The cross-sectional shape of the two triangular blocks at both ends of the triangular plate is the same as the cross-sectional shape of the triangular plate. Two connecting rods are fixed at both ends of the triangular plate. Connecting grooves are provided at the top and bottom ends of the triangular block. The four connecting rods are respectively inserted into the four connecting grooves.
[0008] Preferably, the connecting ears on the first semicircular ring and the second semicircular ring, which are symmetrical to each other, are fixedly connected by two fixing bolts and two fixing nuts, so as to facilitate the connection and fixation of the first semicircular ring and the second semicircular ring.
[0009] Preferably, the inner ends of the first semicircular ring and the second semicircular ring are integrally connected with a limiting rod, and the outer end of the fixed vertical tube is provided with a plurality of limiting slots, and the plurality of limiting rods are respectively inserted into the plurality of limiting slots, so as to facilitate positioning and supporting the first semicircular ring and the second semicircular ring.
[0010] Preferably, the outer end of the first semicircular ring is fixedly connected to a first connecting block, one end of the first connecting block is provided with a first connecting thread groove, the outer end of the second semicircular ring is fixedly connected to a second connecting block, the two ends of the second connecting block are perpendicular to each other, and both ends of the second connecting block are provided with a second connecting thread groove, which is convenient for fixing the vertical pipe and the horizontal connecting component to the longitudinal connecting component.
[0011] Preferably, the transverse connecting assembly includes two transverse connecting tubes, the ends of the two transverse connecting tubes that are away from each other respectively extend into the first connecting thread groove and the transverse second connecting thread groove and are threadedly connected to the first connecting thread groove and the second connecting thread groove, a first threaded sleeve is provided between the ends of the two transverse connecting tubes that are close to each other, the ends of the two transverse connecting tubes that are close to each other respectively extend from both ends of the first threaded sleeve into the interior of the first threaded sleeve and are threadedly connected to the first threaded sleeve, a first anti-slip strip is fixed to the outer end of the transverse connecting tube to facilitate the transverse connection between the two fixed vertical pipes.
[0012] Preferably, the longitudinal connecting assembly includes two longitudinal connecting tubes, the ends of the two longitudinal connecting tubes that are away from each other extend into the interior of two vertical second connecting thread grooves and are threadedly connected to the second connecting thread grooves, a second threaded sleeve is provided between the ends of the two longitudinal connecting tubes that are close to each other, the ends of the two longitudinal connecting tubes that are close to each other extend from both ends of the second threaded sleeve into the interior of the second threaded sleeve and are threadedly connected to the second threaded sleeve, and a second anti-slip strip is fixed to the outer end of the longitudinal connecting tube to facilitate the longitudinal connection between the two fixed vertical tubes.
[0013] Preferably, a supporting running plate is provided at the top of the multiple longitudinal connecting components in the same plane, a plug-in plate is fixedly connected to the top of the second threaded sleeve, a plurality of plug-in interfaces are opened at the top of the supporting running plate, and the tops of the multiple plug-in interfaces respectively pass through the interior of the plurality of plug-in interfaces to facilitate workers' walking.
[0014] Preferably, a movable cavity is opened inside the plug board, and two limit plates are provided inside the movable cavity. The outer ends of the limit plates are in sliding contact with the inner wall of the movable cavity. A limit block is fixedly provided on the outer side of the limit plate. One end of the limit block passes through the plug board and extends to the outside of the plug board. The top surface of the limit block is an arc surface. A spring is fixed between the inner sides of the two limit plates. The spring is provided inside the movable cavity to facilitate the limiting fixation of the supporting running plate.
[0015] Preferably, two connecting movable grooves are provided at the top of the plug board, the connecting movable grooves are connected to the inside of the movable cavity, and a connecting movable block is provided inside the connecting movable groove. The bottom ends of the two connecting movable blocks are respectively fixedly connected to the tops of the two limit plates, and the top of the connecting movable block extends to the top of the plug board, which is convenient for adjusting the positions of the two limit blocks.
[0016] In the above technical solution, the technical effects and advantages provided by the present invention are:
[0017] 1. The front side of the fixed vertical pipe is diverted by multiple triangular blocks and triangular plates, which effectively reduces the wind resistance of the fixed vertical pipe, making the wind resistance of the entire scaffolding smaller. The multiple fixed vertical pipes are connected and fixed by multiple groups of horizontal connection components and vertical connection components, making the overall connection of the scaffolding more firm, forming a stable whole, further improving the wind resistance of the scaffolding and improving the safety of the scaffolding;
[0018] 2. The support running board is fixed on multiple longitudinal connection components through the limit blocks on the plug-in board, so that the installation and fixation of the support running board is more firm, which further improves the safety. The disassembly process of the support running board is also simpler and more convenient, and has higher practicality. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments described in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0020] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0021] Figure 2 It is a schematic diagram of the overall three-dimensional structure of the present invention;
[0022] Figure 3 This is a schematic diagram of the three-dimensional structure of the fixed vertical pipe of the present invention;
[0023] Figure 4 Schematic diagram of the connection structure between the first semicircular ring and the second semicircular ring of the present invention Figure 1 ;
[0024] Figure 5 Schematic diagram of the connection structure between the first semicircular ring and the second semicircular ring of the present invention Figure 2 ;
[0025] Figure 6 It is a schematic diagram of the three-dimensional structure of the triangular plate and the connecting rod of the present invention;
[0026] Figure 7 It is a schematic diagram of the three-dimensional structure of the transverse connecting pipe and the first threaded sleeve of the present invention;
[0027] Figure 8 It is a schematic diagram of the three-dimensional structure of the longitudinal connecting pipe and the second threaded sleeve of the present invention;
[0028] Figure 9 It is a schematic diagram of a three-dimensional cross-sectional structure of a plug-in board of the present invention;
[0029] Figure 10 It is a schematic diagram of the three-dimensional structure of the supporting running board of the present invention.
[0030] Description of reference numerals:
[0031] 1. Fixed vertical pipe; 2. First semicircular ring; 3. Second semicircular ring; 4. Connecting ear; 5. Triangular block; 6. Triangular plate; 7. Connecting rod; 8. Connecting slot; 9. Fixing bolt; 10. Fixing nut; 11. Limiting rod; 12. Limiting slot; 13. First connecting block; 14. First connecting threaded groove; 15. Second connecting block; 16. Second connecting threaded groove; 17. Horizontal connecting pipe; 18. First threaded sleeve; 19. First anti-slip strip; 20. Longitudinal connecting pipe; 21. Second threaded sleeve; 22. Second anti-slip strip; 23. Support running board; 24. Connecting plate; 25. Plug port; 26. Movable cavity; 27. Limiting plate; 28. Limiting block; 29. Spring; 30. Connecting movable slot; 31. Connecting movable block. DETAILED DESCRIPTION
[0032] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.
[0033] The present invention provides Figures 1 to 8 A wind-resistant construction scaffold shown includes:
[0034] Multiple fixed vertical pipes 1 are distributed in two rows, front and back. The multiple fixed vertical pipes 1 in the rear row are connected and fixed to the building at intervals. The structure is the same as that in the prior art and will not be described in detail here. The outer ends of the fixed vertical pipes 1 are provided with multiple groups of mutually symmetrical first semicircular rings 2 and second semicircular rings 3. Both ends of the first semicircular rings 2 and the second semicircular rings 3 are integrally connected with connecting ears 4. A transverse connecting component is provided between the left and right adjacent fixed vertical pipes 1, and a longitudinal connecting component is provided between the front and rear adjacent fixed vertical pipes 1.
[0035] Multiple triangular blocks 5, multiple triangular blocks 5 are fixed on the connecting ears 4 at the front end of the first semicircular ring 2 and the second semicircular ring 3 at the outer end of the front row of fixed vertical tubes 1, and a triangular plate 6 is provided at the front end of the front row of fixed vertical tubes 1. The triangular plate 6 is provided between the four triangular blocks 5. The cross-sectional shape of the two triangular blocks 5 at both ends of the triangular plate 6 is spliced together and is the same as the cross-sectional shape of the triangular plate 6. Two connecting rods 7 are fixed at both ends of the triangular plate 6. Connecting grooves 8 are provided at the top and bottom ends of the triangular blocks 5. The four connecting rods 7 are respectively inserted into the four connecting grooves 8. The connecting ears 4 on the mutually symmetrical first semicircular ring 2 and the second semicircular ring 3 are fixedly connected by two fixing bolts 9 and two fixing nuts 10. The inner ends of the first semicircular ring 2 and the second semicircular ring 3 are integrally connected with a limiting rod 11. The outer end of the fixed vertical tube 1 is provided with a plurality of limiting slots 12, and the plurality of limiting rods 11 are respectively inserted into the plurality of limiting slots 12.
[0036] The outer end of the first semicircular ring 2 is fixedly connected to a first connecting block 13, and one end of the first connecting block 13 is provided with a first connecting thread groove 14. The outer end of the second semicircular ring 3 is fixedly connected to a second connecting block 15, and the two ends of the second connecting block 15 are perpendicular to each other. Both ends of the second connecting block 15 are provided with a second connecting thread groove 16.
[0037] The transverse connecting assembly includes two transverse connecting tubes 17, the ends of the two transverse connecting tubes 17 that are away from each other extend into the first connecting thread groove 14 and the transverse second connecting thread groove 16 respectively and are threadedly connected to the first connecting thread groove 14 and the second connecting thread groove 16. A first threaded sleeve 18 is provided between the ends of the two transverse connecting tubes 17 that are close to each other. The ends of the two transverse connecting tubes 17 that are close to each other extend from both ends of the first threaded sleeve 18 into the interior of the first threaded sleeve 18 and are threadedly connected to the first threaded sleeve 18. A first anti-slip strip 19 is fixed to the outer end of the transverse connecting tube 17.
[0038] The longitudinal connecting assembly includes two longitudinal connecting tubes 20, the ends of the two longitudinal connecting tubes 20 that are away from each other extend into the interior of two vertical second connecting thread grooves 16 respectively and are threadedly connected to the second connecting thread grooves 16. A second threaded sleeve 21 is provided between the ends of the two longitudinal connecting tubes 20 that are close to each other. The ends of the two longitudinal connecting tubes 20 that are close to each other extend from both ends of the second threaded sleeve 21 into the interior of the second threaded sleeve 21 and are threadedly connected to the second threaded sleeve 21. A second anti-slip strip 22 is fixed to the outer end of the longitudinal connecting tube 20.
[0039] First, multiple fixed vertical pipes 1 are installed on the mounting plate on the ground, with the rear row of fixed vertical pipes 1 close to the building. Then, the first semicircular ring 2 and the second semicircular ring 3 are fixed to the outer ends of the fixed vertical pipes 1. At this time, the limiting rods 11 at the inner ends of the first semicircular ring 2 and the second semicircular ring 3 are inserted into the limiting slots 12 on the fixed vertical pipe 1. The limiting rods 11 can position the first semicircular ring 2 and the second semicircular ring 3 and provide support, making them more secure.
[0040] After the first semicircular ring 2 and the second semicircular ring 3 are fixed, the first threaded sleeve 18 and the transverse connecting tube 17 are placed between the two fixed vertical tubes 1, hold the first threaded sleeve 18 with one hand, and then rotate the transverse connecting tube 17. One end of the transverse connecting tube 17 enters into a first connecting thread groove 14, and the other end moves out from the first threaded sleeve 18. Similarly, rotate the other transverse connecting tube 17. One end of the transverse connecting tube 17 will enter into the transverse second connecting thread groove 16. In this way, the transverse connecting assembly can be installed between the two fixed vertical tubes 1. Similarly, hold the second threaded sleeve 21 with your hand so that the plug-in plate 24 is in the vertical direction. At this time, rotate the two longitudinal connecting tubes 20. One end of the two longitudinal connecting tubes 20 will be screwed into the two vertical second connecting thread grooves 16 respectively, thus completing the installation of the longitudinal connecting assembly. In this way, the connection and fixation between the transverse connecting assembly of one layer and the longitudinal connecting assembly and the fixed vertical tube 1 can be completed.
[0041] After installing the horizontal connecting assembly and the vertical connecting assembly, insert the two connecting rods 7 at the bottom end of the triangular plate 6 into the two connecting grooves 8 on the triangular block 5, and then install the first semicircular ring 2 and the second semicircular ring 3 above. At this time, the two connecting rods 7 at the top end of the triangular plate 6 will be stuck into the connecting grooves 8 on the two triangular blocks 5 above. In this way, the triangular plate 6 can be installed and fixed between the triangular blocks 5 on the upper and lower first semicircular rings 2 and second semicircular rings 3. Multiple triangular blocks 5 and multiple triangular plates 6 will form a conical diversion structure in front of the fixed vertical pipe 1, so that the wind blowing toward the fixed vertical pipe 1 will be diverted by multiple triangular blocks 5 and triangular plates 6, thereby reducing wind resistance.
[0042] The present invention uses multiple triangular blocks 5 and triangular plates 6 to guide the front side of the fixed vertical pipe 1, effectively reducing the wind resistance of the fixed vertical pipe 1, so that the wind resistance of the entire scaffolding is relatively small, and the multiple fixed vertical pipes 1 are connected and fixed by multiple groups of horizontal connecting components and vertical connecting components, so that the overall connection of the scaffolding is relatively firm, and a stable whole can be formed, which further improves the wind resistance of the scaffolding and improves the safety of the scaffolding. This embodiment specifically solves the problem that the construction scaffolding existing in the prior art is mostly connected together by U-shaped buckles when in actual use. When such a structure encounters strong winds, its wind resistance is large and the wind resistance is not strong enough. In this way, the scaffolding is prone to shaking, and long-term shaking will reduce the safety of the scaffolding.
[0043] The present invention provides Figure 1 and Figures 9 and 10 The wind-resistant construction scaffold shown in the figure has a supporting running plate 23 provided at the top of multiple longitudinal connecting components on the same plane, a plug-in plate 24 is fixedly connected to the top of the second threaded sleeve 21, and multiple plug-in ports 25 are opened at the top of the supporting running plate 23. The tops of the multiple plug-in ports 25 are respectively passed through the interior of the multiple plug-in ports 25.
[0044] A movable cavity 26 is opened inside the plug board 24, and two limit plates 27 are provided inside the movable cavity 26. The outer end of the limit plate 27 is in sliding contact with the inner wall of the movable cavity 26. A limit block 28 is fixedly provided on the outside of the limit plate 27. One end of the limit block 28 passes through the plug board 24 and extends to the outside of the plug board 24. The top surface of the limit block 28 is an arc surface. A spring 29 is fixed between the inner sides of the two limit plates 27. The spring 29 is arranged inside the movable cavity 26.
[0045] Two connecting movable grooves 30 are provided at the top of the plug-in board 24, which are connected to the interior of the movable cavity 26. A connecting movable block 31 is provided inside the connecting movable groove 30, and the bottom ends of the two connecting movable blocks 31 are fixedly connected to the tops of the two limit plates 27 respectively, and the tops of the connecting movable blocks 31 extend to the top of the plug-in board 24.
[0046] After installing the horizontal connection components and the vertical connection components of one layer, the supporting running plate 23 is placed on the top of the multiple vertical connection components. At this time, the bottom ends of the multiple plug-in interfaces 25 are aligned with the top ends of the multiple plug-in boards 24. Then the supporting running plate 23 is lowered. At this time, the inner wall of the plug-in interface 25 will squeeze the arc surface of the limit block 28. The limit block 28 is squeezed and enters the inside of the active cavity 26. The two limit plates 27 will compress the spring 29 so that the top end of the plug-in board 24 can pass through the inside of the plug-in interface 25. When the bottom end surface of the limit block 28 moves to the top surface of the supporting running plate 23, the limit block 28 will return to its original position under the elastic force of the spring 29. At this time, the limit block 28 The support running plate 23 will be limited and fixed. When the support running plate 23 needs to be disassembled, the two connecting movable blocks 31 are pulled closer to each other. The two connecting movable blocks 31 will drive the two limiting plates 27 to move closer to each other. The two limiting plates 27 drive the two limiting blocks 28 to enter the movable cavity 26 and compress the spring 29. At this time, the support running plate 23 can be disassembled. The present invention uses the limiting blocks 28 on the plug-in plate 24 to limit and fix the support running plate 23 to multiple longitudinal connecting components, so that the installation and fixation of the support running plate 23 is relatively firm, which further improves safety. The disassembly process of the support running plate 23 is also relatively simple and convenient, and has high practicality.
[0047] The above description is merely illustrative of certain exemplary embodiments of the present invention. It goes without saying that those skilled in the art will be able to modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and description are illustrative in nature and should not be construed as limiting the scope of protection of the claims.
Claims
1. A wind-resistant construction scaffold, characterized in that: include: A plurality of fixed vertical tubes (1), the plurality of fixed vertical tubes (1) being distributed in two rows, front and back; a plurality of groups of mutually symmetrical first semicircular rings (2) and second semicircular rings (3) are provided at the outer ends of the fixed vertical tubes (1); both ends of the first semicircular rings (2) and the second semicircular rings (3) are integrally connected with connecting ears (4); a transverse connecting assembly is provided between the adjacent fixed vertical tubes (1) on the left and right, and a longitudinal connecting assembly is provided between the adjacent fixed vertical tubes (1) on the front and back; A plurality of triangular blocks (5) are fixedly arranged on the connecting ears (4) at the front ends of the first semicircular ring (2) and the second semicircular ring (3) at the outer ends of the front row fixed vertical pipe (1); a triangular plate (6) is provided at the front end of the front row fixed vertical pipe (1); the triangular plate (6) is provided between the four triangular blocks (5); the cross-sectional shape of the two triangular blocks (5) at both ends of the triangular plate (6) is the same as the cross-sectional shape of the triangular plate (6); two plug-in rods (7) are fixedly arranged at both ends of the triangular plate (6); the top and bottom ends of the triangular block (5) are provided with plug-in grooves (8); the four plug-in rods (7) are respectively inserted into the four plug-in grooves (8).
2. A wind-resistant construction scaffold according to claim 1, characterized in that: The connecting ears (4) on the first semicircular ring (2) and the second semicircular ring (3) which are symmetrical to each other are fixedly connected by two fixing bolts (9) and two fixing nuts (10).
3. The wind-resistant construction scaffold according to claim 1, characterized in that: The inner ends of the first semicircular ring (2) and the second semicircular ring (3) are integrally connected to a limiting rod (11), and the outer end of the fixed vertical pipe (1) is provided with a plurality of limiting slots (12), and the plurality of limiting rods (11) are respectively inserted into the plurality of limiting slots (12).
4. The wind-resistant construction scaffold according to claim 1, characterized in that: The outer end of the first semicircular ring (2) is fixedly connected to a first connecting block (13), one end of which is provided with a first connecting thread groove (14); the outer end of the second semicircular ring (3) is fixedly connected to a second connecting block (15), the two ends of the second connecting block (15) are perpendicular to each other, and both ends of the second connecting block (15) are provided with a second connecting thread groove (16).
5. The wind-resistant construction scaffold according to claim 4, characterized in that: The transverse connection assembly includes two transverse connection tubes (17), the ends of the two transverse connection tubes (17) that are away from each other extend into the first connection thread groove (14) and the transverse second connection thread groove (16) respectively and are connected to the first connection thread groove (14) and the second connection thread groove (16) by threads, a first threaded sleeve (18) is provided between the ends of the two transverse connection tubes (17) that are close to each other, the ends of the two transverse connection tubes (17) that are close to each other extend from both ends of the first threaded sleeve (18) into the interior of the first threaded sleeve (18) and are connected to the first threaded sleeve (18) by threads, and a first anti-slip strip (19) is fixed to the outer end of the transverse connection tube (17).
6. The wind-resistant construction scaffold according to claim 5, characterized in that: The longitudinal connection assembly comprises two longitudinal connection tubes (20), the ends of the two longitudinal connection tubes (20) that are away from each other respectively extend into the interior of two vertical second connection thread grooves (16) and are connected to the second connection thread grooves (16) by threads, a second threaded sleeve (21) is provided between the ends of the two longitudinal connection tubes (20) that are close to each other, the ends of the two longitudinal connection tubes (20) that are close to each other respectively extend from both ends of the second threaded sleeve (21) into the interior of the second threaded sleeve (21) and are connected to the second threaded sleeve (21) by threads, and a second anti-slip strip (22) is fixed to the outer end of the longitudinal connection tube (20).
7. The wind-resistant construction scaffold according to claim 6, characterized in that: A supporting running plate (23) is provided at the top of the plurality of longitudinal connection components on the same plane, a plug-in plate (24) is fixedly connected to the top of the second threaded sleeve (21), a plurality of plug-in ports (25) are provided at the top of the supporting running plate (23), and the tops of the plurality of plug-in ports (24) respectively pass through the interior of the plurality of plug-in ports (25).
8. The wind-resistant construction scaffold according to claim 7, characterized in that: A movable cavity (26) is provided inside the plug-in board (24), and two limit plates (27) are provided inside the movable cavity (26). The outer ends of the limit plates (27) are in sliding contact with the inner wall of the movable cavity (26). A limit block (28) is fixedly provided on the outer side of the limit plate (27). One end of the limit block (28) passes through the plug-in board (24) and extends to the outer side of the plug-in board (24). The top surface of the limit block (28) is an arc surface. A spring (29) is fixed between the inner sides of the two limit plates (27), and the spring (29) is provided inside the movable cavity (26).
9. The wind-resistant construction scaffold according to claim 8, characterized in that: Two communicating movable grooves (30) are provided at the top of the plug board (24), the communicating movable grooves (30) are communicated with the interior of the movable cavity (26), a connecting movable block (31) is provided inside the communicating movable groove (30), the bottom ends of the two connecting movable blocks (31) are respectively fixedly connected to the top ends of the two limit plates (27), and the top ends of the connecting movable blocks (31) extend to the top of the plug board (24).
Citation Information
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