Building construction hanging basket for constructional engineering
By designing a suspended platform for building construction, and using clamping blocks and lifting components to fix the connecting frame to the floor wall, the problem of the suspended platform being prone to swaying was solved, and the platform's stability and safety were achieved in windy weather.
Patent Information
- Application Number
- CN202511761317.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-27
- Publication Date
- 2026-02-06
AI Technical Summary
Existing suspended platforms for construction are prone to swaying during use, posing a significant safety hazard to workers during windy weather.
A suspended platform for building construction was designed, including a working platform, a protective frame, a connecting frame, a lifting assembly, and clamping blocks. The clamping blocks drive the connecting frame to rotate and fix it to the wall of the adjacent floor. The distance between the clamping blocks is adjusted in conjunction with the lifting assembly to ensure the stability of the working platform. The platform is then lifted and lowered by cables.
This ensured the stability of the work platform in windy weather, reduced safety hazards, and guaranteed the safety and efficiency of operations.
Smart Images

Figure CN121473554A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of building suspended platform technology, specifically to a building construction suspended platform for building engineering. Background Technology
[0002] Suspended platforms are construction tools used for high-altitude operations in building engineering. They are a new type of high-altitude work equipment that can replace traditional scaffolding, reducing labor intensity, improving work efficiency, and are reusable. They offer good performance, have low production costs, and are widely used in various fields. Currently, the use of suspended platforms in construction is gradually becoming a trend, and they are widely recognized in high-altitude operations such as exterior wall construction, curtain wall installation, insulation construction, and exterior wall maintenance and cleaning.
[0003] Existing suspended scaffolding typically consists of a work platform, safety railings, cables, and a hoist. The hoist is connected to the scaffolding via cables, and the hoist controls the extension of the cables to lower the scaffolding along the exterior wall of the building. Workers usually stand on the work platform to perform construction work on the exterior wall. Because the scaffolding is suspended from the outside of the building wall by cables, the work platform is inherently unstable, especially in windy weather, thus posing a significant safety hazard to workers.
[0004] There is an urgent need to design a high-stability suspended platform for building construction. Summary of the Invention
[0005] To address the technical problem of existing construction suspended platforms swaying during use and posing safety hazards to workers, this invention provides a building construction suspended platform, comprising a work platform, a protective frame, a mounting plate, a connecting frame, a lifting assembly, and clamping blocks. The protective frame is symmetrically arranged on both sides of the work platform, and the mounting plate is installed on one of the other two sides of the work platform. The connecting frame is movably mounted at both ends of the mounting plate, and two clamping blocks are slidably connected to the connecting frame. The lifting assembly is provided on the connecting frame to drive the two clamping blocks to move up and down along the connecting frame to fix the connecting frame.
[0006] Preferably, the assembly further includes a top plate, a sliding frame, a top block, and a first spring. The two ends of the screw in the lifting assembly are connected to the top plate. The n-shaped sliding frame is slidably installed at the bottom of the working platform. Rollers and the top block are respectively installed at both ends of the sliding frame. The top plate can contact the end of the sliding frame where the rollers are located. The first spring is wound around the sliding frame.
[0007] Preferably, the angle formed by the top plate and the clamping block is a right angle.
[0008] Preferably, the lifting assembly includes a bidirectional screw and a drive motor for driving the bidirectional screw to rotate. The bidirectional screw is arranged parallel to the connecting frame and is rotatably connected to the protruding parts at both ends of the connecting frame.
[0009] Preferably, it further includes a longitudinal rod, a transverse rod, a first n-shaped rod, and a limiting block. Two longitudinal rods are provided on one side of the working platform where the mounting plate is located. The transverse rod is slidably connected to the longitudinal rod. The end of the transverse rod away from the longitudinal rod is connected to the first n-shaped rod. The end of the first n-shaped rod is connected to the limiting block for limiting and fixing the clamping block.
[0010] Preferably, the device further includes a fan-shaped frame and a shielding cloth. The fan-shaped frame is mounted on the top of the protective frame, and the shielding cloth is provided on the top of both fan-shaped frames. The shielding cloth moves along the arc-shaped end face of the fan-shaped frame by a traction component provided on the fan-shaped frame.
[0011] Preferably, the traction assembly includes an arc-shaped rod, a pull rope, and a traction frame. The arc-shaped rod is arranged parallel to its arc-shaped surface on the fan-shaped frame. A T-shaped traction frame is slidably arranged on the arc-shaped rod. The traction frame is connected to one corner of the shielding cloth. The pull rope is wound around the arc-shaped rod. Both ends of the pull rope are fixed to the traction frame. The pull rope drives the traction frame to move along the arc-shaped rod to achieve the winding of the shielding cloth.
[0012] Preferably, it further includes a second n-shaped rod, an inverted T-shaped fork, an n-shaped fork, and a second spring. The n-shaped fork is installed on the inner wall of the two fan-shaped frames facing each other. The second n-shaped rod is slidably installed on the n-shaped fork. The inverted T-shaped fork is fixedly connected to the second n-shaped rod. The pull rope passes through one end of the n-shaped fork, the inverted T-shaped fork, and the other end of the n-shaped fork in sequence. The second spring is wound around the upper part of the second n-shaped rod.
[0013] Preferably, the n-shaped fork and the inverted T-shaped fork intersect perpendicularly.
[0014] Preferably, a heat dissipation component is provided between the two fan-shaped frames.
[0015] The beneficial effects of the present invention are as follows: 1. By rotating the connecting frame by the clamping block at a certain angle, the working platform is parallel to the outer wall of the building. The distance between the two clamping blocks is adjusted by the lifting component, and the clamping blocks are fixed to the hollow parts of the adjacent upper and lower floor walls, thereby fixing the connecting frame and thus fixing the working platform, thereby ensuring the stability of the working platform.
[0016] 2. At the same time, the sliding frame is pressed by the top plate, and the sliding frame moves the top block away from the connecting frame, thereby releasing the sliding frame from its supporting function on the connecting frame. At this time, the working platform is lifted and lowered by the cable, thus realizing the function of the working platform to lift and lower smoothly along the connecting frame. Attached Figure Description
[0017] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0018] Figure 2 This is a three-dimensional structural diagram of the working platform, protective frame, winding reel, and cable of the present invention.
[0019] Figure 3 This is a three-dimensional structural diagram of the mounting plate, connecting frame, lifting assembly, and other components of the present invention installed on the side wall of the work platform.
[0020] Figure 4 This is a schematic diagram of the assembly structure of the connecting frame, lifting assembly and clamping block of the present invention.
[0021] Figure 5 For the present invention Figure 3 A magnified view of part A.
[0022] Figure 6 This is a three-dimensional structural diagram of the lifting assembly of the present invention in conjunction with the top plate and the sliding frame.
[0023] Figure 7 This is a three-dimensional structural diagram of the sliding frame, top block, and first spring of the present invention.
[0024] Figure 8 This is a partial three-dimensional structural diagram of the fan-shaped frame, shielding cloth, and other components of the present invention installed on the protective frame.
[0025] Figure 9 This is a schematic diagram of the installation structure of the component of the present invention, which is mounted on a fan-shaped frame to tighten the pull rope.
[0026] Figure 10 For the present invention Figure 9 A magnified view of part B.
[0027] The labels in the attached diagram are as follows: 1-Working platform, 101-Protective frame, 102-Mounting frame, 2-Rewinding wheel, 3-Cable, 4-Mounting plate, 5-Connecting frame, 6-Lifting assembly, 7-Clamping block, 8-Longitudinal rod, 81-Transverse rod, 9-First n-shaped rod, 10-Limiting block, 11-Top plate, 12-Sliding frame, 121-Top block, 13-First spring, 14-Fan-shaped frame, 15-Shielding cloth, 16-Arc-shaped rod, 17-Pull rope, 171-Traction frame, 18-Heat dissipation assembly, 19-Second n-shaped rod, 20-Inverted T-shaped fork, 21-N-shaped fork, 22-Second spring. Detailed Implementation
[0028] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0029] Example: A suspended platform for building construction, such as... Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the system includes a work platform 1, a protective frame 101, a winding reel 2, a cable 3, a mounting plate 4, a connecting frame 5, a lifting assembly 6, and a clamping block 7. The work platform 1 has protective frames 101 symmetrically arranged on its left and right sides, with a protective crossbar between the left and right protective frames 101. A mounting frame 102 is mounted on the protective frame 101, and the winding reel 2 is rotatably mounted on the mounting frame 102. A winding motor is installed on the work platform 1 to drive the winding reel 2 to wind the cable 3. The winding motor drives the winding reel 2 to wind and unwind the cable 3, thereby achieving the lifting function of the work platform 1. The work platform 1 has two... A mounting plate 4 is installed on the front outer wall of the side. Connecting frames 5 are movably installed on the left and right ends of the mounting plate 4. The connecting frames 5 are rotatably connected to the mounting plate 4. At the same time, the connecting frames 5 can move up and down along the mounting plate 4. Two clamping blocks 7 are slidably connected on the connecting frames 5. The opposing sides of the two clamping blocks 7 are anti-slip. A lifting assembly 6 is provided on the connecting frames 5 to drive the two clamping blocks 7 to move up and down along the connecting frames 5 to fix the connecting frames 5 to the wall. The lifting assembly 6 includes a bidirectional screw and a drive motor that drives the bidirectional screw to rotate. The bidirectional screw is arranged parallel to the connecting frames 5 and is rotatably connected to the protruding parts at both ends of the connecting frames 5.
[0030] like Figure 6 and Figure 7 As shown, it also includes a top plate 11, a sliding frame 12, a top block 121, and a first spring 13. The two ends of the screw in the lifting assembly 6 are connected to the top plate 11. The angle formed by the top plate 11 and the clamping block 7 is a right angle. An n-shaped sliding frame 12 is slidably installed at the bottom of the working platform 1. Rollers and the top block 121 are respectively installed at both ends of the sliding frame 12. The top plate 11 can contact the end of the sliding frame 12 where the roller is provided. When the top plate 11 presses the sliding frame 12, the sliding frame 12 moves away from the connecting frame 5. The rollers on the sliding frame 12 are provided to facilitate the movement of the sliding frame 12 at the bottom of the working platform 1. A first spring 13 is wound around the sliding frame 12. The first spring 13 is located between the top block 121 and the connection between the sliding frame 12 and the working platform 1.
[0031] like Figure 3 and Figure 5As shown, it also includes longitudinal rods 8, transverse rods 81, a first n-shaped rod 9, and a limiting block 10. Two longitudinal rods 8 are provided on one side of the work platform 1 where the mounting plate 4 is located. A transverse rod 81 is slidably connected to the longitudinal rods 8. The end of the transverse rod 81 away from the longitudinal rods 8 is connected to the first n-shaped rod 9. The end of the first n-shaped rod 9 is connected to the limiting block 10, which limits and fixes the clamping block 7. By pulling the first n-shaped rod 9 upwards, the first n-shaped rod 9 drives the limiting block 10 upwards, moving the limiting block 10 away from the clamping block 7 and releasing the limitation on the clamping block 7. When it is necessary to limit the clamping block 7, the first n-shaped rod 9 drives the limiting block 10 downwards, so that the limiting block 10 fixes the clamping block to the mounting plate 4 (e.g., ...). Figure 3 (As shown).
[0032] In use, the clamping block 7 drives the connecting frame 5 and the lifting assembly 6 to rotate, so that the working platform 1 is placed between adjacent upper and lower floors. The lifting assembly 6 drives the clamping block 7 to perform lifting operations, thereby fixing the clamping block 7 at the adjacent upper and lower floors, thus fixing the connecting frame 5. At the same time, when the connecting frame 5 rotates, the top plate 11 is driven to rotate synchronously. When the top plate 11 rotates, it contacts the end of the sliding frame 12 with rollers installed and exerts a squeezing force on it. Under the squeezing action of the top plate 11, the sliding frame 12 drives the top block 121 to move away from the connecting frame 5, releasing the bottom limiting effect of the top block 121 on the connecting frame 5. At this time, the winding wheel 2 and the cable 3 are wound up, so that the working platform 1 can be lifted and lowered along the connecting frame 5. Since the connecting frame 5 is fixed to the wall by the clamping block 7, the stability of the outside of the working platform 1 is ensured.
[0033] like Figure 8 and Figure 9 As shown, it also includes a fan-shaped frame 14 and a shielding cloth 15. The top of the protective frame 101 is equipped with a fan-shaped frame 14, and the top of the two fan-shaped frames 14 are jointly provided with a shielding cloth 15. The shielding cloth 15 moves along the arc-shaped end face of the fan-shaped frame 14 by a traction component set on the fan-shaped frame 14. The traction component includes an arc-shaped rod 16, a pull rope 17, and a traction frame 171. The fan-shaped frame 14 is provided with an arc-shaped rod 16 parallel to its arc-shaped surface. A T-shaped traction frame 171 is slidably set on the arc-shaped rod 16. The traction frame 171 is connected to one corner of the shielding cloth 15. The pull rope 17 is wound around the arc-shaped rod 16. Both ends of the pull rope 17 are fixed to the traction frame 171. The traction frame 171 is driven by the pull rope 17 to move along the arc-shaped rod 16 to realize the winding of the shielding cloth 15. The shielding cloth 15 can provide the working platform 1 with the functions of sunshade and rain shelter.
[0034] like Figure 9 and Figure 10As shown, it also includes a second n-shaped rod 19, an inverted T-shaped fork 20, an n-shaped fork 21, and a second spring 22. An n-shaped fork 21 is installed on the inner wall of the two fan-shaped frames 14 facing each other. The second n-shaped rod 19 is slidably installed on the n-shaped fork 21. The inverted T-shaped fork 20 is fixedly connected to the second n-shaped rod 19. A pull rope 17 passes sequentially through one end of the n-shaped fork 21, the inverted T-shaped fork 20, and the other end of the n-shaped fork 21. The n-shaped fork 21 intersects the inverted T-shaped fork 20 perpendicularly. The pull rope 27 passes through the n-shaped fork 21. The n-shaped fork 21 is perpendicular to the inverted T-shaped fork 20 to limit and fix the pull rope 17, thereby keeping the cover cloth 15 in the required state. The upper part of the second n-shaped rod 19 is wrapped with a second spring 22. The two ends of the second spring 22 are respectively connected to the end of the second n-shaped rod 19 and the n-shaped fork 21. The setting of the second spring 22 keeps the n-shaped fork 21 perpendicular to the inverted T-shaped fork 20, thereby keeping the pull rope 17 in the limited and fixed state, thereby keeping the cover cloth 15 in the required state.
[0035] like Figure 8 As shown, it also includes a heat dissipation component 18 disposed between the two fan-shaped frames 14. The heat dissipation component consists of multiple sets of cooling fans, thereby providing heat dissipation for the personnel working on the work platform 1.
[0036] Pulling down the second n-shaped rod 19 causes the inverted T-shaped fork 20 to move downwards, compressing the second spring 22 and releasing the fixation on the pull rope 17. Pulling the pull rope 17 downwards then causes the traction frame 171 to move upwards along the arc surface of the arc-shaped rod 16. The traction frame 171 then causes the shielding cloth 15 to move upwards along the arc surface of the fan-shaped frame 14, covering the fan-shaped frame 14. At this point, the downward pull on the second n-shaped rod 19 is released, and the second spring 22 returns to its original position under its elastic force. The second n-shaped rod 19 then causes the inverted T-shaped fork 20 to move upwards and return to its original position. The inverted T-shaped fork 20 intersects the n-shaped fork 21 perpendicularly, thus fixing the pull rope 17 in place. This fixes the shielding cloth 15 to the top of the fan-shaped frame 14, providing shade or rain protection for the work platform 1.
[0037] The embodiments described above are merely preferred embodiments of the present invention, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that those skilled in the art can make various modifications, improvements, and substitutions without departing from the concept of the present invention, and these all fall within the scope of protection of the present invention. Therefore, the scope of protection of this patent should be determined by the appended claims.
Claims
1. A suspended platform for building construction, comprising a working platform (1) and a protective frame (101), wherein the protective frame (101) is symmetrically arranged on both sides of the working platform (1), characterized in that, It also includes a mounting plate (4), a connecting frame (5), a lifting assembly (6), and clamping blocks (7). The mounting plate (4) is installed on one of the other two sides of the work platform (1). The connecting frame (5) is movably installed at both ends of the mounting plate (4). Two clamping blocks (7) are slidably connected to the connecting frame (5). The lifting assembly (6) is provided on the connecting frame (5) to drive the two clamping blocks (7) to move up and down along the connecting frame (5) to fix the connecting frame (5).
2. The suspended platform for building construction according to claim 1, characterized in that, It also includes a top plate (11), a sliding frame (12), a top block (121) and a first spring (13). The two ends of the screw in the lifting assembly (6) are connected to the top plate (11). The bottom of the working platform (1) is slidably mounted with the n-shaped sliding frame (12). The two ends of the sliding frame (12) are respectively mounted with rollers and the top block (121). The top plate (11) can contact the end of the sliding frame (12) where the rollers are provided. The first spring (13) is wound around the sliding frame (12).
3. A suspended platform for building construction according to claim 2, characterized in that, The angle formed by the top plate (11) and the clamping block (7) is a right angle.
4. The suspended platform for building construction according to claim 1, characterized in that, The lifting assembly (6) includes a bidirectional screw and a drive motor for driving the bidirectional screw to rotate. The bidirectional screw is arranged parallel to the connecting frame (5) and is rotatably connected to the protruding parts at both ends of the connecting frame (5).
5. A suspended platform for building construction according to claim 1, characterized in that, It also includes a longitudinal rod (8), a transverse rod (81), a first n-shaped rod (9), and a limiting block (10). The working platform (1) is provided with two longitudinal rods (8) on one side of the mounting plate (4). The transverse rod (81) is slidably connected to the longitudinal rod (8). The end of the transverse rod (81) away from the longitudinal rod (8) is connected to the first n-shaped rod (9). The end of the first n-shaped rod (9) is connected to the limiting block (10) for limiting and fixing the clamping block (7).
6. A suspended platform for building construction according to claim 1, characterized in that, It also includes a fan-shaped frame (14) and a shielding cloth (15). The fan-shaped frame (14) is installed on the top of the protective frame (101), and the shielding cloth (15) is provided on the top of both fan-shaped frames (14). The shielding cloth (15) moves along the arc-shaped end face of the fan-shaped frame (14) by a traction component provided on the fan-shaped frame (14).
7. A suspended platform for building construction according to claim 6, characterized in that, The traction assembly includes an arc-shaped rod (16), a pull rope (17), and a traction frame (171). The arc-shaped rod (16) is provided on the fan-shaped frame (14) and is parallel to its arc surface. The T-shaped traction frame (171) is slidably provided on the arc-shaped rod (16). The traction frame (171) is connected to one corner of the shielding cloth (15). The pull rope (17) is wound around the arc-shaped rod (16). Both ends of the pull rope (17) are fixed to the traction frame (171). The traction frame (171) is driven by the pull rope (17) to move along the arc-shaped rod (16) to realize the winding of the shielding cloth (15).
8. A suspended platform for building construction according to claim 6, characterized in that, It also includes a second n-shaped rod (19), an inverted T-shaped fork (20), an n-shaped fork (21), and a second spring (22). The n-shaped fork (21) is installed on the inner wall of the two fan-shaped frames (14) facing each other. The second n-shaped rod (19) is slidably installed on the n-shaped fork (21). The inverted T-shaped fork (20) is fixedly connected to the second n-shaped rod (19). The pull rope (17) passes through one end of the n-shaped fork (21), the inverted T-shaped fork (20), and the other end of the n-shaped fork (21) in sequence. The second spring (22) is wound around the upper part of the second n-shaped rod (19).
9. A suspended platform for building construction according to claim 8, characterized in that, The n-shaped fork (21) intersects perpendicularly with the inverted T-shaped fork (20).
10. A suspended platform for building construction according to claim 6, characterized in that, It also includes a heat dissipation component (18) disposed between the two fan-shaped frames (14).