Anchoring type hanging basket suspension mechanism and construction method thereof
Through the anchor hanging basket suspension mechanism, the combination of front-position special-shaped brackets, rear-position special-shaped brackets, rear beams, front beams, upper pillars and suspended ropes is solved, and the problem of the suspension basket cannot be placed in the construction of high-rise buildings is achieved, which is stable and convenient for hanging basket suspension, meeting the needs of high-rise buildings.
Patent Information
- Application Number
- CN202510631591.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-07-04
AI Technical Summary
Conventional high-altitude work hanging baskets cannot meet the needs of high-rise building exterior wall construction when the configuration blocks cannot be placed or the configuration blocks affect the construction progress.
The anchored hanging basket suspension mechanism is adopted, including front-position special-shaped bracket, rear-position special-shaped bracket, rear beam, front beam, upper pillar, hanging rope and hanging basket. The rear beam, front-position reinforcement wire rope is used to pull and reinforce the rear beam, front beam, and upper pillar, and the pre-embedded installation of the L-shaped buried plate is used to improve stability and disassembly and assembly convenience.
It improves the overall stability and disassembly and assembly convenience of the hanging basket suspension mechanism, ensuring the smooth progress of high-rise building construction.
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Figure CN120250899A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field related to the hanging mechanism of a hanging basket, and particularly to an anchored hanging basket hanging mechanism and its construction method. Background Technique
[0002] With the continuous development of the domestic economy and the continuous improvement of people's living standards, more and more people go to big cities to live. In order to cope with the rapidly expanding urban population and accommodate more residents on limited land, high-rise buildings have attracted more and more attention. At the same time, in the construction of high-rise building exterior walls and curtain walls, suspended platforms for high-altitude operations are widely used.
[0003] Conventional suspended platforms for high-altitude operations are placed on the roof or between floors with sufficient bearing capacity through a hanging mechanism and counterweights. However, for situations where counterweight blocks cannot be placed or placing counterweight blocks will affect the subsequent construction progress, conventional suspended platforms for high-altitude operations will not be able to meet the usage requirements. Therefore, the present invention proposes an anchored hanging basket hanging mechanism and its construction method to solve the above problems. Summary of the Invention
[0004] The purpose of the present invention is to provide an anchored hanging basket hanging mechanism and its construction method to solve the problems raised in the above background technique.
[0005] To achieve the above purpose, the present invention provides the following technical solution: An anchored hanging basket hanging mechanism, comprising:
[0006] A front-shaped special bracket, which is fixed on the structural beam on the front side of the building body;
[0007] A rear-shaped special bracket, which is fixed on the structural beam on the rear side of the building body;
[0008] A rear beam, which is fixed between the front-shaped special bracket and the rear-shaped special bracket;
[0009] A front beam, which is fixed on the front-shaped special bracket;
[0010] An upper support column, which is fixed at the intersection position of the rear beam and the front beam;
[0011] A suspension rope, which is tractioned up and down through a hoist on the front beam;
[0012] A hanging basket, which is connected to the lower end of the suspension rope.
[0013] Preferably, the front end of the front beam is connected to the upper end of the upper support column through a front-position reinforcing steel wire rope, and the rear end of the rear beam is connected to the upper end of the support column through a rear-position reinforcing steel wire rope. When the rear-position reinforcing steel wire rope and the front-position reinforcing steel wire rope are actually installed, both the rear-position reinforcing steel wire rope and the front-position reinforcing steel wire rope are in a taut state.
[0014] Preferably, L-shaped embedded plates are pre-embedded on the structural beams. A transverse reinforcing column is integrally formed on the vertical plate of the L-shaped embedded plate, and a vertical reinforcing column is integrally formed on the horizontal plate of the L-shaped embedded plate. The surface of the L-shaped embedded plate is flush with the surface of the structural beam. The transverse reinforcing column and the vertical reinforcing column are both embedded in the concrete body of the structural beam, and anti-slip patterns are formed on the outer surfaces of the transverse reinforcing column and the vertical reinforcing column.
[0015] Preferably, a first-level threaded hole is provided on the transverse reinforcing column, and a second-level threaded hole is provided on the vertical reinforcing column. The front-position special-shaped bracket includes a special-shaped bracket column and a bearing seat. The special-shaped bracket column and the bearing seat are connected by welding. A first-level bolt hole is provided on the special-shaped bracket column, and a connecting seat is fixedly welded on the side wall of the special-shaped bracket column. A second-level bolt hole is provided on the connecting seat. The first-level bolt hole and the second-level bolt hole are respectively provided corresponding to the first-level threaded hole and the second-level threaded hole. The special-shaped bracket column is positioned by a first-level bolt and a second-level bolt. The screw rod of the first-level bolt passes through the first-level bolt hole and is screwed into the first-level threaded hole, and the second-level bolt passes through the second-level bolt hole and is screwed into the second-level threaded hole.
[0016] Preferably, the structure of the rear-position special-shaped bracket is the same as that of the front-position special-shaped bracket, and the installation methods of the rear-position special-shaped bracket and the front-position special-shaped bracket are the same.
[0017] Preferably, the bearing seat is an open square steel, and a first-level installation hole is provided on the side wall of the bearing seat. Second-level installation holes are provided at the front and rear ends of the rear beam and the rear end of the front beam. The first-level installation hole and the second-level installation hole are provided corresponding to each other. The front and rear ends of the rear beam and the rear end of the front beam are positioned on the bearing seat through positioning members.
[0018] Preferably, docking grooves are provided at the front end of the rear beam and the rear end of the front beam. A support seat is fixedly welded to the lower end of the upper support column, and a docking seat is fixedly connected to the lower end of the support seat. A third-level installation hole is provided on the docking seat, and the third-level installation hole is provided corresponding to the first-level installation hole and the second-level installation hole.
[0019] Preferably, the positioning member includes a positioning shaft, a spring force-receiving plate, a support spring, and a force-receiving seat. The positioning shaft and the spring force-receiving plate are connected by welding. The support spring is sleeved on the positioning shaft. A U-shaped groove is formed at the end of the positioning shaft. The middle part of the force-receiving seat is rotatably installed in the U-shaped groove. The cross-sectional dimension of the force-receiving seat is smaller than that of the positioning shaft, and the length value of the force-receiving seat is greater than the diameter value of the positioning shaft. When the positioning member is actually installed, the positioning shaft passes through the first-level installation hole, the second-level installation hole, and the third-level installation hole.
[0020] Preferably, when the positioning member is actually installed, the spring force-receiving plate is always in a compressed state, and the side wall of the force-receiving seat abuts against the side wall of the bearing seat.
[0021] A construction method for an anchoring type hanging basket suspension mechanism. The construction method for the anchoring type hanging basket suspension mechanism is realized by the above-mentioned anchoring type hanging basket suspension mechanism. The construction method includes:
[0022] Step 1: Measure and set out according to the hanging basket layout plan to determine the installation position of the hanging basket suspension mechanism;
[0023] Step 2: Install the front beam, rear beam, upper support column, strengthening steel wire rope, suspension rope, safety steel wire rope, hanging basket, hoist, etc. of the hanging basket as required.
[0024] Compared with the prior art, the beneficial effects of the present invention are:
[0025] 1. By providing an anchoring type hanging basket suspension mechanism composed of a front special-shaped bracket, a rear special-shaped bracket, a rear beam, a front beam, an upper support column, a suspension rope, and a hanging basket, and strengthening and reinforcing the rear beam, front beam, and upper support column through a rear strengthening steel wire rope and a front strengthening steel wire rope, the overall stability of the hanging basket suspension mechanism can be effectively improved. And the embedded setting of the L-shaped embedded plate can improve the disassembly and assembly convenience of the hanging basket suspension mechanism;
[0026] 2. And by opening docking grooves at the front end of the rear beam and the rear end of the front beam. And a support seat and a docking seat are arranged at the lower end of the upper support column. Thus, the docking seat is embedded into the docking groove, and the rear beam, front beam, and upper support column are positioned and connected synchronously through the positioning member, so as to effectively improve the overall disassembly and assembly convenience of the structure. And the mutual positioning between the rear beam, front beam, and upper support column can effectively ensure the overall strength between the structures. Description of the Drawings
[0027] Figure 1 It is a schematic structural diagram of the present invention;
[0028] Figure 2 is Figure 1 The enlarged schematic diagram of the structure at A in
[0029] Figure 3 Schematic diagram of the positions of the rear beam and the front beam of the present invention;
[0030] Figure 4 is Figure 3 Enlarged schematic diagram of the structure at position B in the figure;
[0031] Figure 5 Schematic diagram of the structure of the positioning member of the present invention;
[0032] Figure 6 Schematic diagram of the structure of the upper support column of the present invention;
[0033] Figure 7 Schematic diagram of the structure of the front special-shaped bracket of the present invention;
[0034] Figure 8 Half-sectional view of the L-shaped buried plate of the present invention.
[0035] In the figure: front special-shaped bracket 1, rear special-shaped bracket 2, rear beam 3, front beam 4, upper support column 5, suspension rope 6, hanging basket 7, rear reinforcing steel wire rope 8, front reinforcing steel wire rope 9, structural beam 10, L-shaped buried plate 11, transverse reinforcing column 12, vertical reinforcing column 13, first-level threaded hole 14, second-level threaded hole 15, special-shaped bracket column 16, bearing seat 17, first-level bolt hole 18, connecting seat 19, first-level mounting hole 20, support seat 21, docking seat 22, third-level mounting hole 23, positioning member 24, positioning shaft 25, spring force-bearing plate 26, support spring 27, force-bearing seat 28, U-shaped groove 29, second-level bolt hole 31. Specific embodiments
[0036] In order to clearly and completely describe the purpose, technical solution of the present invention and make the advantages more clear, the following further details the embodiments of the present invention with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, rather than all of the embodiments, and are only used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0037] Please refer to Figures 1-8 , the present invention provides embodiments of the following three preferred solutions:
[0038] Example 1. An anchored hanging basket suspension mechanism includes a front special-shaped bracket 1, a rear special-shaped bracket 2, a rear beam 3, a front beam 4, an upper support column 5, a suspension rope 6, and a hanging basket 7. The front special-shaped bracket 1 is fixed on the structural beam 10 on the front side of the building body, and the rear special-shaped bracket 2 is fixed on the structural beam 10 on the rear side of the building body. The rear beam 3 is fixed between the front special-shaped bracket 1 and the rear special-shaped bracket 2. The front beam 4 is fixed on the front special-shaped bracket 1. The upper support column 5 is fixed at the intersection position of the rear beam 3 and the front beam 4. The suspension rope 6 is tractioned up and down by a hoist on the front beam 4. The hanging basket 7 is connected to the lower end of the suspension rope 6.
[0039] The front end of the front beam 4 is connected to the upper end of the upper support column 5 through a front reinforcing steel wire rope 9, and the rear end of the rear beam 3 is connected to the upper end of the support column 5 through a rear reinforcing steel wire rope 8. When the rear reinforcing steel wire rope 8 and the front reinforcing steel wire rope 9 are actually installed, both the rear reinforcing steel wire rope 8 and the front reinforcing steel wire rope 9 are in a straightened state. By setting up the anchored hanging basket suspension mechanism composed of the front special-shaped bracket 1, the rear special-shaped bracket 2, the rear beam 3, the front beam 4, the upper support column 5, the suspension rope 6, and the hanging basket 7, and through the traction and reinforcement of the rear beam 3, the front beam 4, and the upper support column 5 by the rear reinforcing steel wire rope 8 and the front reinforcing steel wire rope 9, the overall stability of the hanging basket suspension mechanism can be effectively improved. Moreover, the embedded setting of the L-shaped buried plate 11 can improve the disassembly and assembly convenience of the hanging basket suspension mechanism.
[0040] L-shaped buried plates 11 are embedded in the structural beam 10. A transverse reinforcing column 12 is integrally formed on the vertical plate of the L-shaped buried plate 11, and a vertical reinforcing column 13 is integrally formed on the horizontal plate of the L-shaped buried plate 11. The surface of the L-shaped buried plate 11 is flush with the surface of the structural beam 10. The transverse reinforcing column 12 and the vertical reinforcing column 13 are both buried in the concrete body of the structural beam 10. Anti-slip patterns are formed on the outer surfaces of the transverse reinforcing column 12 and the vertical reinforcing column 13. The settings of the transverse reinforcing column 12 and the vertical reinforcing column 13 can improve the connection stability of the L-shaped buried plate 11 on the structural beam 10.
[0041] A first-level threaded hole 14 is opened on the transverse reinforcing column 12, and a second-level threaded hole 15 is opened on the vertical reinforcing column 13. The front special-shaped bracket 1 includes a special-shaped bracket column 16 and a bearing seat 17. The special-shaped bracket column 16 and the bearing seat 17 are connected by welding. A first-level bolt hole 18 is opened on the special-shaped bracket column 16. A connecting seat 19 is fixedly welded on the side wall of the special-shaped bracket column 16, and a second-level bolt hole 31 is opened on the connecting seat 19. The first-level bolt hole 18 and the second-level bolt hole 31 are respectively opened corresponding to the first-level threaded hole 14 and the second-level threaded hole 15. The special-shaped bracket column 16 is positioned by a first-level bolt and a second-level bolt. The screw rod of the first-level bolt passes through the first-level bolt hole 18 and is screwed into the first-level threaded hole 14, and the second-level bolt passes through the second-level bolt hole 31 and is screwed into the second-level threaded hole 15.
[0042] The structure of the rear special-shaped support 2 is the same as that of the front special-shaped support 1, and the installation methods of the rear special-shaped support 2 and the front special-shaped support 1 are the same.
[0043] In the second embodiment, on the basis of the first embodiment, the bearing seat 17 is an open square steel, and a first-level installation hole 20 is provided on the side wall of the bearing seat 17. Second-level installation holes are provided at the front and rear ends of the rear beam 3 and the rear side end of the front beam 4. The first-level installation hole 20 and the second-level installation holes are arranged in correspondence with each other. The front and rear ends of the rear beam 3 and the rear side end of the front beam 4 are positioned on the bearing seat 17 through positioning members 24.
[0044] Docking grooves are provided at the front side end of the rear beam 3 and the rear side end of the front beam 4. A support seat 21 is fixedly welded to the lower side end of the upper support column 5. A docking seat 22 is fixedly connected to the lower side end of the support seat 21. A third-level installation hole 23 is provided on the docking seat 22. The third-level installation hole 23 is provided corresponding to the first-level installation hole 20 and the second-level installation holes.
[0045] The positioning member 24 includes a positioning shaft 25, a spring force-bearing plate 26, a support spring 27, and a force-bearing seat 28. The positioning shaft 25 and the spring force-bearing plate 26 are welded together. The support spring 27 is sleeved on the positioning shaft 25. A U-shaped groove 29 is provided at the end of the positioning shaft 25. The middle part of the force-bearing seat 28 is rotatably installed in the U-shaped groove 29. The cross-sectional dimension of the force-bearing seat 28 is smaller than the cross-sectional dimension of the positioning shaft 25, and the length value of the force-bearing seat 28 is greater than the diameter value of the positioning shaft 25. When the positioning member 24 is actually installed, the positioning shaft 25 passes through the first-level installation hole 20, the second-level installation holes, and the third-level installation hole 23. By providing docking grooves at the front side end of the rear beam 3 and the rear side end of the front beam 4. And by providing a support seat 21 and a docking seat 22 at the lower side end of the upper support column 5, so that the docking seat 22 is embedded into the docking groove, thereby synchronously positioning and connecting the rear beam 3, the front beam 4, and the upper support column 5 through the positioning member 24, thereby effectively improving the overall disassembly and assembly convenience of the structure, and the rear beam 3, the front beam 4, and the upper support column 5 are positioned relative to each other, which can effectively ensure the overall strength between the structures.
[0046] When the positioning member 24 is actually installed, the spring force-bearing plate 26 is always in a compressed state, and the side wall of the force-bearing seat 28 abuts against the side wall of the bearing seat 17, improving the overall disassembly and assembly convenience of the positioning member 24.
[0047] In the third embodiment, on the basis of the second embodiment, a construction method for an anchored hanging basket suspension mechanism. The construction method for the anchored hanging basket suspension mechanism is realized through the above-mentioned anchored hanging basket suspension mechanism. This construction method includes:
[0048] Step 1: Measure and set out according to the hanging basket layout plan to determine the installation position of the hanging basket suspension mechanism;
[0049] Step 2: Install the front beam, rear beam, upper support column, strengthening steel wire rope, suspension rope, safety steel wire rope, hanging basket, hoist, etc. of the hanging basket as required and complete the installation.
[0050] Although the above-described illustrative specific embodiments of the present application have been described to enable those skilled in the art to understand the present application, the present application is not limited to the scope of the specific embodiments. For those of ordinary skill in the art, as long as various changes are within the spirit and scope of the present application defined and determined by the appended claims, all application creations using the concept of the present application are within the scope of protection.
Claims
1. An anchoring type hanging basket suspension mechanism, characterized in that: Including: A front special-shaped support (1), which is fixed on a structural beam (10) on the front side of a building body; A rear special-shaped support (2), which is fixed on a structural beam (10) on the rear side of a building body; A rear beam (3), which is fixed between the front special-shaped support (1) and the rear special-shaped support (2); A front beam (4), which is fixed on the front special-shaped support (1); An upper support column (5), which is fixed at the intersection position of the rear beam (3) and the front beam (4); A suspension rope (6), which is pulled up and down by a hoist on the front beam (4); A hanging basket (7), which is connected to the lower end of the suspension rope (6).
2. The suspension mechanism of an anchored hanging basket according to claim 1, characterized in that: The front end of the front beam (4) is connected to the upper end of the upper support column (5) through a front reinforcing steel wire rope (9), and the rear end of the rear beam (3) is connected to the upper end of the support column (5) through a rear reinforcing steel wire rope (8). During actual installation of the rear reinforcing steel wire rope (8) and the front reinforcing steel wire rope (9), both the rear reinforcing steel wire rope (8) and the front reinforcing steel wire rope (9) are in a straightened state.
3. The suspension mechanism of an anchored hanging basket according to claim 1, characterized in that: L-shaped embedded plates (11) are pre-embedded on the structural beam (10). A transverse reinforcing column (12) is integrally formed on the vertical plate of the L-shaped embedded plate (11), and a vertical reinforcing column (13) is integrally formed on the horizontal plate of the L-shaped embedded plate (11). The surface of the L-shaped embedded plate (11) is flush with the surface of the structural beam (10). The transverse reinforcing column (12) and the vertical reinforcing column (13) are both embedded in the concrete body of the structural beam (10), and anti-slip patterns are formed on the outer surfaces of the transverse reinforcing column (12) and the vertical reinforcing column (13).
4. The suspension mechanism of an anchored hanging basket according to claim 3, characterized in that: A first-level threaded hole (14) is provided on the transverse reinforcing column (12), and a second-level threaded hole (15) is provided on the vertical reinforcing column (13). The front special-shaped support (1) includes a special-shaped support column (16) and a bearing seat (17). The special-shaped support column (16) and the bearing seat (17) are connected by welding. A first-level bolt hole (18) is provided on the special-shaped support column (16), and a connecting seat (19) is fixedly welded on the side wall of the special-shaped support column (16). A second-level bolt hole (31) is provided on the connecting seat (19). The first-level bolt hole (18) and the second-level bolt hole (31) are respectively provided corresponding to the first-level threaded hole (14) and the second-level threaded hole (15). The special-shaped support column (16) is positioned by a first-level bolt and a second-level bolt. The screw rod of the first-level bolt passes through the first-level bolt hole (18) and is screwed into the first-level threaded hole (14), and the second-level bolt passes through the second-level bolt hole (31) and is screwed into the second-level threaded hole (15).
5. An anchoring type hanging basket suspension mechanism according to claim 4, characterized in that: The structure of the rear special-shaped support (2) is the same as that of the front special-shaped support (1), and the installation methods of the rear special-shaped support (2) and the front special-shaped support (1) are the same.
6. The suspension mechanism of an anchored hanging basket according to claim 5, characterized in that: The bearing seat (17) is an open square steel, and a primary mounting hole (20) is provided on the side wall of the bearing seat (17). Secondary mounting holes are provided at the front and rear ends of the rear beam (3) and the rear side end of the front beam (4). The primary mounting hole (20) and the secondary mounting holes are correspondingly arranged. The front and rear ends of the rear beam (3) and the rear side end of the front beam (4) are positioned on the bearing seat (17) through positioning members (24).
7. An anchoring type hanging basket suspension mechanism according to claim 6, characterized in that: Docking grooves are provided at the front side end of the rear beam (3) and the rear side end of the front beam (4). A support seat (21) is fixedly welded to the lower side end of the upper support column (5). A docking seat (22) is fixedly connected to the lower side end of the support seat (21). A tertiary mounting hole (23) is provided on the docking seat (22). The tertiary mounting hole (23) is correspondingly provided with the primary mounting hole (20) and the secondary mounting holes.
8. An anchoring type hanging basket suspension mechanism according to claim 7, characterized in that: The positioning member (24) includes a positioning shaft (25), a spring force-receiving plate (26), a support spring (27), and a force-receiving seat (28). The positioning shaft (25) and the spring force-receiving plate (26) are welded together. The support spring (27) is sleeved on the positioning shaft (25). A U-shaped groove (29) is provided at the end of the positioning shaft (25). The middle part of the force-receiving seat (28) is rotatably mounted in the U-shaped groove (29). The cross-sectional dimension of the force-receiving seat (28) is smaller than that of the positioning shaft (25), and the length value of the force-receiving seat (28) is greater than the diameter value of the positioning shaft (25). When the positioning member (24) is actually installed, the positioning shaft (25) passes through the primary mounting hole (20), the secondary mounting holes, and the tertiary mounting hole (23).
9. An anchoring type hanging basket suspension mechanism according to claim 8, characterized in that: When the positioning member (24) is actually installed, the spring force-receiving plate (26) is always in a compressed state, and the side wall of the force-receiving seat (28) abuts against the side wall of the bearing seat (17).
10. A construction method for the suspension mechanism of an anchored hanging basket, characterized in that: The construction method of the anchored hanging basket suspension mechanism is realized by the anchored hanging basket suspension mechanism according to any one of the above claims 1-9. This construction method includes: Step 1: Measure and set out lines according to the hanging basket layout plan to determine the installation position of the hanging basket suspension mechanism; Step 2: Install the front beam, rear beam, upper support column, strengthening steel wire rope, suspension rope, safety steel wire rope, weight, hanging basket, hoist, safety platform, etc. of the hanging basket as required.