Telescopic inner inclined surface outer wall construction hanging basket

By designing a retractable inner inclined exterior wall construction hanging basket, and using suspended fence tables, balanced platforms, telescopic components and counterweight components, the problem that traditional hanging baskets cannot construct inner inclined walls is solved, achieving efficient and safe construction results.

CN120384630APending Publication Date: 2025-07-29THE FIRST COMPARY OF CHINA EIGHTH ENG BUREAU LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510772501.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-11
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

In the prior art, traditional hanging baskets cannot effectively construct the inclined wall, and setting up scaffolding will damage the wall and increase costs and extend the construction cycle.

Method used

A retractable inner bevel exterior wall construction hanging basket is designed, including a suspended fence table, a balance platform, a telescopic assembly, counterweight assembly and safety assembly. Through the cooperation of the telescopic table arm and counterweight block, the flexible extension and stability of the hanging basket is achieved, and the safety control system is combined to ensure operational safety.

Benefits of technology

The efficient and safe construction of the inclined wall is achieved, reducing construction costs and improving construction efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120384630A_ABST
    Figure CN120384630A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of building outer wall construction, in particular to a telescopic inner inclined face outer wall construction hanging basket which comprises an inner inclined outer wall, a telescopic assembly, a counterweight assembly and a safety assembly. A hanging fence table is hung on one side of an inner inclined face of the inner inclined outer wall, and a balance platform is horizontally arranged in the center of the lower end of the hanging fence table in a cross mode; according to the construction hanging basket, the telescopic platform arm is additionally arranged at one end of the balance platform, the counterweight assembly is additionally arranged at the end, away from the telescopic platform arm, of the balance platform, and the balance stability of the construction hanging basket is further improved in combination with the application of the balance auxiliary assembly; the telescopic platform arm and the working suspension cage are allowed to flexibly extend into the inner inclined outer wall to meet the operation requirements of different angles and depths, then under the matching action of the safety assembly, operation safety is ensured, efficient and safe operation on the inner inclined outer wall is achieved, the construction efficiency is improved, and the construction cost is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of building exterior wall construction, and more specifically to a retractable inner inclined exterior wall construction hanging basket. Background Technique

[0002] With the development of the times, people's pursuit of beauty and art is getting higher and higher. In order to catch people's eyes, when existing buildings are designed and constructed, exterior walls with different structural shapes are used to match the overall building separation. For example, when designing the exterior wall of a building, an inwardly inclined wall is designed at the top or in the middle;

[0003] In the prior art, when constructing an exterior wall with an inner slope, construction is generally carried out by means of a hanging basket or scaffolding. However, since the traditional hanging basket can only move vertically up and down, when constructing the surface of a wall with an inner slope, it is not easy for workers to reach the wall, which makes the construction of high-rise buildings difficult or even impossible. Using the method of erecting scaffolding will cause problems such as damage to the wall, high construction costs, and long construction periods, and it is inconvenient to use. Summary of the Invention

[0004] The purpose of the present invention is to provide a retractable inner inclined exterior wall construction hanging basket to solve the problems raised in the above background technique.

[0005] To achieve the above purpose, the present invention provides the following technical solution: A retractable inner inclined exterior wall construction hanging basket, comprising:

[0006] An inner inclined exterior wall, on one side of the inner inclined surface of the inner inclined exterior wall, a suspended fence platform is suspended. At the center of the lower end of the suspended fence platform, a balance platform is horizontally arranged in a cross shape. Between the upper end of the balance platform and the inner inclined exterior wall, a balance assisting component is provided. The balance assisting component includes a tying steel wire rope;

[0007] A telescopic component, the telescopic component is arranged on the side of the balance platform close to the inner inclined exterior wall. The telescopic component includes a telescopic platform arm, and a working hanging cage is arranged at the upper end of the telescopic platform arm;

[0008] A counterweight component, the counterweight component is movably arranged at the lower end of the side of the balance platform away from the telescopic platform arm. The counterweight component includes a counterweight sliding seat and a plurality of counterweight blocks;

[0009] A safety component, the safety component is arranged on both sides of the balance platform sleeving the telescopic platform arm. The safety component includes a safety control box and a telescopic movable block.

[0010] Preferably, on both sides of the upper end of the inner inclined exterior wall, cantilever beams are horizontally arranged. On both sides of the suspended fence platform, lifting boxes are respectively arranged. At the upper end of the lifting box, a working steel wire rope is arranged. The upper end of the working steel wire rope is connected to the side of the cantilever beam extending out of the inner inclined exterior wall.

[0011] Preferably, a platform storage groove is horizontally formed on one side of the balance platform close to the inner inclined outer wall. One side of the telescopic platform arm is horizontally and movably inserted into the platform storage groove. The working cage is arranged at the upper end of the telescopic platform arm outside the balance platform, and an operation console is arranged inside the working cage.

[0012] Preferably, two lower pulling points are symmetrically arranged at the upper end of the balance platform far from the inner inclined outer wall. An upper pulling point is arranged on one side of the inner inclined outer wall between the two cantilever beams. Two pulling steel wires are connected to the upper pulling point. One ends of the two pulling steel wires far from the upper pulling point are respectively connected to the two lower pulling points. A wind speed detector is arranged on the balance platform far from the inner inclined outer wall.

[0013] Preferably, a T-shaped sliding groove is formed at the center of the lower end of the balance platform far from the inner inclined outer wall. A counterweight sliding seat is horizontally and movably inserted into the T-shaped sliding groove. A plurality of counterweight blocks are respectively fixed at the lower end of the counterweight sliding seat. The lower ends of the counterweight blocks penetrate through the T-shaped sliding groove. Driving and controlling screws are horizontally inserted at the center of the T-shaped sliding groove and on both sides inside the platform storage groove. The telescopic platform arm and the counterweight sliding seat are respectively movably sleeved on the three driving and controlling screws, and the three driving and controlling screws are arranged in a staggered manner.

[0014] Preferably, a first diversion groove is horizontally formed at the upper ends of the three driving and controlling screws inside the balance platform. Annular transfer grooves are respectively formed on one side of the driving and controlling screws inside the balance platform. Second diversion grooves are horizontally formed inside the driving and controlling screws. A plurality of access holes are communicated and formed on one side of the second diversion grooves close to the annular transfer grooves. A plurality of oil mist spray holes are communicated with the second diversion grooves on one side of the driving and controlling screws located in the T-shaped sliding groove and the platform storage groove.

[0015] Preferably, through holes are respectively communicated and formed at the lower ends of the first diversion grooves with the annular transfer grooves. An oil mist joint is vertically arranged on one side of the upper end of the balance platform. The oil mist joint is communicated with the upper end of the first diversion groove.

[0016] Preferably, fitting grooves are respectively formed on both sides of the telescopic platform arm inserted into the platform storage groove. A plurality of first limiting teeth are symmetrically arranged inside the fitting grooves. Two safety control boxes are respectively arranged on one side of the balance platform close to the T-shaped sliding groove. Telescopic slots are respectively communicated with the platform storage groove inside the safety control boxes. Telescopic movable blocks are movably inserted into the telescopic slots. One side of the telescopic movable block penetrates through the telescopic slot and is inserted into the fitting groove. A plurality of second limiting teeth are arranged on one side of the telescopic movable block placed inside the fitting groove. The plurality of second limiting teeth are meshed and connected with the first limiting teeth.

[0017] Preferably, two positioning springs are symmetrically arranged on one side of the telescopic movable block located inside the telescopic slot. A restraint push cylinder is embedded at the center of one side of the telescopic slot far from the telescopic movable block. The movable rod of the restraint push cylinder points to the telescopic movable block.

[0018] Preferably, monitors are provided on the side of the working cage facing the operation console and on the suspension fence platform.

[0019] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0020] By installing a telescopic boom at one end of the balance platform and a counterweight assembly at the end of the balance platform away from the telescopic boom, and combined with the application of the balance assist component, the balance stability of the construction hanging basket is further improved, allowing the telescopic boom and the working cage to flexibly extend into the inner inclined outer wall to adapt to the operation requirements of different angles and depths. Then, under the cooperation of the safety component, the operation safety is ensured, and efficient and safe operation of the inner inclined outer wall is achieved, improving the construction efficiency and reducing the construction cost. Description of the Drawings

[0021] Figure 1 It is a schematic structural diagram of the present invention;

[0022] Figure 2 For the present invention Figure 1 Schematic diagram of part A;

[0023] Figure 3 It is a schematic diagram of the connection structure of the telescopic boom of the present invention;

[0024] Figure 4 It is a schematic diagram of the partial side cut structure of the present invention;

[0025] Figure 5 For the present invention Figure 4 Schematic diagram of part B;

[0026] Figure 6 It is a schematic side sectional view of the connection of the telescopic movable block of the present invention;

[0027] Figure 7 For the present invention Figure 6 Schematic diagram of part C;

[0028] Figure 8 It is a schematic diagram of the connection positional relationship of the telescopic movable block of the present invention.

[0029] In the figure: inner inclined outer wall 1, cantilever beam 2, suspension fence platform 3, working steel wire rope 4, balance platform 5, lower pull point 6, upper pull point 7, tie steel wire rope 8, telescopic boom 9, working cage 10, operation console 11, platform storage groove 12, T-shaped sliding groove 13, counterweight sliding seat 14, counterweight block 15, drive control screw 16, annular transfer groove 17, first diversion groove 18, oil mist joint 19, access hole 20, second diversion groove 21, oil mist spray hole 22, mating groove 23, first limit tooth 24, safety control box 25, telescopic movable block 26, positioning spring 27, restraint push cylinder 28, second limit tooth 29, monitor 30, wind speed detector 31. Detailed implementation mode

[0030] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative work belong to the scope of protection of the present invention.

[0031] Please refer to the attached Figure 1-8 , and the present application provides the following technical solutions.

[0032] Embodiment 1: A retractable inner inclined wall construction hanging basket, including an inner inclined wall 1. A suspension fence platform 3 is suspended on the inner inclined surface side of the inner inclined wall 1. A balance platform 5 is horizontally provided at the center of the lower end of the suspension fence platform 3 in a cross shape. A balance auxiliary component is provided between the upper end of the balance platform 5 and the inner inclined wall 1. The balance auxiliary component includes a tensioning steel wire rope 8. On both sides of the upper end of the inner inclined wall 1, a cantilever beam 2 is horizontally provided. Lifting boxes are respectively provided on both sides of the suspension fence platform 3. A working steel wire rope 4 is provided at the upper end of the lifting box. The upper end of the working steel wire rope 4 is connected to the side of the cantilever beam 2 extending out of the inner inclined wall 1. Two lower pull points 6 are symmetrically provided at the upper end of the balance platform 5 away from the inner inclined wall 1. On one side of the inner inclined wall 1 between the two cantilever beams 2, an upper pull point 7 is provided. Two tensioning steel wire ropes 8 are connected to the upper pull point 7. The ends of the two tensioning steel wire ropes 8 away from the upper pull point 7 are respectively connected to the two lower pull points 6. A wind speed detector 31 is provided on the upper end of the balance platform 5 away from the inner inclined wall 1; when it is necessary to operate on the inner inclined wall 1, first, the cantilever beam 2 is fixed on the roof, like a solid anchor point, providing a stable support foundation for the entire system. After the suspension fence platform 3 is connected to the cantilever beam 2 through the lifting machine box, the suspension fence platform 3 can be raised and lowered, so that the working cage 10 can reach different height positions of the inner inclined wall 1. The tensioning steel wire rope 8 connects the lower pull point 6 and the upper pull point 7, which can improve the horizontal stability of the suspension fence platform 3 and the balance platform 5 during the later construction operation.

[0033] A telescopic component is provided to make the working cage 10 close to the construction surface of the inner inclined wall 1. The telescopic component is provided on the side of the balance platform 5 close to the inner inclined wall 1. The telescopic component includes a telescopic platform arm 9. The upper end of the telescopic platform arm 9 is provided with a working cage 10. A platform storage groove 12 is horizontally opened on the side of the balance platform 5 close to the inner inclined wall 1. One side of the telescopic platform arm 9 is horizontally and movably inserted into the platform storage groove 12. The working cage 10 is provided at the upper end of the telescopic platform arm 9 outside the balance platform 5. An operation control console 11 is provided in the working cage 10. The operation control console 11 contains a telescopic arm control system, which can control the telescoping of the cage with one key.

[0034] A counterweight assembly is provided to adaptively adjust the balance situation after the telescopic boom 9 extends out of the balance platform 5. The counterweight assembly is movably arranged at the lower end of the side of the balance platform 5 away from the telescopic boom 9. The counterweight assembly includes a counterweight sliding seat 14 and a number of counterweight blocks 15. At the center of the lower end of the balance platform 5 away from the inner inclined outer wall 1, a T-shaped chute 13 is opened. The counterweight sliding seat 14 is horizontally movably inserted into the T-shaped chute 13. A number of counterweight blocks 15 are respectively fixed at the lower end of the counterweight sliding seat 14. The lower end of the counterweight block 15 penetrates through the T-shaped chute 13. At the center in the T-shaped chute 13 and on both sides in the platform storage groove 12, drive control screws 16 are horizontally inserted. The telescopic boom 9 and the counterweight sliding seat 14 are respectively movably sleeved on three drive control screws 16, and the three drive control screws 16 are arranged in a staggered manner; the counterweight sliding seat 14 and the telescopic boom 9 are respectively driven and controlled by the drive control screws 16. The three drive control screws 16 can be simultaneously connected to their respective servo motors through a servo control system to realize the adjustment control of the counterweight sliding seat 14 and the telescopic boom 9. The longer the telescopic boom 9 extends, the farther the counterweight sliding seat 14 is from the suspended fence platform 3, realizing the flat counterweight of the balance platform 5.

[0035] Inside the balance platform 5, at the upper ends of the three drive control screws 16, a first shunt groove 18 is horizontally opened. On one side of the drive control screws 16 inside the balance platform 5, annular transfer grooves 17 are opened. Inside the drive control screws 16, second shunt grooves 21 are horizontally opened. On one side of the annular transfer grooves 17 in the second shunt grooves 21, a number of access holes 20 are communicated and opened. And on one side of the drive control screws 16 located in the T-shaped chute 13 and the platform storage groove 12, a number of oil mist spray holes 22 are communicated with the second shunt grooves 21. Through holes are opened at the lower ends in the first shunt groove 18 to communicate with the annular transfer grooves 17. On one side of the upper end of the balance platform 5, an oil mist connector 19 is vertically provided. The oil mist connector 19 is connected and communicated with the upper end of the first shunt groove 18. When the oil mist connector 19 sends high-pressure air flow with oil mist into the first shunt groove 18, the high-pressure air flow enters the annular transfer groove 17 through the first shunt groove 18, then enters the second shunt groove 21 from the access holes 20, and then sprays from a number of oil mist spray holes 22 at the connection positions of the drive control screws 16 with the counterweight sliding seat 14 and the telescopic boom 9, as well as inside the T-shaped chute 13 and the platform storage groove 12, improving the sliding control stability of the counterweight sliding seat 14 and the telescopic boom 9.

[0036] Embodiment 2: On the basis of Embodiment 1, a safety component is provided on both sides of the telescopic boom 9 sleeved on the balance platform 5. The safety component includes a safety control box 25 and a telescopic movable block 26. On both sides of the telescopic boom 9 inserted into the platform storage groove 12, there are mating grooves 23 symmetrically provided with a number of first limiting teeth 24. Two safety control boxes 25 are respectively provided on one side of the balance platform 5 close to the T-shaped chute 13. In each safety control box 25, a telescopic groove is opened communicating with the platform storage groove 12. A telescopic movable block 26 is movably inserted into the telescopic groove. One side of the telescopic movable block 26 penetrates through the telescopic groove and is inserted into the mating groove 23. On one side of the telescopic movable block 26 placed in the mating groove 23, there are a number of second limiting teeth 29. The number of second limiting teeth 29 is meshed with the first limiting teeth 24. On one side of the telescopic movable block 26 located in the telescopic groove, two positioning springs 27 are symmetrically provided. At the center of the side of the telescopic groove away from the telescopic movable block 26, a restraint push cylinder 28 is embedded. The movable rod of the restraint push cylinder 28 is arranged pointing to the telescopic movable block 26. When the telescopic boom 9 extends and is stressed and undergoes a fault change, the movable rod of the restraint push cylinder 28 extends and abuts against the side of the telescopic movable block 26. At this time, the second limiting teeth 29 of the telescopic movable block 26 are meshed with the first limiting teeth 24 to limit and position the position of the telescopic boom 9, improving safety.

[0037] The wind speed detector 31 monitors the ambient wind speed in real time. Once the wind speed exceeds the safety threshold, it will not work. Monitors 30 are provided on one side of the working cage 10 pointing to the operation console 11 and on the suspension fence platform 3. The monitors 30 can not only remotely transmit the real-time sound and picture to the mobile phones and computers of the management personnel, facilitating the management personnel to conduct on-site supervision, promptly discovering and stopping the illegal operations of the staff, but also realizing remote voice communication in case of emergencies, ensuring information transmission and emergency handling during the operation process.

[0038] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirits of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. Telescopic inner inclined surface exterior wall construction hanging basket, characterized in that, Comprising: An inwardly inclined outer wall (1), on one side of the inner inclined surface of the inwardly inclined outer wall (1), a suspended fence platform (3) is suspended. At the center of the lower end of the suspended fence platform (3), a balance platform (5) is horizontally arranged. Between the upper end of the balance platform (5) and the inwardly inclined outer wall (1), a balance auxiliary component is provided, and the balance auxiliary component includes a tensioning steel wire rope (8); A telescopic component, the telescopic component is arranged on the side of the balance platform (5) close to the inwardly inclined outer wall (1), the telescopic component includes a telescopic platform arm (9), and a working cage (10) is arranged at the upper end of the telescopic platform arm (9); A counterweight component, the counterweight component is movably arranged at the lower end of the side of the balance platform (5) away from the telescopic platform arm (9), and the counterweight component includes a counterweight sliding seat (14) and a number of counterweight blocks (15); A safety component, the safety component is arranged on both sides where the balance platform (5) sleeves the telescopic platform arm (9), and the safety component includes a safety control box (25) and a telescopic movable block (26).

2. The telescopic inner inclined surface external wall construction hanging basket according to claim 1, characterized in that: On both sides of the upper end of the inwardly inclined outer wall (1), cantilever beams (2) are horizontally arranged. Lifting boxes are respectively arranged on both sides of the suspended fence platform (3), a working steel wire rope (4) is arranged at the upper end of the lifting box, and the upper end of the working steel wire rope (4) is connected to the side of the cantilever beam (2) extending out of the inwardly inclined outer wall (1).

3. The retractable inner inclined wall construction hanging basket according to claim 2, characterized in that: On the side of the balance platform (5) close to the inwardly inclined outer wall (1), a platform storage groove (12) is horizontally opened. One side of the telescopic platform arm (9) is horizontally and movably inserted into the platform storage groove (12). The working cage (10) is arranged at the upper end of the telescopic platform arm (9) outside the balance platform (5), and an operation control console (11) is arranged in the working cage (10).

4. The telescopic inner inclined surface external wall construction hanging basket according to claim 3, characterized in that: On the upper end of the balance platform (5) away from the inwardly inclined outer wall (1), two lower pull points (6) are symmetrically arranged. On one side of the inwardly inclined outer wall (1) between the two cantilever beams (2), an upper pull point (7) is arranged. Two tensioning steel wire ropes (8) are connected to the upper pull point (7). One ends of the two tensioning steel wire ropes (8) away from the upper pull point (7) are respectively connected to the two lower pull points (6). A wind speed detector (31) is arranged on the balance platform (5) away from the inwardly inclined outer wall (1).

5. The telescopic inner inclined surface external wall construction hanging basket according to claim 4, wherein: At the center of the lower end of the balance platform (5) away from the inwardly inclined outer wall (1), a T-shaped sliding groove (13) is opened. The counterweight sliding seat (14) is horizontally and movably inserted into the T-shaped sliding groove (13). A number of counterweight blocks (15) are respectively fixed at the lower end of the counterweight sliding seat (14). The lower end of the counterweight block (15) penetrates through the T-shaped sliding groove (13). At the center in the T-shaped sliding groove (13) and on both sides in the platform storage groove (12), drive control screws (16) are horizontally inserted. The telescopic platform arm (9) and the counterweight sliding seat (14) are respectively movably sleeved on the three drive control screws (16), and the three drive control screws (16) are arranged in a staggered manner.

6. The telescopic internal inclined surface external wall construction hanging basket according to claim 5, characterized in that: A first flow dividing groove (18) is horizontally opened at the upper ends of the three driving and controlling screw rods (16) inside the balance platform (5). An annular transfer groove (17) is opened on one side of each driving and controlling screw rod (16) inside the balance platform (5). A second flow dividing groove (21) is horizontally opened inside each driving and controlling screw rod (16). A plurality of access holes (20) are communicated and opened on one side of the second flow dividing groove (21) located in the annular transfer groove (17). A plurality of oil mist spray holes (22) are communicated with the second flow dividing groove (21) and opened on one side of the driving and controlling screw rod (16) located in the T-shaped sliding groove (13) and the platform storage groove (12).

7. The retractable inner inclined surface external wall construction hanging basket according to claim 6, characterized in that: Through holes are communicated and opened at the lower ends of the first flow dividing groove (18) to the annular transfer groove (17). An oil mist joint (19) is vertically provided on one side of the upper end of the balance platform (5). The oil mist joint (19) is communicated with the upper end of the first flow dividing groove (18).

8. The retractable inner inclined surface external wall construction hanging basket according to claim 7, wherein: Cooperating grooves (23) are opened on both sides of the telescopic table arm (9) inserted into the platform storage groove (12). A plurality of first limiting teeth (24) are symmetrically provided in the cooperating grooves (23). Two safety control boxes (25) are respectively arranged on one side of the balance platform (5) close to the T-shaped sliding groove (13). Telescopic grooves are communicated with the platform storage groove (12) inside the safety control boxes (25). Telescopic movable blocks (26) are movably inserted into the telescopic grooves. One side of the telescopic movable block (26) penetrates through the telescopic groove and is inserted into the cooperating groove (23). A plurality of second limiting teeth (29) are provided on one side of the telescopic movable block (26) placed in the cooperating groove (23). The plurality of second limiting teeth (29) are meshed and connected with the first limiting teeth (24).

9. The telescopic inner inclined plane external wall construction hanging basket according to claim 8, characterized in that: Two positioning springs (27) are symmetrically provided on one side of the telescopic movable block (26) located in the telescopic groove. A restraint push cylinder (28) is embedded at the center of one side of the telescopic groove away from the telescopic movable block (26). The movable rod of the restraint push cylinder (28) is arranged to point to the telescopic movable block (26).

10. The retractable inner inclined surface external wall construction hanging basket according to claim 9, wherein: Monitors (30) are provided on one side of the working cage (10) pointing to the operation console (11) and on the suspension fence platform (3).