High-altitude construction hanging basket for constructional engineering

Through the threaded rod and rack mechanism driven by the two-way motor, the problems of falling basket tools and collision with strong winds are solved, tool collection and stability are improved, and safety and convenience of high-altitude operations are improved.

CN223135631UActive Publication Date: 2025-07-22SHANDONG BRELINS CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202422044779.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-22
Publication Date
2025-07-22
Estimated Expiration
2034-08-22

AI Technical Summary

Technical Problem

The existing building hanging baskets have the risk of tool dropping during high altitude operations, and are prone to collision with the building and causing damage in strong winds, and are inconvenient to operate.

Method used

The threaded rod and rack mechanism driven by a two-way motor are adopted to control the rotation of the threaded rod to drive the expansion and contraction of the braided net to realize the tool collection and fall prevention function and enhance operation stability.

Benefits of technology

Effectively prevent tools from falling, reduce the risk of throwing objects from high altitudes, and improve the stability and operation convenience of the hanging basket under strong wind conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of constructional engineering, in particular to a high-altitude construction hanging basket for constructional engineering, which comprises a frame body, fishing rings are fixedly connected to the tops of two sides of the outer wall of the frame body, a two-way motor is fixedly connected to one side of the bottom surface of the outer wall of the frame body, and the position of the two-way motor is close to the edge of the bottom surface of the frame body. The output ends of the two-way motors are fixedly connected with threaded rods. The device has the advantages that the threaded rod rotates to drive the strip-shaped block to move, the first woven nets move along with the strip-shaped block, the two first woven nets can stretch out of the bottom face of the frame body, when construction tools have accidents, the collection function can be achieved, when the two-way motor rotates, the gear rotates at the same time, the gear is meshed with the rack, and the rack is fixedly connected with the mounting plate; the mounting plate is slidably connected with the bottom surface of the frame body to play a limiting role, the gear rotates to drive the mounting plate and the second woven meshes on the two sides to move and extend out of the bottom surface of the frame body, the collection range is further enlarged, and the tool is prevented from falling to cause high-altitude throwing.
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Description

Technical Field

[0001] The utility model relates to the technical field of construction engineering, in particular to an aerial construction hanging basket for construction engineering. Background Technique

[0002] In construction engineering, construction workers need to operate on building walls at high altitudes. The construction hanging basket can replace the traditional scaffolding. The hanging basket has a fully sealed bottom surface, and construction workers can walk on the bottom surface of the hanging basket. Especially during the construction process of various building constructions and their ancillary facilities, as well as the installation activities of the pipelines and equipment supporting them, it is necessary to transport items or personnel to a certain height through the hanging basket for high-altitude operations. With the continuous progress of urbanization construction, the construction industry plays an important role in urbanization. In order to improve the heat preservation and aesthetics of buildings, it is often necessary to perform heat preservation and apply exterior wall paint to the exterior walls of buildings. The hanging basket plays an important role in exterior wall construction. Existing hanging baskets often adopt an integrally formed design for safety. The integrally formed hanging basket is not easy for operators to get on and off. Moreover, when there is strong wind in the middle of the hanging basket, after the hanging basket collides with the exterior wall of the building, it will cause certain damage to the exterior wall of the building. However, when the hanging basket is working at high altitude, if a construction worker accidentally drops a tool, it will pose a threat of high-altitude throwing objects to pedestrians below. Therefore, a hanging basket that reduces the risk of tool dropping is needed. Content of the Utility Model

[0003] The purpose of the utility model is to overcome the shortcomings of the prior art and provide an aerial construction hanging basket for construction engineering, effectively solving the deficiencies of the prior art.

[0004] To achieve the above purpose, an embodiment of one aspect of the utility model provides an aerial construction hanging basket for construction engineering, including a frame body. On the top of both sides of the outer wall of the frame body, fishing rings are fixedly connected. On one side of the bottom surface of the outer wall of the frame body, a bidirectional motor is fixedly connected. The position of the bidirectional motor is close to the edge of the bottom surface of the frame body. The output ends of the bidirectional motors are fixedly connected with threaded rods. On the bottom surface of the outer wall of the frame body, close to the positions of the two threaded rods, two strip-shaped blocks are slidably connected. The four strip-shaped blocks are grouped in pairs. On the opposite side surfaces of each group of the four strip-shaped blocks, a first woven net is fixedly connected together. On the bottom surface of the outer wall of the frame body, close to the middle of the two first woven nets, a mounting plate is slidably connected. On both sides of the mounting plate, a second woven net is fixedly connected. The second woven net is located below the first woven net.

[0005] Preferably, according to any of the above solutions, on the outer wall of the frame body, first strip-shaped chutes are opened at positions close to the four strip-shaped blocks. On one side of each of the four strip-shaped blocks, a strip-shaped slider is fixedly connected. The four first strip-shaped chutes are respectively slidably connected with the four first strip-shaped sliders. One end of each of the four first strip-shaped chutes penetrates through the bottom surface of the frame body.

[0006] The technical effects achieved by adopting the above solution are as follows: By using this solution, the strip-shaped block can be slidably connected to the bottom surface of the frame body through the first strip-shaped chute and the first strip-shaped slider, the strip-shaped block can be limited and stabilized, and at the same time, the first woven net can be limited.

[0007] Preferably, according to any of the above solutions, two second strip-shaped chutes are provided at the position of the bottom surface of the outer wall of the frame body above the mounting plate, and two second strip-shaped sliders are fixedly connected to the side of the mounting plate close to the frame body, and the two second strip-shaped chutes are respectively slidably connected to the two second strip-shaped sliders.

[0008] The technical effects achieved by adopting the above solution are as follows: By using this solution, the mounting plate can be slidably connected to the bottom surface of the frame body through the second strip-shaped slider and the second strip-shaped chute, the mounting plate can be limited and stabilized, so that the mounting plate can move stably along a straight line and prevent the mounting plate from shaking randomly.

[0009] Preferably, according to any of the above solutions, the length of the first strip-shaped chute is equal to the length of the first strip-shaped slider, and the length of the second strip-shaped chute is greater than the length of the second strip-shaped slider.

[0010] The technical effects achieved by adopting the above solution are as follows: By using this solution, the moving range of the strip-shaped block can be maximized, the stability of the strip-shaped block during movement can be further increased, the random shaking of the first woven net can be prevented from resulting in poor anti-falling effect, and the stability of the first woven net can be increased.

[0011] Preferably, according to any of the above solutions, a rack is fixedly connected to one side of the top surface of the mounting plate, and a gear is fixedly connected to one of the two output ends of the bidirectional motor close to the rack, and the gear meshes with the rack.

[0012] The technical effects achieved by adopting the above solution are as follows: By using this solution, the bidirectional motor can be used to drive the gear to rotate, the rotation of the gear can move the rack, and the movement of the rack drives the mounting plate and the second woven net to move accordingly.

[0013] Preferably, according to any of the above solutions, a strip-shaped limiting groove is provided in the middle of the mounting plate, and a limiting rod is fixedly connected to the position of the bottom surface of the outer wall of the frame body close to one side of the bidirectional motor, and one end of the limiting rod is slidably connected to the strip-shaped limiting groove.

[0014] The technical effects achieved by adopting the above solution are as follows: By using this solution, the stability of the mounting plate can be increased, the mounting plate can be further limited, and the random shaking of the mounting plate during movement can be prevented.

[0015] The present utility model has the following advantages:

[0016] 1. This kind of high-altitude construction hanging basket for construction projects drives two threaded rods to rotate through a bidirectional motor. Both threaded rods are threadedly connected to the strip-shaped block. The strip-shaped block is slidably connected to the bottom surface of the frame body through the first strip-shaped chute and the first strip-shaped slider, playing a role in limiting. When the threaded rods rotate, the strip-shaped block can be driven to move, and the first woven net also moves accordingly. The two first woven nets can extend out of the bottom surface of the frame body, and when construction tools accidentally fall, they can play a role in collecting. When the bidirectional motor rotates, the gear also rotates simultaneously. The gear meshes with the rack, and the rack is fixedly connected to the mounting plate. The mounting plate is slidably connected to the bottom surface of the frame body to play a role in limiting. When the gear rotates, the mounting plate and the second woven nets on both sides can be driven to move out of the bottom surface of the frame body, further increasing the collection range and preventing tools from falling and causing high-altitude parabolic objects.

[0017] 2. This kind of high-altitude construction hanging basket for construction projects can simultaneously control the movement of the two first woven nets and the second woven nets through the bidirectional motor, completing the extension or retraction of the first woven net and the second woven net, greatly reducing the operation complexity. Only the bidirectional motor needs to be controlled. Moreover, when retracting, it can reduce the difficulty of the frame body moving and transporting, which is more user-friendly. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a schematic structural diagram of the first view of the present utility model;

[0019] Figure 2 is a schematic structural diagram of the bottom surface of the outer wall of the frame body of the present utility model;

[0020] Figure 3 is a schematic structural diagram of the second view of the present utility model;

[0021] Figure 4 is a schematic structural diagram of the mounting plate of the present utility model.

[0022] In the figure: 1-frame body, 2-first strip-shaped chute, 3-bidirectional motor, 4-limiting rod, 5-gear, 6-second strip-shaped chute, 7-hook ring, 8-strip-shaped block, 9-first strip-shaped slider, 10-first woven net, 11-second strip-shaped slider, 12-strip-shaped limiting groove, 13-second woven net, 14-mounting plate, 15-rack, 16-threaded rod. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] The following further describes the present utility model in conjunction with the drawings, but the protection scope of the present utility model is not limited to the following.

[0024] As Figures 1 to 4As shown in the figure, a high-altitude construction hanging basket for construction engineering includes a frame body 1. At the top of both sides of the outer wall of the frame body 1, fishing rings 7 are fixedly connected. On one side of the bottom surface of the outer wall of the frame body 1, a bidirectional motor 3 is fixedly connected. The position of the bidirectional motor 3 is close to the edge of the bottom surface of the frame body 1. The output ends of the bidirectional motor 3 are fixedly connected with threaded rods 16. At positions close to the two threaded rods 16 on the bottom surface of the outer wall of the frame body 1, two strip-shaped blocks 8 are slidably connected. The four strip-shaped blocks 8 are grouped in pairs. On the opposite side surfaces of each group of the four strip-shaped blocks 8, a first woven net 10 is fixedly connected together. At a position close to the middle of the two first woven nets 10 on the bottom surface of the outer wall of the frame body 1, a mounting plate 14 is slidably connected. On both sides of the mounting plate 14, second woven nets 13 are fixedly connected. The second woven nets 13 are located below the first woven nets 10.

[0025] As an alternative technical solution of the present invention, at positions on the outer wall of the frame body 1 close to the four strip-shaped blocks 8, first strip-shaped chutes 2 are opened. On one side of each of the four strip-shaped blocks 8, a strip-shaped slider 9 is fixedly connected. The four first strip-shaped chutes 2 are respectively slidably connected with the four first strip-shaped sliders 9. One end of each of the four first strip-shaped chutes 2 penetrates through the bottom surface of the frame body 1. By using this solution, the strip-shaped block 8 can be slidably connected to the bottom surface of the frame body 1 by the first strip-shaped chute 2 and the first strip-shaped slider 9, the strip-shaped block 8 can be limited and stabilized, and at the same time, the first woven net 10 can be limited.

[0026] As an alternative technical solution of the present invention, at positions on the bottom surface of the outer wall of the frame body 1 above the mounting plate 14, two second strip-shaped chutes 6 are opened. On the side of the mounting plate 14 close to the frame body 1, two second strip-shaped sliders 11 are fixedly connected. The two second strip-shaped chutes 6 are respectively slidably connected with the two second strip-shaped sliders 11. By using this solution, the mounting plate 14 can be slidably connected to the bottom surface of the frame body 1 by the second strip-shaped slider 11 and the second strip-shaped chute 6, the mounting plate 14 can be limited and stabilized, so that the mounting plate 14 can move stably along a straight line, and the mounting plate 14 can be prevented from shaking randomly.

[0027] As an alternative technical solution of the present invention, the length of the first strip-shaped chute 2 is equal to the length of the first strip-shaped slider 9, and the length of the second strip-shaped chute 6 is greater than the length of the second strip-shaped slider 11. By using this solution, the moving range of the strip-shaped block 8 can be maximized, the stability of the strip-shaped block 8 during movement can be further increased, the first woven net 10 can be prevented from shaking randomly, resulting in a poor anti-falling effect, and the stability of the first woven net 10 can be increased.

[0028] As an alternative technical solution of the present utility model, one side of the top surface of the mounting plate 14 is fixedly connected with a rack 15. One of the two output ends of the bidirectional motor 3 close to the rack 15 is fixedly connected with a gear 5. The gear 5 meshes with the rack 15. By using this solution, the bidirectional motor 3 can be used to drive the gear 5 to rotate. When the gear 5 rotates, the rack 15 can move, and the movement of the rack 15 drives the mounting plate 14 and the second woven net 13 to move accordingly.

[0029] As an alternative technical solution of the present utility model, a strip-shaped limiting groove 12 is formed in the middle of the mounting plate 14. One end of a limiting rod 4 is fixedly connected to the position on the bottom surface of the outer wall of the frame body 1 close to one side of the bidirectional motor 3. One end of the limiting rod 4 is slidably connected with the strip-shaped limiting groove 12. By using this solution, the stability of the mounting plate 14 can be increased, and the mounting plate 14 can be further limited to prevent the mounting plate 14 from shaking randomly when moving.

[0030] The following steps are required when using the aerial construction hanging basket for building engineering:

[0031] 1) When the threaded rod 16 rotates, the strip-shaped block 8 can be driven to move, and the first woven net 10 also moves accordingly. The two first woven nets 10 can extend out of the bottom surface of the frame body 1.

[0032] 2) When the bidirectional motor 3 rotates, the gear 5 also rotates simultaneously. The gear 5 meshes with the rack 15, and the rack 15 is fixedly connected with the mounting plate 14.

[0033] 3) When the gear 5 rotates, the mounting plate 14 and the second woven nets 13 on both sides can be driven to move out of the bottom surface of the frame body 1, further increasing the collection range.

[0034] To sum up, when the user uses it, the bidirectional motor 3 drives the two threaded rods 16 to rotate. The two threaded rods 16 are both threadedly connected with the strip-shaped block 8. The strip-shaped block 8 is slidably connected with the bottom surface of the frame body 1 through the first strip-shaped chute 2 and the first strip-shaped slider 9 to play a limiting role. When the threaded rod 16 rotates, the strip-shaped block 8 can be driven to move, and the first woven net 10 also moves accordingly. The two first woven nets 10 can extend out of the bottom surface of the frame body 1. When the construction tools accidentally fall, they can play a role in collection. When the bidirectional motor 3 rotates, the gear 5 also rotates simultaneously. The gear 5 meshes with the rack 15, and the rack 15 is fixedly connected with the mounting plate 14. The mounting plate 14 is slidably connected with the bottom surface of the frame body 1 to play a limiting role. When the gear 5 rotates, the mounting plate 14 and the second woven nets 13 on both sides can be driven to move out of the bottom surface of the frame body 1, further increasing the collection range, preventing the tools from falling and causing high-altitude parabolic. Finally, the bidirectional motor 3 can control the movement of the two first woven nets 10 and the second woven nets 13 at the same time, complete the extension or retraction of the first woven net 10 and the second woven net 13, greatly reducing the complexity of the operation. Only the bidirectional motor 3 needs to be controlled. And when retracting, it can reduce the difficulty of moving and transporting the frame body 1, which is more user-friendly.

[0035] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. An aerial construction hanging basket for building engineering, characterized in that: It includes a frame body (1). At the top of both sides of the outer wall of the frame body (1), fishing rings (7) are fixedly connected. At one side of the bottom surface of the outer wall of the frame body (1), a bidirectional motor (3) is fixedly connected. The position of the bidirectional motor (3) is close to the edge of the bottom surface of the frame body (1). The output ends of the bidirectional motor (3) are fixedly connected with threaded rods (16). At positions on the bottom surface of the outer wall of the frame body (1) close to the two threaded rods (16), two strip-shaped blocks (8) are slidably connected. The four strip-shaped blocks (8) are grouped in pairs. On the opposite side surfaces of each group of the four strip-shaped blocks (8), a first woven net (10) is fixedly connected together. At a position on the bottom surface of the outer wall of the frame body (1) close to the middle of the two first woven nets (10), a mounting plate (14) is slidably connected. On both sides of the mounting plate (14), second woven nets (13) are fixedly connected. The second woven nets (13) are located below the first woven nets (10).

2. The aerial construction hanging basket for construction engineering according to claim 1, characterized in that: At positions on the outer wall of the frame body (1) close to the four strip-shaped blocks (8), first strip-shaped chutes (2) are opened. On one side of each of the four strip-shaped blocks (8), strip-shaped sliders (9) are fixedly connected. The four first strip-shaped chutes (2) are respectively slidably connected with the four first strip-shaped sliders (9). One end of each of the four first strip-shaped chutes (2) penetrates through the bottom surface of the frame body (1).

3. The aerial construction hanging basket for construction engineering according to claim 2, characterized in that: At positions on the bottom surface of the outer wall of the frame body (1) above the mounting plate (14), two second strip-shaped chutes (6) are opened. On the side of the mounting plate (14) close to the frame body (1), two second strip-shaped sliders (11) are fixedly connected. The two second strip-shaped chutes (6) are respectively slidably connected with the two second strip-shaped sliders (11).

4. The aerial construction hanging basket for construction engineering according to claim 3, characterized in that: The length of the first strip-shaped chute (2) is equal to the length of the first strip-shaped slider (9), and the length of the second strip-shaped chute (6) is greater than the length of the second strip-shaped slider (11).

5. The aerial construction hanging basket for construction engineering according to claim 4, wherein: On one side of the top surface of the mounting plate (14), a rack (15) is fixedly connected. On one of the two output ends of the bidirectional motor (3) close to the rack (15), a gear (5) is fixedly connected. The gear (5) meshes with the rack (15).

6. The aerial construction hanging basket for construction engineering according to claim 5, characterized in that: In the middle of the mounting plate (14), a strip-shaped limiting groove (12) is opened. At a position on the bottom surface of the outer wall of the frame body (1) close to one side of the bidirectional motor (3), a limiting rod (4) is fixedly connected. One end of the limiting rod (4) is slidably connected with the strip-shaped limiting groove (12).