Sloping roof hanging basket system

The sloping roof suspended platform system is securely installed on the sloping roof using beam-binding components and reinforcing ropes, eliminating the need for long lever arm counterweights. This solves the problems of insufficient economy and safety of the jib support on the sloping roof, achieving efficient and safe construction results.

CN223907834UActive Publication Date: 2026-02-13SHANXI WUJIAN GRP CO LTD
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Patent Information

Application Number
CN202520505079.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-13
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

Existing jib supports require long lever arms for counterweights when used on sloping roofs, resulting in poor economy and safety, and they cannot adapt to diverse roof types.

Method used

The sloping roof suspended platform system uses a beam-binding assembly to securely connect the boom support to the sloping roof surface, eliminating the need for traditional long lever arm counterweights. Vertical and horizontal components and reinforcing ropes are used to ensure stability and wind resistance.

Benefits of technology

It has improved the applicability and flexibility of the suspended platform system, reduced material and construction costs, reduced safety risks, and improved construction efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an inclined roof hanging basket system, and belongs to the technical field of building construction. The hanging basket comprises a hanging arm support and a hanging basket body, the hanging arm support comprises a vertical assembly, a transverse assembly and a reinforcing rope system, the vertical assembly is fixed to the plane portion of the pitched roof, the transverse assembly is installed on the vertical assembly, the hanging basket body is connected to one end of the transverse assembly, and the other end of the transverse assembly is connected to the inclined face portion of the pitched roof through a beam binding assembly. The middle of the reinforcing rope system is wound around the top of the vertical assembly, and the two ends of the reinforcing rope system are connected to the two ends of the transverse assembly in a tensioned mode. The suspension arm support is connected with the pitched roof through the binding beam assembly, the suspension arm support can be stably installed on the pitched roof, a long-force-arm balance weight is not needed, material input is reduced, construction cost is reduced, meanwhile, the influence on a roof structure is reduced, potential safety risks and structural burdens caused by the fact that the balance weight is increased are avoided, and the construction efficiency is improved. And the application range and the flexibility of the hanging basket system are greatly improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of building construction, and particularly relates to a sloping roof hanging basket system. BACKGROUND

[0002] Hanging baskets are widely used in the construction industry, especially in the construction of high-rise buildings, exterior wall paint, glass curtain wall installation, air conditioner outdoor unit installation, and exterior wall cleaning. Using hanging baskets can improve work efficiency, reduce the time and cost of erecting scaffolding, and provide better flexibility and safety compared to other high-altitude work methods. Currently, the hanging basket is suspended at one end of the boom support, and the lifting device is used to complete the lifting operation. In order to ensure the stability of the lifting operation and wind resistance of the hanging basket, a counterweight is needed at the other end of the boom support.

[0003] In terms of the prior art, the existing boom support needs a long counterweight arm to achieve stable counterweight effect, which limits the boom support to be used only on flat roofs. However, roof forms are diverse, and sloping roofs have significant advantages in waterproofing and thermal insulation in addition to their aesthetic appearance. Due to the limited space at the edge of the sloping roof, the counterweight form of the existing hanging basket has poor economic and safety performance in implementation. SUMMARY

[0004] The utility model aims at solving the problems in the prior art and provides a sloping roof hanging basket system. The system is used for the fixed installation of a hanging basket on a large slope of a sloping roof in construction engineering, and the hanging basket can be installed without a rear counterweight and is not affected by the size of the roof site.

[0005] The utility model is implemented by the following technical solutions:

[0006] A sloping roof hanging basket system includes a boom support and a hanging basket suspended at the end of the boom support. The boom support includes a vertical assembly, a horizontal assembly, and a reinforcing rope system. The vertical assembly is fixed to the flat part of the sloping roof. The horizontal assembly is installed on the vertical assembly. The hanging basket is connected to one end of the horizontal assembly. The other end of the horizontal assembly is connected to the inclined part of the sloping roof through a beam binding assembly. The middle part of the reinforcing rope system is wound around the top of the vertical assembly. The two ends of the reinforcing rope system are tensioned and connected to the two ends of the horizontal assembly.

[0007] Further, the vertical assembly includes a bottom support, a height-raising support, and a top support. The bottom support is fixed to the flat part of the sloping roof. The height-raising support is fitted inside the bottom support and is connected through fasteners. The horizontal assembly is installed on the height-raising support. The top support is installed on the height-raising support. The middle part of the reinforcing rope system is wound around the top support.

[0008] Further, the transverse assembly comprises a rear arm and a front arm, one end of the front arm is installed on the cantilever support, the other end extends to the outside of the inclined roof and is used for connecting the hanging basket, one end of the rear arm is connected on the cantilever support, and the other end is connected on the inclined surface of the inclined roof through the binding beam assembly.

[0009] Further, the binding beam assembly comprises a binding beam steel wire rope and a flexible sleeve, the binding beam steel wire rope is connected between the rear arm and a binding hole, the binding hole is arranged on the inclined surface of the inclined roof near the rear arm, and the flexible sleeve is sleeved on the binding beam steel wire rope and arranged between the binding beam steel wire rope and the binding hole.

[0010] Further, the top support comprises a U-shaped seat, a top rod and a guide wheel, the U-shaped seat cooperates with the cantilever support to form a cavity for accommodating the rear arm and the front arm, the top rod is installed on the U-shaped seat, a reinforcing rib is arranged between the top rod and the U-shaped seat, the guide wheel is installed on the top rod, and the middle part of the reinforcing rope is wound around the guide wheel.

[0011] Further, a groove is arranged at the joint of the U-shaped seat and the front arm, a buffer pad is arranged in the groove, and the reinforcing rope is tensioned on the front arm to generate prestress.

[0012] Further, the reinforcing rope comprises a front end seat, a reinforcing steel wire rope, a rope clamp and a flower basket bolt, the reinforcing steel wire rope is clamped by the rope clamp at two ends, one end of the reinforcing steel wire rope is connected with the front end seat, and the other end is connected with the flower basket bolt, the front end seat is installed on the front arm, and the flower basket bolt is installed on the rear arm.

[0013] Further, a plurality of rope clamps are connected on the reinforcing steel wire rope, the interval between two adjacent rope clamps is less than the length of the clamped reinforcing steel wire rope, so that an observation ring is formed, and the reinforcing rope further comprises a warning block, and the warning block is arranged in the observation ring.

[0014] The warning block is in a U-shaped structure, a straight rope groove is arranged on the flat end of the warning block, and a warning groove is arranged on the curved end of the warning block.

[0015] The warning block is made of lime.

[0016] The binding beam assembly connects the inclined roof, can stably install the hanging arm support on the inclined roof without the traditional long force arm counterweight, so that it is applicable to various inclined roofs without the long force arm counterweight, reduces material investment, reduces construction cost, reduces influence on the roof structure, avoids potential safety risks and structural burdens caused by the increase of the counterweight, and greatly improves the application range and flexibility of the hanging basket system. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a structural schematic view of the utility model.

[0018] Figure 2 As Figure 1 Enlarged view at A in the middle.

[0019] Figure 3 As the structure diagram of the top support in the utility model.

[0020] Figure 4 As the structure diagram of the reinforcing rope system in the utility model.

[0021] Figure 5 As the structure diagram of the warning block in the utility model.

[0022] In the figure: 0 - inclined roof, 01 - binding hole, 1 - bottom support, 2 - high support, 3 - rear arm, 4 - front arm, 5 - top support, 51 - U-shaped seat, 52 - top rod, 53 - guide wheel, 55 - buffer pad, 56 - reinforcing rib, 6 - reinforcing rope system, 61 - front end seat, 62 - reinforcing steel wire rope, 63 - rope clamp, 64 - warning block, 641 - straight rope groove, 642 - warning groove, 65 - basket bolt, 7 - bearing disc, 8 - hanging basket, 9 - binding beam assembly, 91 - binding beam steel wire rope, 92 - flexible sleeve. DETAILED DESCRIPTION

[0023] The utility model is further described below in combination with the drawings:

[0024] As Figures 1-5 shown, the embodiment provides a kind of inclined roof hanging basket system, including hanging arm support and the hanging basket 8 hung in the end of hanging arm support, hanging arm support includes vertical assembly, horizontal assembly and reinforcing rope system 6, vertical assembly is fixed in the plane portion of inclined roof 0, horizontal assembly is installed on vertical assembly, the hanging basket 8 is connected in one end of horizontal assembly, the other end of horizontal assembly is connected in the inclined portion of inclined roof 0 by binding beam assembly 9, the middle portion of reinforcing rope system 6 is wound over the top of vertical assembly, and the two ends of reinforcing rope system 6 are connected in the two ends of horizontal assembly by tension.

[0025] The inclined roof hanging basket system provided by the embodiment has the advantages of strong adaptability, high stability, good economic benefits and convenient operation compared with traditional hanging baskets. Specifically, the inclined roof hanging basket system provided by the embodiment connects the hanging arm support to the inclined surface of the inclined roof by using the beam binding assembly, so that the system can be stably installed on the inclined roof without the long force arm counterweight required by the traditional hanging basket system, which makes it suitable for roofs of various inclinations and greatly improves the application range and flexibility of the system. The arrangement of the reinforced rope system ensures the stability and wind resistance of the hanging basket during operation on the inclined roof. Without additional long force arm counterweight, the material and construction cost is reduced, and the impact on the roof structure is also reduced, avoiding potential safety risks and structural burdens caused by adding counterweight. The structure of the hanging basket system is simple, and it can be quickly installed and dismantled, improving construction efficiency and facilitating maintenance and inspection.

[0026] As shown in Figure 1 , the vertical assembly includes a bottom support 1, a height-raising support 2 and a top support 5, the bottom support 1 is fixed to the flat surface of the inclined roof 0, the height-raising support 2 is sleeved in the bottom support 1 and is connected movably by fasteners, the horizontal assembly is installed on the height-raising support 2, the top support 5 is installed on the height-raising support 2, and the middle part of the reinforced rope system 6 is wound around the top support 5. As the basic part of the vertical assembly, the bottom support 1 is firmly fixed to the flat surface of the inclined roof 0. This design ensures the stable foundation of the entire hanging basket system. The height-raising support 2 is movably connected inside the bottom support 1 by fasteners. This adjustable connection allows the height of the height-raising support 2 to be adjusted according to actual needs. This design flexibility allows quick adjustment and adaptation to different height parapets, while ensuring that the hanging basket can reach the desired working height. The top support 5 is installed on the top of the height-raising support 2, and the two work together to assist the reinforced rope system 6 to smoothly tension the horizontal assembly. The arrangement of the reinforced rope system 6 not only increases the wind resistance and stability of the hanging basket, but also ensures the balance and safety of the hanging basket 8 during operation on the inclined roof through the prestressed mechanism.

[0027] As shown in Figure 1 , the horizontal assembly includes a rear arm 3 and a front arm 4, one end of the front arm 4 is installed on the height-raising support 2, and the other end extends to the outside of the inclined roof 0 for connecting the hanging basket 8, one end of the rear arm 3 is connected to the height-raising support 2, and the other end is connected to the inclined surface of the inclined roof 0 by the beam binding assembly 9. The horizontal assembly is an indispensable part of the inclined roof hanging basket system. It not only supports the hanging basket 8, but also works with the vertical assembly and other components to ensure the stability and safety of the entire system, which is the key to efficient and safe construction of inclined roofs.

[0028] As shown in Figure 1 and Figure 2As shown, the binding beam assembly 9 includes a binding beam steel wire rope 91 and a flexible sleeve 92, the binding beam steel wire rope 91 is connected between the rear arm 3 and a binding hole 01, the binding hole 01 is arranged on the inclined roof 0 inclined surface part near the rear arm 3, the flexible sleeve 92 is sleeved on the binding beam steel wire rope 91 and is arranged between the binding beam steel wire rope 91 and the binding hole 01. The binding hole 01 of the inclined roof 0 inclined surface part is two, which are used for the in and out of the binding beam steel wire rope 91 respectively, and the spacing of the two binding holes 01 is large enough to ensure the strength of the binding beam steel wire rope 91 connected on the inclined roof 0 to pull the hanging basket 8. After the hanging basket system is removed, the binding hole 01 needs to be restored to the wall surface.

[0029] As shown in the figure, Figure 3 As shown, the top support 5 includes a U-shaped seat 51, a top rod 52 and a guide wheel 53, the U-shaped seat 51 cooperates with the cantilever support 2 to form a cavity accommodating the connection between the rear arm 3 and the front arm 4, the top rod 52 is installed on the U-shaped seat 51, and a reinforcing rib 56 is arranged between the top rod 52 and the U-shaped seat 51, and the guide wheel 53 is installed on the top rod 52, and the middle part of the reinforcing rope system 6 passes through the guide wheel 53. The above-mentioned cavity structure layout not only saves space but also ensures the stable connection between the components. The reinforcing rib 56 between the top rod and the U-shaped seat enhances the structural strength, and the guide wheel 53 ensures the smooth transition of the reinforcing rope system 6 during operation, reduces friction, and prolongs the service life of the rope.

[0030] Specifically, a recess is arranged at the joint between the U-shaped seat 51 and the front arm 4, and a buffer pad 55 is arranged in the recess, and the reinforcing rope system 6 is tensioned to generate prestress on the front arm 4. In specific construction, the reinforcing rope system 6 is tensioned to make the front arm 4 upwardly tilt 3cm-5cm, so as to introduce prestress in the structure of the front arm 4, thereby improving the rigidity and stability of the front arm 4. The prestress makes the front arm 4 in a “compressed” state under no load, that is, the upper fibers of the front arm 4 are compressed, and the lower fibers are stretched. This state is equivalent to establishing an initial internal force balance system in the front arm 4. When the hanging basket is loaded, the front arm 4 will be subjected to downward external force, and if there is no prestress, the front arm 4 may be deformed greatly due to excessive deflection, and even the structure may fail. However, with the existence of the prestress, the existing internal force balance system of the front arm 4 can partially offset the effect of the external load when the front arm 4 bears the external force, so that the deformation of the front beam is reduced, and the rigidity is improved.

[0031] As shown in the figure, Figure 1 And Figure 4As shown, the reinforcing rope system 6 includes a front end seat 61, a reinforcing wire rope 62, rope clamps 63, and turnbuckles 65. Both ends of the reinforcing wire rope 62 are knotted by the rope clamps 63. One end of the reinforcing wire rope 62 mates with the front end seat 61, and the other end mates with the turnbuckle 65. The front end seat 61 is mounted on the forearm 4, and the turnbuckle 65 is mounted on the rear arm 3. The turnbuckle 65 is used to adjust the effective length of the reinforcing rope system 6 and is also key to generating prestress. To ensure the stability and effectiveness of the knot, there are multiple rope clamps 63, with a spacing of approximately 6 cm between adjacent rope clamps 63.

[0032] like Figure 5 As shown, multiple rope clamps 63 are connected to the reinforcing wire rope 62. When the distance between two adjacent rope clamps 63 is less than the length of the reinforcing wire rope 62 being clamped, an observation ring is formed. The reinforcing rope system 6 also includes a warning block 64, which is set inside the observation ring. The warning block 64 has a U-shaped structure and is made of limestone. The flat end of the warning block 64 has a straight rope groove 641, and the curved end has a warning groove 642. The straight rope groove 641 and the warning groove 642 allow the warning block 64 to be stably clamped into the observation ring. The warning block 64 serves as an early warning device in the reinforcing rope system 6. When the observation ring malfunctions or wears to a certain extent, the limestone warning block 64 will be squeezed, deformed, or even disintegrate, thus emitting a clear visual or audible signal to remind the operator to promptly inspect and replace the reinforcing rope system 6 to prevent accidents.

[0033] In particular, such as Figure 1 As shown, to prevent objects from falling from heights, the forearm 4 is equipped with a support plate 7 to catch any collapsing warning blocks 64.

[0034] The embodiments described above only illustrate the preferred implementation of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A sloped roof hanging basket system, characterized by: The crane basket is hung on the end of the boom support, the boom support comprises a vertical assembly, a horizontal assembly and a reinforcing rope system, the vertical assembly is fixed on the flat part of the sloping roof, the horizontal assembly is installed on the vertical assembly, the crane basket is connected on one end of the horizontal assembly, the other end of the horizontal assembly is connected on the inclined part of the sloping roof through a binding beam assembly, and the middle part of the reinforcing rope system is wound around the top of the vertical assembly and is tightly connected on the two ends of the horizontal assembly.

2. The sloped roof hanging basket system according to claim 1, characterized in that: The vertical assembly comprises a bottom support, a heightening support and a top support, the bottom support is fixed on the flat part of the sloping roof, the heightening support is sleeved in the bottom support and is movably connected through a fastener, the horizontal assembly is installed on the heightening support, the top support is installed on the heightening support, and the middle part of the reinforcing rope system is wound around the top support.

3. The sloped roof hanging basket system according to claim 2, characterized in that: The horizontal assembly comprises a rear arm and a front arm, one end of the front arm is installed on the heightening support, the other end extends to the outside of the sloping roof and is used for connecting the crane basket, one end of the rear arm is connected on the heightening support, and the other end is connected on the inclined part of the sloping roof through the binding beam assembly.

4. The sloped roof hanging basket system according to claim 3, characterized in that: The binding beam assembly comprises a binding beam steel wire rope and a flexible sleeve, the binding beam steel wire rope is tightly connected between the rear arm and a binding hole, the binding hole is arranged on the inclined part of the sloping roof near the rear arm, and the flexible sleeve is sleeved on the binding beam steel wire rope and is arranged between the binding beam steel wire rope and the binding hole.

5. The sloped roof hanging basket system according to claim 4, characterized in that: The top support comprises a U-shaped seat, a top rod and a guide wheel, the U-shaped seat cooperates with the heightening support to form a cavity for accommodating the rear arm and the front arm, the top rod is installed on the U-shaped seat, a reinforcing rib is arranged between the top rod and the U-shaped seat, and the guide wheel is installed on the top rod, and the middle part of the reinforcing rope system is wound around the guide wheel.

6. The sloped roof hanging basket system according to claim 5, characterized in that: A groove is arranged at the joint of the U-shaped seat and the front arm, a buffer pad is arranged in the groove, and the reinforcing rope system generates a prestress when being tightly connected on the front arm.

7. The sloped roof hanging basket system according to claim 6, characterized in that: The reinforcing rope system comprises a front end seat, a reinforcing steel wire rope, a rope clamp and a basket bolt, the two ends of the reinforcing steel wire rope are tied by the rope clamp, one end of the reinforcing steel wire rope is movably connected with the front end seat, and the other end is movably connected with the basket bolt, the front end seat is installed on the front arm, and the basket bolt is installed on the rear arm.

8. The sloped roof hanging basket system according to claim 7, characterized in that: A plurality of rope clamps are connected on the reinforcing steel wire rope, the interval between two adjacent rope clamps is less than the length of the reinforcing steel wire rope, thereby forming an observation ring, and the reinforcing rope system further comprises a warning block, and the warning block is arranged in the observation ring.

9. The sloped roof hanging basket system according to claim 8, characterized in that: The warning block is in a U-shaped structure, a straight groove is arranged on the flat end of the warning block, and a warning groove is arranged on the curved end of the warning block.

10. The sloped roof hanging basket system according to claim 9, characterized in that: The warning block is made of lime.