A hanging structure of a hanging basket for a special-shaped roof

CN224799865UActive Publication Date: 2026-09-25CHINA CONSTR SECOND ENG BUREAU LTD
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Patent Information

Application Number
CN202522277723.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-28
Publication Date
2026-09-25
Estimated Expiration
2035-10-28

AI Technical Summary

Technical Problem

[0004]本实用新型提供了一种异形屋面的吊篮悬挂结构,用以解决传统的吊篮悬挂结构无法在倾斜的异形屋面提供稳定的安装点的技术问题

Benefits of technology

[0012]本实用新型的有益效果体现在:

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Abstract

The utility model discloses a kind of special-shaped roof's hanging basket suspension structure, including horizontal roof, the inclined roof being set across with horizontal roof, support frame assembly installed on horizontal roof, fixed support frame assembly tail end in horizontal roof's embedded plate component, setting in the lifting assembly of support frame assembly outside, fixed lifting assembly tail end in the tie plate component of inclined roof, hanging basket component is installed in the end of lifting assembly;The utility model is fixed in inclined roof by tie plate component, provides reliable tie point, ensures the firm installation of lifting assembly on special-shaped roof, reduces the risk of swinging of hanging basket, improves construction safety, through the support crossbeam of adjustable length, the versatility and adaptability of structure are improved, various special-shaped roof installation needs can be flexibly responded, through inverted U shape embedded plate, wing plate and positioning bolt and the specification of support crossbeam are adapted to realize quick positioning, reduce installation error.
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Description

Technical Field

[0001] This utility model relates to the field of suspended platform suspension structure technology, and in particular to a suspended platform suspension structure for irregularly shaped roofs. Background Technology

[0002] In the process of building construction or maintenance, suspended platforms are often used for high-altitude operations. Compared with traditional scaffolding, which requires a large number of steel pipes and fasteners, has a long construction period, consumes a lot of materials, and whose stability and safety depend on the quality of erection, suspended platform operations can reduce labor intensity, improve work efficiency, and ensure construction safety. However, with the development of urban planning and building technology, building shapes are constantly being updated, and various irregular roof shapes have emerged, such as pitched roofs and curved roofs. These types of roofs have complex shapes, and how to meet the requirements of project progress management, cost control, and safety management for projects with complex building shapes has become a problem that construction companies need to solve.

[0003] Existing suspended platform structures typically rely on horizontal and spacious installation space, such as setting suspension points on flat or standard roofs. However, for sloping or irregularly shaped roofs, the limited area often makes it difficult to provide sufficient space for installing stable support frames. Traditional suspension structures are not securely fixed on sloping surfaces, making them prone to slippage or overturning, and facing challenges such as insufficient installation points and stability issues. Therefore, ensuring stable installation points within limited space and guaranteeing the flexible adjustment of the suspended platform structure requires targeted design. Utility Model Content

[0004] This utility model provides a suspended basket suspension structure for irregular roofs, which solves the technical problem that traditional suspended basket suspension structures cannot provide stable installation points on inclined irregular roofs.

[0005] To achieve the above objectives, the present invention adopts the following technical solution. A suspended platform structure for an irregularly shaped roof includes a horizontal roof, an inclined roof connected to the horizontal roof at an obtuse angle, a support frame assembly installed on the horizontal roof, an embedded plate assembly fixed to the tail end of the support frame assembly and connected to the horizontal roof, a lifting assembly disposed on the outside of the support frame assembly, a tie plate assembly fixed to the tail end of the lifting assembly and connected to the inclined roof, and a suspended platform assembly installed at the end of the lifting assembly. The end of the support frame assembly extends beyond the edge of the horizontal roof. The tie plate assembly includes a tie main plate, two tie lugs arranged parallel to one side of the tie main plate, fixing bolts at the four corners of the tie main plate, and tie bolts that pass through the two tie lugs. The lifting component is wound around the tie bolt at its tail end, and the fixing bolt is threadedly connected to the inclined roof.

[0006] Furthermore, the support frame assembly includes a support beam and a support column vertically mounted in the middle of the support beam.

[0007] Furthermore, the supporting beams are assembled and connected, and the adjustment range of the supporting beams can accommodate the design length exceeding the horizontal roof. The supporting crossbeams have intermittently distributed connecting holes, and the corresponding supporting crossbeams are fixedly connected by pins passing through the corresponding connecting holes.

[0008] Furthermore, the embedded plate assembly includes an inverted U-shaped embedded plate that is snapped onto the surface of the supporting beam, wing plates disposed on both sides of the bottom of the inverted U-shaped embedded plate, positioning holes opened on the surface of the wing plates, positioning bolts passing through the positioning holes, fastening holes opened on the side wall of the inverted U-shaped embedded plate, and fastening bolts passing through the fastening holes. The size of the opening of the inverted U-shaped embedded plate is adapted to the cross-sectional size of the supporting beam; The positioning bolts are threaded to the horizontal roof surface.

[0009] Furthermore, the fastening bolts are sequentially installed through the side wall of the inverted U-shaped embedded plate and the supporting crossbeam.

[0010] Furthermore, the lifting assembly includes a column pulley disposed at the top of the supporting column, a beam pulley disposed at the end of the supporting beam, and a lifting steel cable wound around the tie bolt and passing through the column pulley and the beam pulley in sequence.

[0011] Furthermore, the suspended platform assembly includes a suspended platform body, a pulley system installed on the top of the suspended platform body, and a winch installed inside the suspended platform body.

[0012] The beneficial effects of this utility model are reflected in: 1) This utility model provides reliable tie points by fixing the tie plate assembly to the sloping roof, ensuring the firm installation of the lifting assembly on the irregular roof, reducing the risk of swaying of the suspended platform, and improving construction safety.

[0013] 2) This utility model improves the versatility and adaptability of the structure by using an adjustable-length support beam, which can flexibly meet the installation needs of various irregular roof shapes.

[0014] 3) This utility model achieves rapid positioning by adapting the inverted U-shaped embedded plate, wing plate and positioning bolts to the specifications of the supporting crossbeam, thereby reducing installation errors.

[0015] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention; the main objectives and other advantages of this invention may be realized and obtained by means of the methods particularly pointed out in the description. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the suspended basket structure for irregularly shaped roofs; Figure 2 This is a side view of the support frame assembly and the lifting assembly; Figure 3 This is a structural schematic diagram of the embedded plate assembly; Figure 4 This is a cross-sectional view of the embedded plate assembly; Figure 5 This is the front view of the tie plate assembly; Figure 6 This is a top view of the tie plate assembly; Figure 7 This is a structural diagram of the suspended platform assembly.

[0017] Reference numerals: 1-Horizontal roof, 2-Sloping roof, 3-Support frame assembly, 31-Support beam, 32-Support column, 33-Connecting hole, 4-Embedded plate assembly, 41-Inverted U-shaped embedded plate, 42-Wing plate, 43-Positioning hole, 44-Positioning bolt, 45-Fastening hole, 46-Fastening bolt, 5-Lifting assembly, 51-Column pulley, 52-Beam pulley, 53-Lifting cable, 6-Tie plate assembly, 61-Tie main plate, 62-Tie ear plate, 63-Fixing bolt, 64-Tie bolt, 7-Suspended basket assembly, 71-Suspended basket body, 72-Pulley block, 73-Winch. Detailed Implementation

[0018] Taking a residential project as an example, in order to improve construction safety and efficiency, the following measures were taken: Figure 1-7 The construction of a suspended basket structure for an irregularly shaped roof is shown.

[0019] In this embodiment, a suspended basket structure for an irregularly shaped roof includes a horizontal roof 1, an inclined roof 2 intersecting the horizontal roof 1, a support frame assembly 3 installed on the horizontal roof 1, an embedded plate assembly 4 fixing the tail end of the support frame assembly 3 to the horizontal roof 1, a lifting assembly 5 disposed on the outside of the support frame assembly 3, a tie plate assembly 6 fixing the tail end of the lifting assembly 5 to the inclined roof 2, and a suspended basket assembly 7 installed at the end of the lifting assembly 5; wherein, the end of the support frame assembly 3 extends beyond the edge of the horizontal roof 1; In this embodiment, the support frame assembly 3 includes a support beam 31 and a support column 32 vertically installed in the middle of the support beam 31. The support beam 31 is a rectangular cross-section metal tube with high bending strength and durability, and the sides of the rectangular tube can better fit with the horizontal roof 1, increasing stability. In this embodiment, the support beam 31 is an adjustable sleeve, and the minimum length of the adjustable range of the support beam 31 exceeds the edge of the horizontal roof 1. The adjustable length of the support beam 31 improves the versatility and adaptability of the structure, and can flexibly meet the installation requirements of various irregular roofs. The surface of each sleeve of the support beam 31 is provided with positioning holes 43 at intervals, and bolts are passed through the corresponding positioning holes 43 to fix the length of the support beam 31.

[0020] In this embodiment, the embedded plate assembly 4 includes an inverted U-shaped embedded plate 41 that is snapped onto the surface of the supporting beam 31, wing plates 42 disposed on both sides of the bottom of the inverted U-shaped embedded plate 41, positioning bolts 44 passing through the surface of the wing plates 42, and fastening bolts 46 passing through the sidewall of the inverted U-shaped embedded plate 41. The positioning bolts 44 are threadedly connected to the horizontal roof 1. The size of the groove of the inverted U-shaped embedded plate 41 is adapted to the cross-sectional size of the supporting beam 31. The inverted U-shaped embedded plate 41 is quickly positioned by the wing plates 42 and the positioning bolts 44, reducing installation errors. The fastening bolts 46 are sequentially installed through the sidewall of the inverted U-shaped embedded plate 41 and the supporting beam 31, and the fastening bolts 46 tightly lock the embedded plate assembly 4 and the supporting beam 31 to prevent relative sliding or loosening, thereby reducing safety risks.

[0021] In this embodiment, the tie plate assembly 6 includes a tie main plate 61, two tie ear plates 62 arranged parallel to one side of the tie main plate 61, fixing bolts 63 arranged at the four corners of the tie main plate 61, and tie bolts 64 arranged through the two tie ear plates 62; wherein, the tail end of the lifting component 5 is wound around the tie bolts 64, and the fixing bolts 63 are threadedly connected to the inclined roof 2; the tie plate assembly 6 is fixed to the inclined roof 2, providing a reliable tie point, ensuring the firm installation of the lifting component 5 on the irregular roof, reducing the risk of swaying of the suspended platform, and improving construction safety.

[0022] In this embodiment, the lifting assembly 5 includes a column pulley 51 disposed at the top of the supporting column 32, a beam pulley 52 disposed at the end of the supporting beam 31, and a lifting cable 53 wound around the tie bolt 64 and passing through the column pulley 51 and the beam pulley 52 in sequence; wherein, the end of the lifting cable 53 is longer than the end of the supporting beam 31, and the pulley system reduces the frictional resistance of the lifting cable 53, making the lifting of the basket more stable.

[0023] In this embodiment, the suspended platform assembly 7 includes a suspended platform body 71 and a pulley block 72 installed on the top of the suspended platform body 71; wherein, the end of the lifting steel cable 53 is installed in conjunction with the pulley block 72 to change the suspension height of the suspended platform body 71, and the winch 73 and the pulley block 72 constitute a reliable lifting mechanism, which allows for precise control of the suspended platform height, is easy to operate, enhances construction accuracy and safety, and reduces manpower consumption.

[0024] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any changes or substitutions conceived by those skilled in the art within the scope of the technology disclosed in this utility model should be included within the scope of protection of this utility model.

Claims

1. A suspended basket structure for irregularly shaped roofs, characterized in that, It includes a horizontal roof (1), an inclined roof (2) connected to the horizontal roof (1) at an obtuse angle, a support frame assembly (3) installed on the horizontal roof (1), an embedded plate assembly (4) fixed to the tail end of the support frame assembly (3) and connected to the horizontal roof (1), a lifting assembly (5) disposed on the outside of the support frame assembly (3), a tie plate assembly (6) fixed to the tail end of the lifting assembly (5) and connected to the inclined roof (2), and a suspended basket assembly (7) installed at the end of the lifting assembly (5). Among them, the end of the support frame assembly (3) extends beyond the edge of the horizontal roof (1); The tie plate assembly (6) includes a tie plate main board (61), two tie lugs (62) arranged parallel to one side of the tie plate main board (61), fixing bolts (63) arranged at the four corners of the tie plate main board (61), and tie bolts (64) arranged through the two tie lugs (62). The tail end of the lifting component (5) is wound around the tie bolt (64), and the fixing bolt (63) is threadedly connected to the inclined roof (2).

2. The suspended basket structure for irregularly shaped roofs according to claim 1, characterized in that, The support frame assembly (3) includes a support beam (31) and a support column (32) vertically installed in the middle of the support beam (31).

3. The suspended basket structure for irregularly shaped roofs according to claim 2, characterized in that, The supporting beam (31) is assembled and connected, and the adjustment range of the supporting beam (31) can accommodate the design length of the horizontal roof (1); Among them, the support beam (31) has connecting holes (33) spaced apart, and the corresponding spliced ​​support beams (31) are fixedly connected by pins passing through the corresponding connecting holes (33).

4. The suspended basket structure for irregularly shaped roofs according to claim 3, characterized in that, The embedded plate assembly (4) includes an inverted U-shaped embedded plate (41) that is clamped on the surface of the support beam (31), wing plates (42) that are provided on both sides of the bottom of the inverted U-shaped embedded plate (41), positioning holes (43) opened on the surface of the wing plates (42), positioning bolts (44) that pass through the positioning holes (43), fastening holes (45) opened on the side wall of the inverted U-shaped embedded plate (41), and fastening bolts (46) that pass through the fastening holes (45). Among them, the size of the opening of the inverted U-shaped embedded plate (41) is adapted to the cross-sectional size of the supporting beam (31); The positioning bolt (44) is threaded to the horizontal roof (1).

5. The suspended basket structure for irregularly shaped roofs according to claim 4, characterized in that, The fastening bolts (46) are sequentially installed through the side wall of the inverted U-shaped embedded plate (41) and the supporting beam (31).

6. The suspended basket structure for irregularly shaped roofs according to claim 5, characterized in that, The lifting assembly (5) includes a column pulley (51) located at the top of the support column (32), a beam pulley (52) located at the end of the support beam (31), and a lifting cable (53) that is wound around the tie bolt (64) and passes through the column pulley (51) and the beam pulley (52) in sequence.

7. The suspended basket structure for irregularly shaped roofs according to claim 6, characterized in that, The suspended platform assembly (7) includes a suspended platform body (71), a pulley assembly (72) installed on the top of the suspended platform body (71), and a winch (73) installed inside the suspended platform body (71).