Super-high-altitude cantilever hanging basket structure
Through the ultra-high-altitude cantilevered hanging basket structure, using components such as support disc buckle frames and suspension wire ropes, the problem of conventional hanging baskets being unable to be erected in exterior wall decoration and renovation is solved, the convenience and safety of construction are achieved, and the construction risks and costs are reduced.
Patent Information
- Application Number
- CN202422604751.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-28
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-10-28
AI Technical Summary
In exterior wall decoration and renovation projects, when encountering design restrictions such as grilles, super-high roof cantilever beams or special-shaped structures, conventional hanging baskets cannot be erected, resulting in construction difficulties.
It adopts an ultra-high-altitude cantilevered hanging basket structure, which includes a supporting disc buckle frame, an upper bracket assembly, a suspension wire rope and a fixed wire rope. The stability is improved by wooden pads and anti-tilt wire ropes. The cantilever platform is fixed to the upper bracket through the suspension wire rope. The roof cantilever beam is rigidly connected to the supporting disc buckle frame to form a stable rectangular hoop structure.
It successfully solved the problem that conventional construction methods could not be used for special-shaped buildings. The construction was convenient, safe and reliable, which reduced construction risks, ensured construction quality and construction period, and saved costs.
Smart Images

Figure CN223317513U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of decorative hanging baskets, and more specifically to the technical field of ultra-high altitude cantilevered hanging basket structures. Background Art
[0002] In exterior wall decoration and renovation projects, in order to complete the exterior wall decoration work, a series of construction guarantee measures such as steel pipe scaffolding, climbing frames, hanging baskets, etc. are often used to ensure the smooth completion of the exterior wall decoration project. However, since the erection height of the steel pipe scaffolding is limited and wall connecting parts need to be set up, it has a great impact on the later completion effect; when the height is not very high, it is not cost-effective to use climbing frames, especially for some special-shaped buildings that cannot use climbing frames; therefore, hanging baskets are the preferred measure to solve exterior wall decoration and renovation, but conventional hanging baskets generally use front and rear supports to fix them in a specified position. In order to prevent the hanging basket from overturning, a counterweight of the rear support and a pre-embedded ring are also set for anti-tilt fixation.
[0003] When the design has a grille, or the roof has an extremely high cantilever beam, or is restricted by the on-site roof conditions (special-shaped structure), there is no embedded fixing ring for the embedded rear support, or it is difficult to set up the counterweight, making it impossible to set up a conventional hanging basket bracket.
[0004] How to solve the design and construction of ultra-high altitude hanging baskets has become an urgent problem to be solved. Utility Model Content
[0005] The purpose of the present invention is to provide an ultra-high cantilevered hanging basket structure in order to solve the construction technical difficulties when a conventional hanging basket bracket cannot be set up due to the design of a grid, or an ultra-high cantilevered roof beam, or due to the limitations of on-site roof conditions (special-shaped structure), there is no embedded fixing ring for the embedded rear support, or it is difficult to set the counterweight.
[0006] In order to achieve the above-mentioned purpose, the present invention specifically adopts the following technical solutions:
[0007] The utility model provides an ultra-high altitude cantilevered hanging basket structure, comprising a supporting disc buckle frame arranged at a cantilevered beam of a roof, two upper bracket assemblies arranged in parallel on the top of the supporting disc buckle frame, and a cantilevered platform connected to the two upper bracket assemblies by a pull rope.
[0008] In one embodiment, each upper bracket assembly includes an upper bracket, a suspension wire rope, a wooden spacer, a fixing wire rope, and an anti-tilt wire rope;
[0009] The wooden pad is located on the support plate buckle frame at the bottom of the upper bracket; the front and rear ends of the upper bracket are connected to the roof cantilever beam through fixed steel wire ropes and anti-tilt steel wire ropes respectively; the cantilever platform is fixed to the upper bracket through hanging steel wire ropes.
[0010] Specifically, the wooden pads provide a supporting base for the upper bracket. The wooden pads prevent the upper bracket of the cantilever platform from being rigidly connected directly to the top supporting buckle frame, thereby ensuring the stability and safety of the upper bracket.
[0011] The cantilever platform is a component of the conventional hanging basket, a finished component, and an important component of the ultra-high altitude cantilever hanging basket structure. It is located at the front end, providing up and down operating space for the operator, and is fixed to the upper bracket by a hanging wire rope.
[0012] There is a fixed steel wire rope and an anti-tilt steel wire rope in front and behind the upper bracket respectively to fix the upper bracket and avoid collapse and overturning.
[0013] The roof cantilever beam (roof parapet) is an important part of the main structure and is generally located at the top edge of the main structure's facade. This roof cantilever beam (roof parapet) provides a fixed foundation for the installation of wall connecting parts, fixed steel wire ropes, and anti-tilt steel wire ropes.
[0014] In one embodiment, a connecting wall is provided on the roof cantilever beam and is rigidly connected to the supporting plate buckle frame.
[0015] Specifically, a rectangular hoop structure is formed by steel pipes on the cantilever beam (or on the top of the roof parapet), which is rigidly fixed to the main structural member at the edge of the roof and rigidly connected to the support disc bracket on the roof, thereby improving the stability and safety of the entire support disc bracket and avoiding safety accidents such as overturning and collapse during the construction of the hanging basket when the construction is super high or cantilevered.
[0016] In one embodiment, one end of the suspension wire rope is fixedly connected to the cantilever platform, and the other end of the suspension wire rope passes around the fixed pulley and is fixedly connected to the upper bracket.
[0017] Specifically, the suspension wire rope is a component of a conventional hanging basket, a finished component, one end of which is fixed to the cantilever platform, and the other end is fixed to the upper bracket through a wire rope clamp. The cantilever platform is suspended and moved up and down through this suspension wire rope.
[0018] In one embodiment, the fixed steel wire rope is located at the front end of the bottom of the upper bracket, and the fixed steel wire rope is fixed to the upper bracket and the roof cantilever beam at the bottom through a wire rope clamp.
[0019] Specifically, the fixed wire rope is located at the front end of the bottom of the upper bracket, and is fixed to the upper bracket and the roof cantilever beam (roof parapet) and other components at the bottom through the wire rope clamp to ensure the stability of the hanging basket due to the ultra-high cantilever front end.
[0020] In one embodiment, the anti-tilt wire rope is located at the rear end of the bottom of the upper bracket, and both ends of the anti-tilt wire rope are fixed to the upper bracket and the roof cantilever beam at the bottom respectively through wire rope clamps.
[0021] Specifically, the anti-tilt wire rope is located at the rear end of the bottom of the upper bracket. The wire rope is fixed to the upper bracket and the roof cantilever beam (roof parapet) and other components at the bottom through the wire rope clamp to ensure the stability of the hanging basket due to the ultra-high cantilever rear end and prevent the hanging basket from overturning during use.
[0022] In one embodiment, the support bracket includes a plurality of columns and a plurality of cross bars welded to the plurality of columns at equal intervals.
[0023] In one embodiment, the support disc buckle frame further includes a plurality of diagonal braces, each of which is connected between two adjacent cross bars in an inclined state, and a bottom support is provided at the bottom of each column.
[0024] Specifically, the supporting buckle frame is an important component of this ultra-high altitude cantilevered hanging basket structure. It is composed of columns, cross bars, diagonal braces (scissors braces), and bottom supports that constitute the buckle frame. It is erected according to the designed spacing through columns and cross bars, and is reinforced with diagonal braces (scissors braces) to improve the stability and deformation resistance of the frame and ensure the stability of the frame.
[0025] The support bracket is generally constructed using double-row, multi-span frames to form an independent frame structure. The crossbeams are set up according to the designed spacing to facilitate the disassembly of the frame during actual use. When the height of the column exceeds a certain height, necessary calculations and expert verification are required.
[0026] The beneficial effects of the utility model are as follows:
[0027] The use of this ultra-high altitude cantilevered hanging basket structure successfully solves the problem that special-shaped exterior decoration buildings cannot be constructed using conventional construction methods (such as scaffolding, climbing frames, etc.), and the construction is carried out under tight schedules and heavy tasks. It solves the technical difficulties in the construction of ultra-high altitude cantilevered hanging baskets. It is an exclusive research and development structure and construction method. The use of this hanging basket is easy to install and disassemble, safe and reliable, and convenient to construct, which ensures the construction period and construction quality, while ensuring construction safety, reducing construction risks, and saving construction costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.
[0029] Figure 1 It is a structural diagram of the utility model;
[0030] Figure 2 The utility model is a structural schematic diagram of being installed on a roof cantilever beam.
[0031] Figure 3 yes Figure 1 Stereoscopic image.
[0032] Figure 4 yes Figure 2 A three-dimensional diagram of the local structure.
[0033] Reference numerals:
[0034] 1. Hanging basket; 2. Cantilever platform; 3. Support plate bracket; 4. Wooden pad; 5. Upper bracket; 6. Bottom support; 7. Cross bar; 8. Vertical pole; 9. Diagonal brace; 10. Anti-tilt wire rope; 11. Suspension wire rope; 12. Fixed wire rope; 13. Roof cantilever beam; 14. Connecting wall. DETAILED DESCRIPTION
[0035] To make the technical problems, technical solutions, and technical effects of the present invention more clear, the following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only some of the embodiments of the present invention, not all of the embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.
[0036] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.
[0037] It should be noted that similar reference numerals and letters represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings. In addition, the terms "first," "second," etc. are used only to distinguish the descriptions and are not to be understood as indicating or implying relative importance.
[0038] In the description of the embodiments of the present invention, it should be noted that the terms "inside", "outside", "upper", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, or are the orientations or positional relationships in which the product of the present invention is usually placed when in use. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as a limitation on the present invention.
[0039] Example 1
[0040] like Figures 1 to 4 As shown, this embodiment provides an ultra-high altitude cantilevered hanging basket structure, including a supporting disc buckle frame 3 arranged at the roof cantilever beam 13, two upper bracket assemblies arranged in parallel on the top of the supporting disc buckle frame 3, and a cantilever platform 2 connected to the two upper bracket assemblies by a pull rope.
[0041] Each upper bracket assembly includes an upper bracket 5, a suspension wire rope 11, a wooden pad 4, a fixing wire rope 12 and an anti-tilt wire rope 10;
[0042] The wooden pad 4 is located on the support plate buckle frame 3 at the bottom of the upper bracket 5; the front and rear ends of the upper bracket 5 are connected to the roof cantilever beam 13 through a fixed steel wire rope 12 and an anti-tilt steel wire rope 10 respectively; the cantilever platform 2 is fixed to the upper bracket 5 by a hanging steel wire rope 11.
[0043] Specifically, the wooden pads provide a supporting base for the upper bracket 5 , and the wooden pads prevent the upper bracket 5 of the cantilever platform 2 from being rigidly connected directly to the top supporting buckle frame, thereby ensuring the stability and safety of the upper bracket 5 .
[0044] The cantilever platform 2 is a component of the conventional hanging basket 1, a finished component, and an important component of this ultra-high altitude cantilever hanging basket structure. It is located at the front end and provides up and down operating space for the operator. It is fixed to the upper bracket 5 by a hanging wire rope 11.
[0045] There is a fixing steel wire rope 12 and an anti-tilt steel wire rope 10 in front and behind the upper bracket 5 respectively, which fixes the upper bracket 5 to avoid collapse and overturning.
[0046] The roof cantilever beam 13 (roof parapet) is an important component of the main structure and is generally located at the top edge of the main structure facade. This roof cantilever beam 13 (roof parapet) provides a fixed foundation for the installation of wall connecting parts, fixed steel wire ropes 12, and anti-tilt steel wire ropes 10.
[0047] A connecting wall 14 is provided on the roof cantilever beam 13 and is rigidly connected to the supporting plate buckle frame 3 .
[0048] Specifically, a rectangular hoop structure is formed by steel pipes on the cantilever beam (or on the top of the roof parapet), which is rigidly fixed to the main structural member at the edge of the roof and rigidly connected to the support disc buckle frame 3 on the roof, thereby improving the stability and safety of the entire support disc buckle frame 3 and avoiding safety accidents such as overturning and collapse of the hanging basket 1 during the construction process when the structure is super high or cantilevered.
[0049] One end of the suspension wire rope 11 is fixedly connected to the cantilever platform 2 , and the other end of the suspension wire rope 11 is passed around the fixed pulley and fixedly connected to the upper bracket 5 .
[0050] Specifically, the suspension wire rope 11 is a component of the conventional hanging basket 1, a finished component, one end of which is fixed on the cantilever platform 2, and the other end is fixed on the upper bracket 5 through a wire rope clamp. The cantilever platform 2 is suspended and the hanging platform is moved up and down through this suspension wire rope 11.
[0051] The fixed steel wire rope 12 is located at the front end of the bottom of the upper bracket 5, and the fixed steel wire rope 12 is fixed to the upper bracket 5 and the roof cantilever beam 13 at the bottom through a wire rope clamp.
[0052] Specifically, the fixed wire rope 12 is located at the front end of the bottom of the upper bracket 5. The fixed wire rope 12 is fixed to the upper bracket 5 and the roof cantilever beam 13 (roof parapet) and other components at the bottom through the wire rope clamp to ensure the stability of the front end of the hanging basket 1 due to the ultra-high cantilever.
[0053] The anti-tilt wire rope 10 is located at the rear end of the bottom of the upper bracket 5, and both ends of the anti-tilt wire rope 10 are fixed to the upper bracket 5 and the roof cantilever beam 13 at the bottom respectively through wire rope clamps.
[0054] Specifically, the anti-tilt wire rope 10 is located at the rear end of the bottom of the upper bracket 5, and the fixed wire rope 12 is fixed to the upper bracket 5 and the roof cantilever beam 13 (roof parapet) and other components at the bottom through the wire rope clamp, thereby ensuring the stability of the hanging basket 1 due to the ultra-high cantilever rear end and preventing the hanging basket 1 from overturning during use.
[0055] The support bracket 3 includes a plurality of columns and a plurality of cross bars 7 welded to the columns at equal intervals.
[0056] The support bracket 3 further includes a plurality of diagonal braces 9 , each of which is connected between two adjacent crossbars 7 in an inclined state, and a bottom bracket 6 is provided at the bottom of each column.
[0057] Specifically, the supporting buckle frame 3 is an important component of the ultra-high altitude cantilevered hanging basket structure. It is composed of the columns, cross bars 7, diagonal braces 9 (scissors braces), and bottom supports 6 that constitute the buckle frame. It is erected according to the designed spacing through the columns and cross bars 7, and is reinforced with diagonal braces 9 (scissors braces) to improve the stability and deformation resistance of the frame and ensure the stability of the frame.
[0058] The support bracket 3 is generally constructed of double-row, multi-span frames to form an independent frame structure, with crossbeams set up according to the designed spacing to facilitate the disassembly of the frame during actual use. When the height of the column exceeds a certain height, necessary calculations and expert verification are required.
[0059] Example 2
[0060] This embodiment provides a construction method for an ultra-high altitude cantilevered hanging basket structure, which is used to install the above-mentioned ultra-high altitude cantilevered hanging basket structure, including the following steps:
[0061] Step 1: Preparation and demonstration of construction plan;
[0062] Step 2: Construction preparation;
[0063] Step 3: Install the support plate fasteners;
[0064] Step 4: Installation of wall connecting parts;
[0065] Step 5: Installation of upper bracket 5;
[0066] Step 6: Installation of fixed steel wire rope 12 and anti-tilt steel wire rope 10;
[0067] Step 7: Install the hanging wire rope 11;
[0068] Step 8: Assemble other parts of the suspended platform machine;
[0069] Step 9: Hanging basket 1 test;
[0070] Step 10: Acceptance of hanging basket 1;
[0071] Step 1: Preparation and demonstration of construction plan.
[0072] In step 1, according to the actual situation on site, professional and technical personnel are organized to complete the preparation of the hoisting construction plan. The plan needs to clearly define the key contents of the erection steps, methods, quality standards, and precautions of the hanging basket 1;
[0073] After the plan is prepared, it should be approved in accordance with the plan approval process. Because for non-standard hanging basket 1, if it exceeds a certain height or has a large cantilever span, it should also be reviewed by experts to demonstrate the feasibility of the plan and ensure the legality of the procedure.
[0074] In step 2, after completing the construction plan, make preparations for on-site construction according to the plan, including the preparation of materials, personnel, and mechanical equipment required for the hanging basket 1, to provide a foundation for the next step of on-site construction;
[0075] In step three, before erection, the position of the hanging basket 1 is first determined, and the erection position of the support disc buckle frame 3 is determined according to the position of the hanging rail, and then the support disc buckle is erected; when erecting, it is erected according to the spacing that has been designed and calculated in advance in the construction plan. When erecting, the bottom adjustable base 6 is first erected, and then the vertical poles 8 and horizontal poles of the disc buckle are erected in sequence. After the vertical poles and horizontal poles are erected, the additional reinforced diagonal braces 9 are erected;
[0076] The support bracket 3 is generally erected as follows: the spacing between the vertical poles 8 is arranged according to the 300mm module of the bracket bracket 8, generally 600-1200mm, and the horizontal poles are installed at a 500mm module. Generally, the spacing is 1000-1500mm, and the height of the adjustable bottom bracket 6 does not exceed 550mm. The scissor braces are overlapped at a certain interval, generally one every three spans.
[0077] In step 4, after the support plate buckle frame 3 is erected, the wall connection piece is installed using steel pipes and fasteners. One end of the wall connection piece is fixed to the main structural member at the edge of the roof, and the other end is fixed to the vertical rod 8 of the support plate buckle. The installation of the wall connection piece should ensure stability and safety.
[0078] In step 5, on the erected support plate fastener, a pre-prepared wooden block is laid and fixed, and then the upper bracket 5 of the conventional hanging basket 1 is installed on the wooden block. The upper bracket 5 is assembled according to the design drawings. After the upper bracket 5 is installed, the fixed wire rope 12 and the anti-tilt wire rope 10 are installed;
[0079] In step six, the fixed steel wire rope 12 is fixed to the front end portion of the upper bracket 5 and the front end portion of the top of the roof cantilever beam 13 by using a steel wire rope fixing clamp, and the anti-tilt steel wire rope 10 is fixed to the rear end portion of the upper bracket 5 and the rear end portion of the top of the roof cantilever beam 13 by using a steel wire rope fixing clamp. By using the fixed steel wire rope 12 and the anti-tilt steel wire rope 10 in coordination, the upper bracket 5 is firmly fixed to the support plate fastener, avoiding overturning and displacement, and ensuring the stability and safety of the entire upper bracket 5;
[0080] In step seven, after completing the installation of the fixed steel wire rope 12 and the anti-tilt steel wire rope 10, one end of the suspension steel wire rope 11 is fixed to the tail position of the upper bracket 5 using a dedicated steel wire rope fixing clamp, and the outer section is hung to the floor facade to provide a foundation for the assembly of the suspension platform;
[0081] In step eight, the assembly of the suspension platform and other components is completed in accordance with conventional assembly methods, and the suspension platform is moved up and down by the pre-installed suspension wire rope 11 to ensure the safety of the suspension platform;
[0082] In step nine, after all components are assembled, the hanging basket 1 is tested in accordance with the relevant national methods and standards. After the test is completed, the hanging basket 1 is inspected and accepted;
[0083] In step 10, after completing the installation of all hanging baskets 1, relevant personnel of the group will conduct the hanging basket 1 acceptance inspection. After the acceptance is qualified, the acceptance certificate will be issued, and the acceptance materials and records will be prepared before it can be put into use.
Claims
1. An ultra-high altitude cantilevered hanging basket structure, characterized in that: The invention comprises a support disc buckle frame (3) arranged at a roof cantilever beam (13), two upper bracket assemblies arranged in parallel on the top of the support disc buckle frame (3), and a cantilever platform (2) connected to the two upper bracket assemblies by a pull rope.
2. The ultra-high altitude cantilevered hanging basket structure according to claim 1, characterized in that: Each of the upper bracket assemblies comprises an upper bracket (5), a suspension wire rope (11), a wooden pad (4), a fixing wire rope (12), and an anti-tilt wire rope (10); The wooden pad (4) is located on the support plate buckle frame (3) at the bottom of the upper bracket (5); the front and rear ends of the upper bracket (5) are connected to the roof cantilever beam (13) through the fixed steel wire rope (12) and the anti-tilt steel wire rope (10) respectively; the cantilever platform (2) is fixed to the upper bracket (5) through the suspension steel wire rope (11).
3. The ultra-high altitude cantilevered hanging basket structure according to claim 2, characterized in that: A connecting wall (14) is provided on the roof cantilever beam (13) and is rigidly connected to the supporting plate buckle frame (3).
4. The ultra-high altitude cantilevered hanging basket structure according to claim 2, characterized in that: One end of the suspension steel wire rope (11) is fixedly connected to the cantilever platform (2), and the other end of the suspension steel wire rope (11) is passed around a fixed pulley and fixedly connected to the upper bracket (5).
5. The ultra-high altitude cantilevered hanging basket structure according to claim 2, characterized in that: The fixed steel wire rope (12) is located at the front end of the bottom of the upper bracket (5), and the fixed steel wire rope (12) is fixed to the upper bracket (5) and the roof cantilever beam (13) at the bottom through a steel wire rope clamp.
6. The ultra-high altitude cantilevered hanging basket structure according to claim 2, characterized in that: The anti-tilt wire rope (10) is located at the rear end of the bottom of the upper bracket (5), and both ends of the anti-tilt wire rope (10) are fixed to the upper bracket (5) and the roof cantilever beam (13) at the bottom respectively through wire rope clamps.
7. The ultra-high altitude cantilevered hanging basket structure according to claim 2, characterized in that: The support disc buckle frame (3) comprises a plurality of upright posts and a plurality of cross bars (7) welded to the upright posts at equal intervals.
8. The ultra-high altitude cantilevered hanging basket structure according to claim 7, characterized in that: The support disc buckle frame (3) further comprises a plurality of diagonal braces (9), each of the diagonal braces (9) being connected between two adjacent cross bars (7) in an inclined state.
9. The ultra-high altitude cantilevered hanging basket structure according to claim 7, characterized in that: A bottom support (6) is provided at the bottom of each column.