Wind power generation hanging basket
By designing the curved bottom plate, sliding device, and counterweight structure of the wind power generation basket, the problems of swaying and friction damage on the wind power generation equipment were solved, improving stability and weight load-bearing capacity, and ensuring safety.
Patent Information
- Application Number
- CN202423125940.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing suspended platforms cannot be stably fixed on wind power equipment, posing risks of swaying and friction damage, and their limited weight cannot meet the demands of high loads.
Design a wind power generation basket with a curved base plate that fits tightly against the column, equipped with a sliding device and a counterweight to enhance stability, and improved sliding smoothness by supporting guide wheels and anti-slip blocks, and enhanced joint strength by using a safety lock assembly.
This achieves stable fixation of the scaffold on the wind power generation equipment, avoiding shaking and friction damage, and improving weight load capacity and safety.
Smart Images

Figure CN223480743U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of suspended platform technology, specifically relating to a wind power generation suspended platform. Background Technology
[0002] As is well known, suspended platforms are construction machinery used for high-altitude operations in construction projects. They are a type of high-altitude work equipment that can replace traditional scaffolding, reduce labor intensity, improve work efficiency, and can be reused.
[0003] Typically, a suspended platform consists of a suspended platform, a hoist, and safety locks, and is used for curtain wall installation and exterior wall cleaning. Depending on the construction difficulty and location, it can be divided into various non-standard suspended platforms such as ring-shaped suspended platforms for production chimneys, marine-mounted suspended platforms, and furnace-in-process testing suspended platforms; based on the material, it can be divided into steel-framed electric suspended platforms and aluminum alloy electric suspended platforms; and based on the power source for lifting, it can be divided into manual suspended platforms and electric suspended platforms.
[0004] This utility model discloses an electric suspended platform that can be used on wind power generation equipment.
[0005] In the current technology, no suspended platform is specifically designed for wind power generation equipment. Wind power generation equipment has relatively large-diameter columns, but in actual construction, ordinary square suspended platforms are used, which pose significant safety risks, including: 1. The suspended platform cannot be securely wrapped around the column and is prone to swaying in light winds; 2. During vertical sliding, the suspended platform and the column squeeze and slide, causing damage to the outer skin of the suspended platform or the column; 3. The suspended platform is lightweight, and the strength of the tension cables is required under the large counterweight, so there is an upper limit to its weight.
[0006] In view of the above-mentioned drawbacks, the technical problem that those skilled in the art need to solve is how to design a wind power generation basket that can be used exclusively on wind power generation equipment, thereby solving the above-mentioned problems encountered in the prior art. Summary of the Invention
[0007] To overcome the shortcomings of existing technologies, this utility model provides a wind power generation basket. By setting a basket structure, it can be wrapped around the column. At the same time, a sliding device is set on the inner side of the basket to reduce the friction between it and the basket, so that they will not cause damage to each other when they move down.
[0008] To achieve the above technical objectives, the present invention adopts the following solution: a wind power generation basket, which includes a basket, the bottom plate of the basket facing the column is curved; a hinge frame is welded to the rear side of the basket, and a safety lock assembly is provided on the top of the hinge frame;
[0009] The basketball hoop has a support guide wheel on the side facing the upright; the support guide wheel is pressed against the upright for support.
[0010] The bottom of the basketball hoop is provided with a counterweight compartment, the top surface of which is connected to the bottom surface of the basketball hoop, and a counterweight block is provided inside the counterweight compartment. The counterweight block is removed from the bottom surface of the basketball hoop.
[0011] The hinge frame is provided with side steel cables on both sides, and the bottom of the side steel cables is connected and fixed to the basket.
[0012] The bottom of the hinged frame is provided with a horizontal bar, and the end of the horizontal bar is provided with an anti-slip block, which is in pressure contact with the side wall of the column.
[0013] The counterweight compartment is located on the side closest to the column. Its purpose is to separate the counterweight pressure to one side of the column, causing the bottom of the basket to be pressed against the column.
[0014] The basketball hoop is equipped with a sealing plate at the bottom of its side, which protects the inside of the hoop.
[0015] The beneficial effects of this utility model are as follows: This utility model includes a basketball hoop, the bottom plate of which is curved on the side facing the upright, which tightly fits the basketball hoop to the upright and prevents the basketball hoop from wobbling on the upright; a hinge frame is welded to the rear side of the basketball hoop, the top of which is equipped with a safety lock component, and the bottom of which is directly bonded to the bottom surface of the basketball hoop to form a whole, improving the overall bonding strength; a support guide wheel is provided on the side of the basketball hoop facing the upright, which presses against the upright to provide support, improving the smoothness of sliding and preventing scratches or abrasions; a counterweight compartment is provided at the bottom of the basketball hoop, the top surface of which is connected to the bottom surface of the basketball hoop, and a counterweight block is provided in the counterweight compartment, which is biased towards the upright to further restrain the basketball hoop from approaching the upright and increase the pressure on the upright. Attached Figure Description
[0016] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0017] Figure 2 This is a top view of the structure of this utility model;
[0018] Figure 3 This is a schematic diagram of the rear view structure of this utility model;
[0019] Figure 4 This is a side view of the structure of this utility model;
[0020] In the attached diagram: 1. Basketball basket; 11. Front and rear frames; 12. Left and right frames; 13. Sealing plate; 14. Base frame; 15. Lower fixing bolt; 2. Hinge frame; 21. Safety lock; 22. Top guide wheel; 23. Bottom guide wheel; 24. Upper fixing bolt; 25. Horizontal bar; 26. Anti-slip block; 3. Side steel cable; 4. Counterweight compartment; 41. Counterweight compartment fixing plate; 5. Support guide wheel; 6. Column. Detailed Implementation
[0021] The present invention will be further described below through specific embodiments. It should be understood that the following description is a specific implementation based on the technical solution disclosed in the present invention, and those skilled in the art can make further technical extensions based on the following technical solution disclosure.
[0022] Example 1:
[0023] See appendix Figures 1-4 As shown, this utility model discloses a wind power generation basket, which includes a square basket 1. The top opening of the basket 1 is provided for operators to operate inside. The basket 1 is composed of two front and rear frames 11, two left and right frames 12, and a base frame 14. A sealing plate 13 is provided on the bottom side of the basket 1 to protect the inside of the basket 1.
[0024] The key design feature of this utility model is that the base frame 14 on the side of the basket 1 facing the column 6 is set with an arc surface; the aforementioned column 6 and the column 6 mentioned below are all columns 6 of wind turbines; by using this arc surface to tightly fit the basket 1 and the column 6, it can ensure that the column and the basket are combined and prevent the basket from shaking on the column 1.
[0025] A hinge frame 2 is welded to the rear side of the basketball hoop 1. A safety lock assembly 21, a top guide wheel 22, and a bottom guide wheel 23 are mounted on the top of the hinge frame 2. In this embodiment, the winding structure of the top guide wheel 22, the bottom guide wheel 23, and the safety lock assembly 21 is the same as in the prior art, and those skilled in the art can refer to it. Figure 4 The steel cable traction connection on the safety lock assembly 21 is described in detail here.
[0026] The basketball hoop 1 has four support guide wheels 5 on one side facing the upright post 6. The support guide wheels 5 are symmetrically arranged on the left and right sides of the basketball hoop 1. All four support guide wheels 5 are pressed against the upright post 6 for support. With this structure, when the basketball hoop 1 moves up and down, it is supported by the four support guide wheels 5 pressing against the upright post 6 and assisting in sliding support, thereby avoiding scratches between the basketball hoop 1 and the upright post 6 when the basketball hoop 1 moves vertically.
[0027] The bottom of the basketball hoop 1 is provided with a counterweight compartment 4. When the counterweight compartment 4 is fixed, it is locked and fixed by the counterweight compartment fixing plates 41 on the left and right sides. The top surface of the counterweight compartment 4 is connected to the bottom surface of the basketball hoop 1. The counterweight block is provided inside the counterweight compartment 4. The counterweight block can be taken out from the bottom surface of the basketball hoop 1. That is to say, the counterweight can only be taken out from inside the basketball hoop 1 to prevent the counterweight from falling out from the bottom of the basketball hoop 1 or even causing it to slip from a height.
[0028] Furthermore, the counterweight 4 is fixed on the side closest to the column 6. The purpose of this design is to distribute the pressure of the counterweight to one side of the column 6, causing the bottom of the basket 1 to be pressed further against the column 6. This not only improves the stability of the basket 1 when it descends from a height, but also causes the basket to continue to be pressed and moved towards the column 6.
[0029] Based on the above structural design, since the bottom of the basket 1 is continuously pressed against the upright 6, to prevent hard friction between the bottom of the basket and the upright 6, this utility model provides a horizontal bar 25 at the bottom of the hinge frame 2. The end of the horizontal bar 25 is provided with a rubber anti-slip block 26, which makes pressure contact with the side wall of the upright 6. This ensures the stability of the connection between the two components while effectively preventing scratches or marks from the pressure.
[0030] Furthermore, to improve overall stability, this invention also connects the side steel cables 3 on both sides of the hinge frame 2 via upper fixing bolts 24. The bottom of the side steel cables 3 is connected and fixed to the lower fixing bolts 15 on the basket 1. This reinforcement of the steel cables 3 forms an integral triangular reinforcement structure for the basket 1, which can further improve the overall stability of the basket 1 and provide a more stable and safer environment for the operators inside the basket 1.
[0031] It should be noted that for those skilled in the art of cutting steel cables for high-altitude suspended platforms, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model.
Claims
1. A wind power generation suspended platform, characterized in that: It includes a basketball hoop, the bottom plate of which is curved on the side facing the upright; a hinge frame is welded to the rear side of the basketball hoop, and a safety lock assembly is provided on the top of the hinge frame; The basketball hoop has a support guide wheel on the side facing the upright; the support guide wheel is pressed against the upright for support. The bottom of the basketball hoop is provided with a counterweight compartment, the top surface of which is connected to the bottom surface of the basketball hoop, and a counterweight block is provided inside the counterweight compartment. The counterweight block is removed from the bottom surface of the basketball hoop.
2. The wind power generation scaffold as described in claim 1, characterized in that: The hinge frame is provided with side steel cables on both sides, and the bottom of the side steel cables is connected and fixed to the basket.
3. The wind power generation basket as described in claim 1, characterized in that: The bottom of the hinged frame is provided with a horizontal bar, and the end of the horizontal bar is provided with an anti-slip block, which is in pressure contact with the side wall of the column.
4. The wind power generation scaffold as described in claim 1, characterized in that: The counterweight compartment is located on the side closest to the column.
5. The wind power generation scaffold as described in claim 1, characterized in that: The bottom side of the basket is equipped with a sealing plate.