A hanging basket for installing a photovoltaic flexible support assembly

By setting up maintenance devices, drive devices and limiting devices on the hanging basket, the problem of inflexible cable protection film falling off and moving in the photovoltaic flexible bracket assembly installation is solved, and the protection of the steel cable and the stable movement of the hanging basket are achieved, improving installation efficiency and safety.

CN120004116BActive Publication Date: 2025-07-29山东泛海发展电力工程有限公司
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Patent Information

Application Number
CN202510505727.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-29
Estimated Expiration
2045-04-22

AI Technical Summary

Technical Problem

During the installation of the photovoltaic flexible bracket assembly, the protective film on the hanging basket falls off, resulting in a shortened service life and reduced installation efficiency, and the hook-to-mounted cable is inflexible, affecting construction efficiency.

Method used

A hanging basket including maintenance device, drive device and limit device is designed. The cable is evenly applied to the protective liquid through a sponge cylinder, the roller rotates simultaneously, and the sliding frame is stable to avoid wear and derailment of the cable, clean solid debris, and ensure that the protective film on the cable surface is intact.

Benefits of technology

It extends the service life of the steel cable, improves installation efficiency, ensures the flexibility and stability of the hanging basket movement, avoids damage and fall off of the protective film, and improves construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of photovoltaic technology, and proposes a hanging basket for installing a photovoltaic flexible bracket assembly, including a hanging basket frame, two symmetrical groups of connecting frames are fixedly installed on the hanging basket frame, and each group of the connecting frames is slidably installed with a sliding frame, and the sliding frame is rotatably installed with multiple groups of rollers, and each group of the connecting frames is installed with a maintenance device to prevent excessive wear of the steel cable. The present invention squeezes the steel cable through a sponge tube, and the limiting tube moves on the second limiting rod. The hose and the sponge tube change from a vertical state to a state of bending on both sides with the steel cable as the center, so that the contact area of the sponge tube with the steel cable is increased, so that the two sponge tubes can evenly apply the protective liquid to the entire steel cable. When the protective film falls off more, the protective liquid can be applied to the steel cable and a new protective film can be formed, thereby avoiding the situation where the protective film on the steel cable falls off and affects the installation efficiency of the photovoltaic flexible bracket assembly.
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Description

Technical Field

[0001] The present invention relates to the technical field of photovoltaic technology, and particularly to a hanging basket for installing a photovoltaic flexible support assembly. Background Art

[0002] Due to the special structure of the installation of photovoltaic flexible support assemblies, which is different from fixed supports, auxiliary instruments are mostly required for equipment installation. At present, the installation of photovoltaic flexible support assemblies is generally carried out in two ways. When the installation position is close to the ground, an assembled scaffolding is used for installation. When the installation position is high, a hanging basket is hung on a steel cable for operation.

[0003] The hanging basket and the steel cable are usually connected through a hook. In order to make the steel cable have a long service life and improve its safety, a relatively slippery protective film is attached to the steel cable during the installation of the steel cable. This can not only reduce the friction between the hook and the steel cable, but also delay the oxidation of the steel cable. Since the hanging basket carries operators and the photovoltaic flexible support assemblies to be installed, the overall weight of the hanging basket is relatively large. During the movement of the hanging basket, the hook on the hanging basket exerts a large pressure on the steel cable. During the long-term installation of the photovoltaic flexible support assemblies, this protective film will be scraped off, which not only greatly reduces the service life of the steel cable, but also increases the friction between the hanging basket and the steel cable, affecting the installation efficiency of the photovoltaic flexible support assemblies. Summary of the Invention

[0004] Aiming at the deficiencies of the prior art, the present invention provides a hanging basket for installing a photovoltaic flexible support assembly, which solves the problem that the falling off of the protective film on the steel cable affects the installation efficiency of the photovoltaic flexible support assembly.

[0005] To achieve the above object, the present invention provides the following technical solutions:

[0006] A hanging basket for installing a photovoltaic flexible support assembly, including a hanging basket frame. Symmetrically arranged two groups of connecting frames are fixedly installed on the hanging basket frame. A sliding frame is slidably installed on each group of connecting frames. A plurality of groups of rollers are rotatably installed on the sliding frame. Symmetrically arranged two groups of connecting shafts rotatably connected to the sliding frame are fixedly installed on each group of rollers. Symmetrically arranged two groups of top blocks are fixedly installed on each group of sliding frames. A maintenance device for preventing excessive wear of the steel cable is installed on each group of connecting frames;

[0007] The maintenance device includes four groups of first limiting rods fixedly installed on the connecting frame. A toothed plate slidably connected to the first limiting rods is slidably installed on the connecting frame. Two groups of symmetrically arranged first rotating columns are rotatably installed on the connecting frame. Two groups of gears meshing with the toothed plate are fixedly installed on each first rotating column. A first torsion spring is sleeved on the first rotating column. A first fixing column is fixedly installed on each first rotating column. A U-shaped frame is fixedly installed on the first fixing column. Two groups of symmetrically arranged second limiting rods are fixedly installed on the U-shaped frame. A limiting tube is slidably installed on each second limiting rod. A first spring is sleeved on the second limiting rod. A hose is fixedly installed between the two limiting tubes. A sponge cylinder is rotatably installed on the hose. When the U-shaped frame rotates, the sponge cylinder squeezes the steel cable. The limiting tube moves on the second limiting rod, and the sponge cylinder changes from a vertical state to a state of bending on both sides with the steel cable as the center.

[0008] Preferably, a plurality of liquid outlet holes are evenly formed in the hose. One end of the connecting shaft is rotatably installed with a sliding block. A plurality of first limiting grooves are symmetrically formed in the connecting frame. A first fixing rod slidably connected to the sliding block is fixedly installed in each first limiting groove. An L-shaped plate is fixedly installed on the sliding block.

[0009] Preferably, a driving device is installed on the hanging basket frame. The driving device includes a bidirectional motor fixedly installed on the hanging basket frame. The output end of the bidirectional motor is fixedly installed with a second fixing column. A first worm is fixedly installed on the second fixing column. Two groups of symmetrically arranged second rotating columns slidably connected to the L-shaped plate are rotatably installed on the hanging basket frame. A first worm gear meshing with the first worm is fixedly installed on the second rotating column. A sliding groove is formed in the second rotating column. A first fixing block is fixedly installed in the sliding groove. A sliding column is slidably installed in the sliding groove. A slot cooperating with the first fixing block is formed in the sliding column. A rotating rod is rotatably installed on the sliding frame. An L-shaped connecting plate is installed between the rotating rod and the sliding column, and the L-shaped connecting plate is rotatably connected to the rotating rod and the sliding column. Helical teeth meshing with each other are fixedly installed on both the sliding column and the rotating rod. A plurality of second worms are evenly installed on the rotating rod. A second worm gear meshing with the second worm is fixedly installed on the connecting shaft.

[0010] Preferably, a limiting device is installed on the sliding frame. The limiting device includes three groups of second fixing blocks fixedly installed on the sliding frame. A slot is formed in each second fixing block. A first sliding plate is slidably installed on the connecting frame. Three groups of second limiting grooves are formed in the first sliding plate. Four groups of symmetrically arranged second fixing rods are fixedly installed in each second limiting groove. A second spring is sleeved on each second fixing rod. A bevel block slidably connected to the second fixing rod is slidably installed in the second limiting groove.

[0011] Preferably, a second sliding plate is slidably mounted on the first sliding plate, a strip plate is fixedly mounted on the second sliding plate, and a strip groove for cooperating with the strip plate is formed on the connecting frame.

[0012] Preferably, two groups of infusion devices are mounted on the hanging basket frame. Each group of infusion devices includes a water pump fixedly mounted on the hanging basket frame. One end of the water pump is fixedly mounted with a first connecting pipe, and a liquid distribution valve fixedly connected to the first connecting pipe is fixedly mounted on the connecting frame.

[0013] Preferably, two liquid distribution pipes communicated with the first connecting pipe are mounted on the liquid distribution valve. The other end of the liquid distribution pipe is fixedly connected to a limiting pipe. A storage box is fixedly mounted on the hanging basket frame, and a second connecting pipe fixedly connected to the storage box is mounted on the water pump.

[0014] Preferably, a rotating door is rotatably mounted on the hanging basket frame.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0016] 1. Through the arrangement of the maintenance device and the infusion device, the present invention drives the U-shaped frame to rotate through the sliding frame. The sponge cylinders on the two U-shaped frames squeeze the steel cable. The limiting pipe moves on the second limiting rod, and the hose and the sponge cylinder change from a vertical state to a state of bending on both sides centered on the steel cable, so that the contact area between the sponge cylinder and the steel cable is increased, and the pressure in contact with the steel cable is increased, so that the two sponge cylinders can evenly apply the protective liquid on the whole body of the steel cable. When more protective film falls off, the protective liquid can be applied to the steel cable to form a new protective film, avoiding the situation that the installation efficiency of the photovoltaic flexible support assembly is affected by the falling off of the protective film on the steel cable.

[0017] 2. Through the arrangement of the maintenance device, the present invention can clean the surface of the steel cable through the sponge cylinder, avoiding the situation that the solid debris attached to the steel cable damages the protective film of the steel cable when the roller passes through the steel cable.

[0018] 3. Through the arrangement of the driving device, the present invention starts the bidirectional motor to make the second worm rotate and drive the connecting shaft connected to the second worm gear to rotate, so that a plurality of rollers rotate synchronously, avoiding the situation that the inflexible movement of the way of hanging the steel cable by the hook affects the construction efficiency.

[0019] 4. Through the arrangement of the limiting device, the present invention drives the second fixed block to move through the movement of the sliding frame. Under the action of the hypotenuse of the hypotenuse block, the second fixed block presses the hypotenuse block into the second limiting groove. When the position of the slot corresponds to the hypotenuse block, the hypotenuse block is inserted into the slot under the action of the second spring to limit the positions of the sliding frame and the L-shaped plate, avoiding the situation that the steel cable slides out of the connecting frame due to the movement of the sliding frame under the action of strong wind. Description of the Drawings

[0020] The accompanying drawings described herein are used to provide a further understanding of the present application and form a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation of the present application. In the drawings:

[0021] Figure 1 is a schematic diagram of the overall structure of the present invention;

[0022] Figure 2 is a schematic diagram of the overall structure of the present invention from another angle;

[0023] Figure 3 is a schematic diagram of the overall structure of the connecting frame of the present invention;

[0024] Figure 4 is a schematic diagram of the overall structure of the sliding frame of the present invention;

[0025] Figure 5 is a schematic diagram of the positional relationship between the strip-shaped groove and the connecting frame of the present invention;

[0026] Figure 6 is a schematic diagram of the overall structure of the first rotating column of the present invention;

[0027] Figure 7 is a schematic diagram of the positional relationship between the hose and the limiting tube of the present invention;

[0028] Figure 8 is a schematic diagram of the overall structure of the first sliding plate of the present invention;

[0029] Figure 9 is a schematic diagram of the overall structure of the second rotating column of the present invention;

[0030] Figure 10 is a schematic diagram of the overall internal structure of the connecting frame of the present invention.

[0031] In the figure: 1. Hanging basket frame; 11. Connecting frame; 12. Sliding frame; 13. Roller; 14. Connecting shaft; 15. Top block; 2. Maintenance device; 201. Limit rod No. 1; 202. Tooth plate; 203. Rotating column No. 1; 204. Gear; 205. Torsion spring No. 1; 206. Fixed column No. 1; 207. U-shaped frame; 208. Limit rod No. 2; 209. Limit tube; 210. Spring No. 1; 211. Hose; 212. Liquid outlet; 213. Sponge tube; 214. Sliding block; 215. Limit groove No. 1; 216. Fixed rod No. 1; 217. L-shaped plate; 3. Driving device; 301. Bidirectional motor; 302. Fixed column No. 2; 303. Worm No. 1; 304. Worm wheel No. 1; 305 , rotating column No. 2; 306, sliding groove; 307, fixed block No. 1; 308, sliding column; 309, slot; 310, rotating rod; 311, bevel gear; 312, worm No. 2; 313, worm gear No. 2; 314, L-shaped connecting plate; 4, limiting device; 401, fixed block No. 2; 402, slot; 403, sliding plate No. 1; 404, limiting groove No. 2; 405, fixing rod No. 2; 406, spring No. 2; 407, bevel block; 408, sliding plate No. 2; 409, strip plate; 410, strip groove; 5, infusion device; 501, water pump; 502, connecting pipe No. 1; 503, dispensing valve; 504, dispensing pipe; 505, connecting pipe No. 2; 506, storage box; 6, rotating door. DETAILED DESCRIPTION

[0032] The following will describe the implementation methods of the present application in detail with reference to the accompanying drawings and examples, so that the implementation process of how the present application applies technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0033] Example 1

[0034] Since the hook on the hanging basket exerts a great pressure on the steel cable, the protective film will be scraped off during the long-term installation of the photovoltaic flexible support assembly, which not only increases the friction between the hanging basket and the steel cable, but also greatly reduces the service life of the steel cable. If the hook is replaced with a roller, the outermost steel cable in contact with the roller will be greatly deformed under the action of the gravity of the hanging basket. The protective film will also be separated from the surface of the steel cable under the repeated large-scale deformation of the steel cable, and the friction of the roller will also cause the protective film to fall off. Figures 1 - 10, in this embodiment, a hanging basket for the installation of a photovoltaic flexible support assembly is proposed. By setting the maintenance device 2, the problem that the peeling off of the protective film on the steel cable affects the installation efficiency of the photovoltaic flexible support assembly is solved. This application includes a hanging basket frame 1, a rotating door 6 is rotatably installed on the hanging basket frame 1, two groups of connecting frames 11 are fixedly installed on the hanging basket frame 1, a sliding frame 12 is slidably installed on each group of connecting frames 11, a plurality of groups of rollers 13 are rotatably installed on the sliding frame 12, and two symmetrical groups of connecting shafts 14 rotatably connected to the sliding frame 12 are fixedly installed on each group of rollers 13. Two symmetrical groups of top blocks 15 are fixedly installed on each group of sliding frames 12, and a maintenance device 2 that reduces the wear of the steel cable is installed on each group of connecting frames 11. The protective liquid can be applied to the surface of the steel cable through the maintenance device 2 to continuously form a protective film, improving the service life of the steel cable;

[0035] The maintenance device 2 includes four groups of first limiting rods 201 fixedly installed on the connecting frame 11. A toothed plate 202 that is slidably connected to the first limiting rods 201 is slidably installed on the connecting frame 11, making the movement of the toothed plate 202 more stable. Two symmetrical groups of first rotating columns 203 are rotatably installed on the connecting frame 11. Two groups of gears 204 that are meshed with the toothed plate 202 are fixedly installed on each group of first rotating columns 203. A first torsion spring 205 is sleeved on the first rotating column 203, enabling the first rotating column 203 to quickly reset. A first fixed column 206 is fixedly installed on each group of first rotating columns 203. The two first fixed columns 206 are of different lengths, causing the U-shaped frames 207 to be offset. The U-shaped frames 207 are fixedly installed on the first fixed columns 206. A second limiting rod 208 is fixedly installed on the U-shaped frame 207. A limiting tube 209 is slidably installed on each group of second limiting rods 208. A first spring 210 is sleeved on the second limiting rod 208, enabling the limiting tube 209 to quickly reset. A flexible tube 211 is fixedly installed between the two limiting tubes 209. A plurality of liquid outlet holes 212 are evenly formed in the flexible tube 211. Under the action of the infusion device 5, the protective liquid can be discharged through the liquid outlet holes 212 onto the sponge cylinder 213. The contact between the sponge cylinder 213 and the steel cable is not affected by the first fixed column 206. A sliding block 214 is rotatably installed at one end of the connecting shaft 14. A plurality of groups of first limiting grooves 215 are symmetrically formed on the connecting frame 11. A first fixed rod 216 that is slidably connected to the sliding block 214 is fixedly installed on each group of first limiting grooves 215, making the movement of the sliding frame 12 more stable. An L-shaped plate 217 is fixedly installed on the sliding block 214. The steel cable is inserted through the connecting frame 11 and into the opening of the L-shaped plate 217. When the hanging basket lands on the steel cable, the steel cable contacts the roller 13. Under the action of gravity, the sliding frame 12 moves within the connecting frame 11. The sliding frame 12 drives the top block 15 to move, and the top block 15 drives the toothed plate 202 to move upward. Under the action of the gear 204, the movement of the toothed plate 202 drives the first fixed column 206 connected to the first rotating column 203 to rotate. The rotation of the first fixed column 206 drives the U-shaped frame 207 to rotate. The sponge cylinders 213 on the two U-shaped frames 207 squeeze the steel cable. The limiting tube 209 moves on the second limiting rod 208, and the flexible tube 211 and the sponge cylinder 213 change from a vertical state to a state of bending on both sides centered on the steel cable, increasing the contact area between the sponge cylinder 213 and the steel cable and increasing the pressure in contact with the steel cable, enabling the two sponge cylinders 213 to evenly apply the protective liquid to the entire body of the steel cable. When more protective film falls off, the protective liquid can be applied to the steel cable to form a new protective film, avoiding the situation that the falling off of the protective film on the steel cable affects the installation efficiency of the photovoltaic flexible support assembly.

[0036] Embodiment 2

[0037] At present, the installation of flexible support components in high-altitude and special installation environments uses hanging baskets for construction. The on-site construction personnel generally report that the current method of hanging the hook on the steel cable is not flexible in movement, which affects the construction efficiency. Referring to Figures 1 - 10 , a driving device 3 is installed on the hanging basket frame 1. The driving device 3 includes a bidirectional motor 301 fixedly installed on the hanging basket frame 1. The output end of the bidirectional motor 301 is fixedly installed with a second fixing column 302. A first worm 303 is fixedly installed on the second fixing column 302. A second rotating column 305 rotatably connected to the L-shaped plate 217 is installed on the hanging basket frame 1. A first worm gear 304 meshing with the first worm 303 is fixedly installed on the second rotating column 305. A sliding groove 306 is formed on the second rotating column 305. A first fixing block 307 is fixedly installed on the sliding groove 306. A sliding column 308 is slidably installed on the sliding groove 306. A slot 309 cooperating with the first fixing block 307 is formed on the sliding column 308. The first fixing block 307 can move in the slot. A rotating rod 310 is rotatably installed on the sliding frame 12. An L-shaped connecting plate 314 is installed between the rotating rod 310 and the sliding column 308, and the L-shaped connecting plate 314 is rotatably connected to the rotating rod 310 and the sliding column 308. When the sliding frame 12 moves, the L-shaped connecting plate 314 can drive the sliding column 308 to move up and down, so that the two helical teeth 311 are always in a meshing state. Helical teeth 311 meshing with each other are fixedly installed on both the sliding column 308 and the rotating rod 310. Multiple groups of second worms 312 are evenly installed on the rotating rod 310. A second worm gear 313 meshing with the second worm 312 is fixedly installed on the connecting shaft 14. When it is necessary to move the position of the hanging basket, the bidirectional motor 301 is started so that the second fixing column 302 at the output end drives the first worm 303 to rotate. The rotation of the first worm 303 drives the second rotating column 305 connected to the first worm gear 304 to rotate. Under the action of the first fixing block 307, the rotation of the second rotating column 305 drives the helical teeth 311 connected to the sliding column 308 to rotate, thereby driving the second worms 312 on the rotating rod 310 to rotate. The rotation of the second worms 312 drives the connecting shaft 14 connected to the second worm gear 313 to rotate, so that the multiple rollers 13 rotate synchronously, avoiding the situation that the inflexible movement of the hook hanging on the steel cable affects the construction efficiency.

[0038] Embodiment 3

[0039] In the case of high-altitude and special installation environments, strong winds are likely to cause the hanging basket to shake or shift. In order to prevent the steel cable from derailing and causing the hanging basket to fall, referring to Figures 1 - 10, a limiting device 4 is installed on the sliding frame 12. The limiting device 4 includes three groups of second fixing blocks 401 fixedly installed on the sliding frame 12. Each group of second fixing blocks 401 is provided with a slot 402. A first sliding plate 403 is slidably installed on the connecting frame 11. Three groups of second limiting grooves 404 are provided on the first sliding plate 403. Four groups of symmetric second fixing rods 405 are fixedly installed in each group of second limiting grooves 404, making the movement of the hypotenuse block 407 more stable. A second spring 406 is sleeved on each group of second fixing rods 405, enabling the hypotenuse block 407 to quickly reset. A hypotenuse block 407 slidably connected to the second fixing rods 405 is slidably installed in the second limiting groove 404. A second sliding plate 408 is slidably installed on the first sliding plate 403. A strip plate 409 is fixedly installed on the second sliding plate 408. A strip groove 410 matching with the strip plate 409 is provided on the connecting frame 11. In the initial state, the strip plate 409 on the second sliding plate 408 is inserted into the strip groove 410 to limit the first sliding plate 403. When the sliding frame 12 drives the L-shaped plate 217 to move, the L-shaped plate 217 seals the opening at the bottom of the connecting frame 11, preventing the steel cable from derailing in case of strong wind. When the sliding frame 12 moves, it drives the second fixing block 401 to move. Under the action of the hypotenuse of the hypotenuse block 407, the second fixing block 401 presses the hypotenuse block 407 into the second limiting groove 404. When the position of the slot 402 corresponds to that of the hypotenuse block 407, the hypotenuse block 407 is inserted into the slot 402 under the action of the second spring 406 to limit the positions of the sliding frame 12 and the L-shaped plate 217, avoiding the situation that the steel cable slides out of the connecting frame 11 due to the movement of the sliding frame 12 under the action of strong wind.

[0040] Embodiment Four

[0041] Since the photovoltaic flexible support assembly is usually installed in a relatively open area, the solid debris on the ground will float with the strong wind. Therefore, there will be a lot of solid debris attached to the steel cable. When the roller passes by, the solid debris squeezes the steel cable, which may damage the protective film on the steel cable or cause it to crack. When referring to Figures 1 - 10, two sets of infusion devices 5 are installed on the hanging basket frame 1. Each set of infusion device 5 includes a water pump 501 fixedly installed on the hanging basket frame 1. One end of the water pump 501 is fixedly installed with a first connecting pipe 502. A liquid distribution valve 503 fixedly connected to the first connecting pipe 502 is fixedly installed on the connecting frame 11. Two liquid distribution pipes 504 communicating with the first connecting pipe 502 are installed on the liquid distribution valve 503. The other end of the liquid distribution pipe 504 is fixedly connected to the limit pipe 209. A storage box 506 is fixedly installed on the hanging basket frame 1. A second connecting pipe 505 fixedly connected to the storage box 506 is installed on the water pump 501. Starting the water pump 501 can extract the protective liquid in the storage tank through the second connecting pipe 505. The protective liquid enters the liquid distribution valve 503 through the first connecting pipe 502, then enters the flexible pipe 211 through the liquid distribution pipe 504, and finally is discharged through the liquid outlet hole 212 on the flexible pipe 211 and absorbed by the sponge cylinder 213. The protective liquid can be evenly applied to the steel cable through the sponge cylinder 213. When the steel cable needs to be maintained, when installing the hanging basket frame 1, the orientation of the sponge cylinder 213 is opposite to the moving direction, so as to avoid the protective liquid applied to the steel cable being damaged by the roller 13. When the steel cable does not need to be maintained, the water pump 501 is turned off. When installing the hanging basket frame 1, the orientation of the sponge cylinder 213 is the same as the moving direction. The surface of the steel cable can be cleaned through the sponge cylinder 213, avoiding the situation that the solid debris attached to the steel cable when the roller 13 passes through the steel cable damages the protective film of the steel cable.

[0042] It should be noted that in this article, the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device.

[0043] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A hanging basket for installing a photovoltaic flexible support assembly, comprising a hanging basket frame (1), characterized in that: Two sets of symmetric connecting frames (11) are fixedly installed on the hanging basket frame (1). A sliding frame (12) is slidably installed on each set of connecting frames (11). A plurality of sets of rollers (13) are rotatably installed on the sliding frame (12). Two sets of symmetric connecting shafts (14) rotatably connected to the sliding frame (12) are fixedly installed on each set of rollers (13). Two sets of symmetric top blocks (15) are fixedly installed on each set of sliding frames (12). A maintenance device (2) for preventing excessive wear of the steel cable is installed on each set of connecting frames (11). The maintenance device (2) includes four sets of first limiting rods (201) fixedly installed on the connecting frame (11). A toothed plate (202) slidably connected to the first limiting rods (201) is slidably installed on the connecting frame (11). Two sets of symmetric first rotating columns (203) are rotatably installed on the connecting frame (11). Two sets of gears (204) meshing with the toothed plate (202) are fixedly installed on each set of first rotating columns (203). A first torsion spring (205) is sleeved on the first rotating column (203). A first fixing column (206) is fixedly installed on each set of first rotating columns (203). A U-shaped frame (207) is fixedly installed on the first fixing column (206). Two sets of symmetric second limiting rods (208) are fixedly installed on the U-shaped frame (207). A limiting tube (209) is slidably installed on each set of second limiting rods (208). A first spring (210) is sleeved on the second limiting rod (208). A hose (211) is fixedly installed between the two limiting tubes (209). A sponge cylinder (213) is rotatably installed on the hose (211). When the U-shaped frame (207) rotates, the sponge cylinder (213) squeezes the steel cable, the limiting tube (209) moves on the second limiting rod (208), and the sponge cylinder (213) changes from a vertical state to a state of bending on both sides with the steel cable as the center.

2. The hanging basket for installing a photovoltaic flexible support assembly according to claim 1, characterized in that: A plurality of sets of liquid outlet holes (212) are uniformly formed in the hose (211). A sliding block (214) is rotatably installed at one end of the connecting shaft (14). A plurality of sets of first limiting grooves (215) are symmetrically formed on the connecting frame (11). A first fixing rod (216) slidably connected to the sliding block (214) is fixedly installed on each set of first limiting grooves (215). An L-shaped plate (217) is fixedly installed on the sliding block (214).

3. The hanging basket for installing a photovoltaic flexible support assembly according to claim 2, characterized in that: A driving device (3) is installed on the hanging basket frame (1). The driving device (3) includes a bidirectional motor (301) fixedly installed on the hanging basket frame (1). A second fixing column (302) is fixedly installed at the output end of the bidirectional motor (301). A first worm (303) is fixedly installed on the second fixing column (302). Two symmetric groups of second rotating columns (305) which are rotationally installed on the hanging basket frame (1) and are slidably connected with the L-shaped plate (217) are provided. A first worm gear (304) meshing with the first worm (303) is fixedly installed on the second rotating column (305). A sliding groove (306) is formed on the second rotating column (305). A first fixing block (307) is fixedly installed on the sliding groove (306). A sliding column (308) is slidably installed on the sliding groove (306). A slot (309) cooperating with the first fixing block (307) is formed on the sliding column (308). A rotating rod (310) is rotationally installed on the sliding frame (12). An L-shaped connecting plate (314) is installed between the rotating rod (310) and the sliding column (308), and the L-shaped connecting plate (314) is rotationally connected with the rotating rod (310) and the sliding column (308). Helical teeth (311) meshing with each other are fixedly installed on both the sliding column (308) and the rotating rod (310). A plurality of groups of second worms (312) are evenly installed on the rotating rod (310). A second worm gear (313) meshing with the second worm (312) is fixedly installed on the connecting shaft (14).

4. A hanging basket for installing a photovoltaic flexible support assembly according to claim 3, characterized in that: A limiting device (4) is installed on the sliding frame (12). The limiting device (4) includes three groups of second fixing blocks (401) fixedly installed on the sliding frame (12). A slot (402) is formed on each group of the second fixing blocks (401). A first sliding plate (403) is slidably installed on the connecting frame (11). Three groups of second limiting grooves (404) are formed on the first sliding plate (403). Four symmetric groups of second fixing rods (405) are fixedly installed in each group of the second limiting grooves (404). A second spring (406) is sleeved on each group of the second fixing rods (405). An inclined side block (407) slidably connected with the second fixing rod (405) is slidably installed in the second limiting groove (404).

5. A hanging basket for installing a photovoltaic flexible support assembly according to claim 4, characterized in that: A second sliding plate (408) is slidably installed on the first sliding plate (403). A strip-shaped plate (409) is fixedly installed on the second sliding plate (408). A strip-shaped groove (410) cooperating with the strip-shaped plate (409) is formed on the connecting frame (11).

6. The hanging basket for installing the photovoltaic flexible support assembly according to claim 5, characterized in that: Two groups of infusion devices (5) are installed on the hanging basket frame (1). Each group of the infusion devices (5) includes a water pump (501) fixedly installed on the hanging basket frame (1). A first connecting pipe (502) is fixedly installed at one end of the water pump (501). A liquid distribution valve (503) fixedly connected with the first connecting pipe (502) is fixedly installed on the connecting frame (11).

7. A hanging basket for installing a photovoltaic flexible support assembly according to claim 6, characterized in that: Two sets of liquid separation pipes (504) communicating with the first connecting pipe (502) are installed on the liquid separation valve (503). The other end of the liquid separation pipe (504) is fixedly connected to the limit pipe (209). A storage tank (506) is fixedly installed on the hanging basket frame (1). A second connecting pipe (505) fixedly connected to the storage tank (506) is installed on the water pump (501).

8. A hanging basket for installing a photovoltaic flexible support assembly according to claim 1, characterized in that: A rotating door (6) is rotatably installed on the hanging basket frame (1).

Citation Information

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