Photovoltaic support hoisting auxiliary tool

By designing auxiliary tools for photovoltaic bracket hoisting, and utilizing poles, fixing components, and pulley assemblies, the problems of high difficulty and low efficiency in photovoltaic bracket hoisting construction have been solved, achieving efficient and low-cost hoisting operations that are adaptable to complex terrain.

CN224212314UActive Publication Date: 2026-05-08FUZHOU ONE SUN POWER CONSULTING
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUZHOU ONE SUN POWER CONSULTING
Filing Date
2025-06-12
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

The existing photovoltaic support system is difficult to install and has low efficiency. Manual handling is labor-intensive and costly, while mechanical hoisting is limited by the site.

Method used

Design a photovoltaic support hoisting auxiliary tool, including a pole, a fixing component, a pulley assembly, and ropes. The fixing component is used to fix the photovoltaic support to the photovoltaic pillar, and the pulley assembly and ropes are used to control the hoisting of the photovoltaic support, supporting manual or motor operation.

Benefits of technology

It improves the efficiency of photovoltaic bracket installation, reduces labor intensity and cost, adapts to complex terrain, and has a simple structure and is easy to use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a photovoltaic support hoisting auxiliary tool, which is used for assisting the hoisting of a photovoltaic support and a photovoltaic pillar, and comprises a vertical rod, a fixing assembly, a pulley assembly and a rope, the fixing assembly is arranged on the vertical rod, the fixing assembly is used for fixing the vertical rod and the photovoltaic pillar, and the pulley assembly is arranged on the vertical rod. The pulley assembly is arranged at the end part of the vertical rod, the pulley assembly is used for suspending the photovoltaic support, the rope is connected with the pulley assembly, and the rope is used for controlling the pulley assembly to hoist or put down the photovoltaic support. The photovoltaic support hoisting auxiliary tool is simple in structure, rapid and convenient to use and capable of meeting the application requirements of complex terrains, and the photovoltaic support hoisting efficiency is effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of photovoltaic bracket installation and construction technology, and in particular to a photovoltaic bracket hoisting auxiliary tool. Background Technology

[0002] In the construction of photovoltaic (PV) power generation projects, PV support structures are a crucial component supporting solar modules. In large-scale centralized ground-mounted PV power generation projects, the PV support structures must first be assembled, and then hoisted onto the PV pillars. Currently, the hoisting of PV support structures onto the pillars largely relies on manual handling or heavy machinery. However, the heavy weight of the PV support structures makes manual handling inefficient, labor-intensive, and prone to injury; while heavy machinery hoisting is costly and its application is often limited by site terrain. Utility Model Content

[0003] The technical problem to be solved by this utility model is to provide an auxiliary tool for the hoisting of photovoltaic brackets, so as to solve the problems of high difficulty and low efficiency in the existing photovoltaic bracket hoisting construction.

[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a photovoltaic bracket hoisting auxiliary tool, used to assist in the hoisting of photovoltaic brackets and photovoltaic pillars, including a pole, a fixing component, a pulley assembly, and a rope. The fixing component is disposed on the pole and is used to fix the pole and the photovoltaic pillar. The pulley assembly is disposed at the end of the pole and is used to suspend the photovoltaic bracket. The rope is connected to the pulley assembly and is used to control the pulley assembly to hoist or lower the photovoltaic bracket.

[0005] Furthermore, a base is provided at the bottom end of the upright.

[0006] Furthermore, the fixing assembly includes at least two clamps arranged sequentially along the length of the upright.

[0007] Furthermore, at least two clamping components include an arc-shaped clamping component and an annular clamping component. The arc-shaped clamping component is located near the bottom end of the upright, and the annular clamping component is located above the arc-shaped clamping component.

[0008] Furthermore, the annular clamp includes a first arc-shaped component and a second arc-shaped component, the first arc-shaped component being connected to the upright, and the second arc-shaped component being movably connected to the first arc-shaped component.

[0009] Furthermore, the first arc-shaped component and the second arc-shaped component are snap-fitted together.

[0010] Furthermore, the clamp is provided with a rubber pad.

[0011] Furthermore, a crossbar is provided at the top of the upright, and the pulley assembly is provided on the crossbar.

[0012] Furthermore, the pulley assembly includes a fixed ring, a fixed pulley, a movable pulley, and a hook. The fixed ring and the fixed pulley are both mounted on the upright. The rope is wound around the fixed pulley and the movable pulley in sequence, and one end of the rope is connected to the fixed ring. The hook is mounted on the movable pulley and is used to suspend the photovoltaic bracket.

[0013] Furthermore, the upright is a telescopic upright.

[0014] The beneficial effects of this utility model are as follows: The photovoltaic support hoisting auxiliary tool provided by this utility model can fix the pole and photovoltaic support through the fixing component, and control the pulley assembly to lift or lower the photovoltaic support by manually or by motor controlling the rope to raise or lower. The photovoltaic support hoisting auxiliary tool has a simple structure and is quick and convenient to use. It can meet the application needs of complex terrain and effectively improve the hoisting efficiency of photovoltaic support. Attached Figure Description

[0015] Figure 1 This is a structural schematic diagram of the photovoltaic bracket hoisting auxiliary tool described in this utility model from one perspective;

[0016] Figure 2 for Figure 1 The diagram shown is a structural schematic of the photovoltaic support hoisting auxiliary tool from another perspective.

[0017] Label Explanation:

[0018] 1. Upright pole; 11. Horizontal pole;

[0019] 2. Fixing component; 21. Arc-shaped clamp; 22. Ring-shaped clamp; 221. First arc-shaped component; 222. Second arc-shaped component;

[0020] 3. Pulley assembly; 31. Fixed ring; 32. Fixed pulley; 33. Movable pulley; 34. Hook;

[0021] 4. Rope;

[0022] 5. Base. Detailed Implementation

[0023] To explain in detail the technical content, objectives, and effects of this utility model, the following description is provided in conjunction with the embodiments and accompanying drawings.

[0024] Please refer to Figures 1 to 2A photovoltaic (PV) bracket hoisting auxiliary tool is disclosed, used to assist in the hoisting of PV brackets and PV pillars. It includes a pole 1, a fixing component 2, a pulley assembly 3, and a rope 4. The fixing component 2 is mounted on the pole 1 and is used to fix the pole 1 and the PV pillar. The pulley assembly 3 is located at the end of the pole 1 and is used to suspend the PV bracket. The rope 4 is connected to the pulley assembly 3 and is used to control the pulley assembly 3 to hoist or lower the PV bracket.

[0025] As can be seen from the above description, the beneficial effects of this utility model are as follows: the photovoltaic bracket hoisting auxiliary tool provided by this utility model can fix the pole 1 to the photovoltaic support through the fixing component 2, and control the pulley component 3 to lift or lower the photovoltaic bracket by manually or by motor controlling the rope 4 to raise or lower. The photovoltaic bracket hoisting auxiliary tool has a simple structure and is quick and convenient to use. It can meet the application needs of complex terrain and effectively improve the hoisting efficiency of photovoltaic brackets.

[0026] Furthermore, the bottom end of the upright 1 is provided with a base 5.

[0027] As described above, the base 5 can increase the load-bearing area at the bottom of the support column, enhance the stability of the support column, and thus improve the reliability and stability of the photovoltaic bracket hoisting auxiliary tool.

[0028] Furthermore, the fixing component 2 includes at least two clamps arranged sequentially along the length of the upright 1.

[0029] As described above, the clamp can clamp the photovoltaic column to ensure the reliability and stability of the fixing of the pole 1 and the photovoltaic support, thereby improving the safety of the photovoltaic bracket hoisting auxiliary tools.

[0030] Furthermore, at least two clamping components include an arc-shaped clamping component 21 and an annular clamping component 22. The arc-shaped clamping component 21 is located near the bottom end of the upright 1, and the annular clamping component 22 is located above the arc-shaped clamping component 21.

[0031] As described above, the arc-shaped clamp 21 can position the pole 1 and the photovoltaic support, and at the same time, the arc-shaped clamp 21 can improve the reliability and stability of fixing the pole 1 and the photovoltaic support.

[0032] Furthermore, the annular clamp 22 includes a first arc-shaped component 221 and a second arc-shaped component 222. The first arc-shaped component 221 is connected to the upright 1, and the second arc-shaped component 222 is movably connected to the first arc-shaped component 221.

[0033] Furthermore, the first arc-shaped component 221 and the second arc-shaped component 222 are snap-fitted together.

[0034] As can be seen from the above description, the first arc-shaped part 221 and the second arc-shaped part 222 of the ring clamp 22 can clamp the photovoltaic column after being snapped together. The ring clamp 22 is easy to operate and has high reliability.

[0035] Furthermore, the clamp is provided with a rubber pad.

[0036] As described above, the rubber pads on the clamps can prevent scratches on the surface of the photovoltaic support.

[0037] Furthermore, a crossbar 11 is provided at the top of the upright pole 1, and the pulley assembly 3 is provided on the crossbar 11.

[0038] Furthermore, the pulley assembly 3 includes a fixed ring 31, a fixed pulley 32, a movable pulley 33, and a hook 34. The fixed ring 31 and the fixed pulley 32 are both mounted on the upright 1. The rope 4 is sequentially wound around the fixed pulley 32 and the movable pulley 33, and one end of the rope 4 is connected to the fixed ring 31. The hook 34 is mounted on the movable pulley 33 and is used to suspend the photovoltaic bracket.

[0039] As can be seen from the above description, the pulley assembly 3 can improve the stability of photovoltaic bracket hoisting and reduce the tensile force required for photovoltaic bracket hoisting.

[0040] Furthermore, the upright 1 is a telescopic upright 1.

[0041] As can be seen from the above description, the telescopic pole 1 is flexible and convenient to use, and can adapt to different installation scenarios and meet the application needs of photovoltaic support brackets of different sizes.

[0042] Example 1

[0043] Please refer to Figures 1 to 2 The first embodiment of this utility model is as follows: a photovoltaic bracket hoisting auxiliary tool, used to assist in the hoisting of photovoltaic brackets and photovoltaic pillars, including a pole 1, a fixing component 2, a pulley assembly 3 and a rope 4. The fixing component 2 is provided on the pole 1 and is used to fix the pole 1 and the photovoltaic pillar. The pulley assembly 3 is provided at the end of the pole 1 and is used to suspend the photovoltaic bracket. The rope 4 is connected to the pulley assembly 3 and is used to control the pulley assembly 3 to hoist or lower the photovoltaic bracket.

[0044] This embodiment provides a lightweight, quick-assembly and disassembly auxiliary tool for photovoltaic bracket hoisting, which can safely and reliably complete the hoisting construction of photovoltaic brackets.

[0045] Please refer to Figure 1 and Figure 2In this embodiment, the bottom end of the upright 1 is provided with a base 5. Specifically, a disc-shaped base 5 is welded to the bottom end of the upright 1. The disc-shaped base 5 can increase the supporting force area of ​​the upright 1, thereby enhancing the stability of the upright 1.

[0046] To improve the versatility and flexibility of the photovoltaic bracket hoisting auxiliary tool, the pole 1 in this embodiment is a telescopic pole 1. Optionally, the length of the telescopic pole 1 can be adjusted within 2-5 meters. The photovoltaic bracket hoisting auxiliary tool provided in this embodiment can adapt to different installation scenarios, and the telescopic pole 1 is easier to transport.

[0047] Please combine Figure 1 and Figure 2 For reference, in this embodiment, the fixing component 2 includes an arc-shaped clamp 21 and an annular clamp arranged sequentially along the length of the upright 1. Specifically, the arc-shaped clamp 21 is located near the bottom end of the upright 1, and the annular clamp 22 is located above the arc-shaped clamp 21. In some optional embodiments, the distance between the arc-shaped clamp 21 and the bottom end of the upright 1 is 300mm, and the distance between the annular clamp 22 and the bottom end of the upright 1 is 1800mm.

[0048] The column is fixed to the photovoltaic support using clamps, and the arc-shaped clamp 21 and the ring-shaped clamp 22 are located in the lower middle part of the column 1. The ring-shaped clamp can clamp the photovoltaic column tightly. The fixing component 2 can effectively distribute the force borne by the column to the bottom of the photovoltaic support, thereby improving the load-bearing capacity of the column and making the support effect of the column more stable.

[0049] The ring clamp can be a double-buckle clamp; specifically, the ring clamp component 22 includes a first arc-shaped component 221 and a second arc-shaped component 222. The first arc-shaped component 221 is connected to the upright 1, and the second arc-shaped component 222 is snapped together with the first arc-shaped component 221.

[0050] Preferably, both the arc-shaped clamp 21 and the ring-shaped clamp 22 are equipped with rubber pads to prevent the clamps of the photovoltaic support hoisting auxiliary tool from scratching the photovoltaic column made of galvanized steel pipe.

[0051] In this embodiment, a horizontal bar 11 is provided at the top of the upright 1, and a pulley assembly 3 is provided on the horizontal bar 11.

[0052] Please refer to Figure 1 The pulley assembly 3 includes a fixed ring 31, a fixed pulley 32, a movable pulley 33, and a hook 34. The fixed ring 31 and the fixed pulley 32 are both mounted on the upright 1. The rope 4 is wound around the fixed pulley 32 and the movable pulley 33 in sequence, and one end of the rope 4 is connected to the fixed ring 31. The hook 34 is mounted on the movable pulley 33 and is used to suspend the photovoltaic bracket.

[0053] Rope 4 can include steel wire rope and nylon rope. The movable pulley 33 and the fixed pulley 32 can be linked by the steel wire rope to make the linkage of the pulley assembly 3 smoother. The load-bearing capacity of the pulley assembly 3 is greater than or equal to 500 kg to meet the lifting requirements of the photovoltaic bracket. The nylon rope has anti-slip and wear-resistant properties. Optionally, a motor can be used to wind up and down the nylon rope, or it can be done manually. The pulley assembly 3 can reduce the tensile force required for lifting the photovoltaic bracket, and can facilitate the rapid lifting of the photovoltaic bracket in a semi-mechanized and semi-manual manner.

[0054] In summary, the photovoltaic support hoisting auxiliary tool provided by this utility model can fix the pole 1 to the photovoltaic support through the fixing component 2, and control the pulley component 3 to lift or lower the photovoltaic support by manually or by motor controlling the rope 4. The photovoltaic support hoisting auxiliary tool has a simple structure and is quick and convenient to use. It can meet the application needs of complex terrain and effectively improve the hoisting efficiency of photovoltaic supports.

[0055] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A photovoltaic support hoisting auxiliary tool, used to assist in the hoisting of photovoltaic supports and photovoltaic pillars, characterized in that, The device includes a pole, a fixing assembly, a pulley assembly, and a rope. The fixing assembly is mounted on the pole and is used to fix the pole and the photovoltaic support. The pulley assembly is located at the end of the pole and is used to suspend the photovoltaic support. The rope is connected to the pulley assembly and is used to control the pulley assembly to lift or lower the photovoltaic support.

2. The photovoltaic bracket hoisting auxiliary tool according to claim 1, characterized in that, The bottom end of the pole is provided with a base.

3. The photovoltaic bracket hoisting auxiliary tool according to claim 1, characterized in that, The fixing assembly includes at least two clamps arranged sequentially along the length of the pole.

4. The photovoltaic bracket hoisting auxiliary tool according to claim 3, characterized in that, At least two clamping components include an arc-shaped clamping component and an annular clamping component. The arc-shaped clamping component is located near the bottom end of the upright, and the annular clamping component is located above the arc-shaped clamping component.

5. The photovoltaic bracket hoisting auxiliary tool according to claim 4, characterized in that, The annular clamp includes a first arc-shaped component and a second arc-shaped component. The first arc-shaped component is connected to the upright, and the second arc-shaped component is movably connected to the first arc-shaped component.

6. The photovoltaic bracket hoisting auxiliary tool according to claim 5, characterized in that, The first arc-shaped component and the second arc-shaped component are snapped together.

7. The photovoltaic bracket hoisting auxiliary tool according to claim 3, characterized in that, The clamp is equipped with a rubber pad.

8. The photovoltaic bracket hoisting auxiliary tool according to claim 1, characterized in that, The top of the upright is provided with a crossbar, and the pulley assembly is provided on the crossbar.

9. The photovoltaic bracket hoisting auxiliary tool according to claim 1, characterized in that, The pulley assembly includes a fixed ring, a fixed pulley, a movable pulley, and a hook. The fixed ring and the fixed pulley are both mounted on the upright. The rope is wound around the fixed pulley and the movable pulley in sequence, and one end of the rope is connected to the fixed ring. The hook is mounted on the movable pulley and is used to suspend the photovoltaic bracket.

10. The photovoltaic bracket hoisting auxiliary tool according to claim 1, characterized in that, The pole is a telescopic pole.