Hoisting tool for high bracket of photovoltaic module
By designing a high-support hoisting tool for photovoltaic modules, and utilizing a combination of guide supports and lifting supports, along with drive components and rolling elements, the problems of low safety and efficiency in the photovoltaic module installation process were solved, achieving semi-automatic hoisting and improving construction safety and efficiency.
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
The installation of photovoltaic modules suffers from poor safety and low efficiency, high labor intensity for construction workers, and the modules are easily damaged during handling and pulling.
Design a high-support hoisting tool for photovoltaic modules, including a guide support, a lifting support, and a drive component. The drive component drives the lifting support to move the photovoltaic panels along the guide support. Combined with rolling elements, the tool improves the stability and convenience of movement, avoiding manual handling.
It improves the installation efficiency of photovoltaic modules, ensures the safety of construction personnel, avoids damage to photovoltaic panels, has a simple structure, is easy to disassemble and transport, and has high versatility.
Smart Images

Figure CN224212253U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of photovoltaic module installation tools, and in particular to a photovoltaic module high-support hoisting tool. Background Technology
[0002] Photovoltaic modules are crucial power generation equipment in photovoltaic power generation systems. In large-scale centralized ground-mounted photovoltaic power generation projects, the installation of photovoltaic panels typically relies on multiple people working together to lift and transfer them at height. During the installation of photovoltaic modules, construction workers need to stand on scaffolding to carry the photovoltaic modules up and down step by step, pulling them across the support surface until installation. The photovoltaic modules are heavy, and the top layer of the support is very tall, resulting in high labor intensity for construction workers during the transfer and pulling process. Manual handling is inefficient and can easily cause injuries to construction workers, posing personal safety hazards. In addition, photovoltaic modules are prone to bumps and knocks during the transfer and pulling process, which can cause microcracks, leading to heat damage to the photovoltaic modules and shortening their lifespan. Utility Model Content
[0003] The technical problem to be solved by this utility model is to provide a high-support hoisting tool for photovoltaic modules, so as to solve the problems of poor safety and low efficiency in the existing photovoltaic module installation process.
[0004] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows: a photovoltaic module high bracket hoisting tool, used to assist the installation of photovoltaic panels onto a photovoltaic bracket, including a guide bracket, a lifting bracket and a drive component. The guide bracket is mounted against the photovoltaic bracket and is slidably connected to the photovoltaic bracket. The lifting bracket is slidably mounted on the guide bracket and has a receiving groove for placing the photovoltaic panel. The drive component is drivenly connected to the lifting bracket to drive the lifting bracket to slide the photovoltaic panel along the guide bracket.
[0005] Furthermore, the lifting bracket is equipped with multiple rolling elements.
[0006] Furthermore, the rolling element is a first roller; wherein the first roller is disposed in the receiving groove to support the photovoltaic panel; or, the first roller is disposed on the outer side wall of the photovoltaic bracket, and the peripheral wall of the first roller is provided with a first groove, and the first grooves of multiple first rollers form the receiving groove.
[0007] Furthermore, the lifting bracket is provided with a second roller, which is rotatably connected to the guide bracket.
[0008] Furthermore, the lifting bracket is a rectangular lifting bracket, and the second rollers are provided at the four corners of the rectangular lifting bracket.
[0009] Furthermore, the peripheral wall of the second roller is provided with a second groove.
[0010] Furthermore, the guide bracket is a telescopic guide bracket.
[0011] Furthermore, the guide bracket rests against the crossbeam of the photovoltaic bracket, and the guide bracket is provided with a third roller, which is rotatably connected to the crossbeam.
[0012] Furthermore, the guide bracket is provided with at least two of the third rollers along its length.
[0013] Furthermore, the drive assembly includes a drive component, a pulley assembly, and a rope. The drive component and the pulley assembly are connected via the rope, and the pulley assembly is connected to the lifting bracket.
[0014] The beneficial effects of this utility model are as follows: The photovoltaic module high bracket hoisting tool provided by this utility model can hoist photovoltaic panels onto photovoltaic brackets in a semi-automatic or automatic manner, eliminating the need for manual handling of photovoltaic panels. Therefore, this photovoltaic module high bracket hoisting tool can effectively improve the installation efficiency of photovoltaic modules, ensure the safety of construction personnel, and avoid damage to photovoltaic panels during the handling process. In addition, the photovoltaic module high bracket hoisting tool has a simple structure, is easy to disassemble and transport, and has high versatility. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of an optional embodiment of the photovoltaic module high-support hoisting tool described in this utility model;
[0016] Figure 2 for Figure 1 The diagram shows the structure of the photovoltaic module high-support hoisting tool from another perspective.
[0017] Figure 3 This is a schematic diagram of another optional embodiment of the photovoltaic module high support hoisting tool described in this utility model.
[0018] Label Explanation:
[0019] 1. Guide bracket; 11. Third roller;
[0020] 2. Lifting bracket; 21. Receiving slot; 22. First roller; 221. First groove; 23. Second roller; 231. Second groove;
[0021] 3. Drive assembly; 31. Pulley assembly; 32. Rope. Detailed Implementation
[0022] 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.
[0023] Please refer to Figures 1 to 3 A photovoltaic module high-support hoisting tool is used to assist in the installation of photovoltaic panels onto a photovoltaic support. It includes a guide support 1, a lifting support 2, and a drive assembly 3. The guide support 1 is mounted against the photovoltaic support and is slidably connected to the photovoltaic support. The lifting support 2 is slidably mounted on the guide support 1 and has a receiving groove 21 for placing the photovoltaic panel. The drive assembly 3 is driven by the lifting support 2 to drive the lifting support 2 to slide the photovoltaic panel along the guide support 1.
[0024] As can be seen from the above description, the beneficial effects of this utility model are as follows: The photovoltaic module high bracket hoisting tool provided by this utility model can hoist photovoltaic panels onto photovoltaic brackets in a semi-automatic or automatic manner, eliminating the need for manual handling of photovoltaic panels. Therefore, this photovoltaic module high bracket hoisting tool can effectively improve the installation efficiency of photovoltaic modules, ensure the safety of construction personnel, and avoid damage to photovoltaic panels during the handling process. In addition, the photovoltaic module high bracket hoisting tool has a simple structure, is easy to disassemble and transport, and has high versatility.
[0025] Furthermore, the lifting bracket 2 is equipped with multiple rolling elements.
[0026] As described above, after the lifting bracket 2 rises to the installation height along the guide bracket 1, the installer can move the photovoltaic panel from the receiving groove 21 horizontally onto the photovoltaic bracket. The rolling element allows the installer to easily pull the photovoltaic panel out of the receiving groove 21.
[0027] Furthermore, the rolling element is a first roller 22; wherein the first roller 22 is disposed in the receiving groove 21 to support the photovoltaic panel; or, the first roller 22 is disposed on the outer side wall of the photovoltaic bracket, and the peripheral wall of the first roller 22 is provided with a first groove 221, and the first grooves 221 of multiple first rollers 22 form the receiving groove 21.
[0028] As described above, this photovoltaic module high-support hoisting tool can facilitate installers in moving photovoltaic panels onto the photovoltaic support.
[0029] Furthermore, the lifting bracket 2 is provided with a second roller 23, which is rotatably connected to the guide bracket 1.
[0030] As described above, the lifting bracket 2 is slidably mounted on the guide bracket 1 via the second roller 23, which can improve the smoothness and stability of the lifting bracket 2 sliding along the guide bracket 1.
[0031] Furthermore, the lifting bracket 2 is a rectangular lifting bracket 2, and the rectangular lifting bracket 2 is provided with the second roller 23 at its four corners.
[0032] As can be seen from the above description, the lifting support 2 has high stability when sliding along the guide support 1.
[0033] Furthermore, the peripheral wall of the second roller 23 is provided with a second groove 231.
[0034] As can be seen from the above description, the guide rod of the guide bracket 1 is located in the second groove 231, and the lifting bracket 2 has high stability when sliding along the guide bracket 1.
[0035] Furthermore, the guide bracket 1 is a telescopic guide bracket.
[0036] As can be seen from the above description, the photovoltaic module high bracket hoisting tool has high versatility. By adjusting the telescopic extension of the guide bracket 1, it can meet the hoisting application needs of photovoltaic modules of various sizes.
[0037] Furthermore, the guide bracket 1 rests against the crossbeam of the photovoltaic bracket, and the guide bracket 1 is provided with a third roller 11, which is tactilely connected to the crossbeam.
[0038] As described above, the guide bracket 1 can use the crossbeam of the photovoltaic bracket as a moving guide rail to ensure the convenience and reliability of the photovoltaic module high bracket hoisting tool when the photovoltaic module moves along the crossbeam during assembly.
[0039] Furthermore, the guide bracket 1 is provided with at least two of the third rollers 11 along its length.
[0040] As described above, the guide bracket 1 can improve the stability of the photovoltaic module high bracket hoisting tool during movement by means of at least two third rollers 11 along its length.
[0041] Furthermore, the drive assembly 3 includes a drive component, a pulley assembly 31, and a rope 32. The drive component and the pulley assembly 31 are connected by the rope 32, and the pulley assembly 31 is connected by the lifting bracket 2.
[0042] As described above, the drive unit can control the rope 32 to be extended and retracted, eliminating the need for manual pulling operations and improving the reliability and safety of the photovoltaic module high-support hoisting tool.
[0043] Example 1
[0044] Please refer to Figures 1 to 3 The first embodiment of this utility model is as follows: a photovoltaic module high bracket hoisting tool, used to assist the installation of photovoltaic panels onto a photovoltaic bracket, including a guide bracket 1, a lifting bracket 2 and a drive component 3. The guide bracket 1 is mounted against the photovoltaic bracket and is slidably connected to the photovoltaic bracket. The lifting bracket 2 is slidably mounted on the guide bracket 1 and is provided with a receiving groove 21 for placing the photovoltaic panel. The drive component 3 is connected to the lifting bracket 2 to drive the lifting bracket 2 to move the photovoltaic panel along the guide bracket 1.
[0045] The photovoltaic module high-support hoisting tool provided in this embodiment can improve the installation efficiency of photovoltaic modules. In practical applications, installers can place the photovoltaic panel in the receiving slot 21 of the lifting support 2, and then drive the lifting support 2 to slide along the guide support 1 that is inclined relative to the vertical direction through the drive component 3, so as to drive the photovoltaic panel to rise and move to the installation height position. This avoids the construction personnel from moving the photovoltaic panel by passing and pulling. Therefore, the application of this photovoltaic module high-support hoisting tool is safe and can also avoid the photovoltaic panel from being bumped and damaged during manual passing and pulling.
[0046] When the lifting bracket 2 moves the photovoltaic bracket to the installation height, the installer can move the photovoltaic panel from the receiving groove 21 horizontally onto the photovoltaic bracket. To make it easier for the installer to move the photovoltaic panel from the receiving groove 21 onto the photovoltaic bracket, the lifting bracket 2 is equipped with multiple rolling elements. Specifically, the rolling element is the first roller 22, which can roll along the length of the receiving groove 21.
[0047] Please refer to Figure 1 as well as Figure 2 As an optional implementation, the first roller 22 is disposed in the receiving groove 21 to support the photovoltaic panel.
[0048] Please refer to Figure 3 As another optional implementation, the first roller 22 is disposed on the outer side wall of the photovoltaic bracket, and the peripheral wall of the first roller 22 is provided with a first groove 221, and the first grooves 221 of the multiple first rollers 22 form a receiving groove 21.
[0049] In this embodiment, the lifting bracket 2 is provided with a second roller 23, which is rotatably connected to the guide bracket 1. Preferably, the lifting bracket 2 is a rectangular lifting bracket 2, with the second roller 23 located at each of its four corners to ensure the stability of the lifting bracket 2 as it moves along the guide bracket 1. The peripheral wall of the second roller 23 may be provided with a second groove 231. The lifting bracket 2 uses the guide bracket 1 as a guide rail and slides along the guide bracket 1 via the second roller 23, thereby improving the stability of the lifting bracket 2 sliding along the guide bracket 1.
[0050] Preferably, the photovoltaic module high-support hoisting tool also includes a base, on which the guide support 1 can be mounted. The base can be used as scaffolding and provides support for the guide support 1, improving its stability and reliability. The base can be equipped with casters at its bottom, each with a locking mechanism. Optionally, the base includes a telescopic frame, which can be composed of telescopic steel pipes. The guide support is mounted on the telescopic frame. Adjusting the telescopic frame changes the height of the photovoltaic module high-support hoisting tool to meet the application requirements of photovoltaic supports of different heights.
[0051] In this embodiment, the guide bracket 1 rests against the crossbeam of the photovoltaic support frame. The guide bracket 1 is equipped with a third roller 11, which is rotatably connected to the crossbeam. The bottom of the guide bracket 1 is also equipped with casters to facilitate movement. Preferably, the guide bracket 1 has at least two third rollers 11 along its length. During the movement of the guide bracket 1, the photovoltaic module high-support hoisting tool can use the crossbeam of the photovoltaic support frame as a guide rail, sliding along the crossbeam via the third rollers 11.
[0052] In some embodiments, the guide bracket 1 can be movably mounted on the base to make the photovoltaic module high-support hoisting tool highly flexible and versatile.
[0053] The drive assembly 3 includes a drive component (not shown in the figure), a pulley assembly 31, and a rope 32. The drive component and the pulley assembly 31 are connected via the rope 32, and the pulley assembly 31 is connected to the lifting bracket 2. The drive component can be a portable electric hoist mounted on a telescopic frame. The portable electric hoist can be flexibly disassembled and installed. The electric hoist is connected to the movable pulley via a non-slip, wear-resistant nylon rope to pull the lifting bracket 2.
[0054] In this embodiment, a pulley assembly 31 with a load-bearing capacity of 500 kg or more is selected. The pulley assembly 31 consists of a movable pulley and a fixed pulley. The rope 32 is a steel wire rope, which links the movable pulley and the fixed pulley. The pulley assembly 31 can save effort. When the drive assembly 3 is not equipped with an electric drive component, the pulley assembly 31 can reduce the manual pulling force required and improve the safety of manually lifting photovoltaic panels.
[0055] In summary, the photovoltaic module high-support hoisting tool provided by this utility model can hoist photovoltaic panels onto photovoltaic supports in a semi-automatic or automatic manner, eliminating the need for manual handling of photovoltaic panels. Therefore, this photovoltaic module high-support hoisting tool can effectively improve the installation efficiency of photovoltaic modules, ensure the safety of construction personnel, and avoid damage to photovoltaic panels during the handling process. In addition, the photovoltaic module high-support hoisting tool has a simple structure, is easy to disassemble and transport, and has high versatility.
[0056] 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 module high-support hoisting tool, used to assist in the installation of photovoltaic panels onto a photovoltaic support, characterized in that, The device includes a guide bracket, a lifting bracket, and a drive assembly. The guide bracket is mounted on the photovoltaic bracket and is slidably connected to the photovoltaic bracket. The lifting bracket is slidably mounted on the guide bracket and has a receiving groove for placing the photovoltaic panel. The drive assembly is connected to the lifting bracket to drive the lifting bracket to slide the photovoltaic panel along the guide bracket.
2. The photovoltaic module high-support hoisting tool according to claim 1, characterized in that, The lifting support is equipped with multiple rolling elements.
3. The photovoltaic module high-support hoisting tool according to claim 2, characterized in that, The rolling element is a first roller; wherein the first roller is disposed in the receiving groove to support the photovoltaic panel; or, the first roller is disposed on the outer side wall of the photovoltaic bracket, and the peripheral wall of the first roller is provided with a first groove, and the first grooves of multiple first rollers form the receiving groove.
4. The photovoltaic module high-support hoisting tool according to claim 1, characterized in that, The lifting bracket is equipped with a second roller, which is rotatably connected to the guide bracket.
5. The photovoltaic module high-support hoisting tool according to claim 4, characterized in that, The lifting support is a rectangular lifting support, and the second rollers are provided at the four corners of the rectangular lifting support.
6. The photovoltaic module high-support hoisting tool according to claim 4, characterized in that, The second roller has a second groove on its peripheral wall.
7. The photovoltaic module high-support hoisting tool according to claim 1, characterized in that, The guide support is a telescopic guide support.
8. The photovoltaic module high-support hoisting tool according to claim 1, characterized in that, The guide bracket rests against the crossbeam of the photovoltaic bracket, and the guide bracket is provided with a third roller, which is tactilely connected to the crossbeam.
9. The photovoltaic module high-support hoisting tool according to claim 8, characterized in that, The guide bracket is provided with at least two of the third rollers along its length.
10. The photovoltaic module high-support hoisting tool according to claim 1, characterized in that, The drive assembly includes a drive component, a pulley assembly, and a rope. The drive component and the pulley assembly are connected via the rope, and the pulley assembly is connected to the lifting support.