A highly stable aluminum alloy solar panel bracket
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-30
- Publication Date
- 2026-08-11
AI Technical Summary
西部地区由于其广阔的地域和充足的光照资源,成为了太阳能开发的理想区域,然而,该地区复杂的自然环境给太阳能板支架的安装和稳定使用带来了诸多挑战,在地面上架设太阳能支架可能面临地质条件复杂,强劲的风沙会对支架产生巨大的冲击力导致支架不稳定,为此,我们提出了一种稳定性强的铝合金太阳能支架来解决上述问题
转动转轮,带动螺柱下降,使插杆牢固地插接在土地内;如果是在水泥面上安装,可将螺柱下端螺纹拧接安装板,使用螺丝通过安装孔固定,或者螺纹拧接连接板,使用吸盘吸附,如果需要更强的支撑力和锚固力,可以在连接头的下端螺纹拧接锚固杆,并将其埋设在土内,提升支撑力和锚固力。
Smart Images

Figure CN224626574U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of solar energy support technology, and in particular to a highly stable aluminum alloy solar energy support. Background Technology
[0002] With the increasing global demand for clean energy, solar energy, as an abundant and sustainable energy source, is receiving increasing attention. Solar panels, as key equipment for solar energy utilization, are widely installed around the world. The western region, with its vast territory and abundant sunshine, has become an ideal area for solar energy development. However, the complex natural environment of this region presents many challenges to the installation and stable use of solar panel supports. Erecting solar panels on the ground may face complex geological conditions, and strong winds and sandstorms can exert tremendous impact on the supports, leading to instability. Therefore, we propose a highly stable aluminum alloy solar panel support to address these issues. Utility Model Content
[0003] The purpose of this invention is to address the shortcomings of existing technologies by proposing a highly stable aluminum alloy solar panel bracket.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: A highly stable aluminum alloy solar panel bracket includes a T-shaped mounting base. Fixing members are fixed to both sides of the T-shaped mounting base, and a mounting frame is mounted on each fixing member. A solar panel is fixed to one side of the mounting frame, and a support structure is mounted at the lower end of the mounting frame. The two mounting frames are connected by two tensioning mechanisms. A fixing tube is fixed to the lower end of the T-shaped mounting base, and a stud is threaded into the fixing tube. The upper end of the stud passes through the T-shaped mounting base and extends to the upper end of the T-shaped mounting base. A rotating wheel is fixed to the upper end of the stud, and a fixing rod is fixed to the lower end of the stud. A connector is fixed to the lower end of the fixing rod, and a plug is threaded into the lower end of the connector.
[0005] Preferably, the support structure includes three support columns fixed at equal intervals to the lower end of the mounting frame, and the lower end of each support column is fixed with a pad.
[0006] Preferably, the tensioning mechanism includes two reinforcing members fixed on both sides of the two mounting frames, and a pull rod is connected between the two reinforcing members on the same side.
[0007] Preferably, the lower end of the connector is threaded with a mounting plate, and the mounting plate has four mounting holes at equal intervals.
[0008] Preferably, a connecting plate is threaded onto the lower end of the connector, and four suction cups are installed at equal intervals on the lower end of the connecting plate.
[0009] Preferably, an anchor rod is threaded onto the lower end of the connector.
[0010] In this utility model, appropriate installation methods and accessories are selected according to the geological conditions and actual needs of the installation site. If it is to be installed on land, a plug or anchor rod can be prepared; if it is to be installed on a cement surface, an installation plate or connecting plate is prepared. 1. Bracket assembly: Place the T-shaped mounting bracket in the installation position and fix the fasteners on both sides of it; Install the mounting frame onto the fastener and secure the solar panel to one side of the mounting frame; Install a support structure at the lower end of the mounting frame, that is, fix three support columns at equal intervals and fix pads at the lower end of the support columns; Two mounting frames are connected by a tensioning mechanism. Reinforcing members are fixed on both sides of the two mounting frames, and a tie rod is connected between the two reinforcing members on the same side to form an A-shaped support frame. The A-shaped design itself has good stability, and the support structure on both sides of its lower end will evenly distribute the pressure from the upper part to the ground, reducing the situation of excessive local stress. 2. Fixed operation: Rotate the wheel to lower the stud, firmly inserting the rod into the ground. If installing on a cement surface, screw the mounting plate to the lower end of the stud and fix it with screws through the mounting holes, or screw the connecting plate and use a suction cup to adhere it. If stronger support and anchoring are required, screw the anchor rod to the lower end of the connector and bury it in the soil to enhance support and anchoring.
[0011] This utility model has the following advantages: 1. The A-shaped design gives the entire support structure good stability. The support structures on both sides of its lower end can evenly distribute the pressure from the upper part to the ground, reducing the situation of excessive local stress and effectively preventing the support structure from tilting or collapsing due to uneven local stress. 2. The insertion poles, anchor rods, etc. are firmly fixed to the ground or soil, which further improves the stability and firmness of the support and can resist the effects of severe weather such as strong winds and sandstorms in the western region; 3. Suitable installation methods and accessories can be selected according to different installation locations and geological conditions, adapting to the complex and diverse geological conditions in western regions and improving the flexibility of use; In summary, the A-shaped design of this utility model gives the entire support structure good stability. The supporting structures on both sides of its lower end can evenly distribute the pressure from the upper part to the ground, reducing the situation of excessive local stress and effectively preventing the support from tilting or collapsing due to uneven local stress. At the same time, it can select appropriate installation methods and accessories according to different installation locations and geological conditions, improving the flexibility of use. Attached Figure Description
[0012] Figure 1 This is a structural diagram of the present invention; Figure 2 A structural diagram of the insertion rod of this utility model; Figure 3 A structural diagram showing the installation plate of this utility model; Figure 4 A structural diagram of the suction cup of this utility model; Figure 5 This is a structural diagram of the anchor rod of this utility model.
[0013] In the diagram: 1 Anchor rod, 2 Fixing component, 3 Mounting frame, 4 Solar panel, 5 Reinforcing component, 6 Tie rod, 7 Connector, 8 Rotary wheel, 9 T-type mounting base, 10 Fixing pipe, 11 Support column, 12 Pad, 13 Stud, 14 Fixing rod, 15 Insert rod, 16 Mounting plate, 17 Mounting hole, 18 Connecting plate, 19 Suction cup. Detailed Implementation
[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0015] Reference Figure 1-5 A highly stable aluminum alloy solar bracket includes a T-shaped mounting base 9, with fixing parts 2 fixed on both sides of the T-shaped mounting base 9. The T-shaped mounting base 9 is made of aluminum alloy, which has the advantages of being lightweight and corrosion resistant, and can adapt to different outdoor environments, thus extending the service life of the bracket. A mounting frame 3 is installed on the fixing component 2. A solar panel 4 is fixed on one side of the mounting frame 3. A support structure is installed at the lower end of the mounting frame 3. The two mounting frames 3 are connected by two tensioning mechanisms. A fixing tube 10 is fixed at the lower end of the T-shaped mounting base 9. A stud 13 is screwed into the internal thread of the fixing tube 10. The upper end of the stud 13 passes through the T-shaped mounting base 9 and extends to the upper end of the T-shaped mounting base 9. A rotating wheel 8 is fixed at the upper end of the stud 13. The raising and lowering of the stud 13 can be controlled by rotating the rotating wheel 8. A fixing rod 14 is fixed to the lower end of the stud 13, and a connector 7 is fixed to the lower end of the fixing rod 14. A plug rod 15 is threaded onto the lower end of the connector 7, and the connector 7 provides an interface for connecting different installation accessories in the future. The support structure includes three support columns 11 fixed at equal intervals at the lower end of the mounting frame 3. The lower end of the support column 11 is fixed with a pad 12. The function of the support structure is to evenly distribute the weight of the mounting frame 3 and the solar panel 4 to the ground, reducing local pressure. The pad 12 is made of elastic and wear-resistant material, which can increase the friction with the ground, further improve the stability of the support, and at the same time buffer the impact of ground vibration on the bracket. The tensioning mechanism includes two reinforcing members 5 fixed on both sides of the two mounting frames 3. A tie rod 6 is connected between the two reinforcing members 5 on the same side. The tensioning mechanism makes the whole form an A-shaped support frame. The A-shaped design itself has good stability. The support structure on both sides of its lower end will evenly distribute the pressure of the upper part to the ground, reducing the situation of excessive local stress. The combination of tie rod 6 and reinforcing member 5 forms a stable triangular structure. Triangles have stability and can effectively enhance the overall deformation resistance of the support and improve the stability of the support under severe weather conditions such as strong winds. The lower end of the connector 7 is threaded with a mounting plate 16. The mounting plate 16 has four mounting holes 17 at equal intervals, which are suitable for installation on cement surfaces. The lower end of the connector 7 is threaded with a connecting plate 18. The lower end of the connecting plate 18 has four suction cups 19 at equal intervals, which are also suitable for installation on cement surfaces. The suction cups 19 are used to fix the connector. The lower end of the connector 7 is threaded with an anchor rod 1, which is used in situations where stronger support and anchoring force are required. When installing in the ground, it is buried in the soil.
[0016] In this utility model, appropriate installation methods and accessories are selected according to the geological conditions and actual needs of the installation site. If it is installed on land, a plug rod 15 or an anchor rod 1 can be prepared; if it is installed on a cement surface, an installation plate 16 or a connecting plate 18 can be prepared. 1. Bracket assembly Place the T-shaped mounting bracket 9 in the installation position and fix the fasteners 2 on both sides of it; Install the mounting frame 3 onto the fastener 2, and fix the solar panel 4 on one side of the mounting frame 3; A support structure is installed at the lower end of the mounting frame 3, that is, three support columns 11 are fixed at equal intervals, and pads 12 are fixed at the lower end of the support columns 11. Two mounting frames 3 are connected by a tensioning mechanism. Reinforcing members 5 are fixed on both sides of the two mounting frames 3, and a tie rod 6 is connected between the two reinforcing members 5 on the same side to form an A-shaped support frame. The A-shaped design itself has good stability, and the support structure on both sides of its lower end will evenly distribute the pressure from the upper part to the ground, reducing the situation of excessive local stress. 2. Fixed operation Rotate the wheel 8 to lower the stud 13, so that the insertion rod 15 is firmly inserted into the soil. If it is installed on a cement surface, the lower end of the stud 13 can be threaded to the mounting plate 16 and fixed with screws through the mounting hole 17, or the connecting plate 18 can be threaded to it and suction cup 19 can be used for adsorption. If stronger support and anchoring force are required, the anchor rod 1 can be threaded to the lower end of the connector 7 and buried in the soil to improve the support and anchoring force.
[0017] The above are merely preferred embodiments of this utility model, but the scope of protection of this utility model is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this utility model, based on the technical solution and inventive concept of this utility model, should be included within the scope of protection of this utility model.
Claims
1. A highly stable aluminum alloy solar panel bracket, comprising a T-shaped mounting base (9), characterized in that, Both sides of the T-shaped mounting base (9) are fixed with fasteners (2), and a mounting frame (3) is installed on the fastener (2). A solar panel (4) is fixed on one side of the mounting frame (3). A support structure is installed at the lower end of the mounting frame (3). The two mounting frames (3) are connected by two tensioning mechanisms. A fixing tube (10) is fixed at the lower end of the T-shaped mounting base (9). A stud (13) is threaded into the fixing tube (10). The upper end of the stud (13) passes through the T-shaped mounting base (9) and extends to the upper end of the T-shaped mounting base (9). A rotating wheel (8) is fixed at the upper end of the stud (13). A fixing rod (14) is fixed at the lower end of the stud (13). A connector (7) is fixed at the lower end of the fixing rod (14). A plug rod (15) is threaded into the lower end of the connector (7).
2. The aluminum alloy solar panel bracket with high stability according to claim 1, characterized in that: The support structure includes three support columns (11) fixed at equal intervals at the lower end of the mounting frame (3), and the lower end of the support column (11) is fixed with a pad (12).
3. The aluminum alloy solar panel bracket with high stability according to claim 1, characterized in that: The tensioning mechanism includes two reinforcing members (5) fixed on both sides of the two mounting frames (3), and a pull rod (6) is connected between the two reinforcing members (5) on the same side.
4. The aluminum alloy solar panel bracket with high stability according to claim 1, characterized in that: The lower end of the connector (7) is threaded with a mounting plate (16), and the mounting plate (16) has four mounting holes (17) at equal intervals.
5. The aluminum alloy solar panel bracket with high stability according to claim 1, characterized in that: The lower end of the connector (7) is threaded with a connecting plate (18), and four suction cups (19) are installed at equal intervals on the lower end of the connecting plate (18).
6. The aluminum alloy solar panel bracket with high stability according to claim 1, characterized in that: An anchor rod (1) is threaded onto the lower end of the connector (7).