Mountain photovoltaic power station installation tool
Through the combined structure of photovoltaic mounting plate and H-type connecting frame, combined with the fixing method of steel cables and anchor bolts, the reinforcement problem of the installation of mountain photovoltaic power stations on uneven ground is solved, achieving a more stable installation effect.
Patent Information
- Application Number
- CN202421410145.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-19
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-06-19
AI Technical Summary
The existing mountain photovoltaic power plant installations have poor fixing effect on uneven grounds, especially the reinforcement effect in lower positions is not good.
The combination structure of photovoltaic mounting plate, connecting projection, H-type connecting frame, front support rod and rear support rod is adopted. Through the cooperation of steel cables, baffles, annular connectors and anchor bolts, the inclination angle of the photovoltaic panel is adjusted and fixed in perforations of different heights, thereby improving the reinforcement effect of the installation tool.
In mountainous environment, the reinforcement effect of photovoltaic power plant installation tooling is significantly improved, adapting to the installation needs of uneven ground, and enhancing the stability and strength of installation.
Smart Images

Figure CN223141828U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of photovoltaic power stations, and particularly relates to an installation tool for a mountain photovoltaic power station. Background Technique
[0002] At present, when installing a photovoltaic power station on a mountain, it is usually necessary to use an installation tool to fix the photovoltaic power station. The existing installation tool for a mountain photovoltaic power station includes a photovoltaic panel body. Cross beams are installed at both the upper and lower ends of the bottom of the photovoltaic panel body; diagonal beams are installed on both the front and back sides of the bottom of the cross beam; an angle adjustment component is rotatably installed on one side of the bottom of the diagonal beam; the utility model tightens and fixes a steel cable on the mountain through a positioning pile, and limits the reinforcement beam and the whole tool through the steel cable. However, when this installation tool for a mountain photovoltaic power station is used, due to the uneven surface of the mountain, there is also a certain gap in the height of the installation tool. Only by passing the steel cable through the reinforcement beam, the reinforcement effect of the installation tool at a lower position is poor. Content of the Utility Model
[0003] In order to solve the above technical problems, the utility model provides an installation tool for a mountain photovoltaic power station, which improves the reinforcement effect of the installation tool in a mountain environment.
[0004] Among them, the utility model is realized through the following technical solutions:
[0005] An installation tool for a mountain photovoltaic power station includes a photovoltaic installation plate. Connecting protrusions are integrally arranged at both the front and rear ends of the lower part of the photovoltaic installation plate. An H-shaped connecting frame is installed on the lower part of each connecting protrusion through a pin shaft. The lower part of the H-shaped connecting frame arranged at the front side is fixedly installed with a front support rod through bolts and nuts. The lower part of the H-shaped connecting frame arranged at the rear side is fixedly installed with a rear support rod through bolts and nuts. Through holes are sequentially formed from top to bottom in the front part of the front support rod and the front part of the rear support rod. Baffles are fixedly installed on the front part of the front support rod and the front part of the rear support rod.
[0006] Preferably, mounting holes are equidistantly formed from top to bottom on both sides of each H-shaped connecting frame.
[0007] Preferably, bases are integrally arranged at the lower ends of the front support rod and the rear support rod.
[0008] Compared with the prior art, the beneficial effects of the utility model are as follows:
[0009] 1. In the utility model, the through holes, baffles, steel cables, annular connectors, and anchor bolts are arranged, which is beneficial to improving the reinforcement effect of the installation tool in a mountain environment.
[0010] 2. In the present utility model, the photovoltaic installation plate, connecting protrusion, H-shaped connecting frame, installation hole, rear support rod, front support rod, and base are provided, which is conducive to the installation of photovoltaic panels. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 is a schematic structural diagram of the present utility model.
[0012] Figure 2 is a schematic structural diagram of the installation tools of the present utility model installed side by side.
[0013] In the figure:
[0014] 1. Photovoltaic installation plate; 11. Connecting protrusion; 2. H-shaped connecting frame; 21. Installation hole; 3. Rear support rod; 4. Front support rod; 5. Base; 6. Perforation; 7. Baffle; 8. Steel cable; 9. Ring-shaped connecting piece; 91. Anchor bolt. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0015] The following combines the drawings to specifically describe the present utility model. As shown in the attached Figure 1 and attached Figure 2 A mountain photovoltaic power station installation tool includes a photovoltaic installation plate 1. Connecting protrusions 11 are integrally provided at both the front and rear ends of the lower part of the photovoltaic installation plate 1. An H-shaped connecting frame 2 is pin-installed at the lower part of each connecting protrusion 11. Installation holes 21 are equidistantly opened from top to bottom on both sides of each H-shaped connecting frame 2. A front support rod 4 is fixedly installed at the lower part of the H-shaped connecting frame 2 arranged on the front side through bolts and nuts. A rear support rod 3 is fixedly installed at the lower part of the H-shaped connecting frame 2 arranged on the rear side through bolts and nuts.
[0016] In this embodiment, specifically, bases 5 are integrally provided at the lower ends of both the front support rod 4 and the rear support rod 3.
[0017] In this embodiment, specifically, perforations 6 are sequentially opened from top to bottom on the front parts of both the front support rod 4 and the rear support rod 3. Baffles 7 are fixedly installed on the front parts of both the front support rod 4 and the rear support rod 3. A steel cable 8 horizontally penetrates through one of the perforations 6. Ring-shaped connecting pieces 9 are integrally provided at both ends of the steel cable 8. Anchor bolts 91 are provided at the upper parts of the ring-shaped connecting pieces 9. During installation, multiple installation tools are arranged side by side. The steel cable 8 is sequentially passed through the perforations 6 opened in the front support rod 4, and then the baffle 7 is fixed to the front support rod 4. The ring-shaped connecting piece 9 is fixed to the ground through the anchor bolt 91, thereby fixing multiple installation tools and improving the strength of the installation tools. Since the flatness of the mountain ground is relatively low, when fixing the installation tools through the steel cable 8, according to the height of each installation tool, the steel cable 8 passes through the perforations 6 at different heights, so as to reinforce the installation tools with different heights.
[0018] Working Principle
[0019] In the present utility model, when installing and constructing a photovoltaic power station in a mountain environment, the fixing positions of the rear support rod 3 and the front support rod 4 with the H-shaped connecting frame 2 will be adjusted first, so as to adjust the inclination angle of the photovoltaic installation plate 1, and then the bases 5 of the rear support rod 3 and the front support rod 4 will be fixed to the external ground, thereby completing the fixation of the installation tooling.
[0020] Any technical solution using the technical solution described in the present utility model, or any technical solution designed by those skilled in the art inspired by the technical solution of the present utility model and achieving the above technical effects shall fall within the protection scope of the present utility model.
Claims
1. A mountain photovoltaic power station installation tooling, characterized in that, The installation tooling of the mountain photovoltaic power station includes a photovoltaic installation plate (1). Connecting protrusions (11) are integrally arranged at both the front and rear ends of the lower part of the photovoltaic installation plate (1). An H-shaped connecting frame (2) is pin-mounted at the lower part of each connecting protrusion (11). A front support rod (4) is fixedly installed at the lower part of the H-shaped connecting frame (2) arranged at the front side through bolts and nuts. A rear support rod (3) is fixedly installed at the lower part of the H-shaped connecting frame (2) arranged at the rear side through bolts and nuts. Through holes (6) are sequentially formed from top to bottom at the front parts of the front support rod (4) and the rear support rod (3). Baffles (7) are fixedly installed at the front parts of the front support rod (4) and the rear support rod (3).
2. The installation tooling for a mountain photovoltaic power station according to claim 1, characterized in that, Mounting holes (21) are equidistantly formed from top to bottom on both sides of each H-shaped connecting frame (2).
3. The installation tooling for mountain photovoltaic power stations as described in claim 1, characterized in that, Bases (5) are integrally arranged at the lower ends of the front support rod (4) and the rear support rod (3).
4. The installation tooling for a mountain photovoltaic power station according to claim 1, characterized in that, A steel cable (8) horizontally penetrates through one of the through holes (6).
5. The installation tooling for mountain photovoltaic power station according to claim 4, characterized in that, Ring-shaped connectors (9) are integrally arranged at both ends of the steel cable (8).
6. The installation tooling for a mountain photovoltaic power station as described in claim 5, characterized in that, An anchor bolt (91) is arranged at the upper part of the ring-shaped connector (9).