Light high-strength solar cell panel frame

By introducing reinforcing and fixing components into the solar panel frame, the problems of insufficient frame strength and inconvenient operation are solved, achieving the effects of lightweight, high strength, and convenient installation and disassembly.

CN223744651UActive Publication Date: 2025-12-30YONGSHENG OPTICAL STORAGE TECHNOLOGY GROUP CO LTD
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Patent Information

Application Number
CN202422388657.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-12-30
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

Existing solar panel frames are lightweight but lack strength, are prone to bending and deformation, and are inconvenient to install and disassemble.

Method used

The design incorporates reinforced components, including cavities, horizontal plates, wave support frames, and ring support frames, combined with fixing components, to achieve a lightweight and high-strength frame. The fixing components also facilitate the easy installation and removal of the main body of the solar panels.

Benefits of technology

The frame's strength has been improved, preventing bending and deformation, and the operation is simple, facilitating the installation, disassembly, and maintenance of the solar panels.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a light high-strength solar cell panel frame, which belongs to the field of solar cell panel frames and comprises a frame body, and a cell panel body is mounted on the frame body through a fixing component. By arranging the reinforcing assemblies and arranging the transverse plates and the wave supporting frames in the cavities, the light weight of the frame is guaranteed, meanwhile, the wave supporting frames can effectively reduce the influence caused by stress, the situation that the frame body is bent is prevented, the annular supporting frames and the connecting plates are arranged between the transverse plates, the annular supporting frames can disperse the stress, and the connecting plates are arranged between the transverse plates. Dispersed stress is transmitted to the two sides of the frame main body through the connecting plate, the possibility of bending deformation of the frame is further reduced, the fixing assembly is adopted to abut against and fix the cell panel main body, operation is convenient and rapid, the adjusting screw can be rapidly rotated through the hexagonal plate, and the connecting rod, the overturning plate and other structures can be rapidly overturned, so that the operation is convenient and rapid. And the battery panel main body can be conveniently and quickly disassembled.
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Description

Technical Field

[0001] This utility model relates to the field of solar panel frames, and particularly to lightweight, high-strength solar panel frames. Background Technology

[0002] A solar panel is a device that uses the photovoltaic effect to directly convert sunlight into electrical energy, and it is an important component of modern solar power generation systems. A solar panel consists of a frame and the panel itself. The frame is primarily used to fix and seal the solar cell modules, enhance their strength, extend their lifespan, and facilitate transportation and installation.

[0003] In existing solar panel frames, the frame is supported by hollow aluminum alloy. Although it is relatively lightweight, the hollow structure results in general frame strength, making it prone to bending and deformation under stress. Furthermore, the use of screws to fix the cover plate during the installation of the solar panel body is extremely inconvenient and makes it difficult to disassemble the solar panel body, making the process time-consuming and labor-intensive. Utility Model Content

[0004] The main purpose of this invention is to provide a lightweight, high-strength solar panel frame, which can effectively solve the problems in the background art.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0006] A lightweight, high-strength solar panel frame includes a frame body on which a solar panel body is mounted via a fixing assembly. The frame body has an internal reinforcing assembly comprising a cavity, horizontal plates, a corrugated support frame, an annular support frame, and a connecting plate. The cavity is formed in the frame body, and the horizontal plates and corrugated support frame are installed within the cavity. The annular support frame and connecting plate are connected together and positioned between two horizontal plates.

[0007] Preferably, a support plate is fixedly installed on the frame body, and the battery panel body is located on the support plate.

[0008] Preferably, the top of the frame body is provided with a sliding groove, and the lower end of the fixing component abuts against the battery panel body.

[0009] Preferably, the horizontal plates are symmetrically arranged vertically within the cavity, one end of the wave support frame contacts the upper wall of the cavity, and the other end is connected to the horizontal plate. The annular support frame and the connecting plate are fixedly connected, and the annular support frame is evenly distributed between the two horizontal plates. The vertical part of the connecting plate is fixedly connected to the horizontal plate, and the outermost connecting plate on the annular support frame is connected to the side wall of the cavity.

[0010] Preferably, the fixing assembly includes a fixing frame, a flip plate, a connecting rod, a pressure plate, a slider, an adjusting screw, a clamping block, and a hexagonal plate. The fixing frame is fixed to the top of the frame body, the flip plate is rotatably mounted on the fixing frame, and the connecting rod is fixedly connected to the pressure plate and mounted on the flip plate.

[0011] Preferably, the slider is disposed in the slide groove, the adjusting screw is fixedly connected to the abutting block, and the lower end of the adjusting screw is threadedly connected to the slider, the upper end of the abutting block abuts against the flip plate, and the hexagonal plate is fixed to the adjusting screw.

[0012] Compared with the prior art, this utility model has the following beneficial effects: This lightweight and high-strength solar panel frame, through the setting of reinforcing components, sets horizontal plates and wave support frames in the cavity. While ensuring the frame's lightweight nature, the wave support frames can effectively reduce the impact of stress and prevent the frame body from bending. A ring support frame and connecting plate are set between the horizontal plates. The ring support frame can disperse stress, and the dispersed stress is transmitted to both sides of the frame body through the connecting plate, further reducing the possibility of frame bending deformation and giving the frame good strength. The solar panel body is secured with fixing components, making operation convenient and quick. Furthermore, the adjusting screw can be quickly rotated using a hexagonal plate to allow the clamping block to move, and then the slider can be moved to allow for quick flipping of the connecting rod, flip plate, and other structures, facilitating rapid disassembly of the solar panel body for operation and making inspection and maintenance more convenient. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a structural schematic diagram of the main frame of this utility model;

[0015] Figure 3 This is a schematic diagram of the structure of the reinforcing component of this utility model;

[0016] Figure 4 This is a schematic diagram of the structure of the fixing component of this utility model.

[0017] In the diagram: 1. Main frame; 2. Main solar panel; 3. Support plate; 4. Reinforcing component; 401. Cavity; 402. Horizontal plate; 403. Wave support frame; 404. Ring support frame; 405. Connecting plate; 5. Fixing component; 501. Fixing frame; 502. Flip plate; 503. Connecting rod; 504. Pressure plate; 505. Slider; 506. Adjusting screw; 507. Clamping block; 508. Hexagonal plate; 6. Slide groove. Detailed Implementation

[0018] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0019] like Figures 1-4 As shown, a lightweight, high-strength solar panel frame includes a frame body 1. A solar panel body 2 is mounted on the frame body 1 via a fixing component 5. A reinforcing component 4 is provided inside the frame body 1. The reinforcing component 4 includes a cavity 401, a horizontal plate 402, a wave support frame 403, an annular support frame 404, and a connecting plate 405. The cavity 401 is formed on the frame body 1. The horizontal plate 402 and the wave support frame 403 are installed in the cavity 401 on the frame body 1. The annular support frame 404 and the connecting plate 405 are connected together and are positioned between two horizontal plates 402. A support plate 3 is fixedly mounted on the frame body 1, and the solar panel body 2 is located on the support plate 3. A groove 6 is provided on the top of the frame body 1. The lower end of the fixing component 5 abuts against the solar panel body 2. The horizontal plates 402 are symmetrically arranged vertically within the cavity 401. One end of the wave support frame 403 contacts the cavity 402. The upper wall of cavity 401 is connected to the horizontal plate 402 at one end. The annular support frame 404 and the connecting plate 405 are fixedly connected, and the annular support frame 404 is evenly distributed between the two horizontal plates 402. The vertical part of the connecting plate 405 is fixedly connected to the horizontal plate 402. The outermost connecting plate 405 on the annular support frame 404 is connected to the side wall of cavity 401. Through the set reinforcing component 4, the horizontal plate 402 and the wave support frame 403 are set in cavity 401. While ensuring the lightweight of the frame, the wave support frame 403 can effectively reduce the impact of stress and prevent the frame body 1 from bending. The annular support frame 404 and the connecting plate 405 are set between the horizontal plates 402. The annular support frame 404 can disperse the stress. The dispersed stress is transmitted to both sides of the frame body 1 through the connecting plate 405, further reducing the possibility of frame bending deformation and making the frame have good strength.

[0020] During the assembly of the solar panel, the frame body 1 is spliced ​​together to form a frame. A part of the fixing component 5 is installed in the groove 6 on the frame body 1. The solar panel body 2 is placed on the support plate 3 inside the frame body 1. The fixing component 5 is operated to fix the solar panel body 2, thereby completing the assembly of the entire solar panel. During use, the cavity 401 makes the interior of the frame body 1 hollow, making the entire frame lightweight. The wave support frame 403 at the horizontal plate 402 can effectively bear the force perpendicular to the horizontal plate 402, improving the strength of the frame body 1. Furthermore, the annular support frame 404 set between the horizontal plates 402 can disperse the transmitted force through the transverse connecting plate 405 to the side wall of the frame body 1 when the wave support frame 403 is under force, further improving the strength of the frame body 1 and making the entire frame high-strength.

[0021] According to the above implementation scheme, the fixing component 5 includes a fixing frame 501, a flip plate 502, a connecting rod 503, a pressure plate 504, a slider 505, an adjusting screw 506, a clamping block 507, and a hexagonal plate 508. The fixing frame 501 is fixed to the top of the frame body 1. The flip plate 502 is rotatably mounted on the fixing frame 501. The connecting rod 503 is fixedly connected to the pressure plate 504 and is mounted on the flip plate 502. The slider 505 is disposed in the slide groove 6. The adjusting screw 506 is fixedly connected to the clamping block 507 and the adjusting screw 506... The lower end is threaded onto the slider 505, the upper end of the clamping block 507 abuts against the flip plate 502, and the hexagonal plate 508 is fixed on the adjusting screw 506. The fixing component 5 is used to clamp and fix the main body 2 of the battery panel, which is convenient and quick to operate. The adjusting screw 506 can be quickly rotated by the hexagonal plate 508 to make the clamping block 507 move aside, and then the slider 505 can be moved to make room. The connecting rod 503, the flip plate 502 and other structures can be quickly flipped, which facilitates the quick disassembly of the main body 2 of the battery panel for operation and makes inspection and maintenance more convenient.

[0022] During the installation of the solar panel body 2, initially, the flip plate 502, along with the connecting rod 503 and the pressure plate 504, is in a yielding state. After the solar panel body 2 is installed onto the support plate 3, the flip plate 502 rotates on the fixing frame 501, rotating the connecting rod 503 and the pressure plate 504 until the pressure plate 504 presses onto the solar panel body 2. Then, the slider 505 in the slide groove 6 is moved. After the slider 505 moves to the appropriate position, the adjusting screw 506 is rotated by the hexagonal plate 508. The adjusting screw 506 rotates on the slider 505. As the solar panel moves, the clamping block 507 rises along with it until it abuts against the flip plate 502, thereby pressing the pressure plate 504 firmly against the solar panel body 2, thus fixing the solar panel body 2 in place. After the solar panel is assembled, it can be finally installed and connected for use. If needed, the adjusting screw 506 can be rotated to lower the clamping block 507 to make room, the slider 505 can be moved, and the flip plate 502 can be rotated to make room. Then, the solar panel body 2 can be quickly removed for replacement.

[0023] The foregoing describes the working principle, features, and beneficial effects of this utility model. Those skilled in the art will understand from the foregoing that it does not limit the utility model. The embodiments and description above illustrate the basic principles and features of this utility model. Various changes and improvements can be made to this utility model while remaining consistent with its concept, and all such improvements should fall within the scope of protection claimed by this utility model.

Claims

1. A lightweight high-strength solar panel frame, characterized by: The utility model provides a kind of solar panel frame, including frame body (1), battery panel body (2) is installed on the frame body (1) by fixed assembly (5), the inside of frame body (1) is provided with reinforcing assembly (4), the reinforcing assembly (4) includes cavity (401), horizontal plate (402), wave support frame (403), annular support frame (404) and connecting plate (405), the cavity (401) is opened on frame body (1), the horizontal plate (402) and wave support frame (403) are installed in the cavity (401) on frame body (1), the annular support frame (404) and connecting plate (405) are connected together, and annular support frame (404) and connecting plate (405) are arranged between two horizontal plates (402).

2. The lightweight high-strength solar panel frame of claim 1, wherein: The frame body (1) is fixedly installed with a support plate (3), and the battery panel body (2) is located on the support plate (3).

3. The lightweight high-strength solar panel frame of claim 2, wherein: The top of the frame body (1) is provided with a sliding groove (6), and the lower end of the fixed assembly (5) abuts on the battery panel body (2).

4. The lightweight high-strength solar panel frame of claim 3, wherein: The horizontal plate (402) is symmetrically arranged in the cavity (401), one end of the wave support frame (403) contacts the upper wall of the cavity (401), and the other end is connected to the horizontal plate (402), the annular support frame (404) and the connecting plate (405) are fixedly connected, the annular support frame (404) is evenly distributed between the two horizontal plates (402), the vertical part of the connecting plate (405) is fixedly connected to the horizontal plate (402), and the outermost connecting plate (405) of the annular support frame (404) is connected to the side wall of the cavity (401).

5. The lightweight high-strength solar panel frame of claim 4, wherein: The fixed assembly (5) includes a fixed frame (501), a turnover plate (502), a connecting rod (503), a pressing plate (504), a sliding block (505), an adjusting screw (506), an abutting block (507) and a hexagonal plate (508), the fixed frame (501) is fixed to the top of the frame body (1), the turnover plate (502) is rotatably installed on the fixed frame (501), the connecting rod (503) is fixedly connected with the pressing plate (504), and the connecting rod (503) is installed on the turnover plate (502).

6. The lightweight high-strength solar panel frame of claim 5, wherein: The sliding block (505) is arranged in the sliding groove (6), the adjusting screw (506) is fixedly connected with the abutting block (507), the lower end of the adjusting screw (506) is threadedly connected to the sliding block (505), the upper end of the abutting block (507) abuts on the turnover plate (502), and the hexagonal plate (508) is fixed to the adjusting screw (506).