Light photovoltaic module

By setting a buffer structure of reinforcement frame and damping pad in the frame of the photovoltaic module, the problem of low stability of the photovoltaic module frame is solved, significantly improving the strength and stability of the frame, protecting the photovoltaic panels, and improving overall performance.

CN222868858UActive Publication Date: 2025-05-13ANHUI WANNENG PHOTOVOLTAIC AGRI TECH INNOVATION CO LTD
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Patent Information

Application Number
CN202421541432.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-02
Publication Date
2025-05-13
Estimated Expiration
2034-07-02

AI Technical Summary

Technical Problem

The frames of existing photovoltaic modules are not stable and are prone to vibration and damage due to natural environment such as wind and earthquakes, affecting the overall structural stability and performance.

Method used

A light-duty photovoltaic module is designed, with reinforcement frames and damping pads arranged in the frame, forming a buffer structure by connecting the components and springs, increasing the strength of the frame and absorbing external impact forces.

Benefits of technology

Through the combination of reinforcement frame and damping pad, the strength and stability of the photovoltaic module frame is significantly improved, and it can effectively absorb and disperse external impact forces, protect the photovoltaic panels, and improve the overall performance.

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Abstract

The utility model discloses a light photovoltaic assembly, which belongs to the photovoltaic field and comprises a photovoltaic panel and a frame arranged outside the photovoltaic panel, a mounting groove is formed inside the frame, two ends of the frame are bent to form protruding parts positioned inside the mounting groove, a bottom plate is arranged at the bottom of the frame through a support plate, and the bottom plate is provided with a light-weight plate. A reinforcing mechanism is arranged at the position, located outside the photovoltaic panel, in the frame, the reinforcing mechanism comprises a reinforcing frame located in the mounting groove, a mounting plate is arranged in the reinforcing frame through a connecting assembly, and a damping pad abutting against the outer side face of the photovoltaic panel is arranged on the mounting plate through a clamping groove. According to the light photovoltaic module, the reinforcing frame with the same shape as the frame is arranged in the frame of the photovoltaic module, so that the strength of the frame can be greatly improved, and the damping pad is matched with the connecting module, so that the mounting plate in the reinforcing frame has a buffering effect, external impact force can be effectively absorbed and dispersed, and the stability of the photovoltaic module is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of photovoltaics, in particular to a light photovoltaic component. Background Art

[0002] Photovoltaic modules, also known as solar panels, are the core part of solar power generation systems. Their main function is to convert solar energy into electrical energy. They are composed of photovoltaic modules or photovoltaic modules of different specifications cut by laser cutting machines or steel wire cutting machines. Photovoltaic modules use the photovoltaic effect to convert solar energy into electrical energy. Their application fields are wide and diverse, covering almost every aspect of modern society.

[0003] During the manufacturing process, photovoltaic modules use frames to fix the photovoltaic panels. Since photovoltaic modules are used outdoors, they will be affected by natural environment such as wind and earthquake, which will cause the photovoltaic modules to vibrate. The impact and vibration on the frames of photovoltaic modules will cause the frames to deform or be damaged, thereby affecting the overall structural stability and performance of the photovoltaic modules. Utility Model Content

[0004] The utility model aims to provide a light photovoltaic module in order to solve the problem that the frame of the existing photovoltaic module is not stable and easily causes damage to the photovoltaic module.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technology: a lightweight photovoltaic assembly, comprising a photovoltaic panel and a frame arranged outside the photovoltaic panel, wherein a mounting groove is formed inside the frame, and two ends of the frame are bent to form protrusions located inside the mounting groove, a bottom plate is arranged at the bottom of the frame through a support plate, and a reinforcing mechanism is arranged at a position outside the photovoltaic panel in the frame;

[0006] The strengthening mechanism includes a reinforcement frame located inside the mounting groove, a mounting plate is arranged inside the reinforcement frame through a connecting component, a damping pad abutting against the outer side of the photovoltaic panel is arranged on the mounting plate through a slot, and a cushion block is arranged between the reinforcement frame and the protrusion.

[0007] As a further description of the above technical solution: the connecting assembly includes a screw fixed on the mounting plate, a locking nut is arranged on the screw, a cavity is formed between the frame and the reinforcement frame, and a spring is sleeved on the screw at a position inside the cavity.

[0008] As a further description of the above technical solution: the cushion block includes a buffer section, the buffer section is provided with a filling section located between the reinforcement frame and the photovoltaic panel, and the buffer section is provided with an abutment groove adapted to the protrusion.

[0009] As a further description of the above technical solution: a protective cover located outside the screw and the locking nut is arranged on the frame.

[0010] As a further description of the above technical solution: the support plate includes a middle section, and both ends of the middle section are connected to support sections through bending sections.

[0011] As a further description of the above technical solution: an anti-slip pad is arranged on the lower side of the bottom plate, and a fixing notch is opened on the bottom plate.

[0012] In summary, due to the adoption of the above technical solution, the beneficial effects of the utility model are:

[0013] By setting a reinforcement frame of the same shape as the frame inside the frame of the photovoltaic module, the strength of the frame can be greatly improved. In addition, the mounting plate inside the reinforcement frame has a buffering effect through the damping pad and the connecting assembly, thereby effectively absorbing and dispersing external impact force. When affected by environmental factors such as wind and earthquake, the photovoltaic panel inside the frame can be buffered, thereby improving the stability of the photovoltaic module. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 The overall structure schematic diagram provided according to the embodiment of the utility model is shown;

[0015] Figure 2 A partial structural schematic diagram according to an embodiment of the utility model is shown;

[0016] Figure 3 A schematic structural diagram of a strengthening mechanism provided according to an embodiment of the utility model is shown;

[0017] Figure 4 A schematic diagram of the structure of a mounting plate provided according to an embodiment of the utility model is shown;

[0018] Figure 5 A schematic structural diagram of a cushion block provided according to an embodiment of the utility model is shown;

[0019] Figure 6 A structural schematic diagram of a support plate provided according to an embodiment of the utility model is shown.

[0020] Legend:

[0021] 1. Frame; 11. Mounting groove; 12. Protrusion; 2. Support plate; 21. Middle section; 22. Bending section; 23. Support section; 3. Bottom plate; 31. Fixing notch; 4. Anti-slip pad; 5. Strengthening mechanism; 51. Reinforcement frame; 52. Connecting assembly; 521. Screw; 522. Locking nut; 523. Spring; 53. Mounting plate; 54. Slot; 55. Damping pad; 6. Cushion block; 61. Buffer section; 62. Filling section; 63. Abutment groove; 7. Protective cover; 8. Photovoltaic panel. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0023] Reference Figure 1-Figure 6 A lightweight photovoltaic assembly provided in this embodiment includes a photovoltaic panel 8 and a frame 1 arranged outside the photovoltaic panel 8, a mounting groove 11 is formed inside the frame 1, and both ends of the frame 1 are bent to form a protrusion 12 located inside the mounting groove 11, a bottom plate 3 is provided at the bottom of the frame 1 through a support plate 2, a reinforcing mechanism 5 is provided at a position outside the photovoltaic panel 8 in the frame 1, the reinforcing mechanism 5 includes a reinforcement frame 51 located inside the mounting groove 11, a mounting plate 53 is provided in the reinforcement frame 51 through a connecting component 52, a damping pad 55 is provided on the mounting plate 53 through a card slot 54 to abut against the outer side of the photovoltaic panel 8, and a cushion block 6 is provided between the reinforcement frame 51 and the protrusion 12.

[0024] In the utility model, when the photovoltaic module is manufactured, the mounting groove 11 of the frame 1 is stuck on the outside of the photovoltaic panel 8, so that the protrusion 12 of the frame 1 abuts on the outer surface of the photovoltaic panel 8, and a reinforcement frame 51 is arranged inside the frame 1. The reinforcement frame 51 and the frame 1 are both C-shaped structures and have the same opening direction. The strength of the frame 1 can be greatly improved by the reinforcement frame 51. The outside of the photovoltaic panel 8 is inserted into the mounting groove 11 and stuck in the reinforcement frame 51. Then, a rubber pad 6 is arranged between the reinforcement frame 51 and the protrusion 12 of the frame 1. A mounting plate 53 with a damping pad 55 is installed on the reinforcement frame 51 through a connecting component 52. The damping pad 55 abuts on the outer surface of the photovoltaic panel 8, so that the frame 1 has a buffering performance. When affected by environmental factors such as wind and earthquake, the photovoltaic panel 8 in the frame 1 can be buffered, thereby improving the stability of the photovoltaic module. The photovoltaic module is fixed on the bracket of the photovoltaic module using the bottom plate 3 at the lower end of the support plate 2 and can be used.

[0025] Specifically, refer to Figure 1 , Figure 2 and Figure 3 The connection assembly 52 includes a screw 521 fixed on the mounting plate 53, a locking nut 522 is arranged on the screw 521, a cavity is formed between the frame 1 and the reinforcement frame 51, and a spring 523 is sleeved on the screw 521 at a position inside the cavity. When the mounting plate 53 is mounted on the reinforcement frame 51, the screw 521 penetrates the reinforcement frame 51, and then the reinforcement frame 51 is installed in the frame 1. At this time, the screw 521 penetrates the frame 1, and then the screw 521 is fixed by the locking nut 522, so that the mounting plate 53 is fixed in the reinforcement frame 51. The spring 523 cooperates with the damping pad 55 on the mounting plate 53 to make the strengthening mechanism 5 have a buffering performance, thereby improving the stability of the frame 1 and preventing the photovoltaic panel 8 on the frame 1 from being damaged by impact force.

[0026] Specifically, refer to Figure 1 and Figure 5 The cushion block 6 includes a buffer section 61, a filling section 62 is provided on the buffer section 61 between the reinforcement frame 51 and the photovoltaic panel 8, and a contact groove 63 is provided on the buffer section 61 to match the protrusion 12. The cushion block 6 is made of rubber material. When the cushion block 6 is installed, the contact groove 63 of the buffer section 61 is buckled on the protrusion 12 of the frame 1, thereby preventing the cushion block 6 from being separated from the frame 1. The cushion block 6 made of rubber material can achieve buffering between the photovoltaic panel 8 and the reinforcement frame 51, thereby improving the stability of the photovoltaic panel 8 in the reinforcement frame 51.

[0027] Specifically, refer to Figure 1 The frame 1 is provided with a protective cover 7 located outside the screw rod 521 and the locking nut 522. After the reinforcement frame 51 and the mounting plate 53 are fixed by the connecting assembly 52, one end of the screw rod 521 protrudes outside the frame 1, and the screw rod 521 and the locking nut 522 protruding from the frame 1 are covered by the protective cover 7, so that the screw rod 521 and the locking nut 522 can be prevented from being rusted by rain, which makes it difficult to disassemble.

[0028] Specifically, refer to Figure 1 and Figure 6 The support plate 2 includes a middle section 21, and both ends of the middle section 21 are connected to support sections 23 through bending sections 22. The middle section 21 forms a Z-shaped connection with the support section 23 through the bending section 22, thereby improving the stability of the support plate 2 and greatly improving the stability of the frame 1 when the photovoltaic module is installed and fixed.

[0029] Specifically, refer to Figure 1 The bottom side of the bottom plate 3 is provided with an anti-skid pad 4, and a fixing notch 31 is provided on the bottom plate 3. The anti-skid pad 4 can prevent the photovoltaic module from slipping when the bottom plate 3 is used to install the photovoltaic module, thereby improving the stability of the photovoltaic module installation. The fixing notch 31 is used for connecting fasteners, so that the photovoltaic module is installed on the bracket.

[0030] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A lightweight photovoltaic module, characterized in that: The invention comprises a photovoltaic panel (8) and a frame (1) arranged outside the photovoltaic panel (8), wherein a mounting groove (11) is formed inside the frame (1), and two ends of the frame (1) are bent to form protrusions (12) located inside the mounting groove (11), a bottom plate (3) is arranged at the bottom of the frame (1) through a support plate (2), and a reinforcing mechanism (5) is arranged at a position outside the photovoltaic panel (8) inside the frame (1); The reinforcing mechanism (5) comprises a reinforcing frame (51) located inside the mounting groove (11); a mounting plate (53) is arranged inside the reinforcing frame (51) via a connecting assembly (52); a damping pad (55) is arranged on the mounting plate (53) via a slot (54) and abuts against the outer side of the photovoltaic panel (8); and a cushion block (6) is arranged between the reinforcing frame (51) and the protruding portion (12).

2. A lightweight photovoltaic module according to claim 1, characterized in that: The connecting assembly (52) comprises a screw rod (521) fixed on a mounting plate (53), a locking nut (522) being arranged on the screw rod (521), a cavity being formed between the frame (1) and the reinforcement frame (51), and a spring (523) being sleeved on the screw rod (521) at a position inside the cavity.

3. A lightweight photovoltaic module according to claim 1, characterized in that: The cushion block (6) comprises a buffer section (61), the buffer section (61) is provided with a filling section (62) located between the reinforcement frame (51) and the photovoltaic panel (8), and the buffer section (61) is provided with an abutment groove (63) adapted to the protrusion (12).

4. A lightweight photovoltaic module according to claim 2, characterized in that: The frame (1) is provided with a protective cover (7) located outside the screw rod (521) and the locking nut (522).

5. A lightweight photovoltaic module according to claim 1, characterized in that: The support plate (2) comprises a middle section (21), and both ends of the middle section (21) are connected to support sections (23) via bending sections (22).

6. A lightweight photovoltaic assembly according to claim 1, characterized in that: An anti-slip pad (4) is provided on the lower side of the bottom plate (3), and a fixing notch (31) is provided on the bottom plate (3).