A grid assembly of an embeddable bezel structure

By introducing structures such as hydrophobic plates and sealing airbags into the photovoltaic grid module, the problem of water accumulation on rainy days is solved, rainwater can slide off and the frame connection can be sealed, thereby improving the service life and power generation efficiency of the photovoltaic panel.

CN224319308UActive Publication Date: 2026-06-02ZHEJIANG SHANGBO ENERGY TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG SHANGBO ENERGY TECH CO LTD
Filing Date
2025-07-11
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing photovoltaic grid modules are prone to water accumulation in rainy weather, which leads to oxidation and corrosion of the frame and moisture damage to internal electrical components, affecting power generation efficiency and equipment lifespan. Furthermore, the lack of a sealing structure allows rainwater to easily penetrate to the back side, causing the back panel material to age.

Method used

The design employs a combination of a hydrophobic plate, a pressure plate, a sealing groove, a sealing airbag, an air injection pipe, and a pressurizing ball to achieve rainwater runoff and sealing at the frame connection. The hydrophobic plate guides rainwater, and the sealing airbag and pressurizing ball work together to seal the surface, preventing rainwater from seeping to the back of the photovoltaic panel.

Benefits of technology

It effectively prevents rainwater from accumulating on the surface of photovoltaic panels, increases the service life of photovoltaic panels, reduces the risk of water seepage, and improves power generation efficiency and equipment durability.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224319308U_ABST
    Figure CN224319308U_ABST
Patent Text Reader

Abstract

The utility model provides a kind of grid assembly of embeddable frame structure belongs to photovoltaic module technical field.It solves the problem of short service life of existing grid assembly.The grid assembly of embeddable frame structure of the present utility model includes frame, the bottom of right side of frame is integrally formed with hydrophobic plate, the top of rear side of frame is integrally formed with pressing plate, the front side of frame is provided with sealing groove, the inner cavity of sealing groove is fixedly connected with sealing air bag, the right side of sealing air bag is communicated with gas injection pipe, the rear end of gas injection pipe is communicated with pressurizing ball.The utility model is convenient for rainwater to slide, rainwater is not easy to accumulate on the surface of frame, and the connecting part between frame can be sealed, so that rainwater cannot penetrate to the back of photovoltaic panel.
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Description

Technical Field

[0001] This utility model belongs to the field of photovoltaic module technology and relates to a grid module with an embedded frame structure. Background Technology

[0002] A solar panel is a thin film of photovoltaic semiconductors that generates electricity directly using sunlight. The grid module is an important component of the photovoltaic panel.

[0003] Existing photovoltaic grid modules lack hydrophobic properties during use, causing rainwater to accumulate in the grooves or seams of the frame during rainy weather. This not only accelerates the oxidation and corrosion of the frame material but also causes moisture to get into the internal electrical components of the photovoltaic panel, thus affecting power generation efficiency and equipment lifespan. Furthermore, the lack of a sealed structure allows rainwater to easily flow through the gaps at the joints to the back of the photovoltaic panel. The humid environment can accelerate the aging of the backsheet material, leading to delamination and deformation, which in turn weakens the protection of the solar cells. Summary of the Invention

[0004] The purpose of this invention is to address the aforementioned problems in the prior art by providing an embedded frame structure grid assembly that facilitates rainwater runoff and can seal the seams to prevent rainwater from eroding the back of the photovoltaic panel.

[0005] The purpose of this utility model can be achieved through the following technical solution: a mesh component with an embedded frame structure, including a frame, a hydrophobic plate integrally formed on the bottom right side of the frame, a pressure plate integrally formed on the top rear side of the frame, a sealing groove opened on the front side of the frame, a sealing airbag fixedly connected to the inner cavity of the sealing groove, an air injection pipe connected to the right side of the sealing airbag, and a pressure ball connected to the rear end of the air injection pipe.

[0006] The embedded frame structure of the grid assembly, through the cooperation of a hydrophobic plate, pressure plate, sealing groove, sealing airbag, air injection pipe and pressurization ball, facilitates rainwater sliding off and prevents rainwater from accumulating on the surface of the photovoltaic panel. It can also seal the splicing between the frames to prevent rainwater from penetrating to the back of the photovoltaic panel, thereby increasing the service life of the photovoltaic panel.

[0007] In the aforementioned mesh assembly with an embedded frame structure, a protective box is riveted to the front right side of the frame, and the pressure ball is located inside the protective box. In practical applications, by setting up the protective box, the pressure ball can be protected from collisions with external objects.

[0008] In the aforementioned mesh assembly with an embedded frame structure, a baffle is integrally formed on the top of the hydrophobic plate, and the sealing airbag is located at the bottom of the pressure plate. In practical applications, by setting the baffle, rainwater can be guided and discharged.

[0009] In the aforementioned mesh assembly with an embedded frame structure, a sealing strip is fixedly connected to the top rear side of the frame. The sealing strip is made of silicone rubber. In practical applications, by setting the sealing strip, a first layer of sealing treatment can be applied to the connection between the frames, reducing the probability of water leakage.

[0010] In the aforementioned mesh component with an embedded frame structure, both the hydrophobic plate and the pressure plate are L-shaped, and the frame is made of aluminum alloy.

[0011] Compared with existing technologies, the advantages of this embedded frame structure grid component are: adjacent frames can be embedded and connected to each other, which facilitates rainwater sliding off, prevents rainwater from accumulating on the frame surface, and can seal the connection between frames to prevent rainwater from penetrating to the back of the photovoltaic panel. Attached Figure Description

[0012] Figure 1 This is a 3D view of a mesh component with an embedded border structure.

[0013] Figure 2 This is a partial 3D view of the mesh component with an embedded border structure.

[0014] Figure 3 This is a 3D diagram of the border structure of a mesh component with an embedded border structure.

[0015] Figure 4 This is a three-dimensional rear view of a mesh component with an embedded border structure.

[0016] Figure 5 It is a mesh component with an embedded border structure. Figure 1 A magnified view of A in the middle.

[0017] In the diagram, 1. Frame; 2. Hydrophobic plate; 3. Pressure plate; 4. Sealing groove; 5. Sealing airbag; 6. Air injection pipe; 7. Pressurization ball; 8. Protective box; 9. Baffle; 10. Sealing strip. Detailed Implementation

[0018] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.

[0019] like Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 As shown, the mesh component with an embedded frame structure includes a frame 1, a hydrophobic plate 2 integrally formed on the bottom right side of the frame 1, a pressure plate 3 integrally formed on the top rear side of the frame 1, a sealing groove 4 opened on the front side of the frame 1, a sealing airbag 5 fixedly connected to the inner cavity of the sealing groove 4, an air injection pipe 6 connected to the right side of the sealing airbag 5, and a pressure ball 7 connected to the rear end of the air injection pipe 6.

[0020] In actual manufacturing, a protective box 8 is riveted to the front right side of frame 1, and a pressure ball 7 is located inside the protective box 8. A baffle 9 is integrally formed on the top of the hydrophobic plate 2, and a sealing airbag 5 is located at the bottom of the pressure plate 3. A sealing strip 10, made of silicone rubber, is fixedly connected to the top rear side of frame 1. Both the hydrophobic plate 2 and the pressure plate 3 are L-shaped, and frame 1 is made of aluminum alloy.

[0021] In use, the first frame 1 is laid on the surface of the mounting frame, and the second frame 1 is laid on top of the first frame 1. At this time, the pressure plate 3 on the surface of the second frame 1 presses on the surface of the first frame 1, thus completing the installation. Then, press the pressure ball 7, and the pressure ball 7 inflates the sealing airbag 5 through the air injection pipe 6. The sealing airbag 5 begins to expand, thereby sealing the joint between the first frame 1 and the second frame 1. In rainy weather, rainwater flows into the interior of the drainage plate 2 and can be discharged in a concentrated manner through the drainage plate 2, thus preventing rainwater from accumulating on the surface of the frame 1.

[0022] Contents not described in detail herein are existing technologies known to those skilled in the art. The specific embodiments described herein are merely illustrative examples illustrating the spirit of this invention. Those skilled in the art to which this invention pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this invention or exceeding the scope defined by the appended claims.

Claims

1. A mesh component with an embeddable border structure, comprising a border (1), characterized in that: A hydrophobic plate (2) is integrally formed on the bottom right side of the frame (1), and a pressure plate (3) is integrally formed on the top rear side of the frame (1). A sealing groove (4) is provided on the front side of the frame (1). A sealing airbag (5) is fixedly connected to the inner cavity of the sealing groove (4). An air injection pipe (6) is connected to the right side of the sealing airbag (5), and a pressure ball (7) is connected to the rear end of the air injection pipe (6).

2. The mesh component with an embedded border structure according to claim 1, characterized in that, A protective box (8) is riveted to the front right side of the frame (1), and the pressure ball (7) is located inside the protective box (8).

3. The mesh component with an embedded border structure according to claim 1, characterized in that, The top of the hydrophobic plate (2) is integrally formed with a baffle (9), and the sealing airbag (5) is located at the bottom of the pressure plate (3).

4. The mesh component with an embedded border structure according to claim 1, characterized in that, A sealing strip (10) is fixedly connected to the top of the rear side of the frame (1), and the sealing strip (10) is made of silicone rubber.

5. A mesh component with an embedded border structure according to claim 1, characterized in that, The hydrophobic plate (2) and the pressure plate (3) are both L-shaped designs, and the frame (1) is made of aluminum alloy.