1. Field of the Invention
The present invention relates to a solar cell module, and more particularly to a solar cell module on which a sealing material (adhesive) layer with tenacity is formed, wherein the sealing material layer is capable of preventing the solar cell layer from crack or damage such that the need of replacing the entire solar cell module can be reduced.
2. Description of Related Art
Under the tendency of the world's environmental protection and energetic conservation, all kinds of electricity-generating ways for environmental protection are proposed one after another. The use of the solar cell module for generating electricity is one way of them. The solar cell module is the popular product for people to transform the solar energy into the electrical energy.
The so-called solar cell module is constituted by stacking a solar cell layer, sealing material, a tempering glass for protection, a protective back sheet, a metal frame, an outside conducting wire and so on one with one another. If the solar cell module is further integrated with the application system, then several kinds of solar application systems such as electricity-generating system, charging and power-supplying system, and heating system can be provided.
As shown in
In the manufacturing process of the above-described solar cell module, the surface of the tempering glass is first covered with the first encapsulation layer. Then, the solar cell layer is provided with matrix arrangement in series or in parallel. Thereafter, the surface of the solar cell layer is covered with the second encapsulation layer followed by mounting the protective back sheet on the surface of the solar cell layer. Finally, through a vacuum compression process and a heating process, these above-mentioned materials are pressed together. As a result, the manufacture of the foregoing solar cell module is completed.
As shown in
However, the aforementioned conventional solar cell modules at least have the following problems:
1. The ethylene glycol acetic acid is deteriorated easily and the deterioration of the ethylene vinyl acetate causes the replacement problem of the entire solar cell module:
The encapsulation material (or agent) is mainly composed of organic polymer material, for example, the above-mentioned ethylene vinyl acetate, which is the most widespread encapsulation material at present. The ethylene vinyl acetate may act as a main encapsulation agent of a crystal solar cell and a thin film solar cell. However, the ethylene vinyl acetate may be deteriorated easily. The deterioration of the ethylene vinyl acetate may cause the replacement of the entire solar cell module, which wastes time and raises the cost of the entire solar cell module.
2. The yield of the solar cell module is reduced due to the easy occurrence of the broken pieces and damages in the manufacture process.
To solve the problems of the conventional solar cell modules, a solar cell module capable of solving these conventional problems is disclosed by the present invention.
An object of the present invention is to provide a solar cell module, which comprises a first protective layer, a solar cell layer formed on the first protective layer, a sealing material layer formed on the solar cell layer, and a second protective layer formed on the sealing material layer, wherein the sealing material layer is composed of polyurethane formed by reacting an acrylic resin with a curing agent.
Another object of the present invention is to provide a solar cell module, which comprises a first protective layer, a first encapsulation layer formed on the first protective layer, a solar cell layer formed on the first encapsulation layer, a sealing material layer formed on the solar cell layer, a second encapsulation layer formed on the sealing material layer, and a second protective layer formed on the second encapsulation layer, wherein the sealing material layer is composed of polyurethane formed by reacting an acrylic resin with a curing agent and the first and the second encapsulation layer are composed of ethylene vinyl acetate.
According to the solar cell module of the present invention, the sealing material layer is formed on the solar cell layer, wherein the sealing material layer is composed of polyurethane formed by reacting the acrylic resin with the curing agent. Since the sealing material layer is provided with tenacity and high weatherability, the solar cell layer is protected from being broken or damaged such that the yield of the solar cell module can be improved. In addition, due to the high weatherability of the sealing material layer of the present invention, the need for replacement of the entire solar cell module, which is caused by deterioration of the sealing material layer, can be avoided.
The solar cell module of the present invention comprises the sealing material layer in the absence of the ethylene vinyl acetate such that the replacement of the entire solar cell module caused by the deterioration of the ethylene vinyl acetate can be avoided and the cost of the entire solar cell module can be reduced.
One or more preferred embodiments of the present invention are explained by reference to one or more figures, wherein identical elements are provided with identical reference numerals.
First of all, please refer to the
The solar cell module further includes a solar cell layer 32 and a first protective layer 33, wherein the first protective layer 33 is a back sheet. It is worthy to note that the foregoing second protective layer 30 can also be a back sheet. However, if the second protective layer 30 is the back sheet, then the first protective layer 33 is the tempering glass, wherein this tempering glass may be a soda lime silicate glass or a non-alkali glass. Thereafter, please refer to the
In the manufacture process of the solar cell module of the present invention, the surface of the solar cell layer 32 is uniformly coated with the sealing material layer 31 by using a spread coating method. The solar cell layer 32 is provided with matrix arrangement in series or in parallel. The foregoing spread coating method is such as a spray coating method or a screen printing method, which is performed for about 5 minutes under a temperature of at least 80 degree centigrade. Thereafter, the first protective layer 33 is formed on the surface of the solar cell layer 32, which is different from another surface of the solar cell layer 32 on which the sealing material layer 31 is formed. Besides, the second protective layer 30 is formed on the surface of the sealing material layer 31. Finally, through a vacuum compression process and a heating process, the second protective layer 30, the sealing material layer 31, the solar cell layer 32 and the first protective layer 33 are pressed together. As a result, the manufacture process of the solar cell module is completed.
Please refer to the
Thereafter, please refer to the
In summary, the present invention at least has the following advantages:
1. The need and risk to replace the solar cell module can be reduced:
In the solar cell module of the present invention, the sealing material layer is formed on the solar cell layer, wherein the sealing material layer is composed of polyurethane formed by reacting the acrylic resin with the curing agent. In addition, due to the high weatherability of the sealing material layer, the problem and risk for replacement of the entire solar cell module, which is caused by deterioration of the sealing material layer, do not occur easily.
2. The solar cell module may have the sealing material layer in the absence of the ethylene vinyl acetate:
The solar cell module may comprise the sealing material layer without the use of the ethylene vinyl acetate such that the replacement of the entire solar cell module caused by the deterioration of the ethylene vinyl acetate can be avoided and the cost of the entire solar cell module can be reduced.
3. The yield of the solar cell module can be increased:
According to the solar cell module of the present invention, the sealing material layer is formed on the solar cell layer, wherein the sealing material layer is composed of polyurethane formed by reacting the acrylic resin with the curing agent. Since the sealing material layer is provided with tenacity and high weatherability, the solar cell layer is protected from being broken or damaged such that the yield of the solar cell module can be improved.
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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099100990 | Jan 2010 | TW | national |