The invention relates to a method for producing modules, which contain components, in particular electrical components, such as photovoltaic cells or functional layers, between two glass disks.
Previously, during production of photovoltaic modules, the procedure was such that the photovoltaic cells in the modules were arranged between films. This mode of operation has the drawback that it is not always ensured that all of the air has been removed from the modules, which should be designed as vacuum elements.
The object of the invention is to propose a mode of operation with which modules of the above-mentioned type can be produced simply and easily.
This object is achieved according to the invention with a method that has the features of claim 1.
Preferred and advantageous configurations of the invention are subjects of the subclaims.
Since, in the method according to the invention, an amount of pasty/gel-like composition, e.g., a resin, which corresponds to the final volume of the space between the two glass panels, is filled into the space within the sealing strand, which is arranged along the outside edge of one glass panel, in which also at least one component, such as a photovoltaic cell or a functional layer, is contained in the one glass disk, a simplified mode of operation is produced that ensures that the entire space is filled with the composition (the resin) without residual air pockets.
The resin is preferably a casting resin, which can be introduced in viscous, pasty, or granulate-type form. In this case, a curing casting resin can preferably be used, which consists of one, two or more than two components.
The distribution of the casting resin can be supported by heating and/or by oscillations, in particular ultrasonic oscillations.
Instead of casting resin, other pasty/gel-like compositions, e.g., silicone-based compositions, can also be used.
Other details and features of the method of the invention follow from the description given below of a diagrammatic process sequence with exemplary production of photovoltaic modules based on the drawings.
Here:
First, a strand 3 that consists of sealing composition is applied to a glass disk 1 (base disk) along its periphery. This strand 3 has projections 7 on its free surface 5 that faces away from the glass disk 1.
At least one component, in the embodiment one photovoltaic cell 11, but preferably several photovoltaic cells 11, is/are placed within the space 9 edged by the strand 3 (
In the next step, an amount of casting resin 13 corresponding to the final volume of the space 9 between the glass disks 1 and 2 and within the strand 3 is introduced within the area bordered by the strand 3 (
As soon as this has taken place, a second glass disk 2 (cover disk) is brought into position as the next step, whereby between the second glass disk 2 and the strand 3, an interval that allows the evacuation exists at at least one spot (
Instead of projections 7 on the strand 3 that consists of sealing composition, there is also in principle the possibility in the free surface 5 of the strand 3 to provide at least one recess that allows the evacuation of the space 9 between the glass disks 1 and 2 and within the strand 3.
The thus formed arrangement is brought into a vacuum chamber and evacuated.
During the evacuation, or as soon as the desired vacuum is reached, the arrangement can be heated and/or can be put into oscillation (ultrasonic oscillation) in order to support the distribution of the casting resin 13.
In the vacuum chamber, the second glass disk 2 (cover disk) is then brought toward the lower glass disk 1 (base disk), and the arrangement—which consists of the glass disks 1, 2, the strand 3 made of sealing composition, and the photovoltaic cells 11—is pressed in such a way that only the casting resin 13 and the photovoltaic cells 11 are contained between the glass disks 1, 2 within the space 9 that is defined by the strand 3, which now connects the glass disks 1, 2 to one another.
Within the framework of the invention, consideration is given that instead of photovoltaic cells 11 on a glass disk 1 or 2 or two glass disks 1 and 2, functional layers are provided as components both for the method variant according to
In the variant of the method according to the invention that is depicted in
Also, in the embodiment according to
In the arrangement according to
In the variant shown in
The arrangement, as it is shown in
In this variant, consideration is given here that the arrangement according to
In summary, an embodiment of the invention can be described as follows.
For the production of photovoltaic modules or modules that bear functional coatings, a strand 3 that consists of sealing composition is arranged along the outside edge of a glass disk 1, and at least one photovoltaic cell 11 and/or at least one functional coating, for example a light-emitting coating, is/are applied within the strand 3. As a next step, a composition 13 is applied within the strand 3 to the glass disk 1. On the strand 3, a second glass disk 2 is then placed at a distance from the free surface 5 of the strand 3, and the arrangement is evacuated. The evacuated arrangement is compressed in a heating press, so that the entire inner space 9 between the glass disks 1 and 2 as well as within the sealing strand 3 is filled by composition 13, which is a pasty, gel-like composition, e.g., a resin, or a composition based on silicone.
Number | Date | Country | Kind |
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A 229/2011 | Feb 2011 | AT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/AT2012/000004 | 1/9/2012 | WO | 00 | 8/7/2013 |