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Optimal lamination test of ethylene vinyl acetate sheets for solar modules

机译:太阳能组件用乙烯醋酸乙烯酯片的最佳层压测试

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摘要

Solar power is inexhaustible and has become one of the most appreciated alternative energy choices. In the development stage, solar modules are subjected to relevant reliability tests to ensure a long lifetime and optimal power generation efficiency. After the lamination process, the performance of solar modules is closely related to the degree of crosslinking of ethylene vinyl acetate (EVA) sheets. Traditionally, the degree of crosslinking on EVA sheets is obtained using the chemical extraction method to measure the gel content of these sheets. Motivated by lamination data, this study first constructed a statistical model to describe the relationship between the degree of crosslinking on EVA sheets and lamination time. Next, under the specification limits of the gel content of EVA sheets, the optimal lamination time of solar modules was derived, and the optimal allocation for measuring EVA sheets was addressed. The chemical extraction method is time consuming and leads to high pollution. The latest method is differential scanning calorimetric (DSC), which measures the curing degree of EVA sheets as the degree of crosslinking on these sheets. This study determined the specification limits of the curing degree under the DSC method. An example is presented to elucidate the proposed procedure.
机译:太阳能取之不尽,用之不竭,已成为人们最欣赏的替代能源选择之一。在开发阶段,对太阳能电池组件进行相关的可靠性测试,以确保长寿命和最佳发电效率。层压后,太阳能电池组件的性能与乙烯醋酸乙烯酯(EVA)片材的交联度密切相关。传统上,EVA片材的交联度是使用化学提取方法来测量这些片材的凝胶含量来获得的。受层压数据的影响,本研究首先构建了一个统计模型来描述EVA片材上的交联度与层压时间之间的关系。接下来,在EVA片的凝胶含量的规格限制下,得出了太阳能电池组件的最佳层压时间,并提出了用于测量EVA片的最佳配置。化学提取方法耗时且导致高污染。最新的方法是差示扫描量热法(DSC),该方法测量EVA片材的固化程度,作为这些片材上的交联度。这项研究确定了在DSC方法下固化度的规格极限。给出了一个示例来阐明建议的过程。

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