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In situ durability of EVA polymer encapsulant with optical analysis techniques for photovoltaic conversion applications

机译:EVA聚合物密封剂的原位耐久性,具有光伏转换应用的光学分析技术

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The aim of these investigations was to identify and evaluate appropriate degradation indicators for PV encapsulationmaterials in order to qualify new and emergent polymeric components and to predict the lifetime of materials andmodules. Therefore, the influence of the relevant stress parameters like ultraviolet radiation, corrosion environment andtemperature-humidity cycles on the degradation behavior of EVA selected as encapsulant material had to bedetermined. Therefore, the material properties and the aging behavior were characterized by optical and thermalanalysis techniques by infrared (IR) spectroscopy in attenuated total reflection mode (ATR), UV/VIS spectroscopy,photoluminescence spectroscopy analysis, Raman analysis and differential scanning calorimetric (DSC) analysis.Different degradation indicators were derived from the characterization methods and explicitly discussed consideringthe required property profile of polymers for PV encapsulation materials. Here, we describe a fast and non-destructiveoptical method to determine the EVA indoor aging.
机译:这些调查的目的是鉴定和评估PV封装的适当降解指标材料为了限定新的和紧急的聚合物组分并预测材料的寿命和模块。因此,相关应力参数等紫外线辐射,腐蚀环境和腐蚀环境的影响温度湿度循环EVA作为密封材料选择的EVA的降解行为必须是决定。因此,通过光学和热量表征材料性质和老化行为通过红外线(IR)光谱法在减振全反射模式(ATR),UV / Vis光谱,光致发光光谱分析,拉曼分析和差示扫描量热(DSC)分析。不同的降解指标从表征方法中得出并明确讨论考虑用于光伏封装材料的聚合物所需的性能分布。在这里,我们描述了一种快速而无损的光学方法确定EVA室内老化。

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