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Durability of polymeric encapsulation materials in a PMMA/glass concentrator photovoltaic system

机译:PMMA /玻璃聚光光伏系统中聚合物封装材料的耐用性

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摘要

The durability of polymeric encapsulation materials was examined using outdoor exposure at the nominal geometric concentration of 500 suns. The results for 36-month cumulative field deployment are presented for materials including: poly(ethylene-co-vinyl acetate), (EVA); polyvinyl butyral (PVB); ionomer; polyethylene/polyoctene copolymer (PO); thermoplastic polyurethane (TPU); poly(dimethylsiloxane) (PDMS); poly(diphenyl dimethyl siloxane) (PDPDMS); and poly(phenyl-methyl siloxane) (PPMS). Measurements of the field conditions including ambient temperature and ultraviolet (UV) dose were recorded at the test site during the experiment. Measurements for the experiment included optical transmittance (with subsequent analysis of solar-weighted transmittance, UV cut-off wavelength, and yellowness index), mass, visual photography, photoelastic imaging, and fluorescence spectroscopy. While the results to date for EVA are presented and discussed, examination here focuses more on the siloxane materials. A specimen recently observed to fail by thermal decomposition is discussed in terms of the implementation of the experiment as well as its fluorescence signature, which was observed to become more pronounced with age. Modulated thermogravimetry (allowing determination of the activation energy of thermal decomposition) was performed on a subset of the siloxanes to quantify the propensity for decomposition at elevated temperatures. Supplemental, Pt-catalyst- and primer-solutions as well as peroxide-cured PDMS specimens were examined to assess the source of the luminescence. The results of the study including the change in optical transmittance, observed failure modes, and subsequent analyses of the failure modes are described in the conclusions. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:使用室外暴露在标称几何浓度为500太阳下检查聚合物封装材料的耐久性。给出了36个月累积现场部署的结果,这些材料包括:聚(乙烯-乙酸乙烯酯)(EVA);聚乙烯醇缩丁醛(PVB);离聚物聚乙烯/聚辛烯共聚物(PO);热塑性聚氨酯(TPU);聚二甲基硅氧烷(PDMS);聚(二苯基二甲基硅氧烷)(PDPDMS);和聚(苯基甲基硅氧烷)(PPMS)。实验期间在测试现场记录了包括环境温度和紫外线(UV)剂量在内的现场条件的测量结果。实验测量包括光学透射率(随后分析日光加权透射率,紫外线截止波长和黄度指数),质量,可见光照相,光弹性成像和荧光光谱。在介绍和讨论迄今为止EVA的结果时,此处的检查更多地侧重于硅氧烷材料。根据实验的实施以及其荧光特征讨论了最近观察到的因热分解而失效的样品,随着时间的推移,荧光特征变得更加明显。对一部分硅氧烷进行了调制热重分析(允许确定热分解的活化能),以量化在高温下分解的倾向。检查了补充的Pt催化剂和底漆溶液以及过氧化物固化的PDMS标本,以评估发光源。结论中包括了光透射率的变化,观察到的失效模式以及随后的失效模式分析等研究结果。版权所有(c)2016 John Wiley&Sons,Ltd.

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