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Degradation of Silicone Encapsulants in CPV Optics

机译:CPV光学器件中有机硅密封剂的降解

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Concentrator photovoltaic (CPV) modules operate in extreme conditions, which poses a unique materials challenge for guaranteeing operational lifetimes of at least 25 years. The encapsulants used in the optical elements are critically susceptible to environmental degradation during operation. We studied the effects of weatherings on adhesion using an outdoor concentrator operating in excess of 1100 times the AM1.5 direct irradiance and in environmental chambers with broadband ultraviolet (UV) irradiation combined with controlled temperature and humidity. We observed a sharp initial increase in adhesion energy followed by a gradual decrease in adhesion as a result of both outdoor concentrator exposure and indoor UV weathering. We characterized changes in mechanical properties and chemical structures using XPS, FTIR, and DMA to understand the fundamental connection between mechanical strength and the degradation of the silicone encapsulant.
机译:聚光灯光伏(CPV)模块在极端条件下运行,这造成了独特的材料挑战,以保证至少25年的操作寿命。在操作期间,光学元件中使用的密封剂纵向易受环境劣化。我们研究了通过户外浓缩器在am1.5直接辐照度和环境室中运行的户外浓缩器和宽带紫外线(UV)照射的影响,研究了大气的粘附效果,与受控温度和湿度相结合。我们观察到粘合能急剧增加,随后由于户外集中器暴露和室内UV风化而逐渐减少粘合性。我们使用XPS,FTIR和DMA表征了机械性能和化学结构的变化,以了解机械强度与硅氧烷密封剂的降解之间的基本连接。

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