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Low earth orbit durability of protected silicone for refractive photovoltaic concentrator arrays

机译:用于折光光伏聚光器阵列的受保护有机硅的低地球轨道耐久性

摘要

Photovoltaic power systems with novel refractive silicone solar concentrators are being developed for use in low Earth orbit (LEO). Because of the vulnerability of silicones to atomic oxygen and ultraviolet radiation, these lenses are coated with a multilayer metal oxide protective coating. The objective of this work was to evaluate the effects of atomic oxygen and thermal exposures on multilayer coated silicone. Samples were exposed to high-fluence ground-laboratory and low-fluence in-space atomic oxygen. Ground testing resulted in decreases in both total and specular transmittance, while in-space exposure resulted in only small decreases in specular transmittance. A contamination film, attributed to exposed silicone at coating crack sites, was found to cause transmittance decreases during ground testing. Propagation of coating cracks was found to be the result of sample heating during exposure. The potential for silicone exposure, with the resulting degradation of optical properties from silicone contamination, indicates that this multilayer coated silicone is not durable for LEO space applications where thermal exposures will cause coating crack development and propagation.
机译:具有新型折射硅树脂太阳能聚光器的光伏电源系统正在开发用于低地球轨道(LEO)。由于有机硅易受原子氧和紫外线辐射的影响,这些镜片都涂有多层金属氧化物保护涂层。这项工作的目的是评估原子氧和热暴露对多层涂层有机硅的影响。样品暴露于高通量地面实验室和低通量空间原子氧中。地面测试导致总透射率和镜面透射率均降低,而太空暴露导致镜面透射率仅小幅下降。在地面测试过程中,发现了一层污染膜,该污染膜归因于在涂层裂纹位置处暴露的有机硅,导致透射率降低。发现涂层裂纹的蔓延是由于曝光期间样品加热而引起的。有机硅暴露的可能性,以及由于有机硅污染而导致的光学性能下降,表明这种多层涂覆的有机硅对于LEO空间应用是不耐用的,在这些应用中,热暴露会导致涂层裂纹的发展和传播。

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