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MIR Solar Array Return Experiment: Power Performance Measurements and Molecular Contamination Analysis Results

机译:MIR太阳电池阵列返回实验:功率性能测量和分子污染分析结果

摘要

A solar array segment was recently removed from the Mir core module and returned for ground-based analysis. The segment, which is similar to the ones the Russians have provided for the FGB and Service Modules, was microscopically examined and disassembled by US and Russian science teams. Laboratory analyses have shown the segment to he heavily contaminated by an organic silicone coating, which was converted to an organic silicate film by reactions with atomic oxygen within the. orbital flight environment. The source of the contaminant was a silicone polymer used by the Russians as an adhesive and bonding agent during segment construction. During its life cycle, the array experienced a reduction in power performance from approx. 12%, when it was new and first deployed, to approx. 5%, when it was taken out of service. However, current-voltage measurements of three contaminated cells and three pristine, Russian standard cells have shown that very little degradation in solar array performance was due to the silicate contaminants on the solar cell surfaces. The primary sources of performance degradation is attributed to "thermal hot-spotting" or electrical arcing; orbital debris and micrometeoroid impacts; and possibly to the degradation of the solar cells and interconnects caused by radiation damage from high energy protons and electrons.
机译:最近从Mir核心模块中取出了一块太阳能电池板,然后返回地面进行分析。该部分与俄罗斯人为FGB和服务模块提供的部分相似,由美国和俄罗斯科学团队进行微观检查和分解。实验室分析表明,该段被有机硅涂层严重污染,该涂层通过与内部的原子氧反应转化为有机硅酸盐薄膜。轨道飞行环境。污染物的来源是俄罗斯人在路段施工期间用作粘合剂的有机硅聚合物。在其整个生命周期中,阵列的功率性能从大约30%下降到大约30%。首次使用时,约为12%。 5%,当它停止服务时。但是,对三个受污染的电池和三个原始的俄罗斯标准电池的电流-电压测量显示,太阳能电池阵列性能的降低很少,这是由于太阳能电池表面上的硅酸盐污染物所致。性能下降的主要原因是“热斑”或电弧。轨道碎片和微流星体撞击;可能是由于高能质子和电子的辐射损伤而导致的太阳能电池和互连线的退化。

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