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Study on Silver-plated Molybdenum Interconnected Materials for LEO Solar Cell Array

机译:Leo太阳能电池阵列镀银钼互连材料的研究

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Atomic oxygen (AO) is one of the most important environmental factors that affected the performance of low earth orbit spacecraft in orbit. In which, silver was the most common materials as the interconnected materials. However, with the poor AO resistance of silver, the interconnectors could be failure easier , and the lifetime of the spacecraft was also reduced. In this paper, the silver-plated molybdenum interconnected materials made by Ag thin films deposited on the Mo foils by vacuum deposition methods was studied. And the effects of the preparation process on the micro-structure of the Ag thin films, the interfacial adhesive strength and the electrical conductivity of the composites were investigated. It was found that the Ag thin films deposited on the Mo substrates coated the Ag thin films by ion beam assisted deposition(IBAD) methods exhibited a perfectly (200) preferred orientation. The interfacial adhesive strength had been increased to 18.58MPa. And the composites also have excellent electrical performance .
机译:原子氧(AO)是影响到轨道低地球轨道航天器的性能,最重要的环境因素之一。其中,银是最常见的材料作为互连材料。然而,随着银不佳AO性,相互连接件可以更容易失败,而航天器的寿命也减少。在本文中,由沉积在钼箔通过真空蒸镀法的Ag薄膜制成镀银钼互连材料进行了研究。和在Ag薄膜的微结构的制备方法的效果,界面粘合强度和复合材料的导电性进行了研究。已经发现,沉积在钼银薄膜基材涂覆在银薄膜的离子束辅助沉积(IBAD)的方法表现出完美(200)择优取向。界面粘结强度已经提高到18.58MPa。而复合材料也有优良的电气性能。

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