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Tailoring Thin Film-Lacquer Coatings for Space Applications

机译:量身定制用于太空的薄膜漆涂层

摘要

Thin film coatings have the capability of obtaining a wide range of thermal radiative properties, but the development of thin film coatings can sometimes be difficult and costly when trying to achieve highly specular surfaces. Given any space mission's then-nal control requirements, there is often a need for a variation of solar absorptance (alpha(sub s)), emittance (epsilon) and/or highly specular surfaces. The utilization of thin film coatings is one process of choice for meeting challenging thermal control requirements because of its ability to provide a wide variety of alpha(sub s)/epsilon ratios. Thin film coatings' radiative properties can be tailored to meet specific thermal control requirements through the use of different metals and the variation of dielectric layer thickness. Surface coatings can be spectrally selective to enhance radiative coupling and decoupling. The application of lacquer to a surface can also provide suitable specularity for thin film application without the cost and difficulty associated with polishing.
机译:薄膜涂层具有获得广泛的热辐射特性的能力,但是当试图获得高度镜面的表面时,薄膜涂层的开发有时可能是困难且昂贵的。给定任何太空飞行任务的最终控制要求,经常需要改变太阳吸收率(α),发射率(ε)和/或高镜面表面。薄膜涂层的利用是满足具有挑战性的热控制要求的一种选择方法,因为它具有提供多种α/ sub /ε比率的能力。可以通过使用不同的金属和改变介电层的厚度来调整薄膜涂料的辐射性能,以满足特定的热控制要求。表面涂层可以在光谱上具有选择性,以增强辐射耦合和去耦。在表面上施加清漆也可以为薄膜施加提供合适的镜面反射性,而没有与抛光相关的成本和困难。

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