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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Evaluation of two new white silicone thermal control paints under atomic oxygen
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Evaluation of two new white silicone thermal control paints under atomic oxygen

机译:在原子氧下评估两种新型白色有机硅热控涂料

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摘要

The exterior optical surfaces of satellites are directly exposed to the harsh space environment. Thermal control paints are resistant to the conditions encountered at low earth orbit (LEO): vacuum, atomic oxygen, thermal cycling, and ultraviolet radiation. In this paper two white paints were prepared by ultrasonic dispersing method for application to space structures. The white paints include zinc-oxide-pigmented silicone elastomer SilGel 612 (U1) and a zinc-oxide-pigmented silicone elastomer RT604 (U2). These coatings are electrically non-conductive. We present the behavior of thermal control paints under atomic oxygen (AO). The effects of AO exposure were studied by the mass loss of paint specimens and complementary techniques including scanning electron microscopy (SEM) and atomic force microscopy (AFM). Also the optical degradation in the reflectance spectra, solar absorptance and thermal emittance for U1 and U2 samples before and after AO exposure were investigated. The paints have promising AO resistance properties that could be suitable for space applications.
机译:卫星的外部光学表面直接暴露于恶劣的太空环境中。热控涂料可抵抗低地球轨道(LEO)遇到的条件:真空,原子氧,热循环和紫外线辐射。本文采用超声分散法制备了两种白色涂料,用于空间结构。白色涂料包括氧化锌着色的有机硅弹性体SilGel 612(U1)和氧化锌着色的有机硅弹性体RT604(U2)。这些涂层是不导电的。我们介绍了在原子氧(AO)下热控涂料的行为。通过油漆样品的质量损失和辅助技术(包括扫描电子显微镜(SEM)和原子力显微镜(AFM))研究了AO暴露的影响。还研究了AO暴露前后U1和U2样品在反射光谱,太阳吸收率和热发射率方面的光学降解。该涂料具有令人满意的抗AO性能,可适用于太空应用。

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