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Chemical vapor deposited silica coatings for solar mirror protection

机译:化学气相沉积二氧化硅涂料,用于保护太阳镜

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摘要

A variety of techniques is available to apply protective coatings to oxidation susceptible spacecraft components, and each has associated advantages and disadvantages. Film applications by means of chemical vapor deposition (CVD) has the advantage of being able to be applied conformally to objects of irregular shape. For this reason, a study was made of the oxygen plasma durability of thin film (less than 5000 A) silicon dioxide coatings applied by CVD. In these experiments, such coatings were applied to silver mirrors, which are strongly subject to oxidation, and which are proposed for use on the space station solar dynamic power system. Results indicate that such coatings can provide adequate protection without affecting the reflectance of the mirror. Scanning electron micrographs indicated that oxidation of the silver layer did occur at stress crack locations, but this did not affect the measured solar reflectances. Oxidation of the silver did not proceed beyond the immediate location of the crack. Such stress cracks did not occur in thinner silica flims, and hence such films would be desirable for this application.
机译:有多种技术可用于将保护性涂层应用于易受氧化的航天器部件,每种技术都有各自的优点和缺点。借助于化学气相沉积(CVD)的膜施加具有能够被适形地施加到不规则形状的物体上的优点。因此,对通过CVD施加的二氧化硅薄膜(小于5000 A)的氧等离子体耐久性进行了研究。在这些实验中,此类涂层被应用于强烈受到氧化的银镜,并被提议用于空间站的太阳能动力系统。结果表明,这种涂层可以提供足够的保护,而不会影响反射镜的反射率。扫描电子显微照片表明,在应力裂纹位置确实发生了银层的氧化,但这并不影响所测得的太阳反射率。银的氧化没有超出裂纹的直接位置。在较薄的二氧化硅膜片中不会出现这种应力裂纹,因此这种膜对于这种应用是理想的。

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