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The use of the Molecular Adsorber Coating technology to mitigate vacuum chamber contamination during Pathfinder testing for the James Webb Space Telescope

机译:使用分子吸附器涂层技术在詹姆斯韦伯太空望远镜探测试验期间减轻真空室污染

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As a coating made of highly porous zeolite materials, the Molecular Adsorber Coating (MAC) was developed to capture outgassed molecular contaminants, such as hydrocarbons and silicones. For spaceflight applications, the adsorptive capabilities of the coating can alleviate on-orbit outgassing concerns on or near sensitive surfaces and instruments within the spacecraft. Similarly, this sprayable paint technology has proven to be significantly beneficial for ground based space applications, in particular, for vacuum chamber environments. This paper describes the recent use of the MAC technology during Pathfinder testing of the Optical Ground Support Equipment (OGSE) for the James Webb Space Telescope (JWST) at NASA Johnson Space Center (JSC). The coating was used as a mitigation tool to entrap persistent outgassed contaminants, specifically silicone based diffusion pump oil, from within JSC's cryogenic optical vacuum chamber test facility called Chamber A. This paper summarizes the sample fabrication, installation, laboratory testing, post-test chemical analysis results, and future plans for the MAC technology, which was effectively used to protect the JWST test equipment from vacuum chamber contamination.
机译:作为由高度多孔沸石材料制成的涂层,开发了分子吸附剂涂层(MAC)以捕获碳氢化合物和硅氧烷等分子污染物。对于太空飞行应用,涂层的吸附能力可以缓解在航天器内的敏感表面和仪器上或附近的轨道外倾向的问题。类似地,这种可喷涂的涂料技术已经证明,对于基于地面的空间应用,特别是对于真空室环境来说是显着的利益。本文介绍了在NASA Johnson Space Center(JSC)的James Webb Space望远镜(JWST)的光学接地支持设备(OGSE)探测器测试期间Mac技术在探测器测试期间使用MAC技术。将涂层用作缓解工具,以从JSC的低温光学真空室测试设施内捕获持续的分散污染物,特别是硅氧烷基的扩散泵油。本文总结了样品制造,安装,实验室检测,测试后化学品分析结果,以及MAC技术的未来计划,其有效地用于保护JWST测试设备免受真空室污染。

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