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Black Molecular Adsorber Coatings for Spaceflight Applications

机译:黑色分子吸附剂涂料,用于航天应用

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The molecular adsorber coating is a new technology that was developed to mitigate the risk of on-orbit molecular contamination on spaceflight missions. The application of this coating would be ideal near highly sensitive, interior surfaces and instruments that are negatively impacted by outgassed molecules from materials, such as plastics, adhesives, lubricants, epoxies, and other similar compounds. This current, sprayable paint technology is comprised of inorganic white materials made from highly porous zeolite. In addition to good adhesion performance, thermal stability, and adsorptive capability, the molecular adsorber coating offers favorable thermal control characteristics. However, low reflectivity properties, which are typically offered by black thermal control coatings, are desired for some spaceflight applications. For example, black coatings are used on interior surfaces, in particular, on instrument baffles for optical stray light control. Similarly, they are also used within light paths between optical systems, such as telescopes, to absorb light. Recent efforts have been made to transform the white molecular adsorber coating into a black coating with similar adsorptive properties. This result is achieved by optimizing the current formulation with black pigments, while still maintaining its adsorption capability for outgassing control. Different binder to pigment ratios, coating thicknesses, and spray application techniques were explored to develop a black version of the molecular adsorber coating. During the development process, coating performance and adsorption characteristics were studied. The preliminary work performed on black molecular adsorber coatings thus far is very promising. Continued development and testing is necessary for its use on future contamination sensitive spaceflight missions.
机译:分子吸附涂层是一项新技术,旨在减轻航天飞行中在轨分子污染的风险。这种涂层的应用非常适合在高度敏感的内表面和仪器上使用,这些内表面和仪器会受到来自材料(例如塑料,粘合剂,润滑剂,环氧树脂和其他类似化合物)的脱气分子的不利影响。这种当前的可喷涂涂料技术由高度多孔的沸石制成的无机白色材料组成。除了良好的粘合性能,热稳定性和吸附能力外,分子吸附涂层还具有良好的热控制特性。但是,对于某些航天应用,通常需要黑色热控制涂层通常提供的低反射率特性。例如,在内部表面上,特别是在仪器挡板上,使用黑色涂层来控制杂散光。类似地,它们还用于光学系统(如望远镜)之间的光路中以吸收光。为了将白色分子吸附剂涂层转变成具有相似吸附性能的黑色涂层,最近进行了努力。通过优化当前使用黑色颜料的配方,同时仍保持其对除气控制的吸附能力,可以实现该结果。探索了不同的粘合剂与颜料的比例,涂层厚度和喷涂技术,以开发出分子吸附涂层的黑色版本。在开发过程中,研究了涂层性能和吸附特性。迄今为止,在黑色分子吸附剂涂层上进行的初步工作非常有前途。为了将其用于未来对污染敏感的航天飞行任务,必须进行持续的开发和测试。

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