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首页> 外文期刊>Journal of Materials >Optical Response of Metakaolin after Ultraviolet and High Energy Electron Exposure
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Optical Response of Metakaolin after Ultraviolet and High Energy Electron Exposure

机译:紫外线和高能电子暴露后偏高岭土的光学响应

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Metakaolin, which is part of a class of inorganic polymers called geopolymers, is being tested currently for its use as a lightweight mirror material in spacecraft applications. Metakaolin, as with most geopolymers, has the advantages of low initial coefficient of thermal expansion, easy preparation at room temperature and pressure, and high specific strength. Even though metakaolin has been known as a structural material for millennia, it has not been properly vetted for use as a material in spacecraft applications, especially with respect to exposure to its environments. This research highlights one particular aspect of response to the space environment; that is, how do the optical properties of metakaolin change after subjugation to bombardment by ultraviolet and high energy electron radiation? These two radiation sources are common in low earth orbit and a primary cause of degradation of organic polymers in space. Photospectroscopic analysis showed that ultraviolet in combination with high energy electrons causes changes in the metakaolin which need to be accounted for due to their potential impacts on the thermal management of a spacecraft and during application in composite mirror structures.
机译:偏高岭土是一种称为地质聚合物的无机聚合物的一部分,目前正在测试其在航天器应用中作为轻质镜面材料的用途。与大多数地质聚合物一样,偏高岭土的优点是初始热膨胀系数低,在室温和压力下易于制备以及比强度高。尽管偏高岭土已经被人们公认是一种结构材料,但它还没有经过适当的审查以用作航天器的材料,特别是在暴露于其环境的情况下。这项研究突出了对空间环境做出反应的一个特定方面。也就是说,偏高岭土的光学性质在受到紫外线和高能电子辐射的轰击后如何变化?这两种辐射源在低地球轨道上很常见,并且是空间中有机聚合物降解的主要原因。光谱分析表明,紫外线与高能电子结合会导致偏高岭土发生变化,这是由于其可能对航天器的热管理以及在复合镜结构中的应用产生潜在影响而需要加以考虑的。

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