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Investigation on sol-gel boehmite-AlOOH films on Kapton and their erosion resistance to atomic oxygen

机译:Kapton上的溶胶-凝胶勃姆石-AlOOH膜及其对原子氧的耐蚀性研究

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摘要

To improve the atomic oxygen (AO) erosion resistance of Kapton, boehmite-AlOOH films were deposited on it by sol-gel method and AO exposure experiments were performed in a ground-based AO simulator. The results indicate that the AlOOH-coated samples show an improved AO resistance and their erosion yield is one order of magnitude less than that of pristine Kapton. Furthermore, the AlOOH-coated Kapton remained optically stable under AO exposure. The AlOOH film structure before and after AO exposure was analyzed by scanning electronic microscope, atomic force microscopy, X-ray photoelectron spectroscopy and X-ray diffraction. It was found that after AO exposure, the film structure tends to transfer from an octahedral coordination for AlOOH to an octahedral and tetrahedral mixed-coordination for γ-Al_2O_3. This implies that a more stable γ-Al_2O_3 structure could be formed in AlOOH film during AO exposure. The AO erosion mechanism of the coated Kapton was discussed.
机译:为了提高Kapton的抗原子氧(AO)侵蚀性能,通过溶胶-凝胶法在其上沉积了勃姆石AlOOH膜,并在基于地面的AO仿真器中进行了AO暴露实验。结果表明,涂​​有AlOOH的样品显示出改善的AO抗性,并且其腐蚀产量比原始Kapton的腐蚀产量小一个数量级。此外,AlOOH涂层的Kapton在AO暴露下仍保持光学稳定。通过扫描电子显微镜,原子力显微镜,X射线光电子能谱和X射线衍射分析了AO暴露前后的AlOOH膜结构。发现在暴露于AO之后,膜结构倾向于从用于AlOOH的八面体配位转变为用于γ-Al_2O_3的八面体和四面体的混合配位。这意味着在AO曝光期间,可以在AlOOH膜中形成更稳定的γ-Al_2O_3结构。讨论了涂层Kapton的AO腐蚀机理。

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