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首页> 外文期刊>Journal of Materials Science >Graphene-reinforced epoxy resin with enhanced atomic oxygen erosion resistance
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Graphene-reinforced epoxy resin with enhanced atomic oxygen erosion resistance

机译:增强的抗原子氧侵蚀性的石墨烯增强环氧树脂

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Atomic oxygen (AO) is a dominant component of the low earth orbit and can erode most spacecraft material. We demonstrated the application of graphene to enhance AO erosion resistance of spacecraft polymers. Graphene-reinforced epoxy resin nanocomposites were prepared by solidification of epoxy resin in solution with dispersed graphene flakes and their AO erosion resistance was investigated in a plasma-type ground-based AO effects simulation facility. The nanocomposites were characterized by X-ray diffraction, scanning electron microscopy, thermogravimetric analysis, and X-ray photoelectron spectroscopy. Results based on erosion kinetics revealed that a 46 % decrease in mass loss and a 47 % decrease in erosion yield were achieved by addition of only 0.5 wt% of graphene. Further analysis of the surface morphology and composition showed that the graphene nanoflakes could serve as barriers to protect underneath from AO erosion. Thus, this approach provides a novel route for improving durability and reliability of spacecraft material, especially polymers.
机译:原子氧(AO)是低地球轨道的主要成分,可以腐蚀大多数航天器材料。我们证明了石墨烯在增强航天器聚合物抗AO侵蚀方面的应用。通过在分散有石墨烯薄片的溶液中固化环氧树脂来制备石墨烯增强的环氧树脂纳米复合材料,并在等离子型地基AO效果模拟设备中研究了其AO耐腐蚀性。通过X射线衍射,扫描电子显微镜,热重分析和X射线光电子能谱表征纳米复合材料。基于腐蚀动力学的结果表明,仅添加0.5 wt%的石墨烯,质量损失降低了46%,腐蚀产率降低了47%。对表面形态和组成的进一步分析表明,石墨烯纳米薄片可以作为保护其免受AO侵蚀的屏障。因此,该方法提供了改进航天器材料,尤其是聚合物的耐久性和可靠性的新颖途径。

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