首页> 外文会议>International SAMPE symposium and exhibition >THE EFFECT OF LOW EARTH ORBIT ATOMIC OXYGEN EXPOSURE ON PHENYLPHOSPHINE OXIDE-CONTAINING POLYMERS
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THE EFFECT OF LOW EARTH ORBIT ATOMIC OXYGEN EXPOSURE ON PHENYLPHOSPHINE OXIDE-CONTAINING POLYMERS

机译:低地轨道原子氧暴露对含苯基氧化膦聚合物的影响

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Thin films of phenylphosphine oxide-containing polymers were exposed to low Earth orbit aboard a space shuttle flight (STS-85) as part of flight experiment designated Evaluation of Space Environment and Effects on Materials (ESEM). This flight experiment was a cooperative effort between the NASA Langley Research Center (LaRC) and the National Space Development Agency of Japan (NASDA). The thin film samples described herein were part of an atomic oxygen exposure experiment (AOE) and were exposed to primarily atomic oxygen (approx 1X 10~(19) atoms/cm~2). The thin film samples consisted of three phosphine oxide containing polymers (arylene ether, benzimidazole and imide). Based on post-flight analyses using atomic force microscopy, X-ray photoelectron spectroscopy, and weight loss data, it was found that atomic oxygen exposure of these materials efficiently produces a phosphate layer at the surface of the samples. This layer provides a barrier towards further attack by AO. Consequently, these materials do not exhibit linear erosion rates which is in contrast with most organic polymers. Qualitatively, the results obtained from these analyses compare favorably with those obtained from samples exposed to atomic oxygen and or oxygen plasma in ground based exposure experiments. The results of the low Earth orbit atomic oxygen exposure on these materials will be compared with those of ground based exposure to AO.
机译:含苯基氧化膦的聚合物的薄膜暴露于船上的低地轨道轨道(STS-85),作为飞行试验的一部分指定对空间环境评估和对材料的影响(ESEM)的影响。该飞行实验是NASA Langley研究中心(LARC)和日本国家空间开发机构(纳斯达)之间的合作努力。本文所述的薄膜样品是原子氧暴露实验(AoE)的一部分,并且暴露于主要原子氧(约1×10〜(19)原子/ cm〜2)。薄膜样品由三种含有聚合物(亚芳基醚,苯并咪唑和酰亚胺)组成的薄膜样品。基于采用原子力显微镜,X射线光电子能谱和减肥数据的飞行后分析,发现这些材料的原子氧暴露有效地在样品表面上产生磷酸盐层。该层为AO进一步攻击提供了障碍。因此,这些材料不表现出与大多数有机聚合物相反的线性侵蚀速率。定性地,从这些分析中获得的结果有利地与从暴露于原子氧的样品获得的样品和基于地面的曝光实验中的氧等离子体中获得的结果。将低地球轨道原子氧暴露于这些材料的结果与基于基于地面的AO的接触的结果进行比较。

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