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Nonlinear phenomena in the mass loss of polyimide films under hyperthermal atomic oxygen beam exposure

机译:高温原子氧束辐照下聚酰亚胺薄膜质量损失的非线性现象

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Erosion phenomenon of polyimide film under the hyperthermal atomic oxygen beam exposure, which is a simulated low Earth orbit space environment, has been investigated. The polyimide film was spin-coated on a sensor crystal of a quartz crystal microbalance, and the mass of the film was measured under the atomic oxygen beam exposure. The spin-coated polyimide film which was exposed to a 4.7 eV atomic oxygen beam showed a mass gain at the beginning of the reaction and then steady-state mass loss followed. The experimental results of the reaction and then steady-state mass loss followed. The experimental results of the mass change was analysed by the computational model, and the results showed that the carbon abstraction rate at the oxygen-adsorbed sites was two orders higher than that at the unoxidized polyimide surface. The computational results suggested tat a large fraction of the carbon abstraction reaction occurred in the oxygen-adsorbed site through a Langmuir-Hinshelwood reaction mechanism.
机译:研究了在模拟的低地球轨道空间环境下的高温原子氧束辐照下聚酰亚胺膜的侵蚀现象。将聚酰亚胺膜旋涂在石英微天平的传感器晶体上,并在原子氧束曝光下测量膜的质量。暴露于4.7 eV原子氧束的旋涂聚酰亚胺膜在反应开始时显示出质量增加,然后达到稳态质量损失。随后是反应的实验结果,然后是稳态质量损失。通过计算模型对质量变化的实验结果进行了分析,结果表明,在氧吸附位点的碳提取速率比未氧化聚酰亚胺表面的碳提取速率高两个数量级。计算结果表明,大部分的碳提取反应是通过Langmuir-Hinshelwood反应机理在氧吸附位点发生的。

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