Influence of Simulated Space Hazards on Polyimide ArtilonTM Type Used in Space Applications

A. Anwar, M. M. Osman
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引用次数: 4

Abstract

The polyimide performance was monitored and evaluated after exposure to ionized and particulate radiation as a space hazard. The material was irradiated with three different doses 500, 750 and 1000kGy in CO60 source in the presence of air. Both non-irradiated and irradiated materials were characterized by tensile test, Thermo-Gravimetric Analysis (TGA) and Fourier Transform Infra-Red (FTIR). Quantum modeling was executed by using "Gaussian 5" software program for chemical structure verification. The non-irradiated material showed a super ductility but revealed a brittle behavior when irradiated with 500 and 1000 kGy gamma doses. Nevertheless, the material attained moderate ductility when exposed to 750kGy. Results by the stated characterization tools matched with the evaluated behavior and confirmed by the quantum modeling.
模拟空间危害对空间应用中聚酰亚胺ArtilonTM型的影响
对作为空间危害暴露于电离辐射和微粒辐射后的聚酰亚胺性能进行了监测和评估。材料在CO60源中以500、750和1000kGy三种不同剂量在空气存在下辐照。通过拉伸试验、热重分析(TGA)和傅里叶变换红外(FTIR)对辐照前后材料进行了表征。利用“高斯5”软件程序进行化学结构验证的量子建模。未辐照材料表现出超延展性,但在500和1000 kGy γ剂量辐照下表现出脆性行为。然而,当暴露于750kGy时,材料获得了中等的延展性。所述表征工具的结果与所评估的行为相匹配,并得到量子模型的证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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