Extrapolation method for performance evolution of thin film materials under the synergistic effect of space radiation environments

Zicai Shen, Yuming Liu, Shijin Wang, Zhenyi Qi, Yifan Zheng, Sichen Qin, Yigang Ding, Yue Wang, Jianda Shao
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Abstract

Polyimide film can be used in spacecraft thermal control multilayer and large-scale deployment structure, and its mechanical properties will be degraded by space radiation environments such as electron and proton. In this paper, the mechanical properties of polyimide film under the synergistic effect of electron and proton was studied using the space integrated irradiation test facility in Beijing Institute of Spacecraft Environment Engineering. It is found that the combined irradiation of electron and proton damages the polyimide film more than the single environment of electron or proton. The synergistic effect of electron and proton causes the exponentially decrease of rupture elongation and the tensile strength of the polyimide film with. With the increase of the electron and proton irradiation fluence until its properties reaches a steady state.
空间辐射环境协同作用下薄膜材料性能演变的外推法
聚酰亚胺薄膜可用于航天器热控多层结构和大规模部署结构,在电子和质子等空间辐照环境下,其力学性能会下降。本文利用北京航天环境工程研究所的空间综合辐照试验设备,研究了聚酰亚胺薄膜在电子和质子协同作用下的力学性能。结果发现,电子和质子的联合辐照对聚酰亚胺薄膜的破坏比电子或质子的单一辐照环境更大。在电子和质子的协同作用下,聚酰亚胺薄膜的断裂伸长率和拉伸强度呈指数下降。随着电子和质子辐照通量的增加,聚酰亚胺薄膜的性能达到稳定状态。
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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