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首页> 外文期刊>Plasma Science, IEEE Transactions on >Radiation-Induced Conductivity of Space Used Polymers Under High Energy Electron Irradiation
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Radiation-Induced Conductivity of Space Used Polymers Under High Energy Electron Irradiation

机译:高能电子辐射下空间聚合物的辐射诱导电导率

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摘要

Polymers are widely used on spacecraft for different specific functions such as thermal and electrical insulation, mechanical support, and adhesion. These polymers are highly sensitive to radiation encountered in space. Their electric properties are especially significantly altered leading to a very specific behavior in terms of charge transport and discharge processes. Different dedicated facilities have been developed at ONERA, with Centre National d’Etudes Spatiales support, for the characterization of space used materials in representative conditions. Thanks to the use of these different facilities, it has indeed been demonstrated that radiation-induced conductivity of space polymers strongly affects the charging surface potential and depends on several parameters (radiation dose rate, total radiation dose, temperature, and on the induced electric field) through complex physical mechanisms that are described in this paper. The sensitivity of polymers on these different parameters strongly depends on the polymer trap distribution and molecular configuration. Experimental and numerical results are presented in this paper, coupled with the different experimental techniques developed and applied to this work.
机译:聚合物被广泛用于航天器,以实现不同的特定功能,例如隔热和电绝缘,机械支撑和附着力。这些聚合物对太空中遇到的辐射高度敏感。它们的电性能特别明显地改变,从而导致在电荷传输和放电过程方面表现出非常特殊的行为。 ONERA在国家空间研究中心的支持下开发了各种专用设施,用于表征代表性条件下的空间使用材料。由于使用了这些不同的设备,确实证明了空间聚合物的辐射诱导电导率会极大地影响充电表面电势,并取决于几个参数(辐射剂量率,总辐射剂量,温度以及感应电场) )通过本文所述的复杂物理机制进行。聚合物对这些不同参数的敏感性在很大程度上取决于聚合物陷阱的分布和分子构型。本文介绍了实验和数值结果,以及开发并应用于这项工作的不同实验技术。

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