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Dielectric characteristic evaluation of proton beam irradiated polyimide films

机译:质子梁辐照聚酰亚胺膜的介电特性评价

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We evaluate the dielectric characteristic of polymeric materials for MLI (Multi Layer Insulator, a kind of thermal insulation material) for spacecraft under high energy proton irradiation using results of space charge distribution. Spacecrafts have a serious damage due to the electro-static discharge accident. The electric charges are accumulated in the polymeric materials due to radioactive rays, especially electrons and protons. The charge accumulation is the origin of aging and discharging phenomena, furthermore those become trigger for spacecraft operation anomaly. Therefore, we need to obtain the space charge distribution in the bulks. In this study, we especially focused polyimide films for MLI irradiated by high energy proton. We measured the space charge distribution in the bulks during and after proton beam irradiation. From the results, it is found that positive charges accumulate in the bulk at the position of proton penetration depth. Furthermore, the characteristics of space charge accumulation are difference between the current and energy of irradiated proton. In case of comparison between high and low dose rate irradiation under same total dose condition of both irradiation, the mobility of accumulated charges increase with rate increment. We also obtained same tendency from the results of conductivity measurement treated by ASTM method. From the above our descriptions, we discuss and estimate the aging of dielectric properties on the polyimide films irradiated by proton in this paper.
机译:在高能质子辐射下,使用空间电荷分布的高能量质子辐射,评估MLI(多层绝缘体,一种隔热材料)的聚合物材料的介电特性。由于电静电放电事故,航天器具有严重的损坏。由于放射线,尤其是电子和质子,电荷累积在聚合物材料中。电荷累积是老化和放电现象的起源,而那些成为航天器操作异常的触发器。因此,我们需要获得块中的空间电荷分布。在这项研究中,我们特别聚焦的聚酰亚胺薄膜用于高能质子照射的MLI。我们在质子束照射期间和之后测量块中的空间电荷分布。从结果中,发现质子渗透深度的位置积极积极积聚。此外,空间电荷累积的特性是辐照质子的电流和能量之间的差异。在高剂量率照射之间比较的情况下,在照射的相同总剂量条件下,累积电荷的迁移率随速率增量而增加。我们还从ASTM方法处理的电导率测量结果中获得了相同的趋势。从上面的描述中,我们在本文中讨论并估算质子辐照的聚酰亚胺膜上的介电性能老化。

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