聚酰亚胺在电子辐照和高压下的充放电机理

Xiaoping Wang, D. Min, Shengtao Li
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引用次数: 2

摘要

聚酰亚胺由于其优良的电学、热学和力学性能,被广泛用作航天器的绝缘材料和结构材料。然而,其在恶劣空间环境下的充放电问题一直是制约高压大功率航天器发展的主要问题。本章研究了介电材料在电子辐照环境下的充放电现象。首先,研究了聚酰亚胺的电学性能,包括介电性能、阱性能、电导率和击穿性能,它们对聚酰亚胺的充放电特性有很大的影响。然后,基于表面以上电子运动和表层电荷输运的协同效应,提出了相对低能电子辐照下聚酰亚胺的表面充电模型。研究了不同能量、通量和入射角的电子辐照下聚酰亚胺的直流表面闪络现象。在此基础上,建立了高能电子辐照下的深度充电模型,利用内部充电的Fluence模型(fluic)谱建立了深度充电模型。讨论了不同接地方式下电子流增强和工作电压对充电特性的影响。结果表明,电子辐照下的放电过程与聚酰亚胺的电荷输运特性有着密切的联系。
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Charging and Discharging Mechanism of Polyimide under Electron Irradiation and High Voltage
Polyimide has been widely used as insulating and structural materials in spacecraft due to its excellent electrical, thermal and mechanical properties. However, its charging and discharging problem in harsh space environment has been a major limit to the development of high-voltage and high-power spacecraft. In this chapter, charging and discharging phenomena of dielectric materials under electron irradiation environment were presented. First, the electrical properties of polyimide consisting of dielectric properties, trap properties, conductivity and electrical breakdown properties were investigated, which have great influences on charging and discharging characteristics. Then, a surface charging model under relatively low-energy electron irradiation was proposed for polyimide, based on the synergistic effects of electron movement above surface and charge transport in surface layer. The DC surface flashover of polyimide under electron irradiation with different energies, fluxes and incident angles was investigated. Furthermore, a deep charging model under high-energy electron irradiation with the Fluence Model for Internal Charging (FLUMIC) spectrum was established. The effects of electron flux enhancement and operating voltage on charging characteristics were discussed in different grounding modes. It indicates that the processes of discharging under electron irradiation have a close link with the charge transport characteristics of polyimide.
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