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首页> 外文期刊>Plasma Science, IEEE Transactions on >The Nonlinear Conductivity Experiment and Mechanism Analysis of Modified Polyimide (PI) Composite Materials With Inorganic Filler
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The Nonlinear Conductivity Experiment and Mechanism Analysis of Modified Polyimide (PI) Composite Materials With Inorganic Filler

机译:无机填料改性聚酰亚胺复合材料的非线性电导率实验及机理分析

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摘要

A spacecraft interacts with its space plasma environment. The high-energy electrons in space can cause natural spacecraft surface charging and deep dielectric charging. Both surface charging and deep dielectric charging may affect the instruments and normal operation of the spacecraft. In this paper, we report on the conductivity property of modified polyimide (PI) matrix resin. The modification was obtained by adding micron powder filler to the resin, resulting in a new type of modified polyimide (PI) composite material. We carried out a conductivity experiment for the modified PI composite materials. The results showed: 1) a nonlinear decrease in conductivity when the electric field () increased to about V/m; 2) the conductivity of modified PI composite materials decreased to an order of magnitude of cm; and 3) the nonlinear threshold field intensity of modified PI composites decreased by 50% compared with that of pure PI. We also attempt to provide a physical interpretation to the nonlinear conductivity of the modified PI composite materials. The addition of the modifier components into the modified PI enhanced the carrier concentration of the material. The enhancement may cause a local microscopic tunneling effect, which may occur when the internal electric fields reach a critical value. These local and sporadic phenomena may add up and manifest as a macroscopic conductivity phenomenon. We suggest that the modified PI composite materials, with the nonlinear conductivity characteristics, are excellent candidates for effectively mitigating the accumulation of deep dielectric charging in space.
机译:航天器与其空间等离子体环境相互作用。太空中的高能电子会引起航天器的自然表面电荷和深层介电电荷。表面电荷和深电介质电荷都可能影响航天器的仪器和正常运行。在本文中,我们报告了改性聚酰亚胺(PI)基体树脂的导电性能。通过向树脂中添加微米级粉末填料获得改性,从而得到一种新型的改性聚酰亚胺(PI)复合材料。我们对改性的PI复合材料进行了电导率实验。结果表明:1)当电场()增加到大约V / m时,电导率非线性降低; 2)改性PI复合材料的电导率降低到cm数量级; 3)改性PI复合材料的非线性阈值场强比纯PI降低了50%。我们还尝试对改性PI复合材料的非线性电导率提供物理解释。将改性剂组分添加到改性的PI中可以提高材料的载流子浓度。增强可能会导致局部微观隧道效应,当内部电场达到临界值时可能会发生。这些局部和零星的现象可能加起来并表现为宏观的电导现象。我们建议,具有非线性导电特性的改性PI复合材料是有效减轻空间深介电电荷积累的极佳候选者。

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