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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Investigation on dielectrical and space charge characteristics of peek insulation used in aerospace high‐voltage system
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Investigation on dielectrical and space charge characteristics of peek insulation used in aerospace high‐voltage system

机译:对航空航天高压系统中使用的PEEK绝缘材料的介电和空间电荷特性的研究

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摘要

Because of the insulation issue in the high‐voltage system of spacecrafts, the dielectric and space charge characteristics of polyether‐ether‐ketone (PEEK) insulating material are studied in this paper. The electric conduction, trap parameters and space charge characteristic of PEEK, especially the space charge distribution after 50 keV high‐energy electron radiation, are measured and analyzed, respectively. From the test results, a low DC conductivity (∼10 −16  S/cm) and an activation energy of 0.1–0.2 eV are estimated. It indicates that the conductivity is insensitive to the temperature. In addition, a deep chemical trap (2 eV) is evaluated in the PEEK sample. The slight space charge accumulation and the high threshold field for charge injection of the PEEK sample are dominated by the pulsed electro‐acoustic (PEA) results. Compared to the polyimide sample (PI), the space charge accumulations are lower in PEEK, and the charge dispersions in the PEEK after irradiation are faster than those in PI. Based on the experimental results, it can be inferred that the space charge properties are ascribed to the deep traps. From the microstructure analysis, it can be seen that the benzene ring and carbonyl group in the PEEK chemical structure would introduce deep traps, resulting in a higher injection barrier and less space charge accumulation. The results show that PEEK sample is a superior insulating material, and the excellent dielectric and space charge characteristics are beneficial for application in spacecraft. © 2019 Institute of Electrical Engineers of Japan. Published by John Wiley & Sons, Inc.
机译:由于航天器的高压系统中的绝缘问题,因此,聚醚 - 酮(PEEK)绝缘材料的介电和空间电荷特性是在本文中研究。分别测量和分析了PEEK的电导传导,陷阱参数和空间电荷特征,尤其是在50 keV高能电子辐射后的空间电荷分布和分析。从测试结果中,估计低直流电导率(〜10 -16 s/cm)和0.1-0.2 eV的激活能。这表明电导率对温度不敏感。另外,在PEEK样品中评估了深层化学陷阱(2 eV)。 PEEK样品的电荷注入的轻微空间电荷积累和高阈值场由脉冲电声(PEA)结果主导。与聚酰亚胺样品(PI)相比,PEEK中的空间电荷积累较低,辐照后的PEEK电荷分散剂比PI中的电荷分散剂快。根据实验结果,可以推断出空间电荷属性归因于深陷阱。从微观结构分析中可以看出,PEEK化学结构中的苯环和羰基将引入深陷阱,从而导致更高的注射屏障和更少的空间电荷积累。结果表明,PEEK样品是一种出色的绝缘材料,优秀的介电和空间电荷特性对在航天器中的应用有益。 ©2019日本电气工程师研究所。由John Wiley&amp出版Sons,Inc。

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