Evolution of Space Charge with Increasing Electric Field in High Temperature Materials Used in Hybrid Propulsion Systems

Mohamadreza Arab Baferani, Tohid Shahsavarian, Chuanyang Li, Yang Cao
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Abstract

The role of space charge in the design of cable insulation for direct current (DC) has been well recognized. Electric field represents one of the most critical parameters governing the evolution of space charge. This paper reports an experimental study on the evolution of charge distribution in a special group of materials including five polymeric dielectrics used in high temperature (HT) applications. The charge distribution has been measured for each sample under different electric fields including 1, 5, 10, 15, 20, 40, and 70 kV/mm during 15 minutes at room temperature. Moreover, based on the charge distribution profiles, the electric field distributions and maximum electric fields have been calculated for each material. The results of this study show that PI and PEEK have better performance in terms of space charge distribution, electric field distortion and maximum electric field enhancement compared with other materials.
混合动力推进系统高温材料中空间电荷随电场增大的演化
空间电荷在直流电缆绝缘设计中的作用已经得到了广泛的认识。电场是控制空间电荷演化的最关键参数之一。本文报道了一组特殊材料中电荷分布演化的实验研究,这些材料包括五种用于高温应用的聚合物电介质。在1、5、10、15、20、40、70 kV/mm的不同电场下,测量了每个样品在室温下15分钟的电荷分布。此外,根据电荷分布曲线,计算了每种材料的电场分布和最大电场。本研究结果表明,与其他材料相比,PI和PEEK在空间电荷分布、电场畸变和最大电场增强方面具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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