脉冲电压下氟化对聚丙烯薄膜表面电荷行为的影响

P. Huang, B. Du, Ang Li, Y. Xing, J. Li, Q. Tang, R. L. Wang, Z. Yin, H. M. Wang
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引用次数: 0

摘要

聚丙烯(PP)具有低损耗和高介电强度的特点,被广泛用作金属化膜电容器(MFC)的介质。电介质在高压应力作用下的电老化和介质击穿是高分子材料研究中的一个热点问题。mfc中金属化段之间的PP膜可能发生表面放电和闪络,导致绝缘击穿。研究了脉冲电压下直接氟化对PP薄膜表面电荷和闪络特性的影响。实验结果表明,表面电荷和闪络电压与电荷极性、脉冲频率和氟化时间密切相关。结果表明,一定时间的氟化可以显著提高PP样品的表面电荷衰减率和表面闪络电压。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of fluorination on surface charge behavior of polypropylene films under pulse voltage
Polypropylene (PP), with low loss and high dielectric strength, is widely used as dielectric for the metallized film capacitor (MFC). The electric aging and dielectric breakdown of the dielectrics under high voltage stress is a major concern in the research on polymer materials. Surface discharge and flashover may happen on the PP film between the metallized segments in MFCs, which can lead to the breakdown of insulation. The effects of direct fluorination on the surface charge and flashover characteristics of PP films under pulse voltage are experimented in this paper. The experimental results indicated that the surface charge and flashover voltage were strongly correlated with the charge polarity, pulse frequency and fluorination time. It was suggested that the fluorination of certain time could significantly improve the decay rate of the surface charge as well as the surface flashover voltage of PP samples.
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