Electret Fabrication Under Various Temperatures and Partial Discharge Mitigation Performance

F. Haque, Omar Faruqe, Chanyeop Park
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引用次数: 6

Abstract

Partial discharge (PD), which causes accelerated dielectric material aging and device failure, has been a chronic dielectric challenge in medium to high voltage applications. Recently, electrets that emit electric fields were reported as a promising solution to the complete mitigation of PD by neutralizing the locally enhanced electric fields. Electrets fabricated at elevated temperature based on the widely used triode corona method allow the charged particles to be trapped in the bulk of the dielectric material, which increases the stability of the electrets. In this study, electrets are fabricated under various temperatures based on the triode-corona charging method with thin polyvinylidene fluoride (PVDF) films, and their PD mitigation performances are experimentally compared by conducting PD measurements. The stable charge density trapped in the bulk of the electrets fabricated at elevated temperature allows the electret-based PD approach to be a promising dielectric solution.
驻极体在不同温度下的制造及局部放电减缓性能
局部放电(PD)导致介质材料加速老化和器件失效,是中高压应用中长期存在的电介质问题。最近,据报道,发射电场的驻极体是一种很有希望的解决方案,可以通过中和局部增强的电场来完全缓解PD。基于广泛使用的三极管电晕方法在高温下制造的驻极体允许带电粒子被捕获在介电材料的主体中,这增加了驻极体的稳定性。在本研究中,基于三极-电晕充电法在不同温度下用聚偏氟乙烯(PVDF)薄膜制备了驻极体,并通过PD测量实验比较了它们的PD抑制性能。在高温下制造的驻极体中捕获的稳定电荷密度使得基于驻极体的PD方法成为一种有前途的介电溶液。
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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