微秒矩形脉冲电压下环己烷的正流传播和击穿时滞

H. Yamada, T. Murakami, K. Kusano, T. Sato
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引用次数: 6

摘要

利用图像转换相机和光电电流测量技术研究了环己烷中点对面间隙结构的电击穿现象。在4 mm间隙下的相机记录显示,正流光在液体中的声速和超音速传播速度分别为1.3 km/s和2.8 km/s。从预击穿电流直接测量间隙小于1mm的击穿时间。得到了两个与时间滞后和间隙间距的线性关系,表明两个恒定的传播速度:0.18 km/s(亚音速)和1.3 km/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Positive streamer propagation and breakdown time lag in cyclohexane under micro-second rectangular pulse voltage
Electrical breakdown phenomena in cyclohexane for a point-to-plane gap configuration have been investigated using an image converter camera and a photooptical current measuring technique. Camera records for 4-mm gap spacing show that the sonic and supersonic propagating velocities of the positive streamer in the liquid are 1.3 km/s and 2.8 km/s, respectively. Time-to-breakdown for gap spacings of less than 1 mm was directly measured from prebreakdown current. Two linear relations to the time lag and gap spacing are obtained, which indicates two constant propagation velocities: 0.18 km/s (subsonic) and 1.3 km/s.<>
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