A pulsed electrical breakdown in n-hexane under uniform field

V. F. Klimkin
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引用次数: 4

Abstract

A pulsed electrical breakdown in n-hexane under quasi-uniform field with E approximately 0.9-2.1 MV/cm has been studied using high-speed laser schlieren recording, statistical analysis, and the effect of external pressure. Three mechanisms of this breakdown differing in their structures are shown to exist. One corresponds to the electric discharge from a cathode and the two others are due to that from an anode. The pressure effect on the breakdown mechanism is radically different. The analysis of experimental data shows that the occurrence of a certain critical time period and a certain critical interelectrode distance is due to the transition from the cathode breakdown mechanism (bubble mechanism) to the anode discharge involving elements of both bubble and ionization breakdown mechanisms. In the nanosecond range at increased pressures, the ionization mechanism of anode breakdown predominates.<>
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均匀场下正己烷的脉冲电击穿
利用高速激光纹影记录、统计分析和外部压力的影响,研究了正己烷在准均匀场下的脉冲电击穿,击穿的E约为0.9 ~ 2.1 MV/cm。这种分解的三种机制在其结构上是不同的。一个对应于阴极的放电,另外两个对应于阳极的放电。压力对击穿机制的影响是完全不同的。实验数据分析表明,临界时间段和临界电极间距离的发生是由于阴极击穿机制(气泡机制)向阳极放电过渡,其中既有气泡击穿机制,也有电离击穿机制。在纳秒范围内,在增加的压力下,阳极击穿的电离机制占主导地位。
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