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首页> 外文期刊>Plasma Science, IEEE Transactions on >The Breakdown Characteristics of Single-Gap Pseudospark Discharge Under Nanosecond Pulsed Voltages
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The Breakdown Characteristics of Single-Gap Pseudospark Discharge Under Nanosecond Pulsed Voltages

机译:纳秒脉冲电压下单间隙伪火花放电的击穿特性

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In this paper, an experimental investigation of pseudospark discharge behaviors was conducted under nanosecond pulsed voltages using a flexible discharge chamber. The breakdown voltages of the pseudospark discharge gap were measured for a wide range of gas pressures, anode-cathode gap distances, and cathode aperture diameters to find the match of gap distance and cathode aperture diameter at a certain gas pressure with the nanosecond pulsed voltage. According to the experimental results, an empirical relationship was obtained. The roles of the parameters in the empirical relationship during the discharge were analyzed. The breakdown characteristics were also consistent with the Paschen’s law in the pseudospark under nanosecond pulsed voltages, when the gap distance was replaced by the effective gap distance. In the end, a possible reason was put forward to explain the difference between the empirical relationships obtained under dc voltages and nanosecond pulsed voltages.
机译:在本文中,使用柔性放电室在纳秒脉冲电压下进行了伪火花放电行为的实验研究。在宽范围的气压,阳极-阴极间隙距离和阴极孔径直径下测量准火花放电间隙的击穿电压,以找到在一定气压下间隙距离和阴极孔径与纳秒脉冲电压的匹配。根据实验结果,获得了经验关系。分析了放电过程中参数在经验关系中的作用。当用有效间隙距离代替间隙距离时,击穿特性也与纳秒脉冲电压下伪火花中的帕申定律一致。最后,提出了解释直流电压和纳秒脉冲电压下经验关系差异的可能原因。

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