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Spark gap erosion in Marx generators for electroporation

机译:马克思电穿孔发生器中的火花隙腐蚀

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In industrial-size electroporation devices, in which longevity is of concern, it is advantageous to use the Marx-generator class pulse sources. As these devices may be deployed for long periods of time, the erosion of the Marx generator spark gaps is of considerable importance, and can be considered to be a fundamental design criterion. The paper describes experiments on the erosion of a single spark gap. The spark gap switches an RLC pulse circuit. By pressure variation of the surrounding nitrogen atmosphere the ignition voltage of the spark gap has been varied. The shape of the current pulse was chosen to be aperiodically damped in order to investigate the wear of the electrodes for anode and cathode independently. Peak currents were set by the value of the load resistor whereby the pulse widths lay in the order of 2 to 5 µs. Spark gap erosion has been measured by weighting the electrodes before and after an experimental run by means of an analytical balance. Different erosion characteristics for anode and cathode have been found.
机译:在使用寿命长的工业规模电穿孔设备中,使用马克思发生器级脉冲源是有利的。由于这些设备可能需要长时间部署,因此对马克思发电机火花隙的侵蚀非常重要,可以认为是基本的设计标准。本文描述了单个火花隙腐蚀的实验。火花隙切换RLC脉冲电路。通过周围氮气气氛的压力变化,火花隙的点火电压已经改变。选择电流脉冲的形状进行非周期性阻尼,以便独立研究阳极和阴极电极的磨损。峰值电流由负载电阻的值设定,脉冲宽度约为2至5 µs。通过在实验运行之前和之后通过分析天平对电极进行称重来测量火花隙腐蚀。已经发现阳极和阴极具有不同的腐蚀特性。

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