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Effects of anode and cathode surface treatments on vacuum breakdown between metal electrodes with 50-ns high voltage pulses

机译:阳极和阴极表面处理对具有50 ns高压脉冲的金属电极之间的真空击穿的影响

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Well diagnosed measurements of electrical breakdown between metal electrodes in vacuum have been made using a 1-MV, 50-ns pulse-generator-based test stand [1]. Results with bare, as-machined electrodes showed that cathode surface finish and material have little to no effect on the breakdown electric field. However, changing the AK gap did affect the breakdown field level, suggesting that the anode is involved in cathode turn on. Further tests showed that applying a carbon coating to the anode can dramatically decrease the breakdown field [2]. Here, we report on other anode and cathode surface treatments and how they can enhance or suppress breakdown. Polishing of the anode can prevent breakdown at certain field strengths and decrease the breakdown current at higher fields. Marring a small spot on a polished anode is shown to initiate cathode turn on at a location opposite that spot. The effects of other surface treatments such as metallic and dielectric coatings on anode and cathode surfaces will also be discussed.
机译:使用1 MV,50 ns脉冲发生器为基础的测试台[1],可以对真空中的金属电极之间的电击穿进行良好诊断的测量。裸露的加工电极的结果表明,阴极表面光洁度和材料对击穿电场几乎没有影响。但是,改变AK间隙确实会影响击穿电场水平,这表明阳极参与了阴极的导通。进一步的测试表明,在阳极上施加碳涂层可以显着减小击穿场[2]。在这里,我们报告了其他阳极和阴极表面处理以及它们如何增强或抑制击穿。阳极的抛光可以防止在某些磁场强度下击穿,并降低较高电场下的击穿电流。如图所示,在抛光的阳极上划出一个小斑点会在该点的相反位置启动阴极。还将讨论其他表面处理的效果,例如阳极和阴极表面的金属和介电涂层。

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