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Surface Morphology Evolution of W-Ni-Fe Alloy Electrode Under Repetitive Pulsed Discharges

机译:重复脉冲放电下W-Ni-Fe合金电极的表面形态演化

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The conduction of the gas switch is accompanied by spark/arc discharge. The high temperature and current density of the plasma channel will cause erosion on the surface of the electrode material. In particular, in repetitive pulsed power systems, electrode erosion has a sizeable influence on the performance of the system. Recent research has proven the superior properties of W-Ni-Fe alloy over traditional W-Cu composites in spark gaps. Not only the resistance of arc erosion, but the operating characteristics were evidently improved when W-Ni-Fe alloy was applied. This paper focus on the erosion morphology evolution of W-Ni-Fe alloy electrodes in a spark gap. In the experiment, the electrodes were tested with 100 kA level pulsed discharges for 10,000 shots (~1.3 C of transferred charge per shot). Surface profiles of 4 pairs of 90WNiFe (90 wt.% of W), 93WNiFe (93 wt.% of W), 97WNiFe (97 wt.% of W), and 90WCu (90 wt.% of W) were measured. A group of parameters has been proposed to characterize the features of surface profiles. Evolution of surface morphology features was therefore analyzed based on those parameters.
机译:气体开关的导通伴随火花/电弧放电。等离子体通道的高温和电流密度将对电极材料表面造成腐蚀。特别地,在重复脉冲动力系统中,电极腐蚀对系统的性能具有相同的影响。最近的研究已经证明了在火花间隙中传统的W-Cu复合材料对W-Ni-Fe合金的优异特性。不仅当施加W-Ni-Fe合金时显着改善了电弧侵蚀的抵抗力。本文侧重于火花间隙中W-Ni-Fe合金电极的侵蚀形态演化。在实验中,用100ka水平脉冲放电测试电极10,000次(每次拍摄的转移电荷〜1.3℃)。 4对90wnife的表面型材(W),93wnife(v)的93wnife(v),97wnife(97wt%的w),90wcu(90wt%)。已经提出了一组参数来表征表面轮廓的特征。因此,基于这些参数分析了表面形态特征的演变。

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