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首页> 外文期刊>Japanese journal of applied physics >Investigation of erosion mechanism of tungsten-based electrode in multiphase AC arc by high-speed visualization of electrode phenomena
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Investigation of erosion mechanism of tungsten-based electrode in multiphase AC arc by high-speed visualization of electrode phenomena

机译:高速可视化电极现象研究钨基电极在多相交流电弧中的腐蚀机理

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摘要

Electrode phenomena in a multiphase AC arc were successfully visualized using a high-speed observation system with a bandpass filter system to understand the erosion mechanisms of tungsten-based electrodes due to the droplet ejection and electrode evaporation. The obtained results indicated that both droplet ejection and electrode evaporation contributed to the electrode erosion in the multiphase AC arc. The erosion by droplet ejection mainly occurred during the cathodic period, while electrode evaporation mainly occurred during the anodic period. The rates of erosion by droplet ejection and evaporation were estimated to be 6 and 3 g/min, respectively, when the arc current was 100 A. The results of an evaluation of the possible forces acting on the electrode tip suggested that the electromagnetic force was the dominant force in the cathodic period, resulting in droplet ejection. (C) 2016 The Japan Society of Applied Physics
机译:使用带通滤波器系统的高速观察系统成功地可视化了多相交流电弧中的电极现象,以了解由于液滴喷射和电极蒸发而导致的钨基电极的腐蚀机理。所得结果表明,在多相交流电弧中,液滴的喷射和电极的蒸发都是电极腐蚀的原因。液滴喷射引起的腐蚀主要发生在阴极期间,而电极蒸发主要发生在阳极期间。当电弧电流为100 A时,通过液滴喷射和蒸发产生的腐蚀速率估计分别为6 g / min和3 g / min。对作用在电极头上的可能力的评估结果表明,电磁力为阴极期间的主导力,导致液滴喷射。 (C)2016年日本应用物理学会

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