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首页> 外文期刊>IEEE Transactions on Plasma Science >The influence of contact surface microstructure on vacuum arc stability and voltage
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The influence of contact surface microstructure on vacuum arc stability and voltage

机译:接触面微观结构对真空电弧稳定性和电压的影响

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摘要

The authors present the results of DC vacuum arc lifetime and voltage measurements for contacts with different surface microstructures. This was realized by treating the contact surface with emery paper of varying roughness. The contact surface microstructure was found to have a large effect on the DC arc lifetime (several tens of times difference at the most) and arc voltage (30% difference at the most). The mechanism of the surface microstructure effect on DC arc stability was analyzed and is explained preliminarily. The rougher the contact surface is, the longer the arc lifetime and the more stable. The arc itself has a tendency to condition the surface in a way that is unfavorable for a sustained arc lifetime. The crater size for a rough surface is smaller than for a smooth one. The rougher the contact is, the lower the arc voltage (both DC and HF components). The arc erosion has a tendency to increase the arc voltage. It is probable that type I cathode spots (fast motion, small crater size) correspond not only to the surface contamination, but also to the surface roughness.
机译:作者介绍了具有不同表面微观结构的触点的直流真空电弧寿命和电压测量结果。这是通过用粗糙度不同的砂纸处理接触表面来实现的。发现接触表面的微观结构对直流电弧寿命(最多相差几十倍)和电弧电压(最多相差30%)有很大的影响。分析并初步解释了表面微观结构对直流电弧稳定性的影响机理。接触面越粗糙,电弧寿命越长且越稳定。电弧本身倾向于以不利于持续电弧寿命的方式调节表面。粗糙表面的弹坑尺寸小于光滑表面的弹坑尺寸。接触点越粗糙,电弧电压(直流分量和高频分量)越低。电弧腐蚀具有增加电弧电压的趋势。 I型阴极斑点(快速运动,小弹坑尺寸)很可能不仅与表面污染相对应,而且与表面粗糙度相对应。

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