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Observation of an anode spot shell at the high-current vacuum arc

机译:在大电流真空电弧下观察阳极点壳

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Stable and bright shells were observed at the anode of a high-current vacuum arc burning for 10 ms at current of up to 15 kA in peak. A shell covers a hot spot at the anode. Substance inside a shell is dark. Light from a shell is emitted mostly by neutral atoms. A distinct bright shell is surrounded by substance emitting light in ion lines. Appearance of shells looks to be a result of interaction between cathode and anode jets. Shell dimensions depend inversely on the arc current. Anode spot shells were recognized on copper-chromium electrodes to be a stable object. However, similar shells on pure copper are much less stable and appear only at heat-insulated liquid protrusions and droplets flying in a gap. This fact indicates that the evaporation rate plays a key role in appearance of shells. In addition, evaporation rate of a plane copper-chromium surface under high-current vacuum arc is supposed to be as high as that of heat-insulated liquid copper protrusions and droplets.
机译:在峰值电流高达15 kA的大电流真空电弧燃烧10 ms的阳极处观察到稳定而明亮的外壳。外壳覆盖阳极上的热点。外壳内的物质是深色的。来自壳的光主要由中性原子发射。明亮的外壳被离子线中发射光的物质所包围。壳的外观似乎是阴极和阳极射流之间相互作用的结果。外壳尺寸反过来取决于电弧电流。铜铬电极上的阳极斑点壳被认为是稳定的物体。但是,纯铜上的类似壳的稳定性要差得多,并且仅出现在隔热的液体突出处和在间隙中飞散的液滴处。这一事实表明,蒸发速率在壳的外观中起关键作用。另外,高电流真空电弧下的平面铜-铬表面的蒸发速率被认为与绝热的液态铜突起和液滴的蒸发速率一样高。

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