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The effect of plasma-gas swirl flow on a highly constricted plasma cutting arc

机译:等离子气体旋流对高度收缩的等离子切割电弧的影响

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摘要

Swirl gas is widely used in the plasma arc cutting industry for inducing better plasma column confinement and providing a more stable constricting arc. When the inlet gas swirl number increases, the maximum pressure location moves to the plenum chamber edge due to centrifugal force, and the minimum pressure location moves much closer to the axis. The difference between the maximum and minimum pressure increases with swirl number. The large pressure difference in the radial direction constricts the arc and leads to large current density and Ohm heating near the axis. This causes much higher temperature near the cathode. It is indicated that swirl gas accelerates cathode erosion for two reasons: increasing plenum chamber pressure and changing flow patterns in the vicinity of the cathode. It is also found that the gas with large swirl number leads the swirl velocity component to be larger at the cutting location according to angular momentum conservation. It has been suggested that this causes different bevel angles for the left and right edges of the cutting kerf.
机译:旋流气体广泛用于等离子弧切割行业,以产生更好的等离子柱约束并提供更稳定的收缩电弧。当进气旋流数增加时,最大压力位置会由于离心力而移动到增压室边缘,而最小压力位置会更靠近轴线。最大和最小压力之间的差随着旋流数而增加。径向上的较大压力差会限制电弧,并导致较大的电流密度和轴附近的欧姆发热。这导致阴极附近的温度高得多。结果表明,涡流气体加速阴极腐蚀的原因有两个:增加气室压力和改变阴极附近的流型。还发现,根据角动量守恒,具有大旋流数的气体导致在切割位置处的旋流速度分量变大。已经提出,这会导致切割切口的左边缘和右边缘具有不同的斜角。

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