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Effects of Nozzle Length and Process Parameters on Highly Constricted Oxygen Plasma Cutting Arc

机译:喷嘴长度和工艺参数对高压缩氧等离子切割弧的影响

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摘要

The influence of nozzle length and two process parameters (arc current, mass flow rate) on the plasma cutting arc is investigated. Modeling results show that nozzle length and these two process parameters have essential effects on plasma arc characteristics. Long nozzle torch can provide high velocity plasma jet with high heat flux. Both arc voltage and chamber pressure increase with the nozzle length. High arc current increases plasma velocity and temperature, enhances heat flux and augments chamber pressure and thus, the shock wave. Strong mass flow has pinch effect on plasma arc inside the torch, enhances the arc voltage and power, therefore increases plasma velocity, temperature and heat flux.
机译:研究了喷嘴长度和两个工艺参数(电弧电流,质量流率)对等离子切割电弧的影响。建模结果表明,喷嘴长度和这两个工艺参数对等离子弧特性具有重要影响。长喷嘴炬管可提供具有高热通量的高速等离子流。电弧电压和腔室压力都随着喷嘴长度的增加而增加。高电弧电流会增加等离子体速度和温度,增加热通量,并增加腔室压力,从而增加冲击波。强大的质量流量会对炬管内部的等离子弧产生挤压效应,从而提高电弧电压和功率,因此会增加等离子速度,温度和热通量。

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