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Coupling Discharge Between Keyhole Plasma and Arc Plasma in Laser-Arc Welding of Mg Alloy

机译:镁合金激光电弧焊接中小孔等离子体与电弧等离子体的耦合放电

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This paper describes investigations on the coupling discharge process between laser keyhole plasma and arc plasma during laser-arc welding. The characteristics of single arc plasma and hybrid arc plasma in different locations were comparably estimated by spectral diagnosing. Together with the plasma behavior observation, the particle exchanges between laser keyhole plasma and arc plasma were analyzed. During laser-arc welding, the keyhole plasma acts as an excellent connector between arc plasma and workpiece, resulting in a concentration of electron flows. Coupling discharge leads to the difference in the local thermodynamic equilibrium (LTE) state along the column of the hybrid arc plasma. The keyhole part of the hybrid arc plasma possesses the smallest deviation from absolute LTE state, which benefits the transfer from electric energy to heat during welding.
机译:本文介绍了激光电弧焊过程中激光键孔等离子体与电弧等离子体之间耦合放电过程的研究。通过光谱诊断可比较估计不同位置的单电弧等离子体和混合电弧等离子体的特性。结合等离子体行为观察,分析了激光键孔等离子体和电弧等离子体之间的粒子交换。在激光电弧焊过程中,键孔等离子体可作为电弧等离子体与工件之间的极佳连接器,从而导致电子流集中。耦合放电导致沿着混合电弧等离子体的列的局部热力学平衡(LTE)状态不同。混合电弧等离子体的锁孔部分与绝对LTE状态的偏差最小,这有利于焊接过程中电能到热量的传递。

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