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Study of the effect of low-power pulse laser on arc plasma and magnesium alloy target in hybrid welding by spectral diagnosis technique

机译:利用光谱诊断技术研究低功率脉冲激光对混合焊接中电弧等离子体和镁合金靶的影响

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摘要

In order to study the effect of laser pulses on arc plasma and target metal in the hybrid welding process, the spectra of the plasmas in the welding process of magnesium alloys are analysed in this paper. The acquisition system of plasma spectra is set up and the spectral lines of welding plasma are acquired. Compared with tungsten-inert gas (TIG) welding, the intensities of the spectral lines of magnesium increase sharply while those of Ar decrease for strong evaporation and ionization of magnesium alloys in low-power laser/arc hybrid welding. The electron temperature and density are estimated by the Boltzmann plot method and the Stark broadening effect. The result shows that the electron temperature of arc plasma in the hybrid welding process is much lower than that in TIG welding, especially in the laser beam-affected zone. In contrast, the electron density of the plasma is enhanced. The influences of laser parameters on electron temperature are also studied. The changes in electron temperature and density indicate that the effect of laser pulse on the target metal is the dominant factor influencing the electron temperature and density in low-power laser/arc hybrid welding.
机译:为了研究在混合焊接过程中激光脉冲对电弧等离子体和靶金属的影响,本文分析了镁合金焊接过程中等离子体的光谱。建立了等离子体光谱的采集系统,获得了焊接等离子体的光谱线。与钨极惰性气体保护焊相比,低功率激光/电弧混合焊接中镁合金的强蒸发和电离使镁的谱线强度急剧增加,而氩的谱线强度却减小。电子温度和密度通过玻尔兹曼图法和斯塔克展宽效应估计。结果表明,在混合焊接过程中,电弧等离子体的电子温度远低于TIG焊接,特别是在激光束影响区域。相反,等离子体的电子密度增加。还研究了激光参数对电子温度的影响。电子温度和密度的变化表明,激光脉冲对目标金属的影响是影响低功率激光/电弧混合焊接中电子温度和密度的主要因素。

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