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Laser beam-plasma plume interaction during laser welding

机译:激光焊接过程中的激光束-等离子体羽相互作用

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摘要

Laser welding process is unstable because the keyhole wall performs oscillations which results in the oscillations of plasma plume over the keyhole mouth. The characteristic frequencies are equal to 0.5-4 kHz. Since plasma plume absorbs and refracts laser radiation, plasma oscillations modulate the laser beam before it reaches the workpiece. In this work temporary electron densities and temperatures are determined in the peaks of plasma bursts during welding with a continuous wave CO_2 laser. It has been found that during strong bursts the plasma plume over the keyhole consists of metal vapour only, being not diluted by the shielding gas. As expected the values of electron density are about two times higher in peaks than their time-averaged values. Since the plasma absorption coefficient scales as ~N_e~2/T~(3/2) (for CO_2 laser radiation) the results show that the power of the laser beam reaching the metal surface is modulated by the plasma plume oscillations. The attenuation factor equals 4-6% of the laser power but it is expected that it is doubled by the refraction effect. The results, together with the analysis of the colour pictures from streak camera, allow also interpretation of the dynamics of the plasma plume.
机译:激光焊接过程不稳定,因为锁孔壁会产生振荡,从而导致等离子体羽流在锁孔口上振荡。特征频率等于0.5-4 kHz。由于等离子羽流吸收并折射激光辐射,因此等离子振荡会在激光束到达工件之前对其进行调制。在这项工作中,在用连续波CO_2激光焊接期间,在等离子脉冲的峰值中确定了临时电子密度和温度。已经发现,在强脉冲期间,键孔上方的等离子羽流仅由金属蒸气组成,未被保护气体稀释。不出所料,峰值的电子密度大约是其时间平均值的两倍。由于等离子吸收系数的尺度为〜N_e〜2 / T〜(3/2)(对于CO_2激光辐射),结果表明,到达金属表面的激光束的功率受到等离子羽振动的调制。衰减系数等于激光功率的4-6%,但可以预期,折射系数会使它增加一倍。结果与对条纹相机彩色图片的分析一起,也可以解释等离子羽流的动力学。

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