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首页> 外文期刊>Optics & Laser Technology >Dynamic keyhole behavior and keyhole instability in high power fiber laser welding of stainless steel
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Dynamic keyhole behavior and keyhole instability in high power fiber laser welding of stainless steel

机译:不锈钢高功率光纤激光焊接动态钥匙孔行为及锁孔不稳定性

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摘要

A three-dimensional numerical model, considering the real-time multiple reflections of a laser beam, adiabatic bubble model and shear stress, was developed to study the dynamic keyhole behavior and keyhole instability in fiber laser welding of stainless steel. The inner dynamic keyhole behavior and weld defect formation were directly observed in a high resolution assisted by transparent glass. The numerical and experimental results showed that the keyhole width reached the quasi-steady state earlier than the keyhole depth did during fiber laser welding of stainless steel. Due to the large recoil pressure at rear keyhole wall caused by the irradiation of laser energy reflected by the bulge at the front keyhole wall, the rear keyhole wall was severely deformed at keyhole bottom and keyhole middle. The rear keyhole wall was collapsed due to the high surface tension pressure and hydrostatic pressure. The whole keyhole collapse was attributable to the capillary instability of the keyhole associated with large depth/width ratio and the strong flow of the bulges at the keyhole wall. When the laser power was increased, the keyhole depth/width ratio was increased, so the keyhole was more capillary instable. The average inclined angle of the front keyhole wall was decreased.
机译:三维数值模型,考虑了激光束,绝热气泡模型和剪切应力的实时多重反射,以研究不锈钢光纤激光焊接中的动态锁孔行为和锁孔不稳定性。在透明玻璃辅助的高分辨率中直接观察到内部动态钥匙孔行为和焊接缺陷形成。数值和实验结果表明,在不锈钢的光纤激光焊接期间,锁孔宽度比锁孔深度更早地达到了准稳态。由于由前钥匙孔壁上反射的激光能量照射引起的后匙孔壁的大的反冲压力,后匙孔壁在匙孔底部和匙孔中间严重变形。由于高表面张力压力和静水压力,后锁孔壁坍塌。整个钥匙孔塌陷可归因于钥匙孔的毛细管不稳定性,与锁孔壁处的凸起相关的孔孔和凸起的强流量。当激光功率增加时,锁孔深度/宽度比增加,因此钥匙孔更具毛细管不变。前钥匙孔壁的平均倾斜角度降低。

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