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Porosity Formation and Prevention in Pulsed Laser Welding

机译:脉冲激光焊接中的孔隙形成与预防

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摘要

Porosity has been frequently observed in solidified, deep penetration pulsed laser welds. Porosity is detrimental to weld quality. Our previous study shows that porosity formation in laser welding is associated with the weld pool dynamics, keyhole collapse, and solidification processes. The objective of this paper is to use mathematical models to systematically investigate the transport phenomena leading to the formation of porosity and to find possible solutions to reduce or eliminate porosity formation in laser welding. The results indicate that the formation of porosity in pulsed laser welding is caused by two competing factors: one is the solidification rate of the molten metal and the other is the backfilling speed of the molten metal during the keyhole collapse process. Porosity will be formed in the final weld if the solidification rate of the molten metal exceeds the backfilling speed of liquid metal during the keyhole collapse and solidification processes. Porosity formation was found to be strongly related with the depth-to-width aspect ratio of the keyhole. The larger the ratio, the easier porosity will be formed, and the larger the size of the voids. Based on these studies, controlling the laser pulse profile is proposed to prevent/eliminate porosity formation in laser welding. Its effectiveness and limitations are demonstrated in the current studies. The model predictions are qualitatively consistent with reported experimental results.
机译:在凝固的深熔深脉冲激光焊缝中经常观察到孔隙率。孔隙率不利于焊接质量。我们之前的研究表明,激光焊接中的孔隙率形成与熔池动力学、锁孔塌陷和凝固过程有关。本文的目的是利用数学模型系统地研究导致孔隙形成的传输现象,并找到减少或消除激光焊接中孔隙形成的可能解决方案。结果表明,脉冲激光焊接中气孔的形成是由两个相互竞争的因素引起的:一个是熔融金属的凝固速率,另一个是锁孔塌陷过程中熔融金属的回填速度。在锁孔塌陷和凝固过程中,如果熔融金属的凝固速度超过液态金属的回填速度,则最终焊缝中会形成孔隙率。孔隙率的形成与锁孔的深宽纵横比密切相关。比率越大,孔隙率越容易形成,空隙的尺寸越大。基于这些研究,提出了控制激光脉冲轮廓以防止/消除激光焊接中孔隙率形成的方法。目前的研究证明了其有效性和局限性。模型预测与报告的实验结果在质量上一致。

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