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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Investigation of transport phenomena and defect formation in pulsed laser keyhole welding of zinc-coated steels
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Investigation of transport phenomena and defect formation in pulsed laser keyhole welding of zinc-coated steels

机译:镀锌钢脉冲激光钥匙孔焊接中的传输现象和缺陷形成的研究

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摘要

Lasers are being used to weld zinc-coated steels due to high welding speed, high aspect ratio, and narrow heat affected zone. However, escape of high-pressure zinc vapour in the welding process can damage the weld pool continuity and cause large voids and serious undercuts in the final welds. In this paper, a mathematical model and the associated numerical techniques have been developed to study the transport phenomena and defect formation mechanisms in pulsed laser keyhole welding of zinc-coated steels. The volume-of-fluid (VOF) method is employed to track free surfaces. The continuum model is used to handle the liquid phase, the solid phase and the mushy zone of the metal. The enthalpy method is employed to account for the latent heat during melting and solidification. The transient heat transfer and melt flow in the weld pool during the keyhole formation and collapse processes are calculated. The escape of zinc vapour through the keyhole and the interaction between zinc vapour and weld pool are studied. Voids in the welds are found to be caused by the combined effects of zinc vapour-melt interactions, keyhole collapse and solidification process. By controlling the laser pulse profile, it is found that the keyhole collapse and solidification process can be delayed, allowing the zinc vapour to escape, which results in the reduction or elimination of voids. The good agreement between the model predictions and the experimental observations indicates that the proposed model lays a solid foundation for future study of laser welding of zinc-coated steels.
机译:由于高焊接速度,高长宽比和狭窄的热影响区,激光被用于焊接镀锌钢。但是,在焊接过程中高压锌蒸气的逸出会损坏焊池的连续性,并在最终焊缝中造成较大的空隙和严重的咬边。本文研究了数学模型和相关的数值技术,研究了镀锌钢脉冲激光锁孔焊接中的传输现象和缺陷形成机理。流体体积(VOF)方法用于跟踪自由表面。连续模型用于处理金属的液相,固相和糊状区。焓法用于解决熔化和凝固过程中的潜热。计算了在小孔形成和塌陷过程中焊缝池中的瞬态热传递和熔体流动。研究了锌蒸气通过锁孔逸出以及锌蒸气与焊缝之间的相互作用。发现焊缝中的空隙是由锌蒸气-熔体相互作用,锁孔塌陷和凝固过程共同作用引起的。通过控制激光脉冲轮廓,发现锁孔的塌陷和凝固过程可以被延迟,从而使锌蒸气逸出,从而减少或消除了空隙。模型预测与实验观察之间的良好一致性表明,所提出的模型为将来镀锌钢的激光焊接研究奠定了坚实的基础。

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