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Investigation of spatter occurrence in remote laser spiral welding of zinc-coated steels

机译:镀锌钢远程激​​光螺旋焊接中飞溅现象的研究

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This paper discusses the unique application of numerical modeling of remote laser spiral spot welding of zinc-coated steels to reduce spatter occurrence. A thermo-fluid process simulation model was developed to simulate the laser-material interaction, material melting, keyhole formation and molten pool dynamics occurring in remote laser spiral spot welding of zinc-coated steels. Based upon numerically calculated thermal profiles during welding, the instantaneous zinc vapor pressure between faying surfaces was estimated. It was found that high vapor pressure points correlated well with spattering events observed in high-speed videos taken of the molten pool during welding. Using the estimated zinc vapor pressure as an indicator of spatter occurrence, the welding schedule was redesigned to limit high zinc vapor pressure and rapid pressure increase for spatter prevention. The revised schedule was verified by physical testing and resulted in greatly reduced spatter. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文讨论了锌合金钢远程激光螺旋点焊数值模型在减少飞溅发生方面的独特应用。开发了一种热流体过程仿真模型,以模拟镀锌钢的远程激光螺旋点焊中发生的激光材料相互作用,材料熔化,键孔形成和熔池动力学。根据在焊接过程中通过数值计算得到的热曲线,可以估算搭接面之间的瞬时锌蒸气压。结果发现,高蒸气压点与在焊接过程中从熔池的高速录像中观察到的飞溅事件密切相关。使用估计的锌蒸气压作为飞溅物发生的指标,重新设计了焊接程序,以限制锌蒸气压过高和压力的快速升高以防止飞溅。通过物理测试验证了修订后的时间表,从而大大减少了飞溅。 (C)2019 Elsevier Ltd.保留所有权利。

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