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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Weld pool flows during initial stages of keyhole formation in laser welding
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Weld pool flows during initial stages of keyhole formation in laser welding

机译:激光焊接中小孔形成初期的熔池流动

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摘要

Weld pool transport phenomena during the transition from conduction-mode laser spot welding to keyhole laser spot welding of titanium were studied by numerical simulation. A range of laser powers were simulated and temperature dependent evaporation recoil pressure and cooling were applied as boundary conditions on the weld pool surface. Simulation results predicted a complex time-varying flow pattern during weld pool development. The surface-normal flow at the weld pool centre oscillated between upwards and downwards during the simulation time due to interaction of competing effects of evaporation recoil and surface tension pressures and laser heating and evaporation cooling. The results show that the laser weld pool flow dynamics play a key role during the transition from conduction-mode laser welding to keyhole welding.
机译:通过数值模拟研究了钛合金从传导模式点焊到键孔激光点焊过渡过程中的熔池迁移现象。模拟了一系列激光功率,并将温度相关的蒸发反冲压力和冷却作为边界条件应用于焊池表面。仿真结果预测了焊缝池开发过程中复杂的时变流型。在模拟时间内,由于蒸发后坐力和表面张力压力以及激光加热和蒸发冷却的相互竞争作用的相互作用,焊池中心处的表面法向流动在上下波动。结果表明,激光焊池的流动动力学在从传导模式激光焊接到锁孔焊接的过渡过程中起着关键作用。

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