首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >A new approach to compute multi-reflections of laser beam in a keyhole for heat transfer and fluid flow modelling in laser welding
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A new approach to compute multi-reflections of laser beam in a keyhole for heat transfer and fluid flow modelling in laser welding

机译:一种计算小孔中激光束多次反射的新方法,用于激光焊接中的传热和流体流动建模

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摘要

It is widely accepted that laser reflections can play a critical role during keyhole laser welding. The energy concentration, the mask effects and the laser polarization can directly affect the molten pool dynamic. In this paper a new approach to compute laser reflections is proposed which consists of treating laser under its wave form by solving Maxwell's equations. The method has the advantage to be easily coupled with heat transfer and fluid flow equations and can be immediately transposable in any 2D, 2D axi or 3D configurations. The reliability and limits of this approach are discussed through different numerical examples. The complete model takes into account the three phases of the matter: the vaporized metal, the liquid phase and the solid base. To predict the evolution of these three phases, coupled equations of energy, continuity, momentum and Maxwell are solved. The liquid/vapour interface is tracked using the level-set method. All these physics are solved simultaneously with the commercial code COMSOL Multiphysics?. The calculated temperatures, velocities and free surface deformation are analysed. Examples of simulations leading to the formation of porosity are also presented. Finally, melt pool shapes evolution are compared to experimental macrographs.
机译:激光反射在锁孔激光焊接中起着至关重要的作用,这一点已被广泛接受。能量浓度,掩膜效应和激光偏振会直接影响熔池动态。本文提出了一种计算激光反射的新方法,该方法包括通过解决麦克斯韦方程组对激光进行波形处理。该方法的优点是易于与传热和流体流动方程式耦合,并且可以在任何2D,2D轴或3D配置中立即转换。通过不同的数值示例讨论了这种方法的可靠性和局限性。完整的模型考虑了物质的三个相:汽化金属,液相和固体碱。为了预测这三个阶段的演变,求解了能量,连续性,动量和麦克斯韦的耦合方程。使用水平设置方法跟踪液体/蒸气界面。使用商业代码COMSOL Multiphysics?可以同时解决所有这些物理问题。分析了计算出的温度,速度和自由表面变形。还提供了导致孔隙形成的模拟示例。最后,将熔池形状演变与实验宏观图进行比较。

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