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A self-consistent three dimensional laser keyhole welding model

机译:自洽三维激光钥匙孔焊接模型

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Modeling keyhole phenomena self-consistently and efficiently yet remains a major challenge. A unique approach involving heat transfer, fluid mechanics, phase transformation physics as well as tracking of the liquid/vapor interface is adopted in the present study. Computation has been carried out in three dimensions. A mathematical scheme called the fast level set technique has been utilized to capture the transient L/V interface. Inherent to this technique are: the ability to simulate merger and splitting of the L/V interface, and simultaneous updating of the surface normal and the curvature. The kinetic Knudsen layer has been considered to simulate evaporation phenomena and recoil pressure. Thermocapillary force and the recoil pressure have been coupled with the flow simulation. Energy distribution inside the keyhole is computed considering the multiple reflection phenomena. The effect of laser power on the surface temperature and keyhole shape is presented and discussed. The theoretical predictions are compared with experimental observations.
机译:建模锁孔现象自我始终如一,有效地仍然是一个重大挑战。在本研究中采用了一种涉及传热,流体力学,相变物理学以及液体/蒸气界面跟踪的独特方法。已经在三维中进行了计算。已经利用称为快速级别组技术的数学方案来捕获瞬态L / V接口。该技术固有是:模拟L / V接口的合并和分裂的能力,以及同时更新表面正常和曲率。动力学Knudsen层被认为是模拟蒸发现象和反冲压力。热量量和反冲压力已经与流动模拟相结合。考虑到多重反射现象,计算钥匙孔内的能量分布。提出和讨论了激光功率对表面温度和钥匙孔形状的影响。理论预测与实验观察结果进行了比较。

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