首页> 外文会议>International Congress on Applications of Lasers Electro-Optics >A THEORETICAL STUDY OF INFLUENCE OF ELECTROMAGNETIC STIRRING ON TRANSPORT PHENOMENA IN WIRE FEED LASER BEAM WELDING: Paper # Macro 403
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A THEORETICAL STUDY OF INFLUENCE OF ELECTROMAGNETIC STIRRING ON TRANSPORT PHENOMENA IN WIRE FEED LASER BEAM WELDING: Paper # Macro 403

机译:电磁搅拌影响在送丝激光束焊中运输现象的影响:纸#宏403

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The additional element from the filler wire in the laser beam welding is usually distributed inhomogeneously in the final weld due to the high solidification rate of weld pool. It has been found that the electromagnetic stirring produced by an external oscillating magnetic field can enhance the material mixing in the weld pool to achieve a more uniform element distribution. However, the magnetic field has a highly non-linear and multi-coupled interaction with the weld pool behavior, which makes the quantitative explanation of the physical mechanism difficult. In this study, the effect of electromagnetic stirring on the transport phenomena in the wire feed laser beam welding is investigated by a numerical modelling. A 3D transient multi-physical model considering the magnetohydrodynamics, heat transfer, fluid flow, keyhole dynamics and element transport is developed. The multiple reflections and the Fresnel absorption of the laser on the keyhole wall are calculated using the ray tracing method. The numerical results show that a Lorentz force produced by the oscillating magnetic field and its induced eddy current gives significant influence on the transport phenomena in the molten pool. The forward and downward flow is enhanced by the electromagnetic stirring, which homogenizes the distribution of the additional elements from a nickel-based filler wire in a steel weld pool. The numerical results show a good agreement with the high-speed images of the molten pool, the fusion line from the optical micrograph and the element distribution from the energy dispersive X-ray spectroscopy. This work provides a physical base for the electromagnetic-controlled laser beam welding and some guidance for the selection of electromagnetic parameters.
机译:来自激光束焊接中的填充丝的附加元件通常由于焊接池的高凝固速率而在最终焊缝中分布在最终焊缝中。已经发现,由外部振荡磁场产生的电磁搅拌可以增强焊接池中的材料混合以实现更均匀的元素分布。然而,磁场具有与焊接池行为高度非线性和多耦合的相互作用,这使得对困难的物理机制的定量解释。在该研究中,通过数值建模研究了电磁搅拌对送丝激光束焊接中的运输现象的影响。考虑磁性流体动力学,传热,流体流动,锁孔动力学和元素传输的3D瞬态多物理模型。使用光线跟踪方法计算激光在钥匙孔壁上的多反射和菲涅耳吸收。数值结果表明,由振荡磁场和其诱导涡流产生的洛伦兹力对熔池中的运输现象产生了显着的影响。通过电磁搅拌增强前向和向下流动,其使附加元件的分布从钢焊接池中的镍基填充线均匀化。数值结果表明,与熔池的高速图像,来自光学显微照片的融合线和来自能量分散X射线光谱的元素分布的良好一致。这项工作为电磁控制激光束焊接提供了物理基础,以及选择电磁参数的一些指导。

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