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首页> 外文期刊>Journal of Materials Processing Technology >The influence of magnetic field orientation on metal mixing in electromagnetic stirring enhanced wire feed laser beam welding
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The influence of magnetic field orientation on metal mixing in electromagnetic stirring enhanced wire feed laser beam welding

机译:磁场取向对电磁搅拌中金属混合的影响增强丝网激光束焊接

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摘要

The application of the electromagnetic stirring from an oscillating magnetic field can improve the metal mixing in wire feed laser beam welding. However, the extra parameters introduced in this technique make the selection of an optimal combination of process parameters more difficult. In the current study, besides the commonly concerned magnetic flux density and frequency, the influence of the magnetic field orientation (magnetic field angle) on the transport of filler metal is studied numerically and experimentally. Ex-situ X-ray fluorescence spectrometer measurements are used to map the metal mixing in the final weld. A three-dimensional transient multi-physical model is developed to reveal the deeper physical essence, considering the coupling between heat transfer, fluid flow, keyhole dynamics, element transport and magnetohydrodynamics. The spatial distribution of the laser energy on the keyhole wall is calculated by a ray tracing algorithm. The results show that the magnetic field with smaller angle with respect to the transverse direction provides better penetration capacity, and its stirring effect can reach the lower part of the molten pool. Therefore, the smaller magnetic field angle produces better metal mixing. A constant downward flow is formed at the lower part of the molten pool when magnetic field of 10 degrees angle is applied, which brings the filler metal to the root region. As the magnetic field angle increases to 40 degrees, the beneficial downward flow changes into a constant upward flow, resulting in a concentration of the filler metal in the upper region. This study provides further insight of the underlying physics in the electromagnetically enhanced laser beam welding, which may guide the optimization of parameters to achieve property homogeneity or to avoid potential defects.
机译:在送丝激光束焊接中,应用振荡磁场的电磁搅拌可以改善金属的混合。然而,该技术中引入的额外参数使得工艺参数的最佳组合的选择更加困难。在当前的研究中,除了通常关注的磁通密度和频率外,还通过数值和实验研究了磁场方向(磁场角)对填充金属传输的影响。非现场X射线荧光光谱仪测量用于绘制最终焊缝中的金属混合。考虑到传热、流体流动、小孔动力学、单元输运和磁流体动力学之间的耦合,建立了一个三维瞬态多物理模型,以揭示更深层的物理本质。利用光线追踪算法计算了激光能量在小孔壁上的空间分布。结果表明,与横向成较小角度的磁场具有更好的穿透能力,其搅拌效果可以达到熔池下部。因此,较小的磁场角产生更好的金属混合。当施加10度角的磁场时,在熔池下部形成恒定的向下流动,从而将填充金属带到根部区域。随着磁场角度增加到40度,有益的向下流动转变为恒定的向上流动,导致填充金属在上部区域集中。这项研究为电磁增强激光束焊接的基本物理特性提供了进一步的了解,这可能会指导参数的优化,以实现性能均匀性或避免潜在缺陷。

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