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Influence of magnetic field orientation on molten pool dynamics during magnet-assisted laser butt welding of thick aluminum alloy plates

机译:厚铝合金板磁辅助激光对焊期间磁场取向对熔池动力学的影响

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摘要

An externally applied magnetic field has been proved effective in controlling the molten flow behavior during the laser beam welding. This paper reveals how a magnetic field applied in different orientations influences the weld pool dynamics during the full-penetration laser butt welding of thick aluminum alloy plates. A multi-physics coupling model was developed and numerically solved by considering the electromagnetic interaction between static magnetic field and magnetofluid. The dynamic and electromagnetic information within the weld pool were predicted and comparatively analyzed. The results show that Lorentz force and Hartmann effect induced in magnet-assisted weld pool are quite sensitive to magnetic field direction. The horizontally directed magnetic field leads to limited Hartmann effect by inddcing additional molten vortexes, while the field aligned vertically to aluminum surface can obviously reduce the molten flow velocity and weaken the Marangoni convection. The work can provide a reference in optimizing the operating parameters when an electromagnetic system is employed to improve the welding quality. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经证明了外部施加的磁场在激光束焊接期间控制熔融流动性有效。本文揭示了在厚铝合金板的全渗透激光焊接期间应用于不同取向的磁场如何影响焊接池动态。通过考虑静态磁场和磁流体之间的电磁相互作用,开发了多物理耦合模型和数值解决。预测焊接池内的动态和电磁信息和相对分析。结果表明,磁辅助焊接池中诱导的洛伦兹力和哈特曼效应对磁场方向非常敏感。水平定向的磁场通过逼近额外的熔融涡流来导致有限的Hartmann效果,而垂直于铝表面排列的场可以明显降低熔融流速并削弱Marangoni对流。该工作可以在采用电磁系统以提高焊接质量时优化操作参数提供参考。 (c)2018年elestvier有限公司保留所有权利。

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