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Effects of Magnetically Supported Laser Beam Welding of Aluminium Alloys

机译:铝合金磁力负载激光束焊的影响

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Systematic investigations of the influence of an external magnetic field on the seam cross-section in CO{sub}2 laser beam welding of aluminium alloys will be presented in this paper. It will be shown that, in dependence of the orientation of the magnetic field, the shape of the cross-section is changed and an increase of the cross-sectional area of up to 50% can be reached. In addition, the melt flow is stabilized in presence of the magnetic field, which results in less fluctuations of the cross-sectional area. Further systematic welding experiments with filler wire were performed within a magnetic field and, to intensify the magneto-fluid-dynamic forces, an external electric current was applied. During these experiments new effects were found, not noticed before. The most important one is the fact that melt can be pushed down or lifted up in dependence on the particular parameters. Whereas in magnetically supported welding with Nd:YAG lasers no significant effect could be observed in first experiments, it turned out that effects can be achieved similar to the results obtained with a CO{sub}2 laser when an external electric current is utilized. In order to visualize the weld-pool dynamics, thermo-graphic pictures and high-speed video observations were taken.
机译:本文将在本文中提出了系统研究外部磁场对铝合金CO {Sex 2激光束焊接煤层焊缝横截面的影响。结果表明,在诸如磁场的方向的方向上,可以达到横截面的形状,并且可以达到高达50%的横截面积的增加。另外,熔体流动在磁场的存在下稳定,这导致横截面积的波动较小。在磁场内进行填充丝的进一步系统焊接实验,以加强磁流动动力,施加外电流。在这些实验中,发现了新的效果,之前没有注意到。最重要的是,熔体可以按下或依赖于特定参数来推动或抬起。虽然在具有Nd的磁性支撑的焊接中:YAG激光器在第一次实验中没有显着效果,但是,它证明可以实现类似于在使用外部电流的CO {SUB} 2激光器获得的结果。为了可视化焊接池动态,采取了热图形图像和高速视频观察。

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