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Microstructure and Properties Analysis of Laser Welding and Laser Weld Bonding Mg to Al Joints

机译:镁与铝的激光焊接及激光焊接结合的组织和性能分析

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摘要

Laser welding and laser weld bonding (LWB) Mg to Al joints were obtained in different welding parameters. The penetrations and microstructures of these kinds of joints changed with the increasing of pulse laser power density. Both laser welding and LWB Mg to Al joints with the best properties were obtained in conductive welding mode. In laser welding Mg to Al joint, several intermetallics formed at the bottom of the fusion zone, where some cracks were generated. In laser weld bonding Mg to Al joint, the decomposition of the adhesive caused a baffle effect on the diffusion between the Mg and the Al. The intermetallics formed in the middle of the fusion zone, and the thickness of Mg17Al12 layer was approximately 10 to 20 μm and the Mg2Al3 layer was less than 5 μm, which influenced the property of the joint less.
机译:在不同的焊接参数下,获得了铝焊接头的激光焊接和激光焊接粘结(LWB)镁。随着脉冲激光功率密度的增加,这类接头的熔深和组织变化。在导电焊接模式下,获得了具有最佳性能的激光焊接和LWB镁铝接头。在将Mg与Al接头激光焊接时,在熔合区的底部形成了几种金属间化合物,并在其中产生了一些裂纹。在将Mg激光焊接到Al接头上时,粘合剂的分解对Mg和Al之间的扩散产生了阻碍作用。在熔合区中间形成金属间化合物,Mg 17 Al 12 层的厚度约为10至20μm,Mg 2 Al 3 层小于5μm,对接头性能的影响较小。

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