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Effects of Pulse Parameters on Weld Microstructure and Mechanical Properties of Extra Pulse Current Aided Laser Welded 2219 Aluminum Alloy Joints

机译:脉冲参数对额外脉冲电流辅助激光焊接2219铝合金接头的焊接组织和力学性能的影响

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摘要

In order to expand the application range of laser welding and improve weld quality, an extra pulse current was used to aid laser-welded 2219 aluminum alloy, and the effects of pulse current parameters on the weld microstructure and mechanical properties were investigated. The effect mechanisms of the pulse current interactions with the weld pool were evaluated. The results indicated that the coarse dendritic structure in the weld zone changed to a fine equiaxed structure using an extra pulse current, and the pulse parameters, including medium peak current, relatively high pulse frequency, and low pulse duty ratio benefited to improving the weld structure. The effect mechanisms of the pulse current were mainly ascribed to the magnetic pinch effect, thermal effect, and electromigration effect caused by the pulse current. The effect of the pulse parameters on the mechanical properties of welded joints were consistent with that of the weld microstructure. The tensile strength and elongation of the optimal pulse current-aided laser-welded joint increased by 16.4% and 105%, respectively, compared with autogenous laser welding.
机译:为了扩大激光焊接的应用范围,提高焊接质量,采用了额外的脉冲电流辅助2219铝合金的激光焊接,研究了脉冲电流参数对焊接组织和力学性能的影响。评估了脉冲电流与焊池相互作用的影响机理。结果表明,焊接区域中的粗大树枝状结构在增加脉冲电流的作用下转变为细等轴结构,脉冲参数包括中等峰值电流,相对较高的脉冲频率和较低的脉冲占空比有利于改善焊接结构。 。脉冲电流的影响机理主要归因于脉冲电流引起的磁捏效应,热效应和电迁移效应。脉冲参数对焊接接头力学性能的影响与焊接显微组织一致。与自生激光焊接相比,最佳脉冲电流辅助激光焊接接头的抗拉强度和伸长率分别提高了16.4%和105%。

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