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Dissimilar laser welding of an AA6022-AZ31 lap-joint by using Ni-interlayer: Novel beam-wobbling technique, processing parameters, and metallurgical characterization

机译:使用Ni-Interlayer的AA6022-AZ31圈接头的不同激光焊接:新颖的梁摇摆技术,加工参数和冶金表征

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摘要

In this article, the weldability of dissimilar lap joints between 2 mm thick sheets of AA6022 aluminum (bottom) and AZ31 magnesium alloys (upper) was studied using a fiber laser with a wobbling scanner. The effects of laser beam wobbling parameters, laser power, traveling speed, and the presence of a pure nickel interlayer (similar to 0.1 mm thickness) is evaluated based on the microstructures and phases produced. The experimental results revealed dissimilar joint formation is highly dependent on inter-mixing, as well as fusion zone dimensions which control Al- and Mg-rich interaction zones that vary with laser power. Sound dissimilar joints were only produced by penetrating the Mg-rich interaction zone into the aluminum alloy. Joint formation benefited from suppression of Al-Mg chemical reactions using a Ni-interlayer, providing more well-dispersed and more benign phases compared to Al-Mg intermetallics at the interface during welding. The application of laser beam wobbling on a circular path with diameter of similar to 0.4 mm and frequency of 1000 Hz served to reduce cracks and enhanced materials intermixing.
机译:在本文中,使用用带有摆动扫描仪的光纤激光研究了2mm厚的AA6022铝(底部)和AZ31镁合金(上)的不同液体厚度接头的可焊性。基于产生的微观结构和相,激光束摇动参数,激光功率,行驶速度和纯镍层间(类似于0.1mm厚度)的效果。实验结果显示出不同的关节形成高度依赖于混合间,以及控制富含激光功率的富含Mg的相互作用区域的融合区尺寸。声音不同的关节仅通过穿透富含Mg的相互作用区域来生产成铝合金。与焊接期间界面处的界面处的Al-Mg金属金属间相比,与Ni中间层抑制抑制Al-Mg化学反应的关节形成。激光束摇动在直径与0.4mm的圆形路径上的应用和1000Hz的频率用于减少裂缝和增强材料混合。

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