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Analysis of Explosively Welded Aluminum-AZ31 Magnesium Alloy Joints

机译:铝-AZ31镁合金爆炸焊接的分析

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摘要

The joining of wrought magnesium alloy AZ31 and commercially pure aluminum Al 100 plates was performed using explosive welding technique. Several welds were made by changing the experimental parameters. Optical microscopy and scanning electron microscopy were employed to observe the morphological and microstructural variations at the interface boundary. The geometry of the interfacial profile varied from smooth to rippled form with increase in the level of kinetic energy delivered to the bonding zone. The microstructure at the boundary was free of porosity and showed unique diffusionless dissimilar bonding. Localized zones of solidified melt in some cases were observed in the vicinity of the bonding line of the wavy-interfaced welds. Elemental analysis revealed the complex intermixed microstructure of these regions, accompanying with compositional variation due to formation of the metastable intermetallic phase Al_2Mg. The bonding strength of the welds, evaluated through shear tests, confirmed the high quality of the joints produced. Based on the experimental results the lower limit of the welding parameters which ensure achieving a satisfactory joint is proposed.
机译:使用爆炸焊接技术将变形镁合金AZ31和商业纯铝Al 100板连接起来。通过改变实验参数进行了几次焊接。用光学显微镜和扫描电子显微镜观察界面边界处的形貌和微观结构变化。界面轮廓的几何形状从光滑形式到波纹形式,随着传递到结合区的动能水平的增加而变化。边界处的微结构没有孔隙,显示出独特的无扩散异种键合。在某些情况下,在波浪界面焊缝的粘结线附近观察到了凝固熔体的局部区域。元素分析揭示了这些区域的复杂的混杂微观结构,伴随着由于形成亚稳金属间相Al_2Mg而引起的成分变化。通过剪切测试评估的焊缝结合强度证实了所生产接头的高质量。根据实验结果,提出了保证令人满意的接头的焊接参数的下限。

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