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Dissimilar Metal Welding of Steel to Al-Mg Alloy by Spot Resistance Welding

机译:采用点电阻焊接钢对铝合金的不同金属焊接

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We tried to join steel to Al-Mg alloy using a resistance spot welding method. The effect of Mg in Al-Mg alloy on the strength and the interfacial microstructure of the joint was investigated. Additionally, the effect of insert metal of commercially pure aluminum, which was put into the bonding interface, on the joint strength was examined. The obtained results were as follows. The cross-tensile strength of a joint between SS400 steel and commercially pure aluminum (SS400/Al) was high and fracture occurred in the aluminum base metal. However, the strength of a joint between SS400 and Al-Mg alloy was remarkably low and less than 30% of that of the SS400/Al joint. An intermetallic compound layer developed so thickly at the bonded interface of the SS400/Al-Mg alloy joint that the joint strength decreased. The intermetallic compound layer developed more thickly as Mg content in the Al-Mg alloy increased. Using insert metal of commercially pure aluminum containing little Mg successfully improved the strength of the SS400/Al-Mg alloy joint and the strength was equivalent to that of the base metal.
机译:我们试图使用电阻点焊法加入钢到Al-Mg合金。研究了Mg在Al-Mg合金中的作用对关节的强度和界面微观结构。另外,检查了将铝的嵌入金属的效果放入接合界面,在关节强度上进行。获得的结果如下。 SS400钢和商业纯铝(SS400 / A1)之间的关节的横拉伸强度高,铝基金属中发生断裂。然而,SS400和Al-Mg合金之间的关节的强度显着低且小于SS400 / Al接头的30%。在接合强度降低的SS400 / Al-Mg合金接头的粘合界面处产生如此厚的金属间化合物层。金属间化合物层在Al-Mg合金中的Mg含量越来越厚。使用含有小Mg的商业纯铝的插入金属成功地改善了SS400 / Al-Mg合金接头的强度,并且强度相当于基础金属的强度。

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