Interfacial Characteristics of Ti/Steel Joints Welded by Resistance Spot Welding with Bi-Interlayer of Nb-Ni

点焊 焊接 材料科学 金属间化合物 复合材料 扩散焊 冶金 电阻焊 极限抗拉强度 微观结构 接头(建筑物) 热影响区 闪光焊 扩散层 剪切(地质) 冷焊 图层(电子) 搭接接头 镦粗焊 抗剪强度(土壤) 电极 填充金属 开裂 电弧焊 扩散焊 焊接接头 激光束焊接 拉伸试验
作者
Tong Wu,Xiaowen Li,Yaqiang Wang,Nannan Wang,Ranfeng Qiu,ShengXiong Tang
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:19 (12): 2518-2518
标识
DOI:10.3390/ma19122518
摘要

Resistance spot welding was performed to join 2 mm thick TA2 titanium plate and Q235 steel plate using an Nb-Ni bi-interlayer. The microstructure of the interfacial zone was observed and analyzed, and the tensile shear load of the joint was evaluated. The joints obtained display double-nugget-type and penetration-type joints. For the double-nugget-type joint, Ni6Nb7 and Ni3Nb layers have been formed in the region between the residual Nb layer and the steel, while for the penetration-type joint, a mixed nugget composed of Ti-Fe intermetallic compounds was formed at the center zone of the weld. As the welding current increased or welding time extended, the tensile shear load of the joint exhibited a trend of initially increasing and subsequently decreasing. When a bi-interlayer consisting of 0.05 mm-Nb and 0.04 mm-Ni is utilized, the tensile shear load of the joint reached the maximum value of approximately 8.7 kN under the condition of 11 kA welding current, 300 ms welding time, and 3 kN electrode pressure. The results indicate that the Nb layer can effectively impede the cross-interface diffusion of Ti atoms and Ni-Nb intermetallic compound layers are formed in the interface region in the case that the interlayer thickness and the welding parameters are well-matched when resistance spot welding of Ti/steel is performed with a bi-interlayer of Nb-Ni.
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