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)
钛
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]
日期:2026-06-11
卷期号:19 (12): 2518-2518
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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