Zou Jie, Xiang Huayang, Zhan Zhenfei, Zhuo Wenbo, Huang Li, Ji Yuxiang, Liu Qing
School of Mechanical and Electrical and Vehicle Engineering, Chongqing Jiaotong University, Chongqing 400074, China.
Materials Bigdata and Applications Division, Materials Academy Jitri, Suzhou 215131, China.
Materials (Basel). 2024 Dec 16;17(24):6149. doi: 10.3390/ma17246149.
Galvanized high-strength steel has emerged as a key focus in automotive lightweighting research. During resistance spot welding of galvanized steel, the phenomenon of liquid metal embrittlement (LME) can occur, which is characterized by the appearance of irregular cracks on the weld spot surface. However, the impact of LME cracks on the mechanical properties of joints remains unclear. This study investigates the LME phenomenon and its effects on the performance of spot-welded joints using galvanized QP980 steel as the subject. By combining theoretical analysis, experimental methods, and simulations, the formation and characteristics of LME cracks are explored through resistance spot welding experiments and elemental analysis. The influence of LME cracks on the static strength of joints is assessed through quasi-static tensile tests, fracture surface analysis, and theoretical calculations. Finite element simulations of the static tensile process reveal that LME cracks alter the stress-strain fields during joint failure. Additionally, the study examines how the location and size of LME cracks influence these effects. Finally, fatigue testing and fracture analysis of spot-welded joints demonstrate that LME cracks can negatively impact the fatigue life of joints.
镀锌高强度钢已成为汽车轻量化研究的一个关键重点。在镀锌钢的电阻点焊过程中,可能会出现液态金属脆化(LME)现象,其特征是焊点表面出现不规则裂纹。然而,LME裂纹对接头力学性能的影响仍不明确。本研究以镀锌QP980钢为研究对象,研究LME现象及其对点焊接头性能的影响。通过理论分析、实验方法和模拟相结合,通过电阻点焊实验和元素分析探索LME裂纹的形成和特征。通过准静态拉伸试验、断口分析和理论计算评估LME裂纹对接头静态强度的影响。静态拉伸过程的有限元模拟表明,LME裂纹在接头失效过程中改变了应力应变场。此外,该研究还考察了LME裂纹的位置和尺寸如何影响这些效应。最后,对点焊接头的疲劳试验和断裂分析表明,LME裂纹会对接头的疲劳寿命产生负面影响。