Abdiyan Fateme, McDermid Joseph R, Okigami Fernando, Pourbahari Bita, Macwan Andrew, Saenz de Miera Mirnaly, Langelier Brian, Arcuri Gabriel A, Zurob Hatem S
Department of Materials Science and Engineering, McMaster University, Hamilton, ON L8S 4L8, Canada.
Hexagon Manufacturing Intelligence, 46444 Hexagon Way, Novi, MI 48377, USA.
Materials (Basel). 2025 Mar 14;18(6):1291. doi: 10.3390/ma18061291.
Liquid metal embrittlement (LME) in Zn-coated advanced high-strength steels (AHSSs) is an increasing concern, particularly in automotive assembly, where it can cause early failure and reduce ductility during resistance spot welding (RSW). This study explores the impact of adding 0.2 wt% Mo on the LME susceptibility of 0.2C-2Mn-1.5Si AHSS through hot tensile testing, RSW, and advanced microstructural analyses, including atom probe tomography (APT) and transmission electron microscopy (TEM). The results suggest that Mo enhances resistance to LME, as evidenced by the increased tensile stroke from 2 mm in the case of the 0 Mo alloy and to 2.75 mm in the case of the 0.2 Mo sample. Also, the average crack length in the shoulder of the welded samples decreased from 109 ± 7 μm to 28 ± 3 μm by adding 0.2 wt% Mo to the base alloy. APT analysis revealed that, in the presence of Mo, there is increased boron (B) segregation at austenite grain boundaries, improving cohesion, while TEM suggested more diffusion of Zn into the substrate, facilitating the formation of Zn-ferrite. These findings highlight Mo's potential to reduce LME susceptibility of AHSS for automotive applications.
锌涂层先进高强度钢(AHSS)中的液态金属脆化(LME)日益受到关注,尤其是在汽车装配中,它会导致早期失效并降低电阻点焊(RSW)过程中的延展性。本研究通过热拉伸试验、电阻点焊以及先进的微观结构分析,包括原子探针断层扫描(APT)和透射电子显微镜(TEM),探讨了添加0.2 wt%钼对0.2C-2Mn-1.5Si AHSS的LME敏感性的影响。结果表明,钼增强了对LME的抗性,0钼合金的拉伸行程为2毫米,而0.2钼样品的拉伸行程增加到2.75毫米,这证明了这一点。此外,通过向基础合金中添加0.2 wt%的钼,焊接样品肩部的平均裂纹长度从109±7微米降至28±3微米。APT分析表明,在有钼的情况下,奥氏体晶界处的硼(B)偏析增加,提高了内聚力,而TEM表明锌更多地扩散到基体中,促进了锌铁素体的形成。这些发现突出了钼在降低汽车应用中AHSS的LME敏感性方面的潜力。