镁合金/镀铜、镀镍钢激光熔钎焊接头组织性能研究

    Microstructure and Properties of Laser Welding-brazing Joint of Magnesium Alloy and Copper, Nickel Plated Steels

    • 摘要: 采用AZ31镁合金焊丝对镁合金/镀Ni(Cu)钢进行激光熔钎焊研究,探讨Cu层和Ni层对激光熔钎焊接头微观组织及性能的影响。结果表明:在Q235钢表面不论是镀Cu层还是Ni层,激光熔钎焊接头宏观形貌较好。在Q235钢板上镀Cu层所得的焊接接头抗拉强度为145.4 MPa,达到镁合金强度的60.6%,相比于在Q235钢上镀Ni层所得的焊接接头,提高了20.8%。通过扫描电镜观察到镀Cu钢的界面处生成条絮状组织,而镀Ni钢界面处生成颗粒状组织。通过SEM和XRD分析了镀铜钢板接头的镁侧断口主要有CuMg2相、Cu3Al2相、Al5Mg11Zn4相,镀镍钢板的镁侧断口主要有MgNi2相、Al3Ni2相、Al0.58Mg0.42相。

       

      Abstract: The laser brazing of magnesium alloy/Ni(Cu) plated steel was carried out by using AZ31 magnesium alloy welding wire, and the effects of Cu layer and Ni layer on the microstructure and properties of laser welding brazed joints were discussed. The results indicate that whether the Cu layer or the Ni layer is plated on the surface of Q235 steel, the macroscopic morphology of the laser welded joint is good. The tensile strength of the welded joint obtained by plating Cu layer on the Q235 steel plate is 145.4 MPa, reaching 60.6% of the strength of the magnesium alloy. Compared with the welded joint obtained by plating Ni layer on Q235 steel, it is increased by 20.8%. Through scanning electron microscopy, it is observed that the flocculent structure is formed at the interface of Cu-plated steel, while the granular structure is formed at the interface of Ni-plated steel. Through SEM and XRD analysis, the fracture at the side of magnesium in the joint of copper plated steel plate mainly has CuMg2, Cu3Al2 and Al5Mg11Zn4 phases, and the fracture at the side of magnesium in the joint of nickel plated steel plate mainly has MgNi2, Al3Ni2 and Al0.58Mg0.42 phases.

       

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