微合金化焊丝强化1561铝合金焊缝机理研究

    Mechanism of 1561 Aluminum Alloy Weld Seam Strengthened by Using Microalloyed Wire

    • 摘要: 以1561铝合金成分为基础,通过联合添加Sc和Zr元素制备微合金化焊丝,采用手工TIG焊接3 mm厚1561铝合金板材。使用金相显微镜、扫描电镜、X射线衍射仪和透射电镜表征焊缝的显微组织,采用材料试验机评价接头的拉伸性能。结果表明:1561板材TIG焊缝中形成了等轴晶组织,平均晶粒尺寸为26.2μm;Mg原子全部固溶于焊缝,固溶度为7.00at%;焊缝中观察到平均尺寸为10.8 nm的Al3(Sc,Zr)析出相,主要分布于晶界附近。通过模型计算揭示强化机理,发现析出强化对屈服强度的贡献达到17.7%。与1561焊丝相比,使用微合金化焊丝焊接的1561板材TIG接头屈服强度提高了11.2%。

       

      Abstract: A novel mircoalloyed wire was prepared by adding Sc and Zr elements into the chemical composition of 1561aluminum alloy, then the TIG method was used to join 3 mm thick 1561 plate. Optical microscope, scanning electron microscope, X-ray diffractometer and transmission electron microscope were employed to characterize the microstructure of the weld, and the materials testing machine was utilized to test the tensile performance of the joints. The results show that equiaxed grain structure is formed in the 1561 TIG weld seam and the average grain size is 26.2 μm. All Mg atoms are dissolved into the weld with a solid solubility of 7.00at%. Al3(Sc, Zr) precipitates in the weld seam is distributed near the grain boundaries and the average size is 10.8 nm. It is revealed that the contribution of precipitation strengthening to the yield strength reaches 17.7% through model calculation. The yield strength of 1561 TIG weld using microalloyed wire is 11.2%higher than that with 1561 wire.

       

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