• 教授
  • 博士生导师
  • 硕士生导师
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  • 入职时间:2017-12-14
  • 学历:博士研究生毕业
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  • 学位:博士
  • 在职信息:在职
  • 毕业院校:巴黎高等矿业学院
  • 所属院系:机械工程学院
  • 学科:机械工程
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21级博士常天行关于异种合金增材制造的文章在J Mater Sci Technol上发表
  • 发布时间:2022-02-26
  • 文章标题:21级博士常天行关于异种合金增材制造的文章在J Mater Sci Technol上发表
  • 内容:

    Wire and arc additive manufacturing of dissimilar 2319 and 5B06 aluminum alloys

     

    https://doi.org/10.1016/j.jmst.2022.02.024

     

    Aluminum alloy is the most widely used light alloy at present. By combining different types of aluminum alloys, their functional properties can be expanded. In the present research, two components composed of 2319 (Al-6.5Cu) and 5B06 (Al-6.4Mg) dissimilar alloys were fabricated by wire and arc additive manufacturing (WAAM). The deposited component with the bottom half of 2319 and the top half of 5B06 exhibits better mechanical properties than its counterpart deposited vice versa. Its ultimate tensile strength, yield strength and elongation are 258.5 MPa, 139.3 MPa and 5.6 %, respectively, which are only slightly inferior to the mechanical properties of 2319 base metal. The results show that for both components, fracture occurred at a layer thickness above the interface layer during tensile test, regardless of the deposition order. It appears that the thermal stress due to long dwell time and the remelting of S-Al 2 CuMg phase are the main factors promoting crack initiation. Depending on the deposition order, cracks propagate either along the aggregated pores or strip θ-Al 2 Cu phase distributed along the grain boundary. By analyzing the heat input and selecting the appropriate depositing order, the strength of WAAM dissimilar aluminum alloys can be effectively improved through proper control of the microstructure and internal defects.