• 副教授
  • 博士生导师
  • 硕士生导师
  • 电子邮箱:
  • 入职时间:2019-05-27
  • 学历:博士研究生毕业
  • 性别:
  • 学位:博士
  • 在职信息:在职
  • 所属院系:机械工程学院
  • 学科:机械工程
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团队关于NiTi合金电弧增材制造热影响区及过渡区调控的论文在Materials Characterization上发表!
  • 发布时间:2024-10-11
  • 文章标题:团队关于NiTi合金电弧增材制造热影响区及过渡区调控的论文在Materials Characterization上发表!
  • 内容:

    Modulation of characteristic zones in NiTi alloys fabricated via wire arc additive manufacturing

     

    https://doi.org/10.1016/j.matchar.2024.113694

     

    Abstract

    The application of additive manufacturing (AM) is gradually extending to different industrial sectors. Most additively manufactured metallic components typically exhibit an inherent columnar grain structure, the control of which has been a challenging issue. In this study, the microstructures of the characteristic zones (heat-affected zone and transition zone) were controlled by adjusting the deposition strategy and arc mode during wire arc additive manufacturing (WAAM) of NiTi alloy. Compared to the sample fabricated by cold metal transfer (CMT) mode, the oscillating (O) sample shows a higher tensile strength of 793.6 MPa, while the pulsed (P) sample shows a better elongation of 5.8%. The high strength of the O samples is mainly due to the significantly lower aspect ratio of its columnar grains, while fine equiaxed grain structure in the transition zone of the P samples is responsible for the better plasticity. Different microstructures in the characteristic zones can be tailored by combining the forced melt flow, pulse frequency and undercooling, which provides vast freedom for the associated mechanical properties control. Our work provides a new strategy to regulate the microstructure and thus mechanical properties of additively manufactured NiTi alloys.