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Orientation dependence of mechanical property and microstructure in molybdenum alloy single crystals at the high strain rate

  • Benqi Jiao
  • , Weizhong Han
  • , Zhenchuan Li
  • , Tao Yin
  • , Zhongwu Hu
  • , Weiwei Zhang
  • , Yanchao Li
  • , Wen Zhang
  • , Hailong Xu
  • , Jianfeng Li
  • Xi'an Jiaotong University
  • Northwest Institute for Nonferrous Metal Research
  • Northeastern University China

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

The dynamic mechanical behavior and microstructure evolution of molybdenum single crystals with different orientations at the high strain rate have been investigated and disclosed comprehensively. The dynamic mechanical behavior exhibits a strong crystal orientation dependence, with the <111> orientation showing the highest average flow stress and work hardening rate, followed by the <110> orientation, with the <112> orientation being the lowest. To clarify the orientation dependence of microstructure evolution, EBSD and TEM analyses were performed. The dislocations struggle to cross the boundaries of dislocation cells for the <111>-oriented single crystal, resulting in a high work hardening rate, which is mainly manifested as adiabatic shear bands and a small number of twins. For the <110> orientation, the dislocation is blocked by dislocation walls, and more twins are generated to accommodate the deformation. The dislocation movement is significantly hindered in the <112> orientation, and the {112}<111> twins are completely formed. The dynamic recrystallization occurs in the adiabatic shear bands of the <110> orientation, and the preferred rotation of the crystal lattice is the main recrystallization mechanism.

源语言英语
页(从-至)5964-5976
页数13
期刊Journal of Materials Research and Technology
35
DOI
出版状态已出版 - 1 3月 2025
已对外发布

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