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First-principles study of shear deformation in TiAl and Ti3Al

  • Y. L. Liu*
  • , L. M. Liu
  • , S. Q. Wang
  • , H. Q. Ye
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

The phase transition of titanium aluminides during the shear deformation is one of the most interesting issues. Using the DFT calculations, the shear deformation behaviors in γ-TiAl and α2-Ti3Al were investigated to understand the intrinsic mechanisms of phase transitions. The stress-strain curves present that, the 1 / 6 [11 over(2, -)] (111) shear deformation, whose maximum internal strength is 4.30 GPa, is the easiest way in γ-TiAl. Meanwhile, the shear deformation in TiAl is more difficult than that of 1 / 3 [10 over(1, -) 0] (0001) shear process in Ti3Al, whose maximum internal strength is 2.86 GPa. These results reveal that the α2 → γ phase transition happens more easily than the reverse transformation. The further analysis of the elastic constants and the partial density of states (PDOS) exhibits the main reasons as (i) TiAl has larger shear constants than Ti3Al, and (ii) the Ti-Al bonding is stronger than that of Ti-Ti in TiAl, while Ti3Al shows the contrasting feature.

源语言英语
页(从-至)428-435
页数8
期刊Intermetallics
15
3
DOI
出版状态已出版 - 3月 2007
已对外发布

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