Title of article
First-principles density functional theory study of phase transformations in NbCr2 and TaCr2 Original Research Article
Author/Authors
Olena Vedmedenko، نويسنده , , Frohmut R?sch، نويسنده , , Christian Els?sser، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2008
Pages
9
From page
4984
To page
4992
Abstract
Hexagonal to cubic phase transformations in the intermetallic Laves-phase compounds NbCr2 and TaCr2 have been studied systematically using the synchroshear deformation mechanism and first-principles density functional theory (DFT). The DFT results provide a quantitative description of the activation energy profiles during the deformation process. By means of these profiles we discuss several transformation possibilities and propose explanations for recent experimental data. In particular it is shown that the synchroshear deformation mechanism should prevail in the two Laves phases studied. Furthermore, the activation energy barriers for TaCr2 are about 17% larger than those for NbCr2. We discuss how this may lead to the experimentally observed, significantly slower transformation kinetics of TaCr2, compared to NbCr2. Both the observation of fine-scale twins and the origin for the twin formation can also be understood from the activation energy profiles.
Keywords
Mechanical properties (slip , synchroshear) , Density functional theory (DFT) , Intermetallic Laves phases , Interfaces (twin boundaries , stacking faults) , Phase transformations
Journal title
ACTA Materialia
Serial Year
2008
Journal title
ACTA Materialia
Record number
1143863
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