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Lattice parameters and relative stability of α″ phase in binary titanium alloys from first-principles calculations

Authors :
Li, Chun-Xia
Luo, Hu-Bin
Hu, Qing-Miao
Yang, Rui
Yin, Fu-Xing
Umezawa, Osamu
Vitos, Levente
Source :
Solid State Communications. Apr2013, Vol. 159, p70-75. 6p.
Publication Year :
2013

Abstract

Abstract: The crystallographic structure and stability of the phase relative to the and phases in Ti–x M (M=Ta, Nb, V, Mo) alloys are investigated by using the first-principles exact muffin-tin orbital method in combination with the coherent potential approximation. We show that, with increasing concentration of the alloying elements, the structure of the orthorhombic- phase evolutes from the hcp- to the bcc- phase, i.e., the lattice parameters b/a and c/a as well as the basal shuffle y decreases from those corresponding to the phase to those of the phase. The compositional and phase boundaries are determined by comparing the total energies of the phases. The predicted phase boundaries are about 10.2, 10.5, 11.5, 4.5at% for Ti–V, Ti–Nb, Ti–Ta, and Ti–Mo, respectively, in reasonable agreement with experiments. The phase boundaries are higher than the experimental values, possibly due to the absence of temperature effect in the first-principles calculations. Analyzing the electronic density of states, we propose that the stability of the phase is controlled by the compromise between the strength of the covalent and metallic bonds. [Copyright &y& Elsevier]

Details

Language :
English
ISSN :
00381098
Volume :
159
Database :
Academic Search Index
Journal :
Solid State Communications
Publication Type :
Academic Journal
Accession number :
86394756
Full Text :
https://doi.org/10.1016/j.ssc.2013.01.026