First-principles calculation of phase equilibria in the aluminum lithium system

M. Sluiter, D. de Fontaine, X. Q. Guo, R. Podloucky, and A. J. Freeman
Phys. Rev. B 42, 10460 – Published 1 December 1990
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Abstract

Volume-dependent total energies of Al, Li, and various intermetallic Al-Li compounds have been calculated by the first-principles full-potential linearized augmented-plane-wave (FLAPW) method. These values have been used to calculate Al-Li phase diagrams according to the cluster variation method in the tetrahedron approximation. Methods for performing lattice-parameter optimization and for including relaxation effects are presented. Truly first-principles-based phase diagrams for solid phases computed without any fitting parameters or empirical formulas are shown to exhibit a remarkable agreement with experimental data. Subsequently, some empirical equations for the free energy of the liquid and the vibrational entropy have been added to the first-principles results and striking similarities with experimental phase diagrams were obtained. Special attention has been paid to the metastable Al3Li phase and to the mechanical properties of Al-rich Al-Li alloys. Furthermore, the influence of relaxation and vibrational entropy are discussed.

  • Received 11 December 1989

DOI:https://doi.org/10.1103/PhysRevB.42.10460

©1990 American Physical Society

Authors & Affiliations

M. Sluiter and D. de Fontaine

  • Department of Materials Science and Mineral Engineering, University of California, Berkeley, Berkeley, California 94720

X. Q. Guo, R. Podloucky, and A. J. Freeman

  • Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60207

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Vol. 42, Iss. 16 — 1 December 1990

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