Statistical Thermodynamics and Ordering Kinetics of D019-Type Phase: Application of the Models for H.C.P.-Ti–Al Alloy

Author:

Radchenko Taras M.1,Tatarenko Valentin A.1,Zapolsky Helena2

Affiliation:

1. National Academy of Sciences of the Ukraine (N.A.S.U.)

2. Université de Rouen

Abstract

Using the self-consistent field approximation, the static concentration waves approach and the Onsager-type kinetics equations, the descriptions of both the statistical thermodynamics and the kinetics of an atomic ordering of D019 phase are developed and applied for h.c.p.-Ti–Al alloy. The model of order–disorder phase transformation describes the phase transformation of h.c.p. solid solution into the D019 phase. Interatomic-interaction parameters are estimated for both approximations: one supposes temperature-independent interatomic-interaction parameters, while the other one includes the temperature dependence of interchange energies for Ti–Al alloy. The partial Ti–Al phase diagrams (equilibrium compositions of the coexistent ordered α2-phase and disordered α-phase) are evaluated for both cases. The equation for the time dependence of D019- type long-range order (LRO) parameter is analyzed. The curves (showing the LRO parameter evolution) are obtained numerically for both temperature-independent interaction energies and temperature-dependent ones. Temperature dependence of the interatomic-interaction energies accelerates the LRO relaxation and diminishes a spread of the values of instantaneous and equilibrium LRO parameters versus the temperature. Both statistical-thermodynamics and kinetics results show that equilibrium LRO parameter for a non-stoichiometry (where an atomic fraction of alloying component is more than 0.25) can be higher than for a stoichiometry at high temperatures. The experimental phase diagram confirms the predicted (ordered or disordered) states for h.c.p.-Ti– Al.

Publisher

Trans Tech Publications, Ltd.

Subject

Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics

Reference38 articles.

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3. D. Banerjee, in: Intermetallic Compounds, edited by J.H. Westbrook and R.L. Fleischer, volume 2, John Wiley & Sons (1994).

4. M. Yamaguchi, H. Inui, K. Koshoba, M. Matsumorto and Y. Shirai, in: High-Temperature Ordered Intermetallic Alloys VI, volume 346, Materials Research Society (1996).

5. M. Yamaguchi, H. Inui and K. Ito: Acta Mater. Vol. 48 (2000), p.307.

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