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Interface Energies for Carbide Precipitates in TiAl
Authors:R Benedek  DN Seidman  C Woodward
Institution:(1) Department of Materials Science and Engineering, Northwestern University, Evanston, IL 60208, USA;(2) Air Force Research Laboratory, Materials and Manufacturing Directorate, Wright Patterson AFB, OH 45433-7817, USA;(3) Materials Research Division, UES Inc., 4401 Dayton-Xenia Rd., Dayton, OH 45432, USA
Abstract:Carbon has been extensively investigated as an additive to TiAl alloys to improve high-temperature mechanical properties. The ternary-carbide-precipitate phases that have received most attention are Ti3AlC (cubic perovskite), and Ti2AlC (hexagonal). The perovskite (P) precipitates in the form of needles along the lang001rang direction of gamma-TiAl, and the hexagonal phase (H) primarily forms platelets perpendicular to lang111rang directions. Using the first-principles density functional theory code VASP, calculations of host-precipitate interface energies were performed for these two carbides. An atomic-scale formulation of the interface energy is adopted. Calculations for the coherent interfaces are performed to determine the preferred terminations and translation states. An approximate correction to the interface energy for the effect of misfit is applied to estimate the energy of incoherent interfaces. The relative interface properties of the P-type and H-type carbides are determined by, in addition to the misfit strains, (i) the stronger bonding of the P-type than the H-type precipitate with the host at the interface, and (ii) the more pronounced variations of the interatomic potentials as a function of parallel translation state across non-close-packed (100) P layers than those across close-packed (0001) H layers.
Keywords:TiAl  Ti2AlC  Ti3AlC  coherent interface  interface energy  first-principles calculation
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