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- W2592237384 abstract "Abstract Heterophase prismatic hcp | fcc interfaces, playing a key-role in many alloy phase transformations, are difficult to analyze at the atomic scale, due to the presence of dislocations inducing long-range elastic fields. This features being best accounted for by continuum methods, our work aims at presenting a microscopic Phase-Field approach developed to investigate the structural and energetic properties of these interfaces. Our approach, which generalizes the well-known Peierls-Nabarro model of dislocation cores, explicitely includes the heterophase character of the interface, and the effect of interactions between stacked dislocations. Presented for the case of hcp matrix and fcc precipitate, our modeling is also applicable to the reverse case. It provides a convenient description of the so-called “structural part” of interface energies, namely the excess energy due to semi-coherence. It also constitutes a sound basis to estimate the critical size for coherency loss of an incipient precipitate in hcp ↔ fcc transformations." @default.
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- W2592237384 date "2017-05-01" @default.
- W2592237384 modified "2023-10-18" @default.
- W2592237384 title "Microscopic Phase-Field modeling of hcp|fcc interfaces" @default.
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- W2592237384 doi "https://doi.org/10.1016/j.commatsci.2017.02.012" @default.
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