Explicit temperature coupling in phase-field crystal models of solidification

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Abstract

We present a phase-field crystal model for solidification that accounts for thermal transport and a temperature-dependent lattice parameter. Elasticity effects are characterized through the continuous elastic field computed from the microscopic density field. We showcase the model capabilities via selected numerical investigations which focus on the prototypical growth of two-dimensional crystals from the melt, resulting in faceted shapes and dendrites. This work sets the grounds for a comprehensive mesoscale model of solidification including thermal expansion.

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Punke, M., Wise, S. M., Voigt, A., & Salvalaglio, M. (2022). Explicit temperature coupling in phase-field crystal models of solidification. Modelling and Simulation in Materials Science and Engineering, 30(7). https://doi.org/10.1088/1361-651X/ac8abd

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