English

Two-dimensional Cahn-Hilliard simulations for coarsening kinetics of spinodal decomposition in binary mixtures

Soft Condensed Matter 2021-12-09 v1 Materials Science Computational Physics

Abstract

The evolution of the microstructure due to spinodal decomposition in phase separated mixtures has a strong impact on the final material properties. In the late stage of coarsening, the system is characterized by the growth of a single characteristic length scale LCtαL\sim C t^{\alpha}. To understand the structure-property relationship, the knowledge of the coarsening exponent α\alpha and the coarsening rate constant CC is mandatory. Since the existing literature is not entirely consistent, we perform phase field simulations based on the Cahn-Hilliard equation. We restrict ourselves to binary mixtures using a symmetric Flory-Huggins free energy and a constant mobility term and show that the coarsening for off-critical mixtures is slower than the expected t1/3t^{1/3}-growth. Instead, we find α\alpha to be dependent on the mixture composition and thus from the morphology. Finally, we propose a model to describe the complete coarsening kinetics including the rate constant CC.

Keywords

Cite

@article{arxiv.2107.07234,
  title  = {Two-dimensional Cahn-Hilliard simulations for coarsening kinetics of spinodal decomposition in binary mixtures},
  author = {Björn König and Olivier J. J. Ronsin and Jens Harting},
  journal= {arXiv preprint arXiv:2107.07234},
  year   = {2021}
}