English

Influence of morphological instability on grain boundary trajectory during directional solidification

Materials Science 2019-01-23 v1

Abstract

The interplay between the diffusion-controlled dynamics of a solidification front and the trajectory of a grain boundary groove at the solid-liquid interface is studied by means of thin-sample directional solidification experiments of a transparent alloy, and by numerical simulations with the phase-field method in two dimensions. We find that low-angle grain boundaries (subboundaries) with an anisotropic interfacial free energy grow tilted at an angle θt\theta_t with respect to the temperature gradient axis. θt\theta_t remains essentially equal to its value imposed at equilibrium as long as the solidification velocity VV remains low. When VV increases and approaches the cellular instability threshold, θt\theta_t decreases, and eventually vanishes when a steady-state cellular morphology forms. The absence of mobility of the subboundary in the solid is key to this transition. These findings are in good agreement with a recent linear-stability analysis of the problem.

Keywords

Cite

@article{arxiv.1901.06705,
  title  = {Influence of morphological instability on grain boundary trajectory during directional solidification},
  author = {Supriyo Ghosh and Alain Karma and Mathis Plapp and Silvère Akamatsu and Sabine Bottin-Rousseau and Gabriel Faivre},
  journal= {arXiv preprint arXiv:1901.06705},
  year   = {2019}
}

Comments

24 pages, 9 figures

R2 v1 2026-06-23T07:17:00.792Z