Formation of solid-state dendrites under the influence of coherency stresses: A diffuse interface approach
Abstract
In this paper, we have formulated a phase-field model based on the grand-potential functional for the simulation of precipitate growth in the presence of coherency stresses. In particular, we study the development of dendrite-like patterns arising out of diffusive instabilities during the growth of a precipitate in a supersaturated matrix. Here, we characterize the role of elastic energy anisotropy and its strength on the selection of a dendrite tip radius and velocity. We find that there is no selection of a unique tip shape as observed in the case of solidification, and the selection constant increases linearly with simulation time for all the simulation conditions (where and are the tip radius and velocity). Therefore, structures derived in solid-state in the presence of elastic anisotropy may only be referred to as dendrite-like.
Cite
@article{arxiv.2101.09964,
title = {Formation of solid-state dendrites under the influence of coherency stresses: A diffuse interface approach},
author = {Bhalchandra Bhadak and Tushar Jogi and Saswata Bhattacharya and Abhik Choudhury},
journal= {arXiv preprint arXiv:2101.09964},
year = {2021}
}
Comments
47 pages