English

Scaling laws for two-dimensional dendritic crystal growth in a narrow channel

Materials Science 2023-05-24 v3

Abstract

We investigate analytically and computationally the dynamics of 2D needle crystal growth from the melt in a narrow channel. Our analytical theory predicts that, in the low supersaturation limit, the growth velocity VV decreases in time tt as a power law Vt2/3V \sim t^{-2/3}, which we validate by phase-field and dendritic-needle-network simulations. Simulations further reveal that, above a critical channel width Λ5lD\Lambda \approx 5l_D, where lDl_D the diffusion length, needle crystals grow with a constant V<VsV<V_s, where VsV_s is the free-growth needle crystal velocity, and approaches VsV_s in the limit ΛlD\Lambda\gg l_D.

Keywords

Cite

@article{arxiv.2211.08309,
  title  = {Scaling laws for two-dimensional dendritic crystal growth in a narrow channel},
  author = {Younggil Song and Damien Tourret and Alain Karma},
  journal= {arXiv preprint arXiv:2211.08309},
  year   = {2023}
}

Comments

6 pages, 4 figures, one supplementary material document with 1 figure