English

Thin-Film-Mediated Deformation of Droplet during Cryopreservation

Fluid Dynamics 2023-05-29 v1

Abstract

Freezing of dispersions is omnipresent in science and technology. While the passing of a freezing front over a solid particle is reasonably understood, this is not so for soft particles. Here, using an oil-in-water emulsion as a model system, we show that when engulfed into a growing ice front, a soft particle severely deforms. This deformation strongly depends on the engulfment velocity VV, even forming pointy-tip shapes for low values of VV. We find such singular deformations are mediated by interfacial flows in nanometric\textit{nanometric} thin liquid films separating the non-solidifying dispersed droplets and the solidifying bulk. We model the fluid flow in these intervening thin films using a lubrication approximation and then relate it to the deformation sustained by the dispersed droplet.

Keywords

Cite

@article{arxiv.2305.16417,
  title  = {Thin-Film-Mediated Deformation of Droplet during Cryopreservation},
  author = {Jochem G. Meijer and Pallav Kant and Duco Van Buuren and Detlef Lohse},
  journal= {arXiv preprint arXiv:2305.16417},
  year   = {2023}
}

Comments

6 pages, 5 figures