Dip-coating of suspensions
Abstract
Withdrawing a plate from a suspension leads to the entrainment of a coating layer of fluid and particles on the solid surface. In this article, we study the Landau-Levich problem in the case of a suspension of non-Brownian particles at moderate volume fraction . We observe different regimes depending on the withdrawal velocity , the volume fraction of the suspension , and the diameter of the particles . Our results exhibit three coating regimes. (i) At small enough capillary number , no particles are entrained, and only a liquid film coats the plate. (ii) At large capillary number, we observe that the thickness of the entrained film of suspension is captured by the Landau-Levich law using the effective viscosity of the suspension . (iii) At intermediate capillary numbers, the situation becomes more complicated with a heterogeneous coating on the substrate. We rationalize our experimental findings by providing the domain of existence of these three regimes as a function of the fluid and particles properties.
Keywords
Cite
@article{arxiv.1903.09350,
title = {Dip-coating of suspensions},
author = {A. Gans and E. Dressaire and B. Colnet and G. Saingier and M. Z. Bazant and A. Sauret},
journal= {arXiv preprint arXiv:1903.09350},
year = {2019}
}