Slip and friction mechanisms at polymer semi-dilute solutions / solid interfaces
Abstract
The role of the polymer volume fraction, , on steady state slippage and interfacial friction is investigated for a semi-dilute polystyrene solutions in diethyl phthalate in contact with two solid surfaces. Signicant slippage is evidenced for all samples, with slip lengths b obeying a power law dependence. The Navier's interfacial friction coecient, k, is deduced from the slip length measurements and from independent measurements of the solutions viscosity . The observed scaling of k versus clearly excludes a molecular mechanism of friction based on the existence of a depletion layer. Instead, we show that the data of () and k() are understood when taking into account the dependence of the solvent friction on . Two models, based on the friction of blobs or of monomers on the solid surface, well describe our data. Both points out that the Navier's interfacial friction is a semi-local phenomenon.
Cite
@article{arxiv.2105.04188,
title = {Slip and friction mechanisms at polymer semi-dilute solutions / solid interfaces},
author = {Marion Grzelka and Iurii Antoniuk and Eric Drockenmuller and Alexis Chennevière and Liliane Léger and Frédéric Restagno},
journal= {arXiv preprint arXiv:2105.04188},
year = {2021}
}