English

Stretching of viscoelastic drops by steady sliding

Soft Condensed Matter 2017-03-31 v2

Abstract

The sliding of non-Newtonian drops down planar surfaces results in a complex, entangled balance between interfacial forces and non linear viscous dissipation, which has been scarcely inspected. In particular, a detailed understanding of the role played by the polymer flexibility and the resulting elasticity of the polymer solution is still lacking. To this aim, we have considered polyacrylamide (PAA) solutions of different molecular weights, suspended either in water or glycerol/water mixtures. In contrast to drops with stiff polymers, drops with flexible polymers exhibit a remarkable elongation in steady sliding. This difference is most likely attributed to different viscous bending as a consequence of different shear thinning. Moreover, an "optimal elasticity" of the polymer seems to be required for this drop elongation to be visible. We have complemented experimental results with numerical simulations of a viscoelastic FENE-P drop. This has been a decisive step to unravel how a change of the elastic parameters (e.g. polymer relaxation time, maximum extensibility) affects the dimensionless sliding velocity.

Keywords

Cite

@article{arxiv.1610.02064,
  title  = {Stretching of viscoelastic drops by steady sliding},
  author = {Silvia Varagnolo and Daniele Filippi and Giampaolo Mistura and Matteo Pierno and Mauro Sbragaglia},
  journal= {arXiv preprint arXiv:1610.02064},
  year   = {2017}
}

Comments

9 pages, 7 Figures