English

Deformation upon impact of a concentrated suspension drop

Fluid Dynamics 2020-06-03 v1 Soft Condensed Matter

Abstract

We study the impact between a plate and a drop of non-colloidal solid particles suspended in a Newtonian liquid, with a specific attention to the case when the particle volume fraction, ϕ\phi, is close to - or even exceeds - the critical volume fraction, ϕc\phi_c, at which the steady effective viscosity of the suspension diverges. We use a specific concentration protocol together with an accurate determination of ϕ\phi for each drop and we measure the deformation β\beta for different liquid viscosities, impact velocities and particle sizes. At low volume fractions, β\beta is found to follow closely an effective Newtonian behavior, which we determine by documenting the low deformation limit for a highly viscous Newtonian drop and characterizing the effective shear viscosity of our suspensions. By contrast, whereas the effective Newtonian approach predicts that β\beta vanishes at ϕc\phi_c, a finite deformation is observed for ϕ>ϕc\phi>\phi_c. This finite deformation remains controlled by the suspending liquid viscosity and increases with increasing particle size, which suggests that the dilatancy of the particle phase is a key factor of the dissipation process close to and above ϕc\phi_c.

Keywords

Cite

@article{arxiv.2003.10798,
  title  = {Deformation upon impact of a concentrated suspension drop},
  author = {Loren Jørgensen and Yoël Forterre and Henri Lhuissier},
  journal= {arXiv preprint arXiv:2003.10798},
  year   = {2020}
}

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