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research article

Fluid-mediated impact of soft solids

Bilotto, Jacopo  
•
Kolinski, John M.  
•
Lecampion, Brice  
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October 25, 2024
Journal of Fluid Mechanics

A viscous, lubrication-like response can be triggered in a thin film of fluid squeezed between a rigid flat surface and the tip of an incoming projectile. We develop a scaling for this viscous approach stage of fluid-mediated normal impact, applicable to soft impactors. Under the assumption of mediating fluid being incompressible, the impacting solid displays two limit regimes: one dominated by elasticity, and the other by inertia. The transition between the two is predicted by a dimensionless parameter, which can be interpreted as the ratio between two time scales that are the time that it takes for the surface waves to warn the leading edge of the impactor of the forthcoming impact, and the characteristic duration of the final viscous phase of the approach. Additionally, we elucidate why nearly incompressible solids feature (a) substantial ‘gliding’ prior to contact at the transition between regimes, (b) the largest size of entrapped bubble between the deformed tip of the impactor and the flat surface, and (c) a sudden drop in entrapped bubble radius past the transition between regimes. Finally, we argue that the above time scale ratio (a dimensionless number) can govern the different dynamics reported experimentally for a fluid droplet as a function of its viscosity and surface tension.

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Type
research article
DOI
https://doi.org/10.1017/jfm.2024.820
Author(s)
Bilotto, Jacopo  

EPFL

Kolinski, John M.  

EPFL

Lecampion, Brice  

EPFL

Molinari, Jean-François  

EPFL

Subhash, Ghatu

University of Florida

Garcia-Suarez, Joaquin  

EPFL

Date Issued

2024-10-25

Publisher

Cambridge University Press

Published in
Journal of Fluid Mechanics
Volume

997

Article Number

A35

Start page

A35-1

End page

A35-26

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSMS  
EMSI  
GEL  
FunderGrant Number

H2020 Marie Skłodowska-Curie Actions

945363

Available on Infoscience
October 15, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/241606
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