Résumé
We study the impact and subsequent retraction of liquid droplets upon high-speed impact on hydrophobic surfaces. Extensive experiments show that the drop retraction rate is a material constant and does not depend on the impact velocity. We show that on increasing the Ohnesorge number, Oh = η/ √ρRIγ, the retraction, i.e. dewetting, dynamics crosses from a capillary-inertial regime to a capillary-viscous regime. We rationalize the experimental observations by a simple but robust semi-quantitative model for the solid-liquid contact line dynamics inspired by the standard theories for thin-film dewetting.
| langue originale | Anglais |
|---|---|
| Pages (de - à) | 329-338 |
| Nombre de pages | 10 |
| journal | Journal of Fluid Mechanics |
| Volume | 545 |
| Les DOIs | |
| état | Publié - 25 déc. 2005 |
| Modification externe | Oui |
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