Universal spreading of water drops on complex surfaces
A drop of water spreads very rapidly just after it is gently deposited on a solid surface. Here we experimentally investigate how these early stages of spreading are influenced by different types of surface complexity. In particular, we consider micro-textured substrates, chemically striped substrat...
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Veröffentlicht in: | Soft matter 2014-04, Vol.1 (15), p.2641-2648 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A drop of water spreads very rapidly just after it is gently deposited on a solid surface. Here we experimentally investigate how these early stages of spreading are influenced by different types of surface complexity. In particular, we consider micro-textured substrates, chemically striped substrates and soft substrates. For all these complex substrates, it is found that there always exists an inertial regime where the radius
r
of the wetted area grows as
r
∼
t
1/2
. For perfectly wetting substrates, this regime extends over several decades in time, whereas we observe a deviation from a pure power-law for partially wetting substrates. Our experiments reveal that even the cross-over from the 1/2 power law to the final equilibrium radius displays a universal dynamics. This cross-over is governed only by the final contact angle, regardless of the details of the substrate.
Here, we study experimentally the dynamics of drop spreading on complex substrates, showing universal behaviour during the initial stages. |
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ISSN: | 1744-683X 1744-6848 |
DOI: | 10.1039/c3sm52464g |