arXiv · 1809.10923
Wettability-independent droplet transport by \emph{Bendotaxis}
Abstract
We demonstrate \textit{bendotaxis}, a novel mechanism for droplet self-transport at small scales. A combination of bending and capillarity in a thin channel causes a pressure gradient that, in turn, results in the spontaneous movement of a liquid droplet. Surprisingly, the direction of this motion is always the same, regardless of the wettability of the channel. We use a combination of experiments at a macroscopic scale and a simple mathematical model to study this motion, focussing in particular on the time scale associated with the motion. We suggest that \emph{bendotaxis} may be a useful means of transporting droplets in technological applications, for example in developing self-cleaning surfaces, and discuss the implications of our results for such applications.
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Alexander T. Bradley, Finn Box, Ian J. Hewitt, Dominic Vella. 2018-09-28. Wettability-independent droplet transport by \emph{Bendotaxis}. https://doi.org/10.1103/physrevlett.122.074503
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