Withdrawing a solid from a bath: how much liquid is coated?
arXiv:1612.04602 · doi:10.1016/j.cis.2017.01.006
Abstract
A solid withdrawn from a liquid bath entrains a film. In this review, after recalling the predictions and results for pure Newtonian liquids coated on simple solids, we analyze the deviations to this ideal case exploring successively three potential sources of complexity: the liquid-air interface, the bulk rheological properties of the liquid and the mechanical or chemical properties of the solid. For these different complexities, we show that significant effects on the film thickness are observed experimentally and we summarize the theoretical analysis presented in the literature, which attempt to rationalize these measurements.
References in corpus (4)
- Solid Capillarity: When and How does Surface Tension Deform Soft Solids?
- Relaxation of a dewetting contact line Part 1: A full-scale hydrodynamic calculation
- A liquid contact line receding on a soft gel surface : dip-coating geometry investigation
- Inverted Cheerios effect: Liquid drops attract or repel by elasto-capillarity
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