Tsoumpas Yannis, Dehaeck Sam, Rednikov Alexey, Colinet Pierre
Université Libre de Bruxelles , TIPs (Transfers, Interfaces and Processes), CP 165/67, Av. F. D. Roosevelt 50, B-1050 Brussels, Belgium.
Langmuir. 2015 Dec 15;31(49):13334-40. doi: 10.1021/acs.langmuir.5b02673. Epub 2015 Nov 25.
Freely receding evaporating sessile droplets of perfectly wetting liquids, for which the observed finite contact angles are attributed to evaporation, are studied with a Mach-Zehnder interferometer. The experimentally obtained droplet shapes are found to depart, under some conditions, from the classical macroscopic static profile of a sessile droplet. The observed deviations (or the absence thereof) are explained in terms of a Marangoni flow due to evaporation-induced thermal gradients along the liquid-air interface. When such a Marangoni effect is strong, the experimental profiles exhibit a maximum of the slope at a certain distance from the contact line. In this case, the axisymmetric flow is directed from the contact line to the apex (along the liquid-air interface), hence delivering more liquid to the center of the droplet and making it appear inflated. These findings are quantitatively confirmed by predictions of a lubrication model accounting for the impact of the Marangoni effect on the droplet shape.
利用马赫-曾德尔干涉仪研究了完全润湿液体的自由回缩蒸发固着液滴,其观测到的有限接触角归因于蒸发。实验获得的液滴形状在某些条件下被发现与固着液滴的经典宏观静态轮廓不同。观测到的偏差(或不存在偏差的情况)是根据沿液-气界面由蒸发引起的热梯度导致的马兰戈尼流来解释的。当这种马兰戈尼效应很强时,实验轮廓在距接触线一定距离处呈现斜率最大值。在这种情况下,轴对称流从接触线指向顶点(沿液-气界面),从而将更多液体输送到液滴中心,使其看起来膨胀。润滑模型考虑了马兰戈尼效应对液滴形状的影响,其预测定量地证实了这些发现。