论文标题
通过两种不同的三相触点的合并分开液滴
Splitting droplet through coalescence of two different three-phase contact lines
论文作者
论文摘要
超过两个阶段的移动接触线决定了大量的界面现象。尽管对基本和应用过程的重要性很重要,但仅在一些研究中就解决了四个范围(两个不混溶的液体,固体和气体)的接触线。在这里,我们报告了一种有趣的现象,该现象是在四个阶段的油,水,固体和气体之后通过两种不同的三相接触线的聚结。我们结合了实验研究和理论分析,以揭示和合理化微米大小的油滴的接触线与毫米尺寸的水滴的接触线之间的合并时表现出的动力学,从而覆盖了底物上的油滴。我们发现在合并后,形成了短时间的四相接触线。但是,这种四台接触线不稳定,导致“液滴裂片”效果,并最终从水滴中驱逐了油滴。然后,我们表明不同阶段和油滴粘度之间的界面张力决定了分裂动力学。更多的粘性油表现出更高的抗性对四倍接触线的不稳定性引起的液滴的极端变形,并且在这种情况下未观察到液滴驱动。
Moving contact lines of more than two phases dictate a large number of interfacial phenomena. Despite its significance to fundamental and applied processes, the contact lines at a junction of four-phases (two immiscible liquids, solid and gas) have been addressed only in a few investigations. Here, we report an intriguing phenomenon that follows after the four phases of oil, water, solid and gas make contact through the coalescence of two different three-phase contact lines. We combine experimental study and theoretical analysis to reveal and rationalize the dynamics exhibited upon the coalescence between the contact line of a micron-sized oil droplet and the receding contact line of a millimetre-sized water drop that covers the oil droplet on the substrate. We find that after the coalescence a four-phase contact line is formed for a brief period. However, this quadruple contact line is not stable, leading to a `droplet splitting' effect and eventual expulsion of the oil droplet from the water drop. We then show that the interfacial tension between the different phases and the viscosity of oil droplet dictate the splitting dynamics. More viscous oils display higher resistance to the extreme deformations of the droplet induced by the instability of the quadruple contact line and no droplet expulsion is observed for such cases.