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交流电电动润湿下动态接触线从黏滑到滑动的转变

Stick-Slip to Sliding Transition of Dynamic Contact Lines under AC Electrowetting.

机构信息

Physics of Complex Fluids, MESA+ Institute for Nanotechnology, University of Twente , P.O. Box 217, 7500 AE Enschede, The Netherlands.

出版信息

Langmuir. 2013 Dec 3;29(48):15116-21. doi: 10.1021/la402761m. Epub 2013 Nov 20.

Abstract

We show that at low velocities the dynamics of a contact line of a water drop moving over a Teflon-like surface under ac electrowetting must be described as stick-slip motion, rather than one continuous movement. At high velocities we observe a transition to a slipping regime. In the slipping regime the observed dependence of the contact angle is well described by a linearization of both the hydrodynamic and the molecular-kinetic model for the dynamic contact line behavior. The overall geometry of the drop also has a strong influence on the contact angle: if the drop is confined to a disk-like shape with radius R, much larger than the capillary length, and height h, smaller than the capillary length, the advancing angle increases steeper with velocity as the aspect ratio h/R is smaller. Although influence of the flow field near a contact line on the contact angle behavior has also been observed in other experiments, these observations do not fit either model. Finally, in our ac experiments no sudden increase of the hysteresis beyond a certain voltage and velocity was observed, as reported by other authors for a dc voltage, but instead we find with increasing voltage a steady decrease of the hysteresis.

摘要

我们表明,在低速度下,水滴滴在类似特氟龙的表面上运动时接触线的动力学必须描述为粘滑运动,而不是连续运动。在高速度下,我们观察到向滑动状态的转变。在滑动状态下,观察到的接触角依赖关系很好地由动态接触线行为的流体动力学和分子动力学模型的线性化来描述。液滴的整体几何形状也对接触角有很强的影响:如果液滴被限制在具有半径 R(远大于毛细长度)和高度 h(小于毛细长度)的盘状形状中,则前进角随速度的增加而更陡峭,因为 h/R 的纵横比更小。尽管在其他实验中也观察到了接近接触线的流场对接触角行为的影响,但这些观察结果都不符合这两个模型。最后,与其他作者报道的直流电压情况不同,在我们的交流实验中,没有观察到超过一定电压和速度时滞后的突然增加,而是发现随着电压的增加滞后逐渐减小。

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