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Trapping of drops by wetting defects

机译:通过润湿缺陷来捕获液滴

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摘要

Controlling the motion of drops on solid surfaces is crucial in many natural phenomena and technological processes including the collection and removal of rain drops, cleaning technology and heat exchangers. Topographic and chemical heterogeneities on solid surfaces give rise to pinning forces that can capture and steer drops in desired directions. Here we determine general physical conditions required for capturing sliding drops on an inclined plane that is equipped with electrically tunable wetting defects. By mapping the drop dynamics on the one-dimensional motion of a point mass, we demonstrate that the trapping process is controlled by two dimensionless parameters, the trapping strength measured in units of the driving force and the ratio between a viscous and an inertial time scale. Complementary experiments involving superhydrophobic surfaces with wetting defects demonstrate the general applicability of the concept. Moreover, we show that electrically tunable defects can be used to guide sliding drops along actively switchable tracks-with potential applications in microfluidics.RI zhengyong, huang/K-8286-2014
机译:在许多自然现象和技术过程(包括雨滴的收集和清除,清洁技术和热交换器)中,控制水滴在固体表面上的运动至关重要。固体表面上的形貌和化学异质性产生了钉扎力,该钉扎力可以捕获液滴并将液滴引导到所需方向。在这里,我们确定了在具有电可调润湿缺陷的倾斜平面上捕获滑动液滴所需的一般物理条件。通过将液滴动力学映射到点质量的一维运动上,我们证明了诱捕过程由两个无量纲参数控制,以驱动力为单位测量的诱捕强度以及粘性和惯性时标之间的比率。涉及具有润湿缺陷的超疏水表面的补充实验证明了该概念的普遍适用性。此外,我们表明电可调谐缺陷可用于引导沿主动可切换轨道的滑落-在微流体中具有潜在的应用.RI郑勇,huang / K-8286-2014

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