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首页> 外文期刊>The European Physical Journal Special Topics >Droplet actuation induced by coalescence: Experimental evidences and phenomenological modeling
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Droplet actuation induced by coalescence: Experimental evidences and phenomenological modeling

机译:聚结引起的液滴驱动:实验证据和现象学建模

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摘要

This paper considers the interaction between two droplets placed on a substrate in immediate vicinity. We show here that when the two droplets are of different fluids and especially when one of the droplet is highly volatile, a wealth of fascinating phenomena can be observed. In particular, the interaction may result in the actuation of the droplet system, i.e. its displacement over a finite length. In order to control this displacement, we consider droplets confined on a hydrophilic stripe created by plasma-treating a PDMS substrate. This controlled actuation opens up unexplored opportunities in the field of microfluidics. In order to explain the observed actuation phenomenon, we propose a simple phenomenological model based on Newton’s second law and a simple balance between the driving force arising from surface energy gradients and the viscous resistive force. This simple model is able to reproduce qualitatively and quantitatively the observed droplet dynamics.
机译:本文考虑了放置在紧邻基板上的两个液滴之间的相互作用。我们在这里表明,当两个液滴的流体不同时,尤其是其中一个液滴的挥发性高时,可以观察到许多令人着迷的现象。特别地,相互作用可以导致液滴系统的致动,即其在有限长度上的位移。为了控制这种位移,我们考虑将液滴限制在通过对PDMS基板进行等离子体处理而形成的亲水条上。这种受控的驱动开辟了微流体领域中未开发的机会。为了解释观察到的致动现象,我们提出了一个基于牛顿第二定律的简单现象学模型,以及由表面能梯度产生的驱动力与粘性阻力之间的简单平衡。这个简单的模型能够定性和定量地再现观察到的液滴动态。

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