论文标题
对粘性液体膜的影响
Drop impact on viscous liquid films
论文作者
论文摘要
当液体滴落在固体基板上时,它们之间的空气层延迟了液态接触的发生。对于对光滑底物的影响,空气膜甚至可以防止润湿,从而使下降的动态反弹与观察到对超级危险材料的影响相同。在本文中,我们研究了在粘性液体膜上发生的类似弹跳现象,这些现象在粘性液膜上,它们模仿原子底物,目的是探测其有效的脱位。我们阐明了使用实验,仿真和最小模型与非弹跳(浮动)过渡相关的机制,该模型预测了跌落影响的主要特征,接触时间和恢复系数。在高粘性或非常薄的膜的情况下,影响动态不受粘性膜的存在影响。在该底物(无关的极限)内,一旦降落粘度超过了超级恐惧症基板的临界值,就会抑制弹跳。对于较厚或较少的粘性膜,滴和膜特性都会影响弹力动力学,并共同抑制弹跳以上的膜厚度。对于低粘度下降,这种依赖性依赖性的底物也承认了一个极限,其中仅膜特性决定了驱虫的限制。
When a liquid drop falls on a solid substrate, the air layer in between them delays the occurrence of liquid--solid contact. For impacts on smooth substrates, the air film can even prevent wetting, allowing the drop to bounce off with dynamics identical to that observed for impacts on superamphiphobic materials. In this article, we investigate similar bouncing phenomena, occurring on viscous liquid films, that mimic atomically smooth substrates, with the goal to probe their effective repellency. We elucidate the mechanisms associated to the bouncing to non-bouncing (floating) transition using experiments, simulations, and a minimal model that predicts the main characteristics of drop impact, the contact time, and the coefficient of restitution. In the case of highly viscous or very thin films, the impact dynamics is not affected by the presence of the viscous film. Within this substrate--independent limit, bouncing is suppressed once the drop viscosity exceeds a critical value as on superamphiphobic substrates. For thicker or less viscous films, both the drop and film properties influence the rebound dynamics and conspire to inhibit bouncing above a critical film thickness. This substrate--dependent regime also admits a limit, for low viscosity drops, in which the film properties alone determine the limits of repellency.