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Elastocapillary levelling of thin viscous films on soft substrates

机译:软基材上薄粘膜的弹性毛细管流平

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摘要

A thin liquid film with nonzero curvature at its free surface spontaneously flows to reach a flat configuration, a process driven by Laplace pressure gradients and resisted by the liquid’s viscosity. Inspired by recent progresses on the dynamics of liquid droplets on soft substrates, we here study the relaxation of a viscous film supported by an elastic foundation. Experiments involve thin polymer films on elastomeric substrates, where the dynamics of the liquid-air interface is monitored using atomic force microscopy. A theoretical model that describes the coupled evolution of the solid-liquid and the liquid-air interfaces is also provided. In this soft-levelling configuration, Laplace pressure gradients not only drive the flow, but they also induce elastic deformations on the substrate that affect the flow and the shape of the liquid-air interface itself. This process represents an original example of elastocapillarity that is not mediated by the presence of a contact line. We discuss the impact of the elastic contribution on the levelling dynamics and show the departure from the classical self-similarities and power laws observed for capillary levelling on rigid substrates.
机译:在其自由表面上具有非零曲率的液体薄膜会自发地流动,以达到平坦的形状,该过程受拉普拉斯压力梯度驱动,并受到液体粘度的阻碍。受软基底上液滴动力学的最新进展启发,我们在这里研究由弹性基础支撑的粘性膜的松弛。实验涉及在弹性体基底上的聚合物薄膜,其中使用原子力显微镜监测液-气界面的动力学。还提供了描述固液界面和液气界面耦合演化的理论模型。在这种软水平结构中,拉普拉斯压力梯度不仅驱动流动,而且还引起基底上的弹性变形,从而影响流动和液-气界面本身的形状。这个过程代表了弹性毛细作用的原始例子,它不是由接触线的存在来介导的。我们讨论了弹性贡献对流平动力学的影响,并显示了与经典的自相似性和功率定律不同的情况,而经典的自相似性和功率定律对于在刚性基材上进行的毛细管流平而言是可以观察到的。

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