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薄液膜在软弹性体层附近去湿的非线性演化

Nonlinear evolution of thin liquid films dewetting near soft elastomeric layers.

作者信息

Matar Omar K, Gkanis Vasileios, Kumar Satish

机构信息

Department of Chemical Engineering and Chemical Technology, Imperial College London, SW7 2AZ, UK.

出版信息

J Colloid Interface Sci. 2005 Jun 1;286(1):319-32. doi: 10.1016/j.jcis.2004.12.034.

Abstract

The nonlinear evolution of thin liquid films dewetting near soft elastomeric layers is examined in this work. Evolution equations are derived by applying the lubrication approximation and assuming that van der Waals forces in the liquid cause the dewetting and that the solid can be described as a linear viscoelastic material. Two cases are examined: (i) a liquid layer resting on an elastomer bounded from below by a rigid substrate, and (ii) an elastomer overlying a thin liquid film bounded from below by a rigid substrate. Linear stability analysis is carried out to obtain asymptotic relations which are then compared against solutions of the full characteristic equations. In the liquid-on-solid case, numerical solutions of the evolution equations show that van der Waals forces cause thinning of the liquid film and thickening of the elastomeric solid beneath film depressions. Inclusion of a short-range repulsive force suggests that regular patterns may form in which ridges of fluid rest on depressions in the solid. In the solid-on-liquid case, the van der Waals forces cause the solid layer to break up before the liquid film can dewet. The results presented here support the idea that the dewetting of thin liquid films might be exploited to create topographically patterned surfaces on soft polymeric solids.

摘要

本文研究了薄液膜在软弹性体层附近去湿的非线性演化过程。通过应用润滑近似法并假设液体中的范德华力导致去湿,且固体可描述为线性粘弹性材料,推导出了演化方程。研究了两种情况:(i)液体层置于由刚性基底从下方界定的弹性体上,以及(ii)弹性体覆盖在由刚性基底从下方界定薄液膜上。进行了线性稳定性分析以获得渐近关系,然后将其与完整特征方程的解进行比较。在液 - 固情况下,演化方程的数值解表明,范德华力导致液膜变薄以及膜凹陷下方的弹性体固体增厚。包含短程排斥力表明可能形成规则图案,其中流体脊位于固体凹陷处。在固 - 液情况下,范德华力导致固体层在液膜去湿之前破裂。此处给出的结果支持这样一种观点,即薄液膜的去湿可用于在软聚合物固体上创建具有地形图案的表面。

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