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软弹性体层附近薄液膜的去湿

Dewetting of thin liquid films near soft elastomeric layers.

作者信息

Kumar Satish, Matar Omar K

机构信息

Department of Chemical Engineering and Materials Science, University of Minnesota, 151 Amundson Hall, 421 Washington Avenue, SE, Minneapolis, MN 55455, USA.

出版信息

J Colloid Interface Sci. 2004 May 15;273(2):581-8. doi: 10.1016/j.jcis.2003.11.044.

Abstract

Thin liquid film instabilities driven by van der Waals forces and in the proximity of soft elastomeric layers are considered in this work through two model problems: (i) a liquid film resting on an elastomeric layer and (ii) a liquid film bounded from one side by a rigid substrate and from the other side by an elastomeric layer. The elastomeric layers are modeled as linear viscoelastic solids, van der Waals forces are assumed to act only in the liquid, and lubrication theory and linear stability analysis are applied. For a liquid film resting on an elastomeric layer, substrate deformability has a destabilizing effect, as evidenced by an increase in the maximum growth rate and range of unstable wavenumbers. The destabilization worsens for thicker solid layers and is due to a lowering of the effective liquid-air interfacial tension. For an elastomeric layer resting on a liquid film, layer deformability has a stabilizing effect for thin layers but a destabilizing effect for thicker layers, with the former due to an enhancement and the latter due to a reduction of the effective solid-air interfacial tension. The results presented here suggest the possibility of exploiting the dewetting of thin liquid films to create topographically patterned surfaces on soft polymeric solids.

摘要

在这项工作中,通过两个模型问题来考虑由范德华力驱动且靠近软弹性体层的薄液膜不稳定性:(i)静置在弹性体层上的液膜,以及(ii)一侧由刚性基板、另一侧由弹性体层界定的液膜。弹性体层被建模为线性粘弹性固体,假定范德华力仅在液体中起作用,并应用润滑理论和线性稳定性分析。对于静置在弹性体层上的液膜,基底可变形性具有去稳定作用,这表现为最大增长率和不稳定波数范围的增加。对于较厚的固体层,这种去稳定作用会加剧,这是由于有效液 - 气界面张力降低所致。对于静置在液膜上的弹性体层,层可变形性对薄层具有稳定作用,但对较厚层具有去稳定作用,前者是由于有效固 - 气界面张力增强,后者是由于有效固 - 气界面张力降低。此处给出的结果表明,利用薄液膜的去湿作用在软聚合物固体上创建具有拓扑图案表面的可能性。

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