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受限胶体悬浮液干燥过程中的离层理论。

The theory of delamination during drying of confined colloidal suspensions.

机构信息

Department of Chemical and Biological Engineering, Princeton University, Princeton, NJ 08540, USA.

出版信息

J Phys Condens Matter. 2011 May 18;23(19):194104. doi: 10.1088/0953-8984/23/19/194104. Epub 2011 Apr 27.

Abstract

Recent experiments on the drying of colloidal films in confined thin rectangular geometries show an interesting new phenomenon: the delamination of the colloidal suspension from the cavity wall. The theory developed in this paper explains the phenomenon by applying the Griffith energy criteria to a poroelastic film of Hertzian spheres. Prior to delamination, flow due to drying compresses the film in the direction of flow and generates tension in the transverse direction. Delamination allows relaxation in both the transverse tensile stresses and the axial compression. Preliminary numerical solutions suggest that the elastic energy recovered should increase linearly with the length of the close-packed film. That suggests a simple analytical solution that predicts the advancing of the delamination as the length of the close-packed region increases and explains qualitatively the essential features of the phenomenon.

摘要

最近在受限的薄矩形几何形状中胶体膜干燥的实验显示了一个有趣的新现象

胶体悬浮液从腔壁分层。本文通过将格里菲斯能量准则应用于赫芝球体的多孔弹性膜,解释了这一现象。在分层之前,由于干燥引起的流动沿流动方向压缩膜,并在横向产生张力。分层允许在横向拉伸应力和轴向压缩中都得到松弛。初步数值解表明,恢复的弹性能应该随紧密堆积膜的长度线性增加。这表明了一个简单的解析解,该解预测了随着紧密堆积区域长度的增加分层的推进,并定性地解释了该现象的基本特征。

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