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接触角滞后的本构模型。

Constitutive modeling of contact angle hysteresis.

作者信息

Vedantam Srikanth, Panchagnula Mahesh V

机构信息

Department of Mechanical Engineering, National University of Singapore, Singapore.

出版信息

J Colloid Interface Sci. 2008 May 15;321(2):393-400. doi: 10.1016/j.jcis.2008.01.056. Epub 2008 Feb 20.

Abstract

We introduce a phase field model of wetting of surfaces by sessile drops. The theory uses a two-dimensional non-conserved phase field variable to parametrize the Gibbs free energy of the three-dimensional system. Contact line tension and contact angle hysteresis arise from the gradient term in the free energy and the kinetic coefficient respectively. A significant advantage of this approach is in the constitutive specification of hysteresis. The advancing and receding angles of a surface, the liquid-vapor interfacial energy and three-phase line tension are the only required constitutive inputs to the model. We first simulate hysteresis on a smooth chemically homogeneous surface using this theory. Next we show that it is possible to study heterogeneous surfaces whose component surfaces are themselves hysteretic. We use this theory to examine the wetting of a surface containing a circular heterogeneous island. The contact angle for this case is found to be determined solely by the material properties at the contact line in accord with recent experimental data.

摘要

我们引入了一个关于固着液滴在表面上润湿的相场模型。该理论使用二维非守恒相场变量来参数化三维系统的吉布斯自由能。接触线张力和接触角滞后现象分别源于自由能中的梯度项和动力学系数。这种方法的一个显著优点在于滞后现象的本构规范。表面的前进角和后退角、液 - 气界面能以及三相线张力是该模型唯一所需的本构输入。我们首先使用该理论在光滑的化学均匀表面上模拟滞后现象。接下来我们表明,有可能研究其组成表面本身具有滞后现象的异质表面。我们使用该理论来研究包含圆形异质岛的表面的润湿情况。发现这种情况下的接触角仅由接触线处的材料特性决定,这与最近的实验数据一致。

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