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超越 Cassie 模式的润湿和棋盘图案表面上液滴的局部接触角。

Beyond-Cassie Mode of Wetting and Local Contact Angles of Droplets on Checkboard-Patterned Surfaces.

机构信息

Chair of Building Physics, ETH Zürich (Swiss Federal Institute of Technology in Zürich) , Zürich, Switzerland.

Laboratory of Multiscale Studies in Building Physics, Empa (Swiss Federal Laboratories for Materials Science and Technology) , Dübendorf, Switzerland.

出版信息

Langmuir. 2017 Jun 20;33(24):6192-6200. doi: 10.1021/acs.langmuir.7b01471. Epub 2017 Jun 7.

Abstract

Droplet wetting and distortion on flat surfaces with heterogeneous wettability are studied using the 3D Shan-Chen pseudopotential multiphase lattice Boltzmann model (LBM). The contact angles are compared with the Cassie mode, which predicts an apparent contact angle for flat surfaces with different wetting properties, where the droplet size is large compared to the size of the heterogeneity. In this study, the surface studied consists in a regular checkboard pattern with two different Young's contact angles (hydrophilic and hydrophobic) and equal surface fraction. The droplet size and patch size of the checkboard are varied beyond the limit where Cassie's equation is valid. A critical ratio of patch size to droplet radius is found below which the apparent contact angle follows the Cassie mode. Above the critical value, the droplet shape changes from a spherical cap to a more distorted form, and no single contact angle can be determined. The local contact angles are found to vary along the contact line between minimum and maximum values. The droplet is found to wet preferentially the hydrophilic region, and the wetted area fraction of the hydrophilic region increases quasi-linearly with the ratio between patch and droplet sizes. We propose a new equation beyond the critical ratio, defining an equivalent contact angle, where the wetted area fractions are used as weighting coefficients for the maximum and minimum local contact angles. This equivalent contact angle is found to equal Cassie's contact angle.

摘要

使用 3D Shan-Chen 伪势多相格子玻尔兹曼模型(LBM)研究了具有不均匀润湿性的平面上液滴的润湿和变形。将接触角与 Cassie 模式进行了比较,Cassie 模式预测了具有不同润湿性的平面的表观接触角,其中液滴尺寸与非均相尺寸相比较大。在本研究中,研究的表面由具有两个不同杨氏接触角(亲水和疏水)且表面分数相等的规则棋盘图案组成。棋盘的液滴尺寸和斑块尺寸的变化超出了 Cassie 方程有效的范围。发现了一个斑块尺寸与液滴半径的临界比值,低于该值,表观接触角遵循 Cassie 模式。在临界值以上,液滴形状从球形帽变为更变形的形状,并且无法确定单个接触角。发现局部接触角沿着接触线从最小值到最大值变化。发现液滴优先润湿亲水区域,并且亲水区域的润湿面积分数与斑块和液滴尺寸之间的比值呈准线性增加。我们提出了一个新的方程,超出了临界比值,定义了等效接触角,其中润湿面积分数用作最大和最小局部接触角的加权系数。发现这个等效接触角等于 Cassie 的接触角。

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