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Modeling Cassie-Baxter State on Superhydrophobic Surfaces

机译:在超疏水表面上建模Cassie-Baxter状态

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The goal of this work is to study the Cassie-Baxter state on the microstructure hydrophobic surfaces. The dependence of the energy barrier on the drop size, contact angle, the gap between the pillars, and pillar width is investigated. We consider the drop in three dimensions using a numerical approach to minimize the free energy of the drop in any situations. Numerical results are obtained for the wetting of a hydrophobic surface textured with a square lattice of pillars. According to the results, we found that the curvature increases allowing the liquid to touch the surface below the posts as the drop loses volume or decreased the contact angle with fixed drop volume. In the situations we considered, the pillar diagonal length is very critical and sensitive to the details of the surface patterning when the drop volume is larger.
机译:这项工作的目的是研究微结构疏水表面上的Cassie-Baxter状态。研究了势垒对液滴尺寸,接触角,柱子之间的间隙和柱子宽度的依赖性。我们使用数值方法考虑三维降落,以在任何情况下将降落的自由能减至最小。获得了润湿具有柱状方格的疏水表面的数值结果。根据结果​​,我们发现,随着液滴的损失体积或固定液滴体积的接触角减小,曲率增加,允许液体接触柱下方的表面。在我们考虑的情况下,当墨滴量较大时,支柱的对角线长度非常关键,并且对表面图案的细节敏感。

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