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Droplet migration on hydrophobic–hydrophilic hybrid surfaces: a lattice Boltzmann study

机译:疏水-亲水混合表面上的液滴迁移:晶格玻尔兹曼研究

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In this paper, the fundamental features and mechanism of droplet migration on hydrophobic–hydrophilic hybrid surfaces are investigated using the lattice Boltzmann method. The hybrid surfaces are textured with pillars, which consist of hydrophobic side walls and hydrophilic tops. First, we study the cases with wettability differences between the sides and the tops of the pillars. It is found that, with an insufficient wetting contrast, the upper contact lines are pinned at the edges of the top surface. With an increase of the contact length between the droplet and the side wall of the pillar, a larger wettability difference is required to induce droplet migration. Meanwhile, it is observed that the migration process is gradually speeded up when the droplet covers more hydrophilic regions of the pillar. Moreover, the influence of the bottom substrate's wettability is investigated. Two types of hybrid surfaces are considered, one of which adopts a wettability difference between the bottom substrate and the sides of pillars. The results show that the droplet migration can be promoted by applying a wetting contrast between the bottom substrate and the sides of the pillars, because the contact length between the droplet and the surface can be reduced with an increase in the hydrophobicity of the bottom substrate.
机译:在本文中,使用格子Boltzmann方法研究了疏水-亲水混合表面上液滴迁移的基本特征和机理。混合表面的纹理带有支柱,支柱由疏水性侧壁和亲水性顶部组成。首先,我们研究柱子的侧面和顶部之间的润湿性差异的情况。已经发现,在没有足够的润湿对比度的情况下,上接触线被钉扎在顶表面的边缘处。随着液滴与支柱的侧壁之间的接触长度的增加,需要更大的润湿性差异以引起液滴迁移。同时,观察到当液滴覆盖柱的更多亲水区域时,迁移过程逐渐加速。此外,研究了底部基板的润湿性的影响。考虑了两种类型的混合表面,其中一种采用底部基板和支柱侧面之间的润湿性差异。结果表明,通过在底部基板和支柱的侧面之间施加润湿对比可以促进液滴迁移,因为可以通过增加底部基板的疏水性来减小液滴与表面之间的接触长度。

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