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液滴脱钉中与形貌相关的有效接触线

Topography-Dependent Effective Contact Line in Droplet Depinning.

作者信息

Jiang Youhua, Sun Yujin, Drelich Jaroslaw W, Choi Chang-Hwan

机构信息

Department of Mechanical Engineering, Stevens Institute of Technology, Hoboken, New Jersey 07030, USA.

Department of Materials Science and Engineering, Michigan Technological University, Houghton, Michigan 49931, USA.

出版信息

Phys Rev Lett. 2020 Oct 30;125(18):184502. doi: 10.1103/PhysRevLett.125.184502.

Abstract

The mobility of a fakir state droplet on a structured surface is fundamentally determined by the effective length of a microscopic contact line. However, it is largely unknown how the surface topography determines the effective contact line length. Based on the direct measurement of droplet adhesion force and the visualization of contact line, this work shows that effective contact line length is topography dependent as opposed to prior notion. On pored surfaces, contact line is not distorted, and the effective length approaches the droplet apparent perimeter regardless of pore dimensions. On pillared surfaces, the distortion of contact line is significantly dependent on the packing density of the pillar structures so that the effective length is as small as a pillar diameter on densely packed pillars and as large as a pillar perimeter on sparsely-packed pillars, while changing linearly between the two extremes.

摘要

在结构化表面上,法基尔态液滴的迁移率从根本上由微观接触线的有效长度决定。然而,表面形貌如何决定有效接触线长度在很大程度上尚不清楚。基于对液滴粘附力的直接测量和接触线的可视化,这项工作表明,与先前的观念相反,有效接触线长度取决于形貌。在多孔表面上,接触线不会变形,并且无论孔径大小,有效长度都接近液滴的表观周长。在柱状表面上,接触线的变形显著取决于柱状结构的堆积密度,以至于在密集堆积的柱子上有效长度小至柱子直径,而在稀疏堆积的柱子上大至柱子周长,并且在这两个极端之间呈线性变化。

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