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软润湿:一种用于柱体形貌和软度相关液滴脱钉力的分析模型。

Soft wetting: an analytical model for pillar topography- and softness-dependent droplet depinning force.

作者信息

Jiang Youhua, Wang Zhujiang

机构信息

Department of Mechanical Engineering (Robotics), Guangdong Technion - Israel Institute of Technology, Shantou, Guangdong 515063, China.

Faculty of Mechanical Engineering, Technion - Israel Institute of Technology, Haifa 3200003, Israel.

出版信息

Soft Matter. 2024 May 1;20(17):3593-3601. doi: 10.1039/d4sm00128a.

Abstract

The extent to which a droplet pins on a textured substrate is determined by the dynamics of the contact line and the liquid-vapor interface. However, the synergistic contribution of contact line sliding and interface distortion to the droplet depinning force remains unknown. More strikingly, current models fail to predict the depinning force per unit length of droplets on soft pillar arrays. Therefore, we fabricate soft pillar arrays with varying geometrical dimensions and mechanical properties and measure the depinning forces per unit length by allowing droplets to evaporate on such substrates. We then analyze the decrease in excess Gibbs free energy of the apparent droplet caused by the detachment of the droplet boundary from the previously pinned pillars. In contrast to prior notions, based on the measured decreases in excess Gibbs free energy, we find that the coefficient, that governs the ratio of interface distortion's contribution to the depinning force to that of the sliding contact line, increases with a decrease in pillar packing density. By considering the combined contribution from contact line sliding, liquid-vapor interface distortion, and pillar deflection, we introduce an analytical model to predict the droplet depinning force per unit length and corroborate the model using experimental data reported in this and prior studies.

摘要

液滴在纹理化基底上的钉扎程度由接触线和液-气界面的动力学决定。然而,接触线滑动和界面变形对液滴脱钉力的协同贡献仍然未知。更引人注目的是,当前模型无法预测软柱阵列上液滴的单位长度脱钉力。因此,我们制造了具有不同几何尺寸和力学性能的软柱阵列,并通过让液滴在此类基底上蒸发来测量单位长度的脱钉力。然后,我们分析了由于液滴边界与先前钉扎的柱子分离而导致的表观液滴过量吉布斯自由能的降低。与先前的观念相反,基于测得的过量吉布斯自由能的降低,我们发现,控制界面变形对脱钉力的贡献与滑动接触线的贡献之比的系数,随着柱填充密度的降低而增加。通过考虑接触线滑动、液-气界面变形和柱子挠度的综合贡献,我们引入了一个解析模型来预测单位长度的液滴脱钉力,并使用本文及先前研究报告的实验数据对该模型进行了验证。

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