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Self-similarity of contact line depinning from textured surfaces

机译:接触线从纹理表面脱毛的自相似性

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摘要

The mobility of drops on surfaces is important in many biological and industrial processes, but the phenomena governing their adhesion, which is dictated by the morphology of the three-phase contact line, remain unclear. Here we describe a technique for measuring the dynamic behaviour of the three-phase contact line at micron length scales using environmental scanning electron microscopy. We examine a superhydrophobic surface on which a drop’s adhesion is governed by capillary bridges at the receding contact line. We measure the microscale receding contact angle of each bridge and show that the Gibbs criterion is satisfied at the microscale. We reveal a hitherto unknown self-similar depinning mechanism that shows how some hierarchical textures such as lotus leaves lead to reduced pinning, and counter-intuitively, how some lead to increased pinning. We develop a model to predict adhesion force and experimentally verify the model’s broad applicability on both synthetic and natural textured surfaces.
机译:在许多生物学和工业过程中,液滴在表面上的迁移率很重要,但是,由三相接触线的形态所决定的,决定其附着力的现象仍然不清楚。在这里,我们描述了一种使用环境扫描电子显微镜在微米长度尺度上测量三相接触线动态行为的技术。我们检查了一个超疏水表面,在该表面上,液滴的附着力是由后退接触线处的毛细管桥控制的。我们测量了每座桥梁的微观尺度后退接触角,并表明在微观尺度上满足了吉布斯准则。我们揭示了一种迄今未知的自相似去钉机制,该机制显示了某些分层纹理(例如荷叶)如何导致钉扎减少,以及与直觉相反的是,有些如何导致钉扎增加。我们开发了一种模型来预测粘附力,并通过实验验证了该模型在合成和天然纹理表面上的广泛适用性。

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