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Wetting failure of hydrophilic surfaces promoted by surface roughness

机译:表面粗糙度助长了亲水性表面的润湿破坏

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摘要

Wetting failure is of vital importance to many physical phenomena, such as industrial coating and drop emission. Here we show when and how the surface roughness promotes the destabilization of a moving contact line on a hydrophilic surface. Beyond the balance of the driving force and viscous resistance where a stable wetting interface is sustained, wetting failure occurs and is modified by the roughness of the surface. The promoting effect arises only when the wetting velocity is high enough to create a gas-liquid-solid composite interface in the vicinity of the moving contact line, and it is a function of the intrinsic contact angle and proportion of solid tops. We propose a model to explain splashes of rough solid spheres impacting into liquids. It reveals a novel concept that dynamic wetting on hydrophilic rough surfaces can be similar to that on hydrophobic surfaces, and brings a new way to design surfaces with specific wetting properties.
机译:湿润失效对于许多物理现象至关重要,例如工业涂层和液滴排放。在这里,我们显示了何时以及如何使表面粗糙度促进亲水性表面上的移动接触线的不稳定。除了驱动力和粘性阻力之间保持稳定的润湿界面的平衡之外,还会发生润湿失效,并且会因表面粗糙度而改变润湿失效。仅当润湿速度足够高以在移动接触线附近形成气-液-固复合界面时,才产生促进作用,并且它是固有接触角和固体顶部比例的函数。我们提出一个模型来解释粗糙的固体球体飞溅到液体中的过程。它揭示了一个新颖的概念,即在亲水性粗糙表面上的动态润湿可以类似于在疏水性表面上的动态润湿,并为设计具有特定润湿特性的表面带来了新的方法。

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