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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Wenzel to Cassie Transition in Superhydrophobic Randomly Rough Surfaces
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Wenzel to Cassie Transition in Superhydrophobic Randomly Rough Surfaces

机译:超疏水随机粗糙表面中的Wenzel至Cassie过渡

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摘要

The possibility of inducing a Wenzel to Cassie transition by vibration on randomly rough surfaces is considered in order to test the robustness of their superhydrophobic character, i.e., the thermodynamic stability of the water-surface Cassie state. By using a self-masked plasma etching process surfaces with a different Wenzel roughness factor r(w), have been tailored. This parameter, given the Young angle, has been theoretically demonstrated to play a key role in determining super-hydrophobicity robustness. When initially placed in Wenzel state and excited by vertical vibration these surfaces show a sensitively different behavior. A Wenzel to Cassie (or de-wetting) transition is observed near the first resonant mode only for the superhydrophobic surface predicted to be robust according the r(w) based criterion. This surface, at relatively low displacement amplitude, gives rise to a complete detachment and bouncing of the drop.
机译:为了测试它们的超疏水特性的鲁棒性,即水表面Cassie状态的热力学稳定性,考虑了通过在随机粗糙表面上的振动引起Wenzel向Cassie转变的可能性。通过使用自掩膜等离子体刻蚀工艺,已定制了具有不同Wenzel粗糙度因子r(w)的表面。在给定杨氏角的情况下,已在理论上证明了该参数在确定超疏水性的​​稳健性中起关键作用。当最初处于Wenzel状态并受到垂直振动激发时,这些表面表现出明显不同的行为。仅在根据基于r(w)的标准预测其坚固的超疏水表面附近,才在第一共振模附近观察到Wenzel至Cassie(或去湿)转变。该表面在相对较低的位移幅度下引起液滴的完全脱离和弹跳。

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