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Underwater Superhydrophobiciy: Fundamentals and Applications

机译:水下超疏水性:基础和应用

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Bioinspired superhydrophobic surfaces have attracted great interests from fundamental researches to engineering applications. The functionality of superhydrophobicity, especially for an underwater situation, depends on a large area fraction of entrapped liquid-gas interfaces, which, however, are subject to instabilities induced by various physical phenomena, such as pressurization, air diffusion, fluid flow, and condensation. The wetting states strongly affssect the functionality of superhydrophobic surface, like liquid slippage and cavitation. The current work is dedicated to elucidating the underlying mechanisms of stability and wetting transition of underwater superhydrophobicity, providing novel strategies for durable and robust design, and introducing the applications in drag reduction and cavitation control.
机译:Bioinspired超疏水表面吸引了对工程应用的根本研究的极大兴趣。超疏水性的​​功能,特别是对于水下情况,取决于捕获的液体气体界面的大面积分数,然而,通过各种物理现象(例如加压,空气扩散,流体流动和冷凝)诱导的含量的大面积分数。 。润湿状态强烈粘合超疏水表面的功能,如液体滑动和空化。目前的工作致力于阐明水下超水性稳定性和润湿过渡的潜在机制,为耐用且稳健的设计提供新颖的策略,并在减阻和空化控制中引入应用。

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