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Modelling and Investigation of the Dependence of Superhydrophobic Properties of Nanosurfaces on the Topology of Microchannels

机译:纳米梭形超疏水性质依赖性的建模与研究微通道拓扑结构

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In the Cassie-Baxter state anisotropic superhydrophobic surfaces have high lubricating properties. Such superhydrophobic surfaces are used in medical implants, aircraft industry, vortex bioreactors etc. In spite of the fact that quantitative understanding of fluid dynamics on anisotropic superhydrophobic surfaces has been broadened substantially for last several years, there still are some unsolved problems in this field. This work investigates dynamics of a liquid on unidirectional superhydrophobic surfaces in the Cassie-Baxter state, when surface texture is filled with gas and, consequently, the liquid virtually is located on some kind of an air cushion. Energy of the interphase boundary liquid-gas is much smaller than energy of the interphase boundary solid-liquid, that is why the contact angle at wetting such surfaces differs a lot from the Young contact angle and depends on contact area ratio of liquid-gas and liquid-solid in visible contact of liquid and surface. Considering difference in energy obtained if we slightly shift the three-phase contact line, expression for macroscopic equilibrium contact angle, which describes the Cassie-Baxter state, can be deduced. In the work the design formula for computing local-slip length profiles of liquid on the considered superhydrophobic surfaces is obtained.
机译:在Cassie-Baxter状态各向异性超疏水表面具有高润滑性质。这种超疏水表面用于医疗植入物,飞机行业,涡流生物反应器等。尽管存在对各向异性超疏水表面上的流体动力学的定量理解大幅扩大到持续数年,但该领域仍然存在一些未解决的问题。该工作调查Cassie-Baxter状态下单向超疏水表面上的液体的动态,当用气体填充表面纹理时,液体几乎位于某种气垫上。相位边界液 - 气体的能量远小于相位边界固体液体的能量,这就是为什么润湿时的接触角与幼小接触角不同,并且取决于液体气体的接触面积比和液体气体液体和表面可见接触中的液体固体。考虑到所获得的能量差异,如果我们稍微移动三相接触线,可以推导出描述Cassie-Baxter状态的宏观平衡角的表达。在工作中,获得用于计算所考虑的超疏水表面上的液体局部滑动长度曲线的设计公式。

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