首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >HYDROPHOBICITY OF HIERARCHICAL STRUCTURED SUPER-HYDROPHOBIC SURFACES WITH THE SECONDARY PILLARS; A LATTICE BOLTZMANN METHOD WITH HIGH-DENSITY RATIO
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HYDROPHOBICITY OF HIERARCHICAL STRUCTURED SUPER-HYDROPHOBIC SURFACES WITH THE SECONDARY PILLARS; A LATTICE BOLTZMANN METHOD WITH HIGH-DENSITY RATIO

机译:分层结构化超级疏水表面的疏水性与二级柱;具有高密度比的格子玻璃板方法

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This paper studies the enhanced super-hydrophobicity on surfaces with hierarchical textures. Surface roughness increases the Contact angle(CA). Recently hierarchical structure surface, which is secondary structures established on the simple pillars or pyramids array, has gained lot of interest from researchers because hydrophobicity of hierarchical structure was found to be greater than in simple structure. In this paper, CA for two surface cases are measured with the computational fluid dynamics (CFD) modeling, known as lattice Boltzmann method (LBM). The first case is "simple structure", which is composed of square cross section pillar array. The second one is "hierarchical structure", which is composed of secondary pillar structure added on the base pillar array. Secondary pillar structure is comparatively small, about 50-100 times smaller than base pillar. Simulation of water droplets, which are statically placed on each of the surfaces, is carried out using the projection method of LBM. Projection method is used to in this study to be able to model the large density difference between air and water. Two phase immiscible fluids flow consisting of air and water (density ratio of air to water = 1:1000) is built in 3D space by using the projection method. CAs and the Cassie, Wenzel regime characteristic for hierarchical structured surface case are compared to that of simple structured surface. We were succeeded in quantifying the benefit of having hierarchical textures; the addition of the secondary structure enhances both the apparent contact angle and the robustness of the non-wetting regime.
机译:本文研究了具有等级纹理的表面上增强的超疏水性。表面粗糙度增加接触角(CA)。最近,作为在简单的柱子或金字塔阵列上建立的二级结构的层次结构表面已经来自研究人员的许多兴趣,因为发现层次结构的疏水性大于简单的结构。本文用计算流体动力学(CFD)建模测量了两个表面壳的CA,称为Lattice Boltzmann方法(LBM)。第一种情况是“简单结构”,由方形横截面柱阵列组成。第二个是“等级结构”,其由添加在基柱阵列上的次级柱结构组成。二次柱结构比较小,比碱基柱小约50-100倍。使用LBM的投影方法进行静态放置在每个表面上的水滴的模拟。投影方法用于本研究能够建模空气和水之间的大密度差异。通过使用投影方法,由空气和水(空气密度比= 1:1000的空气= 1:1000的密度比)组成的两相加热流动。 CAS和CASSIE,与阶级结构表面壳体的温革制度特征与简单的结构表面相比。我们成功地量化了具有分层纹理的好处;添加二级结构增强了非润湿状态的表观接触角和鲁棒性。

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