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Effect of Equilibrium Contact Angle on Drainage Property at Microperiodic Structure with Staggered Pillar Array

机译:平衡接触角对交错柱阵列微周期结构排水性能的影响

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摘要

The purpose of this research is to clarity the effects of the equilibrium contact angle on the drainage property of water from microperiodic structures. Resin samples with 3 different equilibrium contact angles were fabricated by lithography and the UV nanoimprint technique. To consider the effect of the Cassie-Baxter and Wenzel states on drainage property, four types of microperiodic structures with varying aspect ratios were fabricated. Thus, in total,12 test pieces, each consisting of a staggered pillar array, were used. We attempted to improve the drainage property by optimizing the microperiodic structure. A tilted plate method was modified to evaluate these microperiodic structures. From the results, the sliding angle and sliding velocity reached 14o and 171.9 mm/s, respectively, when a material with a sliding angle of 65° on a smooth surface was used. A promising result is that the threshold level for hydrophobicity introduced by the microperiodic structures was below 90° for a water droplet in the Cassie-Baxter state.
机译:这项研究的目的是澄清平衡接触角对微周期结构中水的排水特性的影响。通过光刻和紫外纳米压印技术制备了具有3种不同平衡接触角的树脂样品。为了考虑Cassie-Baxter和Wenzel态对排水性能的影响,制造了四种长宽比不同的微周期结构。因此,总共使用了12个试件,每个试件由交错的柱状阵列组成。我们试图通过优化微周期结构来改善排水性能。修改了倾斜板法以评估这些微周期结构。根据结果​​,当使用在光滑表面上具有65°滑动角的材料时,滑动角和滑动速度分别达到14o和171.9 mm / s。有希望的结果是,对于Cassie-Baxter状态的水滴,微周期结构引入的疏水性阈值水平低于90°。

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