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Numerical study of the wetting and mobility of liquid droplets on horizontal and inclined flat and microgrooved surfaces

机译:水平倾斜平面液体液滴润湿和迁移率的数值研究

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Designing hydrophobic surfaces with controllable wettability has attracted much interest in the recent times. The present study seeks to simulate the static and dynamic wetting behavior of liquid droplets on horizontal flat and microgrooved surfaces and compare the findings with experimentally obtained data. Using an open-source software, a 3D drop-shape model is developed to numerically analyze the shape of liquid droplets and anisotropic wetting for a wide range of parametric space. The effects of droplet volume, variation in the microgroove geometry and wettability gradient along the parallel and perpendicular directions of the microgrooved surfaces etc. on the drop shape and apparent contact angle are examined. Simulation and analysis are extended to analyze the wetting behavior of V-grooved geometry and are compared with the findings on rectangular microgrooved surfaces. For creating wettability gradient along the parallel direction of the grooves, periodic PDMS (Polydimethylsiloxane) coating is considered and increased hydrophobicity of the surface is observed with significant increase in the parallel contact angle for this case. The simulated results manifest considerable differences in the wetting pattern of the microgrooved and flat surfaces and are found out to be in good agreement with the experimental findings.
机译:设计具有可控润湿性的疏水表面已经吸引了最近的兴趣。本研究旨在模拟水平平坦和微血迹表面上液滴的静态和动态润湿行为,并将研究结果与实验获得的数据进行比较。使用开源软件,开发了一种3D滴形模型,以对液滴的形状进行数字分析,以及各种参数空间的各向异性润湿。研究了液滴体积,微型器几何形状和润湿性梯度沿着微液相传等的平行和垂直方向的影响。延长模拟和分析以分​​析V沟槽几何形状的润湿行为,并与矩形微覆盖表面上的结果进行比较。为了沿着凹槽的平行方向创造润湿性梯度,考虑周期性PDMS(聚二甲基硅氧烷)涂层并观察到这种情况的平行接触角的显着增加,观察到表面的疏水性。模拟结果表明了微观和平坦表面的润湿模式的相当大的差异,并与实验结果吻合良好。

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