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首页> 外文期刊>ACS Omega >The Shape of Heavy Droplets on Superhydrophobic Surfaces
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The Shape of Heavy Droplets on Superhydrophobic Surfaces

机译:超疏水表面上重液滴的形状

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An analytical model is developed to describe the shape of heavy droplets on solid surfaces with arbitrary wetting properties (corresponding to the contact angles ranging from 0 to 180°). This model, based on a surface of revolution by rotating two elliptic arcs, reduces to the ellipsoid model for a hydrophilic case. Experimental measurements are also conducted to verify the model. It shows that the mean curvature distribution of the developed model agrees well with that of real droplets on hydrophobic surfaces, even on superhydrophobic surfaces. For water droplets with a volume up to 1000 μL on superhydrophobic surfaces having a 162° contact angle, the errors of the predicted heights, maximum radius, and wetting radius using this model are less than 1.7%, which suggests the capability of this model in studying the wettability of heavy droplets. This model provides an accurate theoretical basis for designing and controlling the spread, transport, condensation, and evaporation of heavy droplets on superhydrophobic surfaces.
机译:开发了一种分析模型,以描述具有任意润湿性质的固体表面上的重型液滴的形状(对应于0至180°的接触角)。该模型基于旋转两个椭圆弧的旋转表面,减少到亲水性壳体的椭圆形模型。还进行了实验测量以验证模型。它表明,即使在超疏水表面上,发达模型的平均曲率分布也与疏水表面上的真实液滴的曲率分布均匀。对于具有162°接触角的超疏水表面上具有高达1000μl的水滴,使用该模型的预测高度,最大半径和润湿半径的误差小于1.7%,这表明了该模型的能力研究重型液滴的润湿性。该型号为设计和控制超疏水表面上重型液滴的涂抹,运输,冷凝和蒸发提供了准确的理论依据。

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