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Contact Angle Profiles for Droplets on Omniphilic Surfaces in the Presence of Tangential Forces

机译:在切向力存在下全耳面上的液滴的接触角轮廓

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In real life, sessile droplets usually have a three-dimensional shape, making it difficult to understand their forced wetting behavior, both from an experimental and a theoretical perspective. Even in the case of spreading under quasi-static conditions, where the droplet shape is described by the Young–Laplace equation, there is no fundamental approach to describe the contact line evolution. In the present work, a few existing approaches on this issue are analyzed and assessed. It is shown that an experimentally inspired fixed shape for the contact line of droplets that are spreading under the action of tangential forces can be considered equivalent to a theory for contact line motion. There is a lack of experimental data for contact line evolution under arbitrary scenarios of forces. Such data will be very helpful for the further development of the suggested approach to contact line motion. Of particular interest is the case of small contact angle droplets, for which a top view can clearly indicate the contact line location. On the contrary, in such droplets, the direct experimental measurement of contact angle profile is very difficult. This must be estimated theoretically; thus, a special approach has been developed here for this purpose.
机译:在现实生活中,无柄液滴通常具有三维形状,从而难以理于实验和理论观点的强迫润湿行为。即使在静态条件下扩散的情况下,在幼小和Ndash描述液滴形状的情况下;拉普拉斯方程,没有基本的方法来描述接触线的进化。在目前的工作中,分析并评估了一些关于此问题的现有方法。结果表明,在切向力的作用下散布的实验激发的固定形状可以被认为是相当于接触线运动的理论。在任意的力方案下缺乏接触线演变的实验数据。这些数据对进一步发展的接触线路运动的方法非常有帮助。特别感兴趣的是小接触角液滴的情况,顶视图可以清楚地表明接触线位置。相反,在这种液滴中,接触角轮廓的直接实验测量非常困难。这必须理论上估计;因此,此目的已经在此开发了一种特殊方法。

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