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An Experimental Method for Three-Dimensional Dynamic Contact Angle Analysis

机译:三维动态接触角分析的实验方法

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Droplet dynamics analysis concerns the measurements of droplet volume, cap and base areas and contact angles, as they change in time to study evaporation, wettability, adhesion and other surface phenomena and properties. In a typical procedure, the two-dimensional measurements are based on a series of images recorded at successive stages of the experiment from a single view. Only a few basic dimensions of sessile droplets are commonly measured from such images, while many other quantities of interest are derived utilizing geometrical relationships. The reliability of these calculations is limited by the necessary assumption that the droplet shape can be approximated as a spherical cap. In reality, the sessile droplet shapes are influenced by gravity, liquid surface tension, local surface anisotropy and microstructure, which often produce non-spherical cap shapes. This paper describes an experimental methodology for determination of key parameters, such as volume and contact angle for dynamic sessile droplets that can be approximated either by spherical or ellipsoidal cap geometries. In this method, images collected simultaneously from three cameras positioned orthogonally to each other are used to record the dynamic behavior of non-spherical droplets. Droplet shape is approximated as an ellipsoid of arbitrary orientation with respect to the cameras, which allows determination of volume and contact angle along the base perimeter. A major advantage of this method is that the dynamic parameters of droplets on anisotropic surfaces can be determined even when the orientation of the axes changes throughout the droplet lifetime. The method is illustrated with experimental results for a spherical and an ellipsoidal droplet.
机译:液滴动力学分析涉及液滴体积,帽盖和基部面积以及接触角的测量,因为它们会随着时间变化而研究蒸发,润湿性,附着力以及其他表面现象和特性。在典型的过程中,二维测量基于在单个视图中连续进行的实验阶段记录的一系列图像。通常从此类图像中测量出无蒂液滴的几个基本尺寸,而利用几何关系得出了许多其他感兴趣的量。这些计算的可靠性受到液滴形状可以近似为球形帽的必要假定的限制。实际上,无蒂液滴的形状受重力,液体表面张力,局部表面各向异性和微观结构的影响,这些通常会产生非球形的瓶盖形状。本文介绍了一种用于确定关键参数的实验方法,例如可通过球形或椭圆形帽盖几何结构近似的动态无柄液滴的体积和接触角。在这种方法中,从彼此正交放置的三个相机同时收集的图像用于记录非球形液滴的动态行为。液滴形状近似为相对于照相机的任意方向的椭圆体,从而可以确定沿基周长的体积和接触角。该方法的主要优点是,即使在整个液滴寿命中轴的方向发生变化时,也可以确定各向异性表面上液滴的动态参数。用球形和椭圆形液滴的实验结果说明了该方法。

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