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MICROSCOPIC AND MACROSCOPIC DYNAMIC INTERFACE SHAPES AND THE INTERPRETATION OF DYNAMIC CONTACT ANGLES

机译:微观和宏观动态界面形状及动态接触角的解释

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We have studied shapes of dynamic fluid interfaces at distances less than or equal to 1700 mu m from the moving contact line at capillary numbers (Ca) ranging from 10(-3) to 10(-1). Near the moving contact line where viscous deformation is important, an analysis valid to O(1) in Ca describes the shape of the fluid interface. Static capillarity should describe the interface shape far from the contact line. We have quantitatively determined the extent of the regions described by the analysis with viscous deformation and bq a static shape as a function of Ca. We observe a third portion of the interface between the two regions cited above, which is not described by either the analysis with viscous deformation or a static shape. In this third region the interface shape is controlled by viscous and gravitational forces of comparable magnitude. We detect significant viscous deformation even far from the contact line at Ca greater than or similar to 0.01, Our measured dynamic contact angle parameter extracted by fitting the analysis with viscous deformation to the shape near the moving contact line coincides with the contact angle of the static-like shape far from the contact line. We measure and explain the discrepancy between this dynamic contact angle parameter and the apparent contact angles based on meniscus or apex: heights. Our observations of viscous effects at large distances from the contact line have implications for dynamic contact angle measurements in capillary tubes. (C) 1996 Academic Press, Inc. [References: 15]
机译:我们研究了在毛细管数(Ca)为10(-3)至10(-1)的情况下,距活动接触线小于或等于1700μm的动态流体界面的形状。在粘性变形很重要的移动接触线附近,对Ca中的O(1)有效的分析描述了流体界面的形状。静态毛细作用应描述远离接触线的界面形状。我们已经定量地确定了通过粘性变形和静态形状作为Ca函数的分析所描述的区域的范围。我们观察到上述两个区域之间的界面的第三部分,无论是通过粘性变形分析还是静态形状分析都无法描述。在该第三区域中,界面形状由相当大小的粘性和重力控制。我们甚至在距Ca大于或接近0.01的接触线远处也检测到显着的粘性变形,我们通过将粘性变形分析与运动接触线附近的形状相拟合而提取的测得的动态接触角参数与静态接触角重合形状远离接触线。我们测量并解释此动态接触角参数与基于弯月面或顶点(高度)的视在接触角之间的差异。我们在距离接触线很远的距离上观察到的粘性效应,对毛细管中动态接触角的测量有影响。 (C)1996 Academic Press,Inc. [参考:15]

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