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Ellipsoidal particles at fluid interfaces

机译:流体界面处的椭球形颗粒

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摘要

For partially wetting, ellipsoidal colloids trapped at a fluid interface, their effective, interfacemediated interactions of capillary and fluctuation-induced type are analyzed. For contact angles different from 90, static interface deformations arise which lead to anisotropic capillary forces that are substantial already for micrometer-sized particles. The capillary problem is solved using an efficient perturbative treatment which allows a fast determination of the capillary interaction for all distances between and orientations of two particles. Besides static capillary forces, fluctuation-induced forces caused by thermally excited capillary waves arise at fluid interfaces. For the specific choice of a spatially fixed three-phase contact line, the asymptotic behavior of the fluctuation-induced force is determined analytically for both the close-distance and the long-distance regime and compared to numerical solutions.
机译:对于部分润湿的,截留在流体界面处的椭球形胶体,分析了它们在毛细管和起伏诱导类型之间的有效介导相互作用。对于不同于90度的接触角,会产生静态界面变形,这会导致各向异性的毛细管力,该力已经对于微米级的颗粒而言已经相当大。使用有效的扰动处理解决了毛细管问题,该方法可以快速确定两个粒子之间的所有距离和方向的毛细管相互作用。除静态毛细作用力外,在流体界面处还会产生由热激发的毛细波引起的波动引起的作用力。对于空间固定的三相接触线的特定选择,对于近距离和长距离两种情况,通过解析确定波动感应力的渐近行为,并与数值解进行比较。

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