Profile of capillary bridges between two vertically stacked cylindrical fibers under gravitational effect

毛细管作用 材料科学 复合材料 万有引力 光学 物理 经典力学
作者
Xiaohang Sun,Hoon Joo Lee,Stephen Michielsen,Eugene Wilusz
出处
期刊:Applied Surface Science [Elsevier BV]
卷期号:441: 791-797 被引量:13
标识
DOI:10.1016/j.apsusc.2018.02.109
摘要

Although profiles of axisymmetric capillary bridges between two cylindrical fibers have been extensively studied, little research has been reported on capillary bridges under external forces such as the gravitational force. This is because external forces add significant complications to the Laplace–Young equation, making it difficult to predict drop profiles based on analytical approaches. In this paper, simulations of capillary bridges between two vertically stacked cylindrical fibers with gravitational effect taken into consideration are studied. The asymmetrical structure of capillary bridges that are hard to predict based on analytical approaches was studied via a numerical approach based on Surface Evolver (SE). The axial and the circumferential spreading of liquids on two identical fibers in the presence of gravitational effects are predicted to determine when the gravitational effects are significant or can be neglected. The effect of liquid volume, equilibrium contact angle, the distance between two fibers and fiber radii. The simulation results were verified by comparing them with experimental measurements. Based on SE simulations, curves representing the spreading of capillary bridges along the two cylindrical fibers were obtained. The gravitational effect was scaled based on the difference of the spreading on upper and lower fibers.

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