Characteristics of air entrainment during dynamic wetting failure along a planar substrate

夹带空气 润湿 夹带(生物音乐学) 弯月面 材料科学 机械 基质(水族馆) 平面的 复合材料 光学 地质学 物理 声学 海洋学 计算机图形学(图像) 入射(几何) 节奏 计算机科学
作者
Eric Vandre,Márcio S. Carvalho,Satish Kumar
出处
期刊:Journal of Fluid Mechanics [Cambridge University Press]
卷期号:747: 119-140 被引量:40
标识
DOI:10.1017/jfm.2014.110
摘要

Abstract Characteristic substrate speeds and meniscus shapes associated with the onset of air entrainment are studied during dynamic wetting failure along a planar substrate. Using high-speed video, the behaviour of the dynamic contact line (DCL) is recorded as a tape substrate is drawn through a bath of a glycerol/water solution. Air entrainment is identified by triangular air films that elongate from the DCL above some critical substrate speed. Meniscus confinement within a narrow gap between the substrate and a stationary plate is shown to delay air entrainment to higher speeds for a wide range of liquid viscosities, expanding upon the findings of Vandre, Carvalho & Kumar ( J. Fluid Mech. , vol. 707, 2012, pp. 496–520). A pressurized liquid reservoir controls the meniscus position within the confinement gap. It is found that liquid pressurization further postpones air entrainment when the meniscus is located near a sharp corner along the stationary plate. Meniscus shapes recorded near the DCL demonstrate that operating conditions influence the size of entrained air films, with smaller films appearing in the more viscous solutions. Regardless of size, air films become unstable to thickness perturbations and ultimately rupture, leading to the entrainment of air bubbles. Recorded critical speeds and air-film sizes compare well to predictions from a hydrodynamic model for dynamic wetting failure, suggesting that strong air stresses near the DCL trigger the onset of air entrainment.
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