Spreading characteristics of an insoluble surfactant film on a thin liquid layer: comparison between theory and experiment

肺表面活性物质 马朗戈尼效应 材料科学 表面张力 薄膜 图层(电子) 自由面 水溶液 复合材料 机械 光学 热力学 纳米技术 化学 物理 有机化学
作者
Anne Dussaud,Omar Matar,Sandra M. Troian
出处
期刊:Journal of Fluid Mechanics [Cambridge University Press]
卷期号:544 (-1): 23-23 被引量:52
标识
DOI:10.1017/s002211200500621x
摘要

We describe measurements of the surface slope and reconstruction of the interface shape during the spreading of an oleic acid film on the surface of a thin aqueous glycerol mixture. This experimental system closely mimics the behaviour of an insoluble surfactant film driven to spread on a thin viscous layer under the action of a tangential (Marangoni) surface stress. Refracted image Moiré topography is used to monitor the evolution of the surface slope over macroscopic distances, from which the time variant interface shape and advancing speed of the surfactant film are inferred. The interfacial profile exhibits a strong surface depression ahead of the surfactant source capped by an elevated rim at the surfactant leading edge. The surface slope and shape as well as the propagation characteristics of the advancing rim can be compared directly with theoretical predictions. The agreement is quite strong when the model allows for a small level of pre-existing surface contamination of the initial liquid layer. Comparison between theoretical and experimental profiles reveals the importance of the initial shear stress in determining the evolution in the film thickness and surfactant distribution. This initial stress appears to thin the underlying liquid support so drastically that the surfactant droplet behaves as a finite and not an infinite source, even though there is always an excess of surfactant present at the origin.
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