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A deeper insight into the dip coating process in the presence of insoluble surfactants: A numerical analysis

机译:不溶性表面活性剂存在下对浸涂过程的更深入了解:数值分析

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摘要

A numerical investigation is carried out to study the effects of an insoluble surfactant on the dip coating of a flat substrate. Predictions of both the film thickness and the concentration of surfactant in the film as a function of the capillary number compare well with the solutions of a simpler asymptotic model based on the lubrication approximation. Streamline patterns confirm the existence of a stagnation point located in the bulk phase in the region of the dynamic meniscus-a conjecture postulated forty years ago. The evolution of the flow patterns and the interfacial variables shows how the classical result of Landau and Levich is recovered as the coating speed is augmented. Finally, we show that the effect of inertia forces cannot be neglected when the viscosity of the coating liquid is low.
机译:进行了数值研究以研究不溶性表面活性剂对平坦基材的浸涂的影响。薄膜厚度和薄膜中表面活性剂浓度的预测与毛细管数的关系与基于润滑近似的简单渐近模型的解比较很好。流线型证实了在动态弯月面区域中位于本体相中的停滞点-这是四十年前的推测。流型和界面变量的演变表明,随着涂层速度的提高,如何恢复Landau和Levich的经典结果。最后,我们证明了当涂料液的粘度低时,惯性力的作用不能忽略。

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