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首页> 外文期刊>Journal of Colloid and Interface Science >A THEORETICAL STUDY OF INSTABILITIES AT THE ADVANCING FRONT OF THERMALLY DRIVEN COATING FILMS
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A THEORETICAL STUDY OF INSTABILITIES AT THE ADVANCING FRONT OF THERMALLY DRIVEN COATING FILMS

机译:热驱动涂层前进中的不稳定性的理论研究

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摘要

A thin liquid coating can spread vertically beyond the equilibrium meniscus position by the application of a temperature gradient to the adjacent substrate. So called super-meniscus fins experience a surface shear stress which drives how toward regions of higher surface tension located at the cooler end of the substrate. The Marangoni stresses responsible for this spreading process can also be used to coat horizontal surfaces rapidly and efficiently. Experiments in the literature have shown that in either geometry, the advancing front can develop a pronounced ridge with lateral undulations that develop into long slender rivulets. These rivulets, which prevent complete surface coverage, display a remarkable regularity in height, width, and spacing which suggests the presence of a hydrodynamic instability. We have performed a linear stability analysis of such thermally driven films to determine the most dangerous wavenumber. Our numerical solutions indicate the presence of an instability at the advancing front of films which develop a sufficiently thick capillary ridge. Our results for the film thickness profiles and spreading velocities, as well as the wavenumber corresponding to the most unstable mode, compare favorably with recent experimental measurements. An energy analysis of the perturbed flow reveals that the increased mobility in the thickened portions of the films strongly promotes unstable flow, in analogy with other coating processes using gravitational or centrifugal forces. (C) 1997 Academic Press. [References: 19]
机译:通过将温度梯度施加到相邻的基材上,薄的液体涂层可以垂直扩散到超出弯月面位置的位置。所谓的超弯月面翅片经受表面剪切应力,该表面剪切应力驱动如何朝向位于衬底的较冷端的较高表面张力的区域。负责此铺展过程的Marangoni应力也可用于快速有效地涂覆水平表面。文献中的实验表明,在任何一种几何形状中,前进的前部都可以形成明显的山脊,并带有横向起伏,形成长而细长的小铆钉。这些防止完全覆盖表面的小铆钉在高度,宽度和间距上显示出明显的规律性,这表明存在流体动力学的不稳定性。我们已经对这种热驱动薄膜进行了线性稳定性分析,以确定最危险的波数。我们的数值解表明在膜的前进前沿存在不稳定性,该膜形成足够厚的毛细。我们对膜厚分布和传播速度的结果以及与最不稳定模式相对应的波数,与最近的实验测量结果相比具有优势。对扰动流的能量分析表明,与使用重力或离心力的其他涂布工艺类似,膜的增厚部分中增加的迁移率强烈促进了不稳定流。 (C)1997学术出版社。 [参考:19]

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