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THIN LIQUID FILMS: INSTABILITIES OF DRIVEN COATING FLOWS ON A ROUGH SURFACE

机译:薄液膜:粗糙表面上驱动涂层流动的不稳定性

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The flow of a thin layer of fluid on a solid surface is of considerable technological importance; many industrial applications, ranging from spin coating of microchips to the design of photographic film, are susceptible to often undesirable instabilities. We use a recently developed numerical scheme to analyze the problem of flow down an inclined plane, and concentrate on the case of completely wetting fluid characterized by a small precursor film height, b. In particular, we explore the role of imperfections of the solid surface, exploring the influence of the length scale of the surface roughness on the film stability and eventual pattern formation (fingers and rivulets). It is found that perturbations characterized by very short length scale do not influence considerably the film stability, in contrast to the perturbations specified by longer length scales. Further, we find that the role of imperfections becomes more pronounced at smaller precursor film thicknesses, 6. We also analyze the effect of a time dependent body force on the film stability.
机译:在固体表面上流动的一薄层流体具有相当大的技术重要性。从微芯片的旋涂到照相胶片的设计,许多工业应用都容易受到不稳定的影响。我们使用最近开发的数值方案来分析沿斜面向下流动的问题,并集中研究以特征为前驱体膜高b的液体完全润湿的情况。特别是,我们探索了固体表面缺陷的作用,探索了表面粗糙度的长度尺度对薄膜稳定性和最终的图案形成(手指和小铆钉)的影响。已经发现,与由较长的长度标度指定的扰动相反,以非常短的长度标度为特征的扰动不会显着影响膜的稳定性。此外,我们发现,在较小的前体薄膜厚度下,缺陷的作用变得更加明显[6]。我们还分析了随时间变化的体力对薄膜稳定性的影响。

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