论文标题

弯曲底物上的重力驱动涂层:差异几何方法

Gravity-driven coatings on curved substrates: a differential geometry approach

论文作者

Ledda, Pier Giuseppe, Pezzulla, Matteo, Jambon-Puillet, Etienne, Brun, Pierre-Thomas, Gallaire, François

论文摘要

尽管在过去的几十年中,底物上的薄液膜的排水和扩散过程受到了越来越多的关注,但对三维病例的研究仅限于对平坦和轴对称底物的一些研究。在这项工作中,我们利用差异几何形状研究了薄膜在通用弯曲底物上的排水和扩散。我们最初通过在杆附近采用渐近膨胀和自相似方法来研究在球体和抛物面底物上的排水和扩散过程,发现厚度分布是由底物度量和切向重力力组件设定的。高度和赤道半径之间较高比率的球体的特征是厚度越来越大,反之亦然。环形底物上的非对称涂层表明,在内部区域比在圆环的外部区域上获得更大的厚度和更快的扩散。选择具有三个不同轴的椭圆形作为三维引流和扩散的测试地面。观察到排水溶液中的调节,沿两个轴的厚度有不同的变化。通过施加质量的保护,可以获得平均扩散前端的分析解决方案。分析和数值结果非常吻合。所得的排水溶液也表明了与从不同底物上固化聚合物涂层获得的实验测量的良好一致性。

Although the drainage and spreading processes of thin liquid films on substrates have received growing attention during the last decades, the study of three-dimensional cases is limited to a few studies on flat and axisymmetric substrates. In this work, we exploit differential geometry to study the drainage and spreading of thin films on generic curved substrates. We initially investigate the drainage and spreading processes on spheroidal and paraboloidal substrates by employing an asymptotic expansion in the vicinity of the pole and a self-similar approach, finding that the thickness distribution is set by the substrate metric and tangential gravity force components. Spheroids with a large ratio between height and equatorial radius are characterized by a growing thickness moving away from the pole, and vice versa. The non-symmetric coating on a toroidal substrate shows that larger thicknesses and a faster spreading are attained on the inner region than on the outer region of the torus. An ellipsoid with three different axes is chosen as a testing ground for three-dimensional drainage and spreading. Modulations in the drainage solution are observed, with a different variation of the thickness along the two axes. By imposing the conservation of mass, an analytical solution for the average spreading front is obtained. The analytical and numerical results are in good agreement. The resulting drainage solutions show also a good agreement with experimental measurements obtained from the coating of a curing polymer on diverse substrates.

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