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覆盖有弹性聚合物薄膜的粘性流体中的法拉第不稳定性。

Faraday Instability in Viscous Fluids Covered with Elastic Polymer Films.

作者信息

Liu Junxiu, Song Wenqiang, Ma Gan, Li Kai

机构信息

Anhui Province Key Laboratory of Building Structure and Underground Engineering, Anhui Jianzhu University, Hefei 230601, China.

College of Civil Engineering, Anhui Jianzhu University, Hefei 230601, China.

出版信息

Polymers (Basel). 2022 Jun 9;14(12):2334. doi: 10.3390/polym14122334.

Abstract

Faraday instability has great application value in the fields of controlling polymer processing, micromolding colloidal lattices on structured suspensions, organizing particle layers, and conducting cell culture. To regulate Faraday instability, in this article, we attempt to introduce an elastic polymer film covering the surface of a viscous fluid layer and theoretically study the behaviors of the Faraday instability phenomenon and the effect of the elastic polymer film. Based on hydrodynamic theory, the Floquet theory is utilized to formulate its stability criterion, and the critical acceleration amplitude and critical wave number are calculated numerically. The results show that the critical acceleration amplitude for Faraday instability increases with three increasing bending stiffness of the elastic polymer film, and the critical wave number decreases with increasing bending stiffness. In addition, surface tension and viscosity also have important effects on the critical acceleration amplitude and critical wave number. The strategy of controlling Faraday instability by covering an elastic polymer film proposed in this paper has great application potential in new photonic devices, metamaterials, alternative energy, biology, and other fields.

摘要

法拉第不稳定性在控制聚合物加工、在结构化悬浮液上微成型胶体晶格、组织颗粒层以及进行细胞培养等领域具有巨大的应用价值。为了调节法拉第不稳定性,在本文中,我们尝试引入覆盖粘性流体层表面的弹性聚合物薄膜,并从理论上研究法拉第不稳定性现象的行为以及弹性聚合物薄膜的影响。基于流体动力学理论,利用弗洛凯理论制定其稳定性准则,并通过数值计算临界加速度幅值和临界波数。结果表明,法拉第不稳定性的临界加速度幅值随着弹性聚合物薄膜弯曲刚度的增加而增大,临界波数随着弯曲刚度的增加而减小。此外,表面张力和粘度对临界加速度幅值和临界波数也有重要影响。本文提出的通过覆盖弹性聚合物薄膜来控制法拉第不稳定性的策略在新型光子器件、超材料、替代能源、生物学等领域具有巨大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2f7/9231276/074605e94021/polymers-14-02334-g001.jpg

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