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博格流体的动态润湿

Dynamic wetting of Boger fluids.

作者信息

Wei Y, Seevaratnam G K, Garoff S, Ramé E, Walker L M

机构信息

Department of Physics, Carnegie Mellon University, Pittsburgh, PA 15213, USA.

出版信息

J Colloid Interface Sci. 2007 Sep 1;313(1):274-80. doi: 10.1016/j.jcis.2007.04.020. Epub 2007 Apr 13.

Abstract

The impact of fluid elasticity on the dynamic wetting of polymer solutions is important because many polymer solutions in technological use exhibit non-Newtonian behaviors in the high shear environment of the wedge-like flow near a moving contact line. Our former study [G.K. Seevaratnam, Y. Suo, E. Ramé, L.M. Walker, Phys. Fluids 19 (2007) Art. No. 012103] showed that shear thinning induced by a semi-flexible high molecular weight polymer reduces the viscous bending near a moving contact line as compared to a Newtonian fluid having the same zero-shear viscosity. This results in a dramatic reduction of the dependence of the effective dynamic contact angle on contact line speed. In this paper, we discuss dynamic wetting of Boger fluids which exhibit elasticity-dominated rheology with minimal shear thinning. These fluids are prepared by dissolving a dilute concentration of high molecular weight polymer in a "solvent" of the oligomer of the polymer. We demonstrate that elasticity in these fluids increases curvature near the contact line but that the enhancement arises mostly from the weakly non-Newtonian behavior already present in the oligomeric solvent. We present evidence of instabilities on the liquid/vapor interface near the moving contact line.

摘要

流体弹性对聚合物溶液动态润湿的影响至关重要,因为许多技术应用中的聚合物溶液在移动接触线附近楔形流动的高剪切环境中表现出非牛顿行为。我们之前的研究[G.K. 塞瓦拉特纳姆、Y. 索、E. 拉梅、L.M. 沃克,《物理流体》19 (2007) 第012103号文章]表明,与具有相同零剪切粘度的牛顿流体相比,半柔性高分子量聚合物引起的剪切变稀会降低移动接触线附近的粘性弯曲。这导致有效动态接触角对接触线速度的依赖性显著降低。在本文中,我们讨论了具有以弹性为主导的流变学且剪切变稀最小的博格流体的动态润湿。这些流体是通过将稀浓度的高分子量聚合物溶解在聚合物低聚物的“溶剂”中制备的。我们证明,这些流体中的弹性会增加接触线附近的曲率,但这种增强主要源于低聚物溶剂中已经存在的弱非牛顿行为。我们提供了移动接触线附近液/气界面上不稳定性的证据。

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