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提升式赫勒-肖槽中的粘附与指进现象:基底的作用

Adhesion and fingering in the lifting Hele-Shaw cell: role of the substrate.

作者信息

Sinha S, Dutta T, Tarafdar S

机构信息

Condensed Matter Physics Research Centre, Physics Department, Jadavpur University, 700032 Kolkata, India.

出版信息

Eur Phys J E Soft Matter. 2008 Mar;25(3):267-75. doi: 10.1140/epje/i2007-10289-9. Epub 2008 Apr 3.

Abstract

The lifting Hele-Shaw cell (LHSC) is used to study adhesion as well as viscous fingering. In the present paper we report a series of observations of development of the interface for different viscous fluids, both Newtonian and non-Newtonian, in a LHSC operated at a constant lifting force. Glass and perspex are used as the plates in two different sets of experiments. The objectives are 1) to measure the time required to separate the plates as a function of the lifting force and 2) to note the force above which viscous fingering appears. We find that for the Newtonian fluids, the plate separation time follows a universal power law with the lifting force, irrespective of fluid and substrate. The non-Newtonian fluids too, with proper scaling obey the same power law. The appearance of fingering, however, depends on the properties of the fluid as well as the substrate. We suggest a modified form of the capillary number which controls the onset of fingering; this new quantity, termed the "fingering parameter" involves the dielectric constants of the substrate and fluid in addition to the viscosity and surface tension.

摘要

升降式赫勒-肖流动槽(LHSC)用于研究粘附以及粘性指进现象。在本文中,我们报告了一系列在恒定升力作用下运行的LHSC中,针对不同粘性流体(包括牛顿流体和非牛顿流体)界面发展情况的观测结果。在两组不同的实验中,分别使用玻璃和有机玻璃作为平板。目标是:1)测量平板分离所需的时间作为升力的函数;2)记录出现粘性指进现象的临界力。我们发现,对于牛顿流体,平板分离时间与升力遵循通用的幂律关系,与流体和基底无关。非牛顿流体在适当的标度下也遵循相同的幂律。然而,指进现象的出现取决于流体以及基底的性质。我们提出了一种修正形式的毛细管数,它控制着指进现象的起始;这个新的量,称为“指进参数”,除了粘度和表面张力外,还涉及基底和流体的介电常数。

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