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线性和支化蠕虫状胶束中剪切带流动形成的动力学

Kinetics of shear banding flow formation in linear and branched wormlike micelles.

作者信息

Rassolov Peter, Scigliani Alfredo, Mohammadigoushki Hadi

机构信息

Department of Chemical and Biomedical Engineering, FAMU-FSU College of Engineering, Tallahassee, FL, 32310, USA.

出版信息

Soft Matter. 2022 Aug 17;18(32):6079-6093. doi: 10.1039/d2sm00748g.

Abstract

We investigate the flow evolution of a linear and a branched wormlike micellar solution with matched rheology in a Taylor-Couette (TC) cell using a combination of particle-tracking velocimetry, birefringence, and turbidity measurements. Both solutions exhibit a stress plateau within a range of shear rates. Under startup of a steady shear rate flow within the stress plateau, both linear and branched samples exhibit strong transient shear thinning flow profiles. However, while the flow of the linear solution evolves to a banded structure at longer times, the flow of the branched solution transitions to a curved velocity profile with no evidence of shear banding. Flow-induced birefringence measurements indicate transient birefringence banding with strong micellar alignment in the high shear band for the linear solution. The transient flow-induced birefringence is stronger for the branched system at an otherwise identical Wi. At longer times, the birefringence bands are replaced by a chaotic flow reminiscent of elastic instabilities. Visualization of the flow-induced turbidity in the velocity gradient-vorticity plane reveals quasi-steady banding with a turbidity contrast between high and low shear bands in the linear solution. However, the turbidity evolves uniformly within the gap of the TC cell for the branched solution, corroborating the non-banded quasi-steady velocimetry results. Finally, we show that while elastic instabilities in the linear solution emerge in the high shear band, the flow of branched solution at high Wi becomes unstable due to end effects, with growing end regions that ultimately span the entire axial length of the TC cell.

摘要

我们使用粒子跟踪测速、双折射和浊度测量相结合的方法,研究了在泰勒-库埃特(TC)单元中具有匹配流变学性质的线性和支化蠕虫状胶束溶液的流动演化。两种溶液在一定的剪切速率范围内均表现出应力平台。在应力平台内启动稳定剪切速率流动时,线性和支化样品均表现出强烈的瞬态剪切变稀流动剖面。然而,虽然线性溶液的流动在较长时间后演变为带状结构,但支化溶液的流动转变为弯曲的速度剖面,没有剪切带的迹象。流动诱导双折射测量表明,线性溶液在高剪切带中存在具有强烈胶束排列的瞬态双折射带。在其他条件相同的Weissenberg数(Wi)下,支化体系的瞬态流动诱导双折射更强。在较长时间内,双折射带被类似于弹性不稳定性的混沌流动所取代。在速度梯度-涡度平面上对流动诱导浊度的可视化显示,线性溶液中高剪切带和低剪切带之间存在浊度对比的准稳态带。然而,支化溶液的浊度在TC单元的间隙内均匀演化,这证实了非带状准稳态测速结果。最后,我们表明,虽然线性溶液中的弹性不稳定性出现在高剪切带中,但高Wi下支化溶液的流动由于端部效应而变得不稳定,端部区域不断扩大,最终跨越TC单元的整个轴向长度。

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