用Rheo NMR表征剪切启动下蠕虫状胶束溶液中的速度波动和从瞬态剪切带到稳态剪切带的转变

IF 5.8 4区 工程技术 Q1 MECHANICS
Rehab N. Al-Kaby, S. Codd, J. Seymour, Jennifer R. Brown
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引用次数: 5

摘要

摘要用Rheo NMR测速法研究了6wt.%十六烷基氯化吡啶(CPCl)蠕虫状胶束溶液在有和无预剪切的剪切启动条件下的剪切带。对于应力平台内的四种不同的施加剪切速率,在剪切启动后每1秒测量一次同心圆柱体Couette剪切池的流体间隙上的1D速度分布。当流动从瞬态状态过渡到稳态状态时,速度剖面的拟合允许计算剪切带特征(高剪切带和低剪切带的剪切率、界面位置和内旋转壁的表观滑移)。获得了达到稳态的特征时间尺度,并发现所有剪切带特征都是相似的。时间尺度随剪切速率的增加而减小。还观察到随时间的大的时间波动,时间和速度自相关函数的傅立叶变换量化了波动频率。频率对应于弹性驱动的流体动力学不稳定性,即涡流,已知发生在不稳定的高剪切带中,并且取决于施加的剪切速率和预剪切方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of velocity fluctuations and the transition from transient to steady state shear banding with and without pre-shear in a wormlike micelle solution under shear startup by Rheo-NMR
Abstract Rheo-NMR velocimetry was used to study shear banding of a 6 wt.% cetylpyridinium chloride (CPCl) worm-like micelle solution under shear startup conditions with and without pre-shear. 1D velocity profiles across the fluid gap of a concentric cylinder Couette shear cell were measured every 1 s following shear startup for four different applied shear rates within the stress plateau. Fitting of the velocity profiles allowed calculation of the shear banding characteristics (shear rates in the high and low shear band, the interface position and apparent slip at the inner rotating wall) as the flow transitioned from transient to steady state regimes. Characteristic timescales to reach steady state were obtained and found to be similar for all shear banding characteristics. Timescales decreased with increasing applied shear rate. Large temporal fluctuations with time were also observed and Fourier transform of the time and velocity autocorrelation functions quantified the fluctuation frequencies. Frequencies corresponded to the elastically driven hydrodynamic instabilities, i.e. vortices, that are known to occur in the unstable high shear band and were dependent upon both applied shear rate and the pre-shear protocol.
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来源期刊
Applied Rheology
Applied Rheology 物理-力学
CiteScore
3.00
自引率
5.60%
发文量
7
审稿时长
>12 weeks
期刊介绍: Applied Rheology is a peer-reviewed, open access, electronic journal devoted to the publication in the field of applied rheology. The journal provides the readers with free, instant, and permanent access to all content worldwide; and the authors with extensive promotion of published articles, long-time preservation, language-correction services, no space constraints and immediate publication.
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