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剪切变稀分支蠕虫状胶束溶液中流动诱导的浓度梯度。

Flow-induced concentration gradients in shear-banding of branched wormlike micellar solutions.

机构信息

Dipartimento di Ingegneria Chimica, dei Materiali e della Produzione Industriale, Università di Napoli Federico II, Italy.

Dipartimento di Ingegneria Chimica, dei Materiali e della Produzione Industriale, Università di Napoli Federico II, Italy.

出版信息

J Colloid Interface Sci. 2019 Jan 15;534:695-703. doi: 10.1016/j.jcis.2018.09.060. Epub 2018 Sep 18.

Abstract

HYPOTHESIS

Shear-banding of branched wormlike solutions is a topic of active investigation which has not been fully elucidated. Here, we surmise that flow-induced microstructuring in the shear banding regime is associated with spatial concentration gradients.

EXPERIMENTS

The experiments focus on the flow-induced behavior of a CTAB/NaSal wormlike micellar system. A unique approach based on a microfluidic-spitter geometry, combined with particle-image velocimetry and high-speed video microscopy, is used to separate the streams flowing out from the core and the near wall zones of the microchannel.

FINDINGS

Here, we present the first direct experimental evidence of the correlation between phase separation and shear banding. By increasing the pressure-drop across a microcapillary, the onset of a grainy texture close to the wall, showing a flow-induced demixing effect, is observed. We use a splitter to measure effluent streams from the center and the near-wall zones in terms of viscosity, conductance and dry mass. We observe that phase-separation induced by the flow correlates with chemical concentration gradients. This confirms our hypothesis that shear-induced local de-mixing of the system is strongly related to chemical concentration gradients.

摘要

假设

支化蠕虫状溶液的剪切带是一个活跃研究的课题,尚未得到充分阐明。在这里,我们推测在剪切带化区域中的流致微结构与空间浓度梯度有关。

实验

实验集中在 CTAB/NaSal 蠕虫状胶束体系的流动诱导行为上。采用一种独特的基于微流分裂器几何形状的方法,结合粒子图像测速法和高速视频显微镜,用于分离从微通道核心和近壁区流出的流股。

发现

在这里,我们首次提供了相分离与剪切带之间相关性的直接实验证据。通过增加微毛细管中的压降,观察到近壁处出现粒状结构,表明存在流致分相效应。我们使用分裂器来测量从中心和近壁区流出的流出物的粘度、电导率和干质量。我们观察到,流动引起的相分离与化学浓度梯度相关。这证实了我们的假设,即剪切诱导的系统局部去混合与化学浓度梯度密切相关。

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