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使用微流控毛细管粘度计分析非牛顿液体。

Analysis of non-Newtonian liquids using a microfluidic capillary viscometer.

作者信息

Srivastava Nimisha, Burns Mark A

机构信息

Department of Chemical Engineering, The University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Anal Chem. 2006 Mar 1;78(5):1690-6. doi: 10.1021/ac0518046.

Abstract

We have used a self-calibrating microfabricated capillary viscometer to analyze non-Newtonian power law fluids. The capillary viscometer can generate a wide range of shear rates during a single experimental run enabling quick and accurate analysis of non-Newtonian liquids. The measurement of viscosity is based on monitoring the capillary pressure-driven movement of fluid sample whose mean velocity and, therefore, shear rate varies with time. The device has been successfully tested for accuracy and robustness with dilute as well as semidilute solutions of flexible elastic polymers including poly(ethylene oxide) and hydrolyzed polyacrylamide to an aqueous solution of a stiff rodlike polymer molecule of xanthan gum, a popular emulsifier and food thickener, as well as with ink-jet printing inks. Viscosities in the range of 1-600 cP were measured, and shear rates varying from 5 to 1000 s(-1) have been obtained on the microfabricated viscometer with the current geometry and channel dimensions. The total measurement time varied between 2 and 8 min and less than 1 microL of sample volume was required. Such a microfabricated capillary viscometer would have possible applications in quality control and manufacturing where rapid and repeated measurements need to be made using limited sample volume.

摘要

我们使用了一种自校准的微加工毛细管粘度计来分析非牛顿幂律流体。该毛细管粘度计在单次实验运行期间能够产生广泛的剪切速率,从而能够对非牛顿液体进行快速而准确的分析。粘度的测量基于监测由毛细管压力驱动的流体样品的运动,其平均速度以及剪切速率会随时间变化。该设备已成功针对包括聚环氧乙烷和水解聚丙烯酰胺在内的柔性弹性聚合物的稀溶液以及半稀溶液、一种常见的乳化剂和食品增稠剂黄原胶的刚性棒状聚合物分子的水溶液以及喷墨印刷油墨,测试了其准确性和耐用性。测量的粘度范围为1 - 600厘泊,在具有当前几何形状和通道尺寸的微加工粘度计上获得了5至1000 s⁻¹的剪切速率。总测量时间在2至8分钟之间变化,所需样品体积小于1微升。这样一种微加工毛细管粘度计在需要使用有限样品体积进行快速且重复测量的质量控制和制造领域可能具有应用价值。

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