首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Experimental determination of the viscosity at very low shear rate for shear thinning fluids by electrocapillarity
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Experimental determination of the viscosity at very low shear rate for shear thinning fluids by electrocapillarity

机译:用电毛细作用在剪切稀化流体中以非常低的剪切速率测定粘度

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摘要

Non-Newtonian fluids can present a complex rheological behaviour involving shear-thinning, viscoelastic or thixotropic effects. We focus here on the characterization of generalized Newtonian fluids as shear-thinning fluids. Rotational rheometers are torque-sensitive, which makes the measurement of viscosity at low shear-rates very difficult, in particular for low viscosity fluids. An accurate knowledge of this value is, however, particularly important for the characterization of several types of flows, in particular those featuring a free surface, a symmetry axis or a symmetry plane. The experimental determination of viscosity and surface tension is enabled from the propagation of attenuated capillary waves. An optical technique has been implemented in order to determine the shear-thinning viscosity at values of the shear-rate as small as 10(-3) s(-1) from measurements of the spatial attenuation and wavelength. We have performed measurements on two different polymer solutions; we show that this technique is complementary to the classical rotational rheometer techniques since it gives access to the zero shear viscosity, which could not be measured by using rotational rheometers. The present technique is thus used to characterize the Newtonian plateau, while a rotational rheometer is used to characterize the fluid behaviour at moderate to high shear rates. (C) 2014 Elsevier B.V. All rights reserved.
机译:非牛顿流体会表现出复杂的流变行为,涉及剪切稀化,粘弹性或触变效应。在这里,我们集中于广义牛顿流体作为剪切稀化流体的表征。旋转流变仪是扭矩敏感的,这使得在低剪切速率下的粘度测量非常困难,尤其是对于低粘度流体。然而,准确地知道该值对于表征几种类型的流特别是重要的,特别是那些具有自由表面,对称轴或对称平面的流。从衰减的毛细管波的传播可以进行粘度和表面张力的实验确定。为了从空间衰减和波长的测量结果中确定剪切稀化粘度为10(-3)s(-1)小,已采用了一种光学技术。我们已经对两种不同的聚合物溶液进行了测量;我们表明,该技术是对经典旋转流变仪技术的补充,因为它可以访问零剪切粘度,而这是使用旋转流变仪无法测量的。因此,本技术用于表征牛顿平台,而旋转流变仪用于表征中等至高剪切速率下的流体行为。 (C)2014 Elsevier B.V.保留所有权利。

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