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Determination of the critical values of flow parameters characteristic of the alignment of cylindrical nano-objects in suspensions

机译:悬浮液中圆柱纳米物体排列的流动参数临界值的确定

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Graphical abstract Display Omitted Abstract A method for determining the critical values of the flow speed and the flow constriction degree characteristic of the alignment of cylindrical nano-objects in a flowing suspension is proposed. Previously, the alignment process of cylindrical nano-objects in suspensions was investigated by using birefringence of the polarized light and the small-angle X-ray scattering. While both methods are suitable for measuring the alignment degree of cylindrical nano-objects in suspensions diluted down to low concentrations, they are restricted for the application to undiluted concentrated suspensions because of non-transparency and multiple scattering of X-rays. In addition, the use of the second method requires an expensive synchrotron equipment. We present a simple and faster method based on the direct ultrasound attenuation measurements of longitudinal viscosity of a suspension containing cylindrical nano-objects, which decreases monotonically, approaching its asymptotic value with increase in the flow speed and the flow constriction degree. The principle and advantages of the proposed method are as follows: ? The cylindrical nano-objects align along an accelerated flow at overcritical values of the flow speed and the constriction degree. ? The critical values correspond to the state of a suspension possessing viscosity close to the asymptotic value. ? The method is applicable to undiluted concentrated suspensions, including opaque ones.
机译:提出了一种确定悬浮液中圆柱状纳米物体取向的流速临界值和流动压缩程度特征的方法。以前,通过使用偏振光的双折射和小角度X射线散射研究了悬浮液中圆柱形纳米物体的对准过程。尽管这两种方法均适用于测量稀释至低浓度的悬浮液中的圆柱纳米物体的排列程度,但由于X射线的不透明性和多重散射,它们仅限于未稀释的浓缩悬浮液中使用。另外,第二种方法的使用需要昂贵的同步加速器设备。我们提出了一种基于直接超声衰减测量的,包含圆柱形纳米物体的悬浮液的纵向粘度的简单而快速的方法,该悬浮液单调降低,随着流速和流量压缩程度的增加而接近其渐近值。该方法的原理和优点如下:圆柱形纳米物体沿着加速流以流速和压缩程度的超临界值排列。 ?临界值对应于具有接近渐近值的粘度的悬浮液的状态。 ?该方法适用于未稀释的浓缩悬浮液,包括不透明的悬浮液。

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