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首页> 外文期刊>The Journal of the Acoustical Society of America >Rheo-acoustical study of the shear disruption of reversible aggregates. Ultrasound scattering from concentrated suspensions of red cell aggregates
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Rheo-acoustical study of the shear disruption of reversible aggregates. Ultrasound scattering from concentrated suspensions of red cell aggregates

机译:可逆骨料剪切破坏的流变声学研究。浓缩红细胞聚集体悬浮液的超声散射

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摘要

Shear-induced disruption of reversible aggregates or clusters in a concentrated suspension is investigated by ultrasound backscattering in the low shear regime. Fractal aggregates are considered as non-Brownian scatterers much smaller than the wavelength with acoustic properties close to those of the surrounding liquid, so that the attenuation of the coherent field is weak and multiple scattering can be neglected. The concept of variance in local particle volume fraction is used to deduce a first-order expression of the ultrasound scattering cross section per unit volume for Rayleigh scatterers in a dense suspension. On the basis of a scaling law for the shear-induced disruption of aggregates, the shear stress dependence of the ultrasonic scattered intensity from a dense suspension of clusters is derived. In a second part, the shear breakup of hardened red blood cell aggregates is investigated in plane-plane flow geometry by ultrasound scattering. Rheo-acoustical experiments are analyzed within the framework of the self-consistent field approximation and the scaling laws currently used in microrheological models. Finally, the ability of ultrasonic, light reflectometry and viscometry methods to provide quantitative information about red blood cell aggregation and membrane adhesiveness is discussed.
机译:在低剪切状态下,通过超声反向散射研究了浓缩悬浮液中剪切诱导的可逆聚集体或团簇的破坏。分形聚集体被认为是非布朗散射体,其波长远小于波长,并且其声学特性接近于周围液体的声学特性,因此相干场的衰减较弱,可以忽略多次散射。局部粒子体积分数方差的概念用于推导密集悬浮液中瑞利散射体每单位体积超声散射横截面的一阶表达式。基于剪切引起的聚集体破坏的比例定律,推导了来自密集的团簇悬浮体的超声散射强度的剪切应力依赖性。在第二部分中,通过超声散射在平面流动几何学中研究了硬化的红细胞聚集体的剪切破裂。流变声实验是在自洽场近似和当前在微流变模型中使用的缩放定律的框架内进行分析的。最后,讨论了超声,光反射法和粘度法提供有关红细胞聚集和膜粘附性的定量信息的能力。

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