Biorheological methods employing the Weissenberg rheogoniometer.

R G King, S Chien, S Usami, A L Copley
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引用次数: 1

Abstract

The theories and spatial concepts of Karl Weissenberg have been applied to the science of biorheology by employing the Weissenberg Rheogoniometer. Two main types of experimental methods have been used for the characterization of the bulk shear properties of biorheological fluids: (A) In continuous laminar shearing motion, the tangential and normal components of stress are measured at a series of rates of shear. From these parameters, the apparent viscosity, an elastic modulus and a recoverable strain, are calculated as functions of the rate of shear. In this continuous shear experiment, the physical structure present in the material at any given rate of shear may be quite different from the material in its rest state or at other rates of shear. (B) In harmonic oscillatory motion, the material is subjected to a harmonic laminar shear about its rest state at a number of frequencies and small strain amplitudes. From these experiments the dynamic moduli of viscosity and elasticity are calculated. Preparations of biological materials, such as whole blood and systems of blood components, both in health and disease states, have been investigated using methods A and B, together with studies of surface layers of plasma proteins at interfaces.

采用魏森伯格流变仪的生物流变学方法。
卡尔·魏森伯格的理论和空间概念通过使用魏森伯格流变仪被应用于生物流变学科学。两种主要类型的实验方法被用于表征生物流变流体的体剪切特性:(A)在连续的层流剪切运动中,在一系列剪切速率下测量应力的切向和法向分量。根据这些参数,计算了视粘度、弹性模量和可恢复应变作为剪切速率的函数。在这种连续剪切实验中,在任何给定的剪切速率下,材料中的物理结构可能与材料在其静止状态或在其他剪切速率下的物理结构大不相同。(B)在简谐振荡运动中,材料在若干频率和小应变幅值下,围绕其静止状态受到简谐层流剪切。根据这些实验计算了粘性和弹性的动态模量。生物材料的制备,如健康和疾病状态下的全血和血液成分系统,已经使用方法A和B进行了研究,并在界面处研究了血浆蛋白的表面层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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