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Capillary Viscometer for Fully Automated Measurement of the Concentration and Shear Dependence of the Viscosity of Macromolecular Solutions

机译:毛细管粘度计,用于全自动测量高分子溶液的浓度和剪切依赖性

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摘要

The construction and operation of a novel viscometer/rheometer are described. The instrument is designed to measure the viscosity of a macromolecular solution while automatically varying both solute concentration and shear rate. Viscosity is calculated directly from Poiseuille's law, given the measured difference in pressure between two ends of a capillary tube through which the solution is flowing at a known rate. The instrument requires as little as 0.75 mL of a solution to provide a full profile of viscosity as a function of concentration and shear rate, and it can measure viscosities as high as 500 cP and as low as 1 cP, at shear rates between 10 and 2 × 10~3 s~(-1). The results of control experiments are presented to document the accuracy and precision of measurement at both low and high concentration of synthetic polymers and proteins.
机译:描述了新型粘度计/流变仪的构造和操作。该仪器旨在测量大分子溶液的粘度,同时自动改变溶质浓度和剪切速率。给定溶液以已知速率流过的毛细管两端之间测得的压力差,粘度可直接根据泊乌斯耶定律计算。该仪器仅需0.75 mL的溶液即可提供完整的粘度曲线,该曲线是浓度和剪切速率的函数,并且在剪切速率为10到10之间时,它可以测量高达500 cP和低至1 cP的粘度。 2×10〜3秒〜(-1)提出了对照实验的结果,以证明在低浓度和高浓度下合成聚合物和蛋白质的测量精度和精确度。

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