琼脂溶液流动特性及流变模型研究

M. Karataş
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引用次数: 0

摘要

在本研究中,研究了剪切速率、琼脂浓度(15-35kg/m3)和温度(30-60°C)对琼脂溶液表观粘度的影响。使用旋转粘度计测定不同剪切速率下的表观粘度。结果表明,表观粘度随剪切速率的升高而降低,随浓度的增加而增加。另一方面,温度的升高导致表观粘度的降低。为了同时说明温度和浓度的变化,在选择最合适的模型时使用了宾厄姆模型、幂律模型和卡森模型。当使用统计检验对这些模型进行比较时,发现最兼容的模型是幂律模型。使用幂律模型计算的稠度系数和流动行为指数表明,琼脂溶液表现出剪切稀化流动行为(假塑性)。这项研究表明,在需要了解流动行为的应用中,在所研究的温度和浓度范围内,幂律可用于估计琼脂溶液的粘度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation on the Flow Behaviour of Agar Solution and Rheological Modelling
In this study, the effect of shear rate, agar concentration (15-35 kg/m3) and temperature (30-60°C) on the apparent viscosity of the agar solution was investigated. Apparent viscosities at different shear rates were determined using a rotational viscometer. The findings show that the apparent viscosity decreasing with a rise of shear rate increased with increasing concentration. An increase in the tempearture, on the other hand, led to a decrease in the apparent viscosity. To illustrate both temperature and concentration changes together, the Bingham, power law, and Casson models were utilized in choosing the most suitable model. When the models were compared using statistical tests, the most compatible model was found to be the power-law model. The consistency coefficient and flow behaviour index calculated using the power law model showed that agar solutions exhibited shear-thinning flow behavior (pseudoplastic). This study suggests that power law, within the ranges of the temperature and concentration studied could be used to estimate the viscosity of the agar solutions in the applications requiring the knowledge of flow behavior.
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