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Evaluation of rheological properties of non-Newtonian fluids in internal mixers: An alternative method based on the power law model

机译:内混合器中非牛顿流体的流变特性评估:基于幂律模型的替代方法

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摘要

A new method was developed to evaluate rheological properties of polymer melts such as shear stress, shear rate, apparent viscosity and other rheological parameters in internal mixers. It is based on the classical power law model where the power law index n is directly evaluated from a set of data containing speed S, torque M, and the consistency index m is indirectly determined by an empirical relation. The method is based on a model with only one geometrical parameter (alpha), which involves a chamber radius R-2 and an equivalent radius R-e. It is assumed that the measuring head consists of two adjacent sets of coaxial cylinders. This method has advantages over previously reported models that use two parameters and do not propose a straightforward method to evaluate m The pseudoplastic nature of the polymer melt decreases as the rate of loss of structural points, i.e., molecular entanglements and network junctions, increases, which produces greater mobility of the melt. A relationship between alpha and C(n) is found, which is simpler than other models previously reported. These results further demonstrate the feasibility of evaluating rheological properties of polymer melts in internal mixers. [References: 15]
机译:开发了一种新的方法来评估聚合物熔体的流变特性,例如内部混合器中的剪切应力,剪切速率,表观粘度和其他流变参数。它基于经典幂律模型,其中幂律指数n是直接从包含速度S,转矩M的一组数据中求出的,而一致性指数m是通过经验关系间接确定的。该方法基于仅具有一个几何参数(α)的模型,该几何参数涉及腔室半径R-2和等效半径R-e。假定测量头由两组相邻的同轴圆柱体组成。与先前报道的使用两个参数的模型相比,该方法具有优势,并且没有提出一种简单的方法来评估m。随着结构点(即分子缠结和网络结)的损失速率增加,聚合物熔体的假塑性性质降低。产生更大的熔体流动性。找到了alpha和C(n)之间的关系,这比以前报道的其他模型更简单。这些结果进一步证明了评价内部混合器中聚合物熔体的流变性质的可行性。 [参考:15]

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