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Review of Non-Newtonian Mathematical Models for Rheological Characteristics of Viscoelastic Composites

机译:粘弹性复合材料流变特性的非牛顿数学模型综述

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This study presents an overview of viscoelastic characteristics of biocomposites derived of natural-fibre-reinforced thermoplastic polymers and predictive models have been presented in order to understand their rheological behavior. Various constitutive equations are reviewed for a better understanding of their applicability to polymer melt in determining the viscosity. The models to be investigated are the Giesekus-Leonov model, the Upper Convected Maxwell (UCM) model, the White-Metzner model, K-BKZ model, the Oldroyd-B model, and the Phan-Thien-Tanner models. The aforementioned models are the most powerful for predicting the rheological behavior of hybrid and green viscoelastic materials in the presence of high shear rate and in all dimensions. The Phan-Thien Tanner model, the Oldroyd-B model, and the Giesekus model can be used in various modes to fit the relaxation modulus accurately and to predict the shear thinning as well as shear thickening characteristics. The Phan-Thien Tanner, K-BKZ, Upper convected Maxwell, Oldroyd-B, and Giesekus models predicted the steady shear viscosity and the transient first normal stress coefficient better than the White-Metzner model for green-fibre-reinforced thermoplastic composites.
机译:这项研究概述了天然纤维增强的热塑性聚合物衍生的生物复合材料的粘弹性特征,并提出了预测模型以了解其流变行为。审查了各种本构方程,以更好地了解它们在确定粘度时对聚合物熔体的适用性。要研究的模型是Giesekus-Leonov模型,上对流麦克斯韦(UCM)模型,White-Metzner模型,K-BKZ模型,Oldroyd-B模型和Phan-Thien-Tanner模型。在存在高剪切速率和所有尺寸的情况下,上述模型对于预测混合和绿色粘弹性材料的流变行为最有效。 Phan-Thien Tanner模型,Oldroyd-B模型和Giesekus模型可用于多种模式,以精确拟合松弛模量并预测剪切稀化和剪切增稠特性。对于绿色纤维增强的热塑性复合材料,Phan-Thien Tanner,K-BKZ,上部对流的Maxwell,Oldroyd-B和Giesekus模型预测的稳态剪切粘度和瞬时第一正应力系数要优于White-Metzner模型。

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