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首页> 外文期刊>Journal of Rheology >A constitutive model for characterization of shear and extensional rheology and flow induced orientation of carbon nanofiber/polystyrene melt composites
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A constitutive model for characterization of shear and extensional rheology and flow induced orientation of carbon nanofiber/polystyrene melt composites

机译:碳纳米纤维/聚苯乙烯熔体复合材料的剪切和拉伸流变特性及流动诱导取向的本构模型

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摘要

We characterize the transient shear and uniaxial extensional rheology of melt phase polystyrene/carbon nanofiber composites and measure orientation development during each flow type. Experimental measurements show an increase in the viscosity of the composite with increasing carbon nanofiber concentration under both types of flow. We present a microstructurally based constitutive model to predict the experimentally observed rheological behavior and evolution of nanofiber orientation. Experimental measurements were performed to determine the average orientation of the carbon nanofibers at various points in time during shear and extensional flows. We demonstrate that the constitutive model predicts the transient shear and extensional viscosities of polystyrene/carbon nanofiber composites and the orientation evolution of nanofibers during flow.
机译:我们表征了熔融相聚苯乙烯/碳纳米纤维复合材料的瞬态剪切和单轴拉伸流变学,并测量了每种流动类型期间的取向发展。实验测量表明,在两种流动类型下,随着碳纳米纤维浓度的增加,复合材料的粘度也会增加。我们提出了一种基于微观结构的本构模型,以预测实验观察到的流变行为和纳米纤维取向的演变。进行实验测量以确定在剪切和拉伸流动期间的各个时间点的碳纳米纤维的平均取向。我们证明了本构模型预测了聚苯乙烯/碳纳米纤维复合材料的瞬态剪切和拉伸粘度以及流动过程中纳米纤维的取向演变。

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