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首页> 外文期刊>Polymer engineering and science >Rheology of fiber fiber interactions filled polymer melts: Role of fiber-fiber interactions and polymer-fiber coupling
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Rheology of fiber fiber interactions filled polymer melts: Role of fiber-fiber interactions and polymer-fiber coupling

机译:填充聚合物熔体的纤维相互作用的流变学:纤维-纤维相互作用和聚合物-纤维耦合的作用

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摘要

An experimental study and a numerical modeling analysis are carried out to examine the effects of fiber-fiber interactions and coupling between fiber orientation and polymer chains conformation on the rheological properties of fiber suspensions. The experimental study allowed examination of large fiber volume fractions up to 35% over a range of shear rates that spans eight decades. This study confirmed already known results and led to new ones. In particular, a peak in the steady shear viscosity at the low shear rate region is observed at large volume fractions. Furthermore, new results regarding the applicability of the Cox-Merz rule, the behavior of the damping factor, and the end pressure drops are reported, and physical interpretations are proposed. The results of the numerical modeling showed that it is necessary to account for the polymer-fiber coupling factor to obtain a good fit between the model predictions and the experimental measurements. Comparisons between the model predictions and the experimental measurements allowed study of the variation of the parameters that govern the fiber-fiber interactions and the polymer-fiber coupling with the properties of the suspension and the flow. (c) 2005 Society of Plastics Engineers.
机译:进行了实验研究和数值模型分析,以检验纤维-纤维相互作用以及纤维取向和聚合物链构象之间的耦合对纤维悬浮液流变性质的影响。实验研究允许在长达八十年的剪切速率范围内检查高达35%的大纤维体积分数。这项研究证实了已知结果并产生了新结果。特别地,在大体积分数下在低剪切速率区域观察到稳态剪切粘度的峰值。此外,报告了有关Cox-Merz规则的适用性,阻尼系数的行为以及最终压降的新结果,并提出了物理解释。数值模拟的结果表明,有必要考虑聚合物-纤维的耦合因子,以在模型预测和实验测量之间获得良好的拟合。通过对模型预测值和实验测量值之间的比较,可以研究控制纤维与纤维相互作用以及聚合物与纤维耦合以及悬浮液和流动特性的参数变化。 (c)2005年塑料工程师学会。

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