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Modeling Contraction Flows and Swell of Polymer Melts Extruded From Dies of Various Lengths

机译:模拟从各种长度的模具挤出的聚合物熔体的收缩流动和膨胀

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This article describes isothermal contraction flows and extrudate swell, using our recent model for fast (high Deborah number) contraction flows of polymers melts. The model analyzes the polymer flow in several regions as one continuous process. This approach makes possible to evaluate the extrudate swell as a result of complex contraction polymer flow in dies of various length. Using the asymptotic matching conditions for the change in flow type at the die exit allowed us to calculate the swelling profile for extrudate in the flow direction. The present calculations performed using a multi-mode viscoelastic constitutive equation of differential type, are compared with the experimental/direct numerical data including basic rheological tests. The presented complex model for contraction flow and swelling consists of no fitting parameter and is applicable for calculations using any viscoelastic constitutive equation.
机译:本文使用我们最近的聚合物熔体的快速(高Deborah数)收缩流模型,描述了等温收缩流和挤出物溶胀。该模型将聚合物在几个区域中的流动作为一个连续过程进行分析。由于复杂的收缩聚合物在各种长度的模具中的流动,这种方法使评估挤出物溶胀成为可能。通过使用渐近匹配条件来改变模头出口处的流型,可以计算出挤出物在流向的溶胀曲线。使用微分类型的多模式粘弹性本构方程进行的当前计算与包括基本流变学测试的实验/直接数值数据进行了比较。提出的收缩流动和溶胀的复杂模型不包含拟合参数,适用于使用任何粘弹性本构方程的计算。

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