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Numerical simulation of multi-layer flow for polymer melts - A study of the effect of viscoelasticity on interface shape of polymers within dies

机译:聚合物熔体多层流动的数值模拟-粘弹性对模具内聚合物界面形状影响的研究

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摘要

A two-dimensional simulation was developed for multi-layer confluent viscoelastic flow in dies, using a finite element method. The simulated interface shape was compared with the experimental results of previous researchers, and the simulated results were confirmed. Two-layer and three-layer flows of two or three kinds of viscoelastic fluids were simulated. Fluids with different non-Newtonian viscosities and the first normal stress differences were used. The layer thicknesses in dies are mainly determined by the shear viscosity and less by the elasticity of the fluid. The normal stress difference between the fluids forming an interface may be related to interfacial instability, and normal stresses near the interface were examined. The normal stress difference between both fluids was affected by the first normal stress difference and elongational viscosity. [References: 21]
机译:使用有限元方法对模具中的多层合流粘弹性流动进行了二维模拟。将模拟界面形状与先前研究人员的实验结果进行比较,并确认了模拟结果。模拟了两种或三种粘弹性流体的两层和三层流动。使用具有不同非牛顿粘度和第一法向应力差的流体。模具中的层厚度主要取决于剪切粘度,而较少取决于流体的弹性。形成界面的流体之间的法向应力差可能与界面不稳定性有关,并检查了界面附近的法向应力。两种流体之间的法向应力差受第一法向应力差和伸长粘度的影响。 [参考:21]

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