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The matching of a 'one-dimensional' numerical simulation and experiment results for low viscosity Newtonian and non-Newtonian fluids during fast filament stretching and subsequent break-up

机译:低粘度牛顿流体和非牛顿流体在长丝快速拉伸和随后断裂过程中的“一维”数值模拟和实验结果的匹配

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摘要

This paper develops a model for fast filament stretching, thinning, and break-up for Newtonian and non-Newtonian fluids, and the results are compared against experimental data where fast filament relaxation occurs. A 1D approximation was coupled with the arbitrary Lagrangian Eulerian (ALE) formulation to perform simulations that captured both filament thinning and break-up. The modeling accounts for both the initial polymer stretching processes from the precise movement of the two moving pistons and also the subsequent thinning when the pistons are at rest. The simulations were first validated for a low viscosity Newtonian fluid matched to experimental data obtained from a recently developed apparatus, the Cambridge Trimaster. A non-Newtonian polymer fluid, with high frequency linear viscoelastic behavior characterized using a piezoaxial vibrator rheometer, was modeled using both an Oldroyd-B and FENE-CR single-mode constitutive models. The simulations of the filament deformation were compared with experiment. The simulations showed a generally reasonable agreement with both the stretch and subsequent relaxation experimental responses, although the mono mode models used in this paper were unable to capture all of the details for the experimental time evolution relaxation profile of the central filament diameter.
机译:本文针对牛顿流体和非牛顿流体建立了快速长丝拉伸,稀化和破裂的模型,并将结果与​​发生快速长丝松弛的实验数据进行了比较。一维近似值与任意拉格朗日欧拉(ALE)公式结合使用,可以进行捕获细丝细化和断裂的模拟。该模型既考虑了两个移动活塞的精确运动引起的初始聚合物拉伸过程,又考虑了当活塞静止时随后的变薄。该模拟首先针对低粘度牛顿流体进行了验证,该流体与从最近开发的设备Cambridge Trimaster获得的实验数据相匹配。使用Oldroyd-B和FENE-CR单模本构模型对非牛顿聚合物流体进行建模,该流体具有使用压电轴振动流变仪表征的高频线性粘弹性行为。将长丝变形的模拟与实验进行了比较。尽管本文中使用的单模模型无法捕获中心细丝直径的实验时间演化松弛曲线的所有细节,但模拟显示出与拉伸和随后的松弛实验响应总体上合理的一致性。

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