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Efficient Determination of Slip-Link Parameters from Broadly Polydisperse Linear Melts

机译:从广泛多分散的线性熔体中高效确定滑动连接参数

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摘要

We investigate the ability of a coarse-grained slip-link model and a simple double reptation model to describe the linear rheology of polydisperse linear polymer melts. Our slip-link model is a well-defined mathematical object that can describe the equilibrium dynamics and non-linear rheology of flexible polymer melts with arbitrary polydispersity and architecture with a minimum of inputs: the molecular weight of a Kuhn step, the entanglement activity, and Kuhn step friction. However, this detailed model is computationally expensive, so we also examine predictions of the cheaper double reptation model, which is restricted to only linear rheology near the terminal zone. We report the storage and loss moduli for polydisperse polymer melts and compare with experimental measurements from small amplitude oscillatory shear. We examine three chemistries: polybutadiene, polypropylene and polyethylene. We also use a simple double reptation model to estimate parameters for the slip-link model and examine under which circumstances this simplified model works. The computational implementation of the slip-link model is accelerated with the help of graphics processing units, which allow us to simulate in parallel large ensembles made of up to 50,000 chains. We show that our simulation can predict the dynamic moduli for highly entangled polymer melts over nine decades of frequency. Although the double reptation model performs well only near the terminal zone, it does provide a convenient and inexpensive way to estimate the entanglement parameter for the slip-link model from polydisperse data.
机译:我们研究了粗粒滑移模型和简单的双重复制模型来描述多分散线性聚合物熔体的线性流变学的能力。我们的滑动链接模型是一个定义明确的数学对象,可以描述具有任意多分散性的柔性聚合物熔体的平衡动力学和非线性流变特性,其结构只需最少的输入即可:Kuhn步骤的分子量,缠结活性,和库恩踩摩擦。但是,此详细模型的计算量很大,因此,我们还检查了更便宜的双重复制模型的预测,该模型仅限于末端区域附近的线性流变学。我们报告了多分散聚合物熔体的储能和损耗模量,并与小振幅振荡剪切的实验测量结果进行了比较。我们研究了三种化学物质:聚丁二烯,聚丙烯和聚乙烯。我们还使用一个简单的双重复制模型来估计滑动链接模型的参数,并检查该简化模型在哪种情况下有效。滑动链接模型的计算实现在图形处理单元的帮助下得以加速,这使我们能够并行模拟多达50,000个链的大型集成体。我们表明,我们的仿真可以预测在九个频率范围内高度纠缠的聚合物熔体的动态模量。尽管双重复制模型仅在终端区域附近表现良好,但它确实提供了一种方便且廉价的方式,可以从多分散数据中估算滑移模型的纠缠参数。

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