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首页> 外文期刊>The Journal of Chemical Physics >A single particle model to simulate the dynamics of entangled polymer melts
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A single particle model to simulate the dynamics of entangled polymer melts

机译:用于模拟缠结聚合物熔体动力学的单粒子模型

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We present a computer simulation model of polymer melts representing each chain as one single particle.Besides the position coordinate of each particle,we introduce a parameter n_(ij)for each pair of particles i and j within a specified distance from each other.These numbers,called entanglement numbers,describe the deviation of the system of ignored coordinates from its equilibrium state for the given configuration of the centers of mass of the polymers.The deviations of the entanglement numbers from their equilibrium values give rise to transient forces,which,together with the conservative forces derived from the potential of mean force,govern the displacements of the particles.We have applied our model to a melt of C_(800)H_(1602)chains at 450 K and have found good agreement with experiments and more detailed simulations.Properties addressed in this paper are radial distribution functions,dynamic structure factors,and linear as well as nonlinear rheological properties.
机译:我们提供了一个将每条链表示为一个单个粒子的聚合物熔体的计算机仿真模型。除了每个粒子的位置坐标外,我们还为每对粒子i和j引入了一个在指定距离内的参数n_(ij)。数字,称为缠结数,描述了对于给定的聚合物质心构型,忽略坐标系与其平衡状态的偏差。缠结数与其平衡值的偏差会引起瞬态力,我们将模型应用到450 K时C_(800)H_(1602)链的熔体中,并与实验和其他方面有很好的吻合。详细的仿真。本文讨论的属性是径向分布函数,动态结构因子以及线性和非线性流变特性。

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