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Mesoscopic simulation of entanglements using dissipative particle dynamics: Application to polymer brushes

机译:使用耗散粒子动力学的纠缠介观模拟:在聚合物刷中的应用

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We use a simple spring-spring repulsion to model entanglements between polymers in dissipative particle dynamics (DPD) simulations. The model is applied to a polymer brushes system to study lubrication. We demonstrate that this method leads to mechanical equilibrium in polymer brushes using the normal DPD time step. The number of bond crossings is calculated to provide a quantitative description of the entanglement. We demonstrate that it is possible to avoid 99% of the bond crossings with the values of spring-spring repulsion that can be used without significantly decreasing the time step. A shear force is applied to the system to study the effect of the decrease in the bond crossings on the structure and rheological properties of the brushes. In particular, we show how the friction coefficient increases with the decrease in the bond crossings of the polymers. (c) 2008 American Institute of Physics.
机译:我们使用简单的弹簧-弹簧斥力在耗散粒子动力学(DPD)模拟中对聚合物之间的缠结进行建模。该模型应用于聚合物刷系统以研究润滑性。我们证明,使用常规DPD时间步长,此方法可导致聚合物刷中的机械平衡。计算键交叉的数量以提供缠结的定量描述。我们证明,可以在不显着减少时间步长的情况下避免使用99%的弹簧-弹簧斥力值来避免键交叉。将剪切力施加到该系统上,以研究减少键交叉对刷的结构和流变性的影响。尤其是,我们显示了摩擦系数如何随聚合物键交叉次数的减少而增加。 (c)2008年美国物理研究所。

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