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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Modeling elastic properties of polystyrene through coarse-grained molecular dynamics simulations
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Modeling elastic properties of polystyrene through coarse-grained molecular dynamics simulations

机译:通过粗粒分子动力学模拟模拟聚苯乙烯的弹性性质

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摘要

This paper presents an extended coarse-grained investigation into the elastic properties of polystyrene. In particular, we employ the well-known MARTINI force field and its modifications to achieve molecular dynamics simulations at the mu s timescale, which take slow relaxation processes of polystyrene into account, such that the simulations permit analyzing the bulk modulus, the shear modulus, and the Poisson ratio. These elastic properties are used to gauge a promising protocol for calculation of various mechanical properties of a polymer system, based on the analysis of internal pressure in the system. Through modification of MARTINI force field parameters we elucidate that for various sets of polystyrene interactions the internal pressure of the system tends to saturate quickly enough to permit mu s-long simulations sufficient to predict elastic moduli close to those values reported in the experiment. We demonstrate that the suggested approach yields significantly more accurate results than the alternative analysis of internal energy of the system, and the performed analysis reveals that significantly longer simulations are necessary for a similar analysis in that case.
机译:本文提出了较大的粗粒调查,进入聚苯乙烯的弹性性质。特别是,我们雇用了众所周知的马蒂尼林尼强制领域及其修改,以实现MU S TimeScale的分子动力学模拟,从而考虑聚苯乙烯的缓和过程,使得模拟允许分析散装模量,剪切模量,和泊松比。这些弹性物质用于根据系统内部压力分析来衡量用于计算聚合物系统的各种机械性能的有希望的方案。通过修改马提尼力场参数,我们阐明,对于各种聚苯乙烯相互作用,系统的内部压力趋于快速饱和,以允许足以预测实验中报告的那些值的弹性模拟。我们证明,建议的方法比系统内部能量的替代分析显着提高了更准确的结果,并且所进行的分析表明,在这种情况下类似的分析是明显更长的模拟所需的模拟。

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