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首页> 外文期刊>The Journal of Chemical Physics >Examining the role of fluctuations in the early stages of homogenous polymer crystallization with simulation and statistical learning
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Examining the role of fluctuations in the early stages of homogenous polymer crystallization with simulation and statistical learning

机译:检查波动在仿真和统计学习中均匀聚合物结晶早期阶段的作用

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摘要

We propose a relationship between the dynamics in the amorphous and crystalline domains during polymer crystallization: the fluctuations of ordering-rate about a material-specific value in the amorphous phase drive those fluctuations associated with the increase in percent crystallinity. This suggests a differential equation that satisfies the three experimentally observed time regimes for the rate of crystal growth. To test this postulated expression, we applied a suite of statistical learning tools to molecular dynamics simulations to extract the relevant phenomenology. This study shows that the proposed relationship holds in the early time regime. It illustrates the effectiveness of soft computing tools in the analysis of coarse-grained simulations in which patterns exist, but may not easily yield to strict quantitative evaluation. This ability assists us in characterizing the critical early time molecular arrangement during the primary nucleation phase of polymer melt crystallization. In addition to supporting the validity of the proposed kinetics expression, the simulations show that (i) the classical nucleation and growth mechanism is active in the early stages of ordering; (ii) the number of nuclei and their masses grow linearly during this early time regime; and (iii) a fixed inter-nuclei distance is established. Published by AIP Publishing.
机译:我们在聚合物结晶期间提出了无定形和结晶结构域的动态之间的关系:无定形相中的材料特异性值的排序速率的波动驱动与结晶度百分比增加相关的那些波动。这表明一种差分方程,满足三种实验观察到的晶体生长速率的时间制度。为了测试这一假设表达,我们将一套统计学习工具应用于分子动力学模拟以提取相关现象学。本研究表明,拟议的关系在早期政权中持有。它说明了软计算工具在分析粗粒模拟中的有效性,其中存在模式,但可能不易产生严格的定量评估。这种能力有助于我们在聚合物熔体结晶的初级成核阶段进行批判性早期分子布置。除了支持提出的动力学表达的有效性之外,模拟表明(i)古典成核和生长机制在订购的早期阶段是活跃的; (ii)在这个早期政权期间,核的数量和群众在线性地生长; (iii)建立了固定的核距离。通过AIP发布发布。

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