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首页> 外文期刊>The Journal of Chemical Physics >Coupling between intra- and inter-chain orderings in flow-induced crystallization of polyethylene: A non-equilibrium molecular dynamics simulation study
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Coupling between intra- and inter-chain orderings in flow-induced crystallization of polyethylene: A non-equilibrium molecular dynamics simulation study

机译:聚乙烯流动诱导结晶中链内排序与链间排序之间的耦合:非平衡分子动力学模拟研究

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Non-equilibrium molecular dynamics simulations have been performed to study the molecular mechanism of flow-induced crystallization (FIC) of polyethylene (PE). The end-to-end distance of chain R-ete and the content of trans conformation C-trans are extracted out to represent intra-chain conformation ordering at whole chain and segment levels, respectively, while orientation correlation function P, density rho, and bond orientational order parameter Q(4) are taken to depict inter-chain orders. Imposing the extension induces the intra-chain conformational ordering to occur first, which further couples with the inter-chain order and results in the formation of hexagonal packing. Further increasing strain leads to the appearance of orthorhombic order. The results demonstrate that the FIC of PE proceeds via a multi-stage ordering process, during which coupling occurs among stress, intra-chain conformation, and inter-chain orientation and density orderings. Analyzing the flow-induced energy evolution unveils that not only entropy but also energy plays an important role in the FIC.
机译:已经进行了非平衡的分子动力学模拟以研究聚乙烯(PE)的流动诱导的结晶(FIC)的分子机制。提取链R-ete的端到端距离和反式构象C-Trans的含量分别在整个链和段水平上分别表示链内构象排序,同时取向相关函数P,密度RON和债券取向顺序参数Q(4)被采用以描述间间订单。施加延伸诱导首先发生链内构象排序,进一步与链间秩序耦合,并导致形成六边形包装。进一步增加的应变导致正交秩序的外观。结果表明,PE的FIC通过多级订购过程进行,在此期间应力,链内构象和链间方向和密度排序发生耦合。分析流动诱导的能量进化推出,不仅熵,而且能量在FIC中起着重要作用。

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