正交晶系
链条(单位)
分子动力学
结晶
聚乙烯
构象熵
化学物理
材料科学
联轴节(管道)
热力学
结晶学
化学
分子
计算化学
物理
晶体结构
复合材料
有机化学
冶金
天文
作者
Junsheng Yang,Xiaoliang Tang,Zhen Wang,Tingyu Xu,Fucheng Tian,Youxin Ji,Liangbin Li
摘要
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 Rete and the content of trans conformation Ctrans are extracted out to represent intra-chain conformation ordering at whole chain and segment levels, respectively, while orientation correlation function P, density ρ, and bond orientational order parameter Q4 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.
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