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INDUCED CRYSTALLIZATION THROUGH STRETCHED NETWORK

机译:通过拉伸网络诱导结晶

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@@Flow-induced crystallization of crystallization of polymer is not only a fundamental non-equilibrium thermodynamic problem, but also of importance for polymer processing. During polymer processing, such extrusion, injection molding and fiber spinning, polymer materials are subjected to various flow fields. After more than 60 years effort in polymer community, no satisfactory molecular theory has been achieved yet. The idea of flow-induced disentanglement, orientation and stretch has been the basic idea dominated in the community dated back to Keller and de Gennes, which suggest that the long chains plays the crucial role at the flow-induced nucleation or shish. Recent work from Rastogi group further supports the nucleation role of long chains. However, a contrary picture has been presented by Kitama et al, who suggest that the short chains instead of the long chains are the major contributor of shish. Some other discoveries also suggest the initially shish-kebab picture may not be proper. Hsiao group reported multiple shish rather than a single shish induce crystallization of single lamella. Han and co-authors reported shish can be produced with a small shear rate and suggested disentanglement may not be a necessary condition for the formation of shish. Without disentanglement at small shear rate, the sheared material resembles a stretched network. This picture may be more consistent with Hu and Frenkel's simulation, which shows single stretched molecular chain can induce the formation of shish-kebab structure. The complex of experimental system and condition may be the origin for such discrepancies from different groups, which block further pursuing the molecular mechanism of flow-induced crystallization of polymer.
机译:@@的流动诱导的聚合物结晶结晶不仅是非平衡热力学问题,而且对聚合物加工的重要性也是重要的。在聚合物加工期间,这种挤出,注射成型和纤维纺丝,聚合物材料经受各种流场。经过60多年的聚合物群落,尚未实现令人满意的分子理论。流动引起的解剖学,定向和延伸的想法一直是社区中占据的基本理念,这些想法日期为回到Keller和De Gennes,这表明长途链在流动诱导的成核或烤肉中起着至关重要的作用。 Rastogi Group最近的工作进一步支持长链的成核作用。然而,Kitama et al介绍了相反的画面,他建议留下短链,而不是长连锁店是蛇的主要贡献者。其他一些发现也建议最初的Shish-Kebab图片可能不合适。 Hsiao Group报道了多种烤肉,而不是单一乳清诱导的单薄片结晶。汉族和共同作者报告说艾兰斯可以用小的剪切速度制作,建议的解剖学可能不是形成艾兰特的必要条件。在小剪切速率下没有解剖,剪切材料类似于拉伸网络。这张照片可能与胡和弗雷克尔的仿真更符合,其显示单个拉伸分子链可以诱导烤肉串结构的形成。实验系统和病症的复合物可以是来自不同组的这种差异的起源,其进一步追求聚合物的流动诱导的结晶的分子机制。

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