首页> 外文会议>International conference of molecular simulations and applied informatics technologies >Molecular dynamics and mesoscopic dynamics simulations for prediction of miscibility in polypropylene/polyamide-11 blends
【24h】

Molecular dynamics and mesoscopic dynamics simulations for prediction of miscibility in polypropylene/polyamide-11 blends

机译:分子动力学和介观动力学模拟预测聚丙烯/聚酰胺11混合物的混溶性

获取原文

摘要

The miscibility of polyprowlene (PP)/polyamide-11 (PA11) blends were investigated by atomistic molecular dynamics (MD) and mesoscopic dynamics (MesoDyn) simulations live PP/PA11 blends (with the weight ratio at 90/10.70/30.50/50.30/70 and 10/90) as well as pure PP and PA11 were examined.The Flory-Huggins interaction parameters,x,which were computed for different blends and determined from the cohesive energy densities,were computed for different blends using atomistic simulations to predict bleud miscibility.It was fouud that in the case of 90/10 PP/PA11 blend,miscibility was normally observed,but immiscibility was prevalent at higher compositions of PA11 component.The radial distribution functions g(r) of the inter-molecular carbon atomic pairs of PP-PA11,PP-PP and PA11-PA11 also indicate that 90/10 PP/PA11 is miscible,but at other compositions,these blends are immiscible.Kinetics of phase separation was examined by using density profiles calculated from the MesoDyn approach to examine miscibility/immiscibility aspects of the blends.All the simulations results are qualitatively consilent with the experimental results,and demonstrate that the modeling strategies in this study may provide a powerful tool for predicting miscibility and mesoscopic morphology of polymer blends.
机译:通过原子分子动力学(MD)和介观动力学(MesoDyn)模拟活PP / PA11共混物(重量比为90 / 10.70 / 30.50 / 50.30 / 70和10/90)以及纯PP和PA11.Flory-Huggins相互作用参数x是针对不同的共混物计算的,并由内聚能密度确定,并使用原子模拟模拟了不同的共混物,从而预测了气泡有趣的是,在90/10 PP / PA11共混物的情况下,通常可观察到混溶性,但在较高组分的PA11组分中混溶性普遍存在。分子间碳原子对的径向分布函数g(r) PP-PA11,PP-PP和PA11-PA11的图谱还表明90/10 PP / PA11是可混溶的,但在其他成分下,它们的混合物是不溶混的。考试所有的模拟结果在质量上与实验结果吻合,并证明该研究中的建模策略可以为预测聚合物共混物的相溶性和介观形态提供强大的工具。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号