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Contraction of Entangled Polymers After Large Step Shear Deformations in Slip-Link Simulations

机译:滑移模拟中大步剪切变形后纠缠聚合物的收缩

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摘要

Although the tube framework has achieved remarkable success to describe entangled polymer dynamics, the chain motion assumed in tube theories is still a matter of discussion. Recently, Xu et al. [ACS Macro Lett. 2018, 7, 190–195] performed a molecular dynamics simulation for entangled bead-spring chains under a step uniaxial deformation and reported that the relaxation of gyration radii cannot be reproduced by the elaborated single-chain tube model called GLaMM. On the basis of this result, they criticized the tube framework, in which it is assumed that the chain contraction occurs after the deformation before the orientational relaxation. In the present study, as a test of their argument, two different slip-link simulations developed by Doi and Takimoto and by Masubuchi et al. were performed and compared to the results of Xu et al. In spite of the modeling being based on the tube framework, the slip-link simulations excellently reproduced the bead-spring simulation result. Besides, the chain contraction was observed in the simulations as with the tube picture. The obtained results imply that the bead-spring results are within the scope of the tube framework whereas the failure of the GLaMM model is possibly due to the homogeneous assumption along the chain for the fluctuations induced by convective constraint release.
机译:尽管管框架在描述缠结的聚合物动力学方面取得了巨大的成功,但是管理论中假设的链运动仍然是讨论的问题。最近,徐等人。 [ACS Macro Lett。 2018,7,190–195]对缠结的珠子-弹簧链在单轴阶跃变形下进行了分子动力学模拟,并报道了精心设计的单链管模型GLaMM无法再现回转半径的松弛。基于此结果,他们批评了管框架,其中假设链收缩发生在变形之后取向松弛之前。在本研究中,作为对他们论据的检验,由Doi和Takimoto以及Masubuchi等人开发了两种不同的滑动链接模拟。被执行,并与徐等人的结果进行比较。尽管基于管框架进行建模,但是滑移仿真很好地重现了胎圈弹簧仿真结果。此外,在模拟中观察到链收缩,如管图片所示。获得的结果表明,胎圈弹簧结果在管框架的范围内,而GLaMM模型的失败可能是由于对流约束释放引起的波动沿链的均匀假设。

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