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模拟缠结聚合物熔体的起始剪切

Simulating Startup Shear of Entangled Polymer Melts.

作者信息

Cao Jing, Likhtman Alexei E

机构信息

Department of Mathematics and Statistics, University of Reading, Reading, U.K. RG6 6AX.

出版信息

ACS Macro Lett. 2015 Dec 15;4(12):1376-1381. doi: 10.1021/acsmacrolett.5b00708. Epub 2015 Nov 23.

Abstract

Start-up shear rheology is a standard experiment used for characterizing polymer flow, and to test various models of polymer dynamics. A rich phenomenology is developed for behavior of entangled monodisperse linear polymers in such tests, documenting shear stress overshoots as a function of shear rates and molecular weights. A tube theory does a reasonable qualitative job at describing these phenomena, although it involves several drastic approximations and the agreement can be fortuitous. Recently, Lu and co-workers published several papers [e.g., Lu ACS Macro Lett. 2014, 3, 569-573] reporting results from molecular dynamics simulations of linear entangled polymers, which contradict both theory and experiment. On the basis of these observations, they made very serious conclusions about the tube theory, which seem to be premature. In this letter, we repeat simulations of Lu et al. and systematically show that neither their simulation results nor their comparison with theory is confirmed.

摘要

起始剪切流变学是一种用于表征聚合物流动以及测试聚合物动力学各种模型的标准实验。在这类测试中,针对缠结的单分散线性聚合物的行为已形成了丰富的现象学,记录了剪切应力过冲随剪切速率和分子量的变化情况。尽管管模型涉及一些极端近似且这种一致性可能是偶然的,但它在描述这些现象方面能起到合理的定性作用。最近,卢及其同事发表了几篇论文[例如,《美国化学会宏观快报》2014年,第3卷,第569 - 573页],报道了线性缠结聚合物分子动力学模拟的结果,这些结果与理论和实验均相矛盾。基于这些观察结果,他们对管模型得出了非常严肃的结论,而这些结论似乎为时过早。在这封信中,我们重复了卢等人的模拟,并系统地表明他们的模拟结果以及他们与理论的比较都未得到证实。

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