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缠结聚合物熔体起始剪切过程中应力超调的起源

Origin of Stress Overshoot during Startup Shear of Entangled Polymer Melts.

作者信息

Lu Yuyuan, An Lijia, Wang Shi-Qing, Wang Zhen-Gang

机构信息

State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, People's Republic of China.

Department of Polymer Science, University of Akron, Akron, Ohio 44325-3909, United States.

出版信息

ACS Macro Lett. 2014 Jun 17;3(6):569-573. doi: 10.1021/mz500260h. Epub 2014 May 30.

Abstract

Using Brownian dynamics simulation, we determine the chain orientation and stretching and their connection to stress overshoot in an entangled polymer melt undergoing startup shear at rates lower than the reciprocal of the Rouse time yet higher than the reciprocal of the reptation time. In this rate regime, the prevailing tube theory attributes the stress overshoot to alignment of the primitive chain. In contrast, our results reveal that there is substantial chain stretching that persists well beyond the Rouse time, and it contributes significantly to the initial stress growth. In particular, stress overshoot is found to be primarily due to chain retraction after considerable stretching rather than chain orientation.

摘要

通过布朗动力学模拟,我们确定了在低于Rouse时间倒数但高于reptation时间倒数的速率下经历启动剪切的缠结聚合物熔体中的链取向和拉伸及其与应力过冲的联系。在这个速率范围内,流行的管理论将应力过冲归因于原始链的排列。相比之下,我们的结果表明,存在大量持续超过Rouse时间的链拉伸,并且它对初始应力增长有显著贡献。特别是,发现应力过冲主要是由于在相当大的拉伸之后的链回缩而不是链取向。

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