Equibiaxial elongation of entangled polyisobutylene melts: Experiments and theoretical predictions

Seyed Mahmoud Arzideh, A. Córdoba, Jeffrey G. Ethier, J. Schieber, D. Venerus
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Abstract

Equibiaxial elongational deformations are omnipresent in polymer processing technologies. The challenge of generating well-controlled equibiaxial elongational deformations in the laboratory has, however, severely inhibited progress on understanding the rheology of polymeric liquids and other complex fluids in this flow. More recently, a novel technique known as continuous lubricated squeezing flow has been developed that allows for rheological measurements in equibiaxial elongational deformations. In the present study, we examine the rheological behavior of two entangled polyisobutylene (PIB) melts with different molecular weight distributions in constant strain rate equibiaxial elongation flows. These new data are compared with predictions from two molecular models for entangled polymer melts inspired by the idea that entanglements dominate the relaxation dynamics. One model is the discrete slip-link model (DSM), and the other is known as the Rolie Double Poly (RDP) model. For the PIB with a relatively narrow molecular weight distribution, the predictions of both models are in good agreement with experiments and the DSM gives nearly quantitative agreement. For the broad molecular weight distribution PIB, both the DSM and RDP model predict strain hardening, which is not observed in the experiments.
缠结聚异丁烯熔体的等轴伸长:实验和理论预测
等轴伸长变形在聚合物加工技术中无处不在。然而,在实验室中产生良好控制的等轴伸长变形所带来的挑战,严重阻碍了对聚合物液体和其他复杂流体在这种流动中的流变学的理解。最近,一种被称为连续润滑挤压流的新技术应运而生,它可以在等轴伸长变形中进行流变学测量。在本研究中,我们研究了两种具有不同分子量分布的缠结聚异丁烯(PIB)熔体在恒应变速率等轴伸长流动中的流变行为。这些新数据与两种纠缠聚合物熔体分子模型的预测结果进行了比较,这两种模型的灵感来自于纠缠主导弛豫动力学的观点。其中一个模型是离散滑移链模型(DSM),另一个称为罗利双聚物模型(RDP)。对于分子量分布相对较窄的 PIB,两种模型的预测结果都与实验结果吻合,其中 DSM 的预测结果几乎与实验结果定量吻合。对于分子量分布较宽的 PIB,DSM 和 RDP 模型都预测会出现应变硬化,而实验中并未观察到这种现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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