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Electric Field Enhances Shear Resistance of Polymer Melts via Orientational Polarization in Microstructures

机译:电场通过微结构中的定向极化增强聚合物熔体的抗剪强度

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摘要

In this paper, we studied the alteration of viscoelastic properties of a neat poly(methyl methacrylate) (PMMA), induced by an applied external electric field. The rheological properties of PMMA are measured using a rotational rheometer at elevated temperatures. The electric field effect on the shear resistance of the polymer was studied by examining rheological responses under difference experimental scenarios. We find that the external electric field can remarkably enhance shear resistance and prevent flow of PMMA melt, enabling it to behave more predictably at high temperatures. Dynamic rheological analysis illustrates that the external electric field speeds up the recovery of mechanical properties of the PMMA melt after large deformations, whereas the PMMA melt exhibits thixotropic behaviors. The recovery velocity is influenced by the strength of the electric field, specifically, and is found to be proportional to the electric field strength. Our experimental characterization may provide new evidence on the tuning mechanical properties of polymer melts via controlling segmental polarization.
机译:在本文中,我们研究了外加电场引起的纯聚甲基丙烯酸甲酯(PMMA)粘弹性的变化。使用旋转流变仪在高温下测量PMMA的流变性能。通过检查不同实验情况下的流变响应,研究了电场对聚合物抗剪强度的影响。我们发现,外部电场可以显着提高抗剪强度并防止PMMA熔体流动,从而使其在高温下的行为更加可预测。动态流变学分析表明,外部电场在大变形后加快了PMMA熔体力学性能的恢复,而PMMA熔体表现出触变性。具体而言,恢复速度受电场强度的影响,并且与电场强度成正比。我们的实验表征可以通过控制分段极化为调节聚合物熔体的力学性能提供新的证据。

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