混相聚合物共混物动力学非均质性及柔性聚合物动力学研究

O. Urakawa
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引用次数: 11

摘要

本文介绍了我们的三个研究:(1)混相聚合物共混物的动力学非均质性,(2)熔体和溶液中柔性聚合物链动力学的介电研究,以及(3)缠绕聚合物体系在双轴扩展中的应力松弛。在研究(1)中,我们主要研究了聚异戊二烯(PI) /聚乙烯醇(PVE)共混物的段动力学和全局动力学。具体来说,我们估计了节段运动的特征尺寸。此外,为了观察浓度波动(CF)对节段动力学的影响,在双嵌段共聚物体系中CF振幅被抑制的情况下,我们比较了PI/PVE共混体系和PI-PVE双嵌段共聚物的节段运动的介电弛豫谱。在第二项研究中,偶极倒置a型聚合物被用来研究详细的链动力学。在第三项研究中,我们确定了聚苯乙烯熔体在双轴拉伸变形中的阻尼函数,并与Doi-Edwards理论进行了比较。
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Studies on Dynamic Heterogeneity in Miscible Polymer Blends and Dynamics of Flexible Polymers
This paper presents our three studies: (1) dynamic heterogeneity in miscible polymer blends, (2) dielectric study on the dynamics of flexible polymer chains in melts and solutions, and (3) stress relaxation of entangled polymer systems in biaxial extension. In the study of (1), we investigated the segmental and global dynamics mainly in miscible polyisoprene (PI) / poly(vinyl ethylene) (PVE) blends. Specifically, we estimated the characteristic sizes of the segmental motion. Furthermore, in order to see the effect of the concentration fluctuation (CF) on the segmental dynamics, we compared the dielectric relaxation spectra of the segmental motion between PI/PVE blend and PI-PVE diblock copolymer based on the fact that the CF amplitude is suppressed in the diblock copolymer system. In the second study, dipole inverted type-A polymers are used to investigate the detailed chain dynamics. In the third study, we determined the damping function in biaxial extensional deformation for polystyrene melts and compared with Doi-Edwards theory.
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