Rheological characterization of H-shaped poly(methyl methacrylate)s

被引:0
作者
Koji Ogura
Kohei Morioka
Shu-Yao Hsu
Yoshinobu Tsujii
Manfred H. Wagner
机构
[1] Sumitomo Chemical Co.,Basic Chemicals Research Laboratory
[2] Ltd,Institute for Chemical Research
[3] Kyoto University,Chair of Polymer Engineering/Polymer Physics
[4] Berlin Institute of Technology (TU Berlin),undefined
来源
Rheologica Acta | 2015年 / 54卷
关键词
H-shaped polymer; Rheology; Molecular stress function model; Uniaxial extension; Strain hardening; Poly(methyl methacrylate);
D O I
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中图分类号
学科分类号
摘要
Investigation of the extensional flow behavior and development of constitutive equations for well-characterized H-shaped polymers is important both from an industrial and academic viewpoints. For H-shaped polymer systems, little is known about the extensional flow behavior at constant strain rates. We synthesized H-shaped poly(methyl methacrylate)s (PMMAs) with narrow molecular weight distributions and various ratios of the molecular weight of the backbone, Mb, to that of the arm, Ma, by atom transfer radical polymerization. However, 1H NMR spectroscopy showed that the resulting PMMA samples contained substantial amounts of linear and star topologies. In spite of the limited purity of the H-shaped PMMAs obtained, the rheological properties in linear viscoelasticity and uniaxial extensional flow revealed interesting results. The zero-shear viscosity of model PMMAs was well described by an exponential relation of the molecular weight. Qualitative agreement was found between the experimental linear-viscoelastic behavior and predictions of the model of McLeish et al. (Macromolecules 32: 6734–6758, 1999) for H-shaped polymers. The elongational flow behavior was also analyzed by the molecular stress function (MSF) model. Surprisingly, the strain-hardening effect for all investigated model PMMAs was weaker than that for pom-pom polystyrene polymers.
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页码:793 / 804
页数:11
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