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首页> 外文期刊>Journal of Rheology >Nonlinear viscoelastic properties of branched polyethylene in reversing flows
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Nonlinear viscoelastic properties of branched polyethylene in reversing flows

机译:反向流动中支链聚乙烯的非线性粘弹性

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Two-step reversing flows are severe tests of constitutive equations for polymer melts and have attracted interest for testing the response of branched polymers. Here we report on single-step and three types (types B, C, and D) of reversing torsional flows on branched and linear polyethylenes (PEs). The responses were analyzed using Kaye-Bernstein-Kearsley-Zapas (K-BKZ) theory. Comparisons between data and theory in type B and C flows for the two branched PEs (LD 103 and LD 146) and a linear HDPE are presented. For the LD 146 material and to strains higher than previously examined, the results agree with prior studies, i.e., the K-BKZ theory provides a good description of the response of branched polymers in reversing flows while the opposite is the case for the linear polymers. Surprisingly, it is found that the other branched polymer (LD 103) behaves more like a linear polymer and not a branched polymer in that it does not follow the K-BKZ theory. In the type D flow, one which was not previously investigated, the K-BKZ theory describes the normal force (NF) responses for branched LD 146 but not for the linear PE. Also, isochronal derivatives of the strain potential function (W-1 and W-2) were calculated from torque (T) and NF responses in single-step tests. The damping function fits to a modified sigmoidal formula and is close to the BKZ limit as reported by Wagner (2004a) for branched polystyrenes. The normal stress difference ratio and damping function were extracted from W-1 and W-2. Finally, the Cox-Merz rule was examined for one of the branched PEs. (c) 2007 The Society of Rheology.
机译:两步可逆流是对聚合物熔体本构方程的严格测试,并引起了人们对测试支链聚合物响应的兴趣。在这里,我们报告支链和线性聚乙烯(PE)的单向和三种类型(B,C和D型)的扭转扭转流动。使用Kaye-Bernstein-Kearsley-Zapas(K-BKZ)理论分析了响应。给出了两个分支PE(LD 103和LD 146)和线性HDPE的B型和C型数据流和理论之间的比较。对于LD 146材料以及比先前检查的更高的应变,其结果与先前的研究一致,即K-BKZ理论很好地描述了支链聚合物在可逆流中的响应,而线性聚合物则相反。令人惊讶地,发现另一支链聚合物(LD 103)的行为更像线型聚合物,而不是支链聚合物,因为它不遵循K-BKZ理论。在D型流(以前没有研究过)中,K-BKZ理论描述了分支LD 146的法向力(NF)响应,而不是线性PE。同样,在单步测试中根据扭矩(T)和NF响应计算出应变势函数(W-1和W-2)的等时导数。阻尼功能符合修改后的S形公式,并且接近Wagner(2004a)报告的支链聚苯乙烯的BKZ极限。从W-1和W-2提取法向应力差比和阻尼函数。最后,检查了分支PE之一的Cox-Merz规则。 (c)2007流变学会。

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