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经历平面库埃特流动的超支化聚合物熔体的流变学

Rheology of hyperbranched polymer melts undergoing planar Couette flow.

作者信息

Le T C, Todd B D, Daivis P J, Uhlherr A

机构信息

Centre for Molecular Simulation, Swinburne University of Technology, P.O. Box 218, Hawthorn, Victoria 3122, Australia.

出版信息

J Chem Phys. 2009 Jul 28;131(4):044902. doi: 10.1063/1.3184799.

Abstract

The melt rheology of four hyperbranched polymer structures with different molecular weights has been studied using nonequilibrium molecular dynamics (NEMD). Systems were simulated over a wide range of strain rates to capture the crossover behavior from Newtonian to non-Newtonian regimes. Rheological properties including shear viscosity and first and second normal stress coefficients were computed and the transition to shear thinning was observed at different strain rates for hyperbranched polymers of different sizes. The results were consistent with previous findings from NEMD simulation of linear and dendritic polymers. Flow birefringence was characterized by taking into account both form and intrinsic birefringences, which result from molecular and bond alignment, respectively. The stress optical rule was tested and shown to be valid only in the Newtonian regime and violated in the strong flow regime where the rule does not take into account flow-induced changes of the microstructure.

摘要

利用非平衡分子动力学(NEMD)研究了四种不同分子量的超支化聚合物结构的熔体流变学。在很宽的应变速率范围内对体系进行了模拟,以捕捉从牛顿区到非牛顿区的转变行为。计算了包括剪切粘度以及第一和第二法向应力系数在内的流变性质,并观察到不同尺寸的超支化聚合物在不同应变速率下向剪切变稀的转变。结果与先前对线性和树枝状聚合物进行NEMD模拟的结果一致。通过分别考虑由分子排列和键排列引起的形状双折射和固有双折射来表征流动双折射。对应力-光学定律进行了测试,结果表明该定律仅在牛顿区有效,而在强流动区无效,因为该定律没有考虑流动引起的微观结构变化。

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