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Zero-shear viscosity of Fraenkel dumbbell suspensions

机译:Fraenkel Dumbbell悬浮液的零剪切粘度

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Whereas rigid dumbbell suspensions predict, at least qualitatively, most of the viscoelastic material functions measured in the laboratory, Hookean dumbbells predict few of these. For instance, whereas rigid dumbbells predict a shear-thinning viscosity curve, as they should, Hookean dumbbells yield a constant for the steady shear viscosity. In this paper, we explore the addition of a Hookean spring to the end of a rigid rod, a dumbbell attributed to Fraenkel. In this way, we focus our attention on how macromolecular extensibility affects the configuration distribution in steady shear flow. We arrive at the exact solution to this configuration distribution in steady shear flow at low shear rate and then insert it into the Giesekus expression for the stress tensor to arrive at an exact solution for the zero-shear viscosity and the zero-shear values of the normal stress differences.
机译:虽然刚性哑铃悬浮液预测,但至少定性地,在实验室中测量的大多数粘弹性材料功能,Hownbels预测这些少数。 例如,虽然刚性哑铃预测剪切稀释粘度曲线,但是,随着它们的刺激性粘性粘度率为稳定的剪切粘度,而悬挂哑铃产生恒定。 在本文中,我们探讨了将一个钩子弹簧添加到刚性杆的末端,留给Fraenkel的哑铃。 通过这种方式,我们将注意力集中在大分子伸展性如何影响稳定剪切流程中的配置分布。 我们以低剪切速率在稳定剪切流中到达确切的解决方案,然后将其插入到Giesekus表达式中,以确切地到达零剪切粘度和零剪切值的精确解决方案 正常的应力差异。

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