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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Polymer orientation contributions in large-amplitude oscillatory shear flow
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Polymer orientation contributions in large-amplitude oscillatory shear flow

机译:大幅度振荡剪切流量的聚合物取向贡献

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Previously, we used a dilute suspension of rigid dumbbells as a model for the dynamics for polymeric liquids in large-amplitude oscillatory shear (LAOS) flow. We then use dumbbell orientation to explain fluid elasticity. We derived the expression for the polymer orientation distribution, and then we decomposed this function into its first five harmonics (the zeroth, first, second, third and fourth harmonics). We further separated the harmonics into their components, in-phase and out-of-phase with cos n omega t. In this work, we deepen our understanding of the relationship between the orientation distribution function and the shear stress and normal stress differences. We also investigate the components of orientation that make no contribution at all to measured rheological responses. Further, the larger the gamma(0) of the oscillatory shear flow, the greater the fraction of polymer that escapes rheological measurement. Our analysis focuses on the nonlinear viscoelastic regime, and specifically, where both lambda omega and lambda gamma(0) are unity. We learn that all orientation contributions to the normal stresses also contribute to the shear stress. The parts of the orientation distribution contributing to the shear stress take on the familiar peanut shapes of the total orientation distribution. The parts of the orientation distribution causing the normal stress differences are subsets of the part of the orientation distribution contributing to the shear stress. (C) 2017 Elsevier B.V. All rights reserved.
机译:以前,我们使用刚性哑铃的稀释悬浮液作为大振幅振荡剪切(LAOS)流动的聚合物液体动力学的模型。然后我们使用哑铃方向来解释流体弹性。我们衍生出了聚合物取向分布的表达,然后我们将此功能分解成其前五个谐波(Zeroth,第一,第二,第三和第四次谐波)。我们进一步将谐波与COS n Omega T中的次阶段分开到它们的组件中,同相和异相。在这项工作中,我们深化了对方向分布函数与剪切应力与剪切应力和正常应力差之间的关系的理解。我们还研究了取向的组成部分,为测量流变反应没有任何贡献。此外,振荡剪切流的γ(0)越大,逸出流变测量的聚合物的级分越大。我们的分析侧重于非线性粘弹性方案,具体而言,其中Lambda Omega和Lambdaγ(0)都是单位。我们了解到对正常压力的所有方向贡献也有助于剪切应力。取向分布的部分有助于剪切应力采用总取向分布的熟悉的花生形状。导致正常应力差异的方向分布的部分是有助于剪切应力的方向分布部分的子集。 (c)2017 Elsevier B.v.保留所有权利。

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