首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Extracting extensional properties through excess pressure drop estimation in axisymmetric contraction and expansion flows for constant shear viscosity, extension strain-hardening fluids
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Extracting extensional properties through excess pressure drop estimation in axisymmetric contraction and expansion flows for constant shear viscosity, extension strain-hardening fluids

机译:通过恒定压剪粘度,拉伸应变硬化流体的轴对称收缩和膨胀流中的过大压降估算来提取拉伸特性

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In this study, hyperbolic contraction-expansion flow (HCF) devices have been investigated with the specific aim of devising new experimental measuring systems for extensional rheological properties. To this end, a hyperbolic contraction-expansion configuration has been designed to minimize the influence of shear in the flow. Experiments have been conducted using well-characterized model fluids, alongside simulations using a viscoelastic White-Metzner/FENE-CR model and finite element/finite volume analysis. Here, the application of appropriate rheological models to reproduce quantitative pressure drop predictions for constant shear viscosity fluids has been investigated, in order to extract the relevant extensional properties for the various test fluids in question. Accordingly, experimental evaluation of the hyperbolic contraction-expansion configuration has shown rising corrected pressure drops with increasing elastic behaviour (D e=0 similar to 16), evidence which has been corroborated through numerical prediction. Moreover, theoretical to predicted solution correspondence has been established between extensional viscosity and first normal stress difference. This leads to a practical means to measure extensional viscosity for elastic fluids, obtained through the derived pressure drop data in these HCF devices.
机译:在这项研究中,已经研究了双曲线收缩-膨胀流量(HCF)设备,其特定目的是设计用于拉伸流变特性的新实验测量系统。为此,已经设计了双曲线收缩-膨胀构造以最小化流中剪切的影响。使用特性良好的模型流体进行了实验,同时使用粘弹性White-Metzner / FENE-CR模型和有限元/有限体积分析进行了模拟。在这里,已经研究了使用适当的流变模型来再现恒定剪切粘度流体的定量压降预测,以便提取所讨论的各种测试流体的相关拉伸特性。因此,对双曲线收缩-膨胀构型的实验评估表明,随着弹性行为的增加,修正后的压降不断提高(D e = 0类似于16),这已经通过数值预测得到了证实。此外,在拉伸粘度和第一法向应力差之间已经建立了理论到预测的溶液对应关系。这导致了一种实用的方法,可以通过在这些HCF设备中获得的压降数据来测量弹性流体的拉伸粘度。

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