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Transient overshoot extensional rheology of long-chain branched polyethylenes : experimental and numerical comparisons between filament stretching and cross-slot flow.

机译:长链支化聚乙烯的瞬态过冲延伸流变学:长丝拉伸和缝槽流动之间的实验和数值比较。

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摘要

This work analyses the high-strain extensional behavior of long-chain branched polyethylenes, employing two novel extensional rheometer devices, the filament stretching rheometer and the cross-slot extensional rheometer. The filament stretching rheometer uses an active feedback loop to control the imposed strain rate on a filament, allowing Hencky strains of around 7 to be reached. The cross-slot extensional rheometer uses optical birefringence patterns to determine the steady-state extensional viscosity from planar stagnation point flow. The two methods probe different strain-rate regimes and in this paper we demonstrate the agreement when the operating regimes overlap and explore the steady-state extensional viscosity in the full strain-rate regime that these two complimentary techniques offer. For long-chain branched materials, the cross-slot birefringence images show a double cusp pattern around the outflow centre line (named W-cusps). Using constitutive modeling of the observed transient overshoot in extension seen in the filament stretching rheometer and using finite element simulations we show that the overshoot explains the W-cusps seen in the cross-slot extensional rheometer, further confirming the agreement between the two experimental techniques.
机译:这项工作使用两种新型的拉伸流变仪设备,长丝拉伸流变仪和十字槽拉伸流变仪,分析了长链支化聚乙烯的高应变拉伸行为。细丝拉伸流变仪使用主动反馈回路来控制细丝施加的应变率,从而可以达到大约7的Hencky应变。十字槽扩展流变仪使用光学双折射图案从平面停滞点流确定稳态扩展粘度。两种方法探查了不同的应变率方案,在本文中,我们证明了当工作方案重叠时的一致性,并探索了这两种互补技术提供的全应变率方案下的稳态拉伸粘度。对于长链支化材料,跨槽双折射图像在流出中心线(称为W尖峰)周围显示双尖峰图案。使用在长丝拉伸流变仪中观察到的延伸瞬态超调的本构模型,并使用有限元模拟,我们表明,该超调解释了在十字槽延伸流变仪中看到的W型尖峰,进一步证实了两种实验技术之间的一致性。

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