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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >First normal stress difference and in-situ spectral dynamics in a high sensitivity extrusion die for capillary rheometry via the 'hole effect'
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First normal stress difference and in-situ spectral dynamics in a high sensitivity extrusion die for capillary rheometry via the 'hole effect'

机译:高灵敏度挤出模具中通过“孔效应”进行毛细管流变测定时的第一个法向应力差和原位光谱动力学

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摘要

The development of a high sensitivity polymer melt extrusion flow instability detection die capable of estimating the normal stress differences of polymer melts during capillary rheometry tests via the 'hole effect' is presented here as proof-of-principle. Two polymer melts, a low density polyethylene (branched topology) and a high density polyethylene (linear topology), were tested in a variety of experimental configurations with the purpose of determining optimal conditions for performing normal stress difference measurements. The data was compared with rotational rheometry oscillatory shear measurements analyzed via the Laun rule. It is shown that it is possible to estimate the first normal stress difference in the capillary die, whereas the second normal stress difference cannot be determined within the experimental errors using the current configuration design. Furthermore, the influence of the induced streamline curvature via the 'hole effect' on the onset and development of melt flow instabilities is simultaneously assessed. It is shown that the hole depth has a stabilizing influence, i.e. the onset of instabilities occurs at higher shear rates, in the long chain branched polymer tested, whereas for the linear polymer tested it has a destabilizing effect on the stick-slip instability i.e. the onset of stick-slip occurs at lower shear rates. (C) 2016 Elsevier Ltd. All rights reserved.
机译:作为原理证明,这里提出了一种高灵敏度的聚合物熔体挤出流动不稳定性检测模具的开发,该模具能够通过“孔效应”估算毛细管流变学测试期间聚合物熔体的法向应力差。为了确定执行法向应力差测量的最佳条件,对两种聚合物熔体(低密度聚乙烯(支链拓扑)和高密度聚乙烯(线性拓扑))进行了各种实验配置的测试。将该数据与通过Laun法则分析的旋转流变仪振荡剪切测量值进行比较。结果表明,可以估计毛细管模具中的第一法向应力差,而使用当前的配置设计无法在实验误差范围内确定第二法向应力差。此外,同时评估了通过“孔效应”引起的流线曲率对熔体流动不稳定性的发生和发展的影响。结果表明,在所测试的长链支化聚合物中,孔深度具有稳定作用,即,不稳定性的出现在较高的剪切速率下发生,而对于所测试的线性聚合物,其对粘滑不稳定性具有破坏性作用,即粘滑的发生在较低的剪切速率下发生。 (C)2016 Elsevier Ltd.保留所有权利。

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