首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >Assessing the practical utility of the hole-pressure method for the in-line rheological characterization of polymer melts
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Assessing the practical utility of the hole-pressure method for the in-line rheological characterization of polymer melts

机译:评估孔压法在聚合物熔体在线流变学表征中的实用性

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摘要

The most promising method capable of providing accurate measurements of the first and second normal-stress differences in shear flows at shear rates typical of polymer processing is the so-called hole-pressure method, but its use has not been as widespread as would be expected, namely due to the experimental difficulties associated with performing such experiments accurately. In this work, we use a small-scale modular slit die to assess the practical utility of the method for in-line monitoring of polymer melt flow. We provide a quantitative analysis of intrinsic error sources and use state-of-the-art data acquisition tools to minimize errors associated with pressure transducers. Our results demonstrate that the method can be used to accurately measure the viscosity and first normal-stress difference in melts but probably not the second normal-stress difference because the intrinsic errors are too high, even when the influence of all the potential error sources is minimized or eliminated.
机译:能够对聚合物加工过程中典型的剪切速率下的剪切流的第一和第二法向应力差进行准确测量的最有前途的方法是所谓的孔压法,但它的使用并未像预期的那样广泛,即由于与准确执行此类实验相关的实验困难。在这项工作中,我们使用小型模块化狭缝模头来评估在线监测聚合物熔体流动的方法的实用性。我们提供内在误差源的定量分析,并使用最新的数据采集工具来最大程度地减少与压力传感器相关的误差。我们的结果表明,该方法可用于准确测量熔体的粘度和第一法向应力差,但由于固有误差过高,即使在所有潜在误差源的影响都很大的情况下,也可能无法准确测量第二法向应力差。最小化或消除。

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