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The Extrudate Swell of HDPE: Rheological Effects

机译:HDPE的挤出物溶胀:流变效应

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The extrudate swell of an industrial grade high molecular weight high-density polyethylene (HDPE) in capillary dies is studied experimentally and numerically using the integral K-BKZ constitutive model. The non-linear viscoelastic flow properties of the polymer resin are studied for a broad range of large step shear strains and high shear rates using the cone partitioned plate (CPP) geometry of the stress/strain controlled rotational rheometer. This allowed the determination of the rheological parameters accurately, in particular the damping function, which is proven to be the most important in simulating transient flows such as extrudate swell. A series of simulations performed using the integral K-BKZ Wagner model with different values of the Wagner exponent n, ranging from n=0.15 to 0.5, demonstrates that the extrudate swell predictions are extremely sensitive to the Wagner damping function exponent. Using the correct n-value resulted in extrudate swell predictions that are in excellent agreement with experimental measurements.
机译:使用积分K-BKZ结构型模型实验和数值在实验和数值上进行毛细管模具中的工业级高分子量高密度聚乙烯(HDPE)的挤出物溶胀。使用应力/应变控制的旋转流变仪的锥形分隔板(CPP)几何形状,研究了聚合物树脂的非线性粘弹性流量和高剪切速率。这允许精确地确定流变参数,特别是阻尼功能,这被证明是模拟诸如挤出物膨胀的瞬态流动中最重要的。使用具有不同瓦格纳指数n的不同值的积分K-BKZ WAGNER模型执行的一系列模拟,范围从n = 0.15到0.5,表明挤出物膨胀预测对瓦格纳阻尼函数指数非常敏感。使用正确的n值导致挤出物膨胀预测,与实验测量有很好的一致性。

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