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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Extrudate swell of a high-density polyethylene melt: II. Modeling using integral and differential constitutive equations
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Extrudate swell of a high-density polyethylene melt: II. Modeling using integral and differential constitutive equations

机译:高密度聚乙烯熔体的挤出胀大:II。使用积分和微分本构方程建模

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摘要

The extrudate swell phenomenon of a high-molecular-weight HDPE is modeled using the following viscoelastic constitutive equations: the multi-mode Kaye-Bernstein-Kearsley-Zapas (K-BKZ) integral model with the Wagner and the Papanastasiou-Scriven-Macosko (PSM) damping functions, and multi-mode Phan-Thien-Tanner (PTT), Giesekus and Double Convected Pom-Pom (DCPP) differential models. The high-molecular-weight high density polyethylene (HDPE) is rheologically characterized and the experimental data have been used to fit the parameters of the constitutive models. Experimental results on extrudate swell are compared with the numerical predictions. The simulation results showed that the integral K-BKZ model highly over-predicts and the differential PTT, Giesekus and DCPP models slightly under-predict the experimental measurements. When the capillary reservoir is excluded from the simulations, the predictions of the integral models are significantly reduced close to the experimental data, while those of the differential models remain practically unaffected. Although both integral and differential models used represent the rheological data equally well, an explanation of the dramatically different predictions of extrudate swell by the integral and differential models remains elusive. (C) 2015 Elsevier B.V. All rights reserved.
机译:高分子量HDPE的挤出物膨胀现象是使用以下粘弹性本构方程建模的:具有Wagner和Papanastasiou-Scriven-Macosko的多模Kaye-Bernstein-Kearsley-Zapas(K-BKZ)积分模型( PSM)阻尼功能,以及多模式Phan-Thien-Tanner(PTT),Giesekus和Double Convected Pom-Pom(DCPP)差分模型。对高分子量高密度聚乙烯(HDPE)进行了流变学表征,并将实验数据用于拟合本构模型的参数。将挤出物膨胀的实验结果与数值预测进行比较。仿真结果表明,积分K-BKZ模型高度预测过高,而差分PTT,Giesekus和DCPP模型则略微低估了实验测量值。当将毛细管储层从模拟中排除时,积分模型的预测将接近于实验数据,而差分模型的预测几乎不会受到影响。尽管所使用的积分模型和微分模型均能很好地代表流变数据,但是对于积分模型和微分模型对挤出物溶胀的巨大不同预测的解释仍然难以理解。 (C)2015 Elsevier B.V.保留所有权利。

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