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Numerical simulation of polymer foaming process in extrusion flow

机译:挤出流中聚合物发泡过程的数值模拟

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摘要

Computer simulations of polymer foaming processes in extrusion flow have been carried out in order to improve current understanding of viscoelasticity and bubble growth effects on die-swelling in the production of polymer foam. The linear and non-linear viscoelastic materials functions of a commercial low density polyethylene (LDPE) melt have been extracted by fitting its rheometric data with constitutive models including a simple viscoelastic model (SVM), the exponential Phan-Thien-Tanner (EPTT) model and the double convected pom-pom (DCPP) model. Simulations of LDPE melt under extrusion flow without foaming show that the predictions of the die-swell by the SVM are in reasonably good agreement with the results obtained from the EPTT and DCPP models. By comparison of the simulation results of LDPE foaming in extrusion flow using the Bird-Carreau model and the SVM, a cooperative effect of polymer viscoelasticity and bubble growth on the die-swell has been quantified. The numerical results also show that the density of polymeric foam decreases significantly with the increasing concentration of foaming agent, and that the combination of the SVM and bubble growth model can account for some essential physics of polymer foaming process in extrusion flow.
机译:为了提高目前对粘弹性和气泡增长对聚合物泡沫生产中模头膨胀的影响的理解,已经进行了挤出流中聚合物发泡过程的计算机模拟。商业低密度聚乙烯(LDPE)熔体的线性和非线性粘弹性材料功能已通过将其流变数据与本构模型进行拟合而提取,其中本构模型包括简单的粘弹性模型(SVM),指数Phan-Thien-Tanner(EPTT)模型以及双对流绒球(DCPP)模型。 LDPE熔体在挤出过程中没有发泡的模拟表明,SVM对模头膨胀的预测与从EPTT和DCPP模型获得的结果相当吻合。通过比较使用Bird-Carreau模型和SVM的挤出流动中LDPE发泡的模拟结果,可以量化聚合物粘弹性和气泡增长对模头膨胀的协同作用。数值结果还表明,随着发泡剂浓度的增加,聚合物泡沫的密度显着降低,并且SVM和气泡增长模型的组合可以解释挤出流中聚合物发泡过程的一些基本物理原理。

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