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Effect of Viscoelastic Stress State at Die Exit on Extrusion Film Casting Process: Theoretical Study

机译:粘弹性应力状态在挤出薄膜浇铸过程中的粘弹性应力状态:理论研究

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In this work, viscoelastic, isothermal extrusion film casting modeling utilizing 1D membrane model and modified Leonov model was performed in order to understand the role of viscoelastic stress state at the die exit on the polymer melt film stretching in the post die area. Experimental data for LDPE and theoretical predictions based on the eXtended Pom-Pom (XPP) model taken from the open literature were used for the validation purposes. It was found that predicting capabilities of ID membrane model utilizing XPP and modified Leonov model are comparable for the given processing conditions and material. Consequent theoretical parametric study revealed that increase in the viscoelastic stress state at the die exit, characterized as the ratio of second and first normal stress differences, -N_2/N_1, leads to increase in neck-in phenomenon. This suggests that specific attention should be paid to optimization of the extrusion die design in order to stabilize polymer melt film stretching in the post die area.
机译:在这项工作中,进行利用1D膜模型和改进的Leonov模型的粘弹性,等温挤出薄膜铸造建模,以了解粘弹性应力状态在后模面积延伸的聚合物熔体薄膜上的粘弹性应力状态的作用。基于从开放文献采取的扩展POM-POM(XPP)模型的LDPE和理论预测的实验数据用于验证目的。发现利用XPP和改进的Leonov模型的ID膜模型的预测能力与给定的处理条件和材料相当。因此,理论参数研究显示,模具出口处的粘弹性应力状态增加,其特征在于作为第二和第一正常应力差的比率-N_2 / N_1,导致颈部现象增加。这表明应特别注意挤出模具设计的优化,以稳定在后模面积中拉伸的聚合物熔体薄膜。

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