首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Effect of die exit stress state, Deborah number, uniaxial and planar extensional rheology on the neck-in phenomenon in polymeric flat film production
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Effect of die exit stress state, Deborah number, uniaxial and planar extensional rheology on the neck-in phenomenon in polymeric flat film production

机译:模具出口应力状态,脱荒数,单轴和平面延伸流变在聚合物扁平膜生产中的颈部现象

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In this work, effect of the second to first normal stress difference ratio at the die exit, -N-2/N-1, uniaxial extensional strain hardening eta E, U, max/3 eta(0), planar-to-uniaxial extensional viscosity ratio, eta E, P/eta E, U and Deborah number, De, has been investigated via viscoelastic isothermal modeling utilizing 1D membrane model and a single-mode modified Leonov model as the constitutive equation. Based on the performed parametric study, it was found that there exists a threshold value for De and eta E, U, max/3 eta(0), above which, the neck-in starts to be strongly dependent on -N-2/N-1. It was found that such critical De decreases if -N-2/N-1, eta E, U, max/3 eta(0) increases and/or eta E, P/eta E, U decreases. Numerical solutions of the utilized model were successfully approximated by a dimensionless analytical equation relating the normalized maximum attainable neck-in with eta E, U, max/3 eta(0), eta E, P/eta E, U, -N-2/N-1 and De. Suggested equation was tested by using literature experimental data considering that -N-2/N-1 depends on die exit shear rate, temperature and utilized constitutive model parameters for given polymer melt. It was found that approximate model predictions are in a very good agreement with the corresponding experimental data for low as well as very high Deborah numbers, at which neck-in strongly depends on -N-2/N-1. It is believed that the obtained knowledge together with the suggested simple model can be used for optimization of the extrusion die design (influencing flow history and thus die exit stress state), molecular architecture of polymer melts and processing conditions to suppress neck-in phenomenon in production of very thin polymeric flat films.
机译:在这项工作中,第二次效果在模具出口,-N-2 / N-1,单轴伸缩应变硬化ETA,U,MAX / 3 ETA(0),平面对单轴的效果通过利用1D膜模型的粘弹性等温模拟和单模修改的leOnov模型作为本构式方程,通过粘弹性等温模拟研究了延伸粘度比,ETA E,P / ETA E,U和DEBORAH编号。基于所进行的参数研究,发现DE和ETA E,U,MAX / 3 ETA(0)存在阈值,上述方法,颈部开始依赖于-N-2 / n-1。发现如果-N-2 / N-1,ETA,U,MAX / 3 ETA(0)增加和/或ETA E,P / ETA E,则降低了这种关键的DE减少。利用模型的数值解是由无量纲分析方程式的近似,与ETA E,U,MAX / 3 ETA(0),ETA E,P / ETA E,U,-N-2相关的归一化最大可达到的颈部相关/ n-1和de。考虑到-N-2 / N-1取决于芯片出口剪切速率,温度和用于给定聚合物熔体的本构模型参数,通过使用文献实验数据来测试建议的等式。结果发现,近似模型预测与低于低于低的实验数据以及非常高的Deborah数量非常吻合,其中颈部强烈取决于-N-2 / N-1。据信,所获得的知识与建议的简单模型一起用于优化挤出模具设计(影响流动历史,从而抵抗压力状态),聚合物熔体的分子结构和加工条件下抑制颈部现象生产非常薄的聚合物扁平膜。

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