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Visualisation and analysis of interfacial instability in coextrusion of LDPE melt

机译:LDPE熔体共挤出界面不稳定性的可视化分析

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摘要

Details presented cover the study of interfacial instability of a low density polyethylene melt flow in a coextrusion flow visualisation cell. The cell design splits a single melt feed into two meltstreams using a flow divider, The meltstreams are made to converge at an angle of 30° and flow into a common die land of 10 mm height. The flows in the confluent region and die land to the die exit were observed through the side windows of the cell. The relative stream velocities, hence layer thickness ratio, of the two streams were varied using an adjustable restriction plate in the bottom channel. Stress and velocity fields were quantified using stress birefringence and particle image velocimetry techniques, Wave type interfacial instability was observed in the extrudate when the major-minor stream layer thickness ratio exceeded 2:1. Flow at immediate entry to the die land appeared stable when the extrudate exhibited instability. However, a disturbance was observed in the flow towards the exit of the die land. The frequency of the disturbance was quantified and found to be the same as that of the wave disturbance in the extrudate. A modified Leonov model and Flow 2000 software were used to simulate the melt flow through the geometry. A total normal stress difference (TNSD) sign criterion has been used to predict the presence of the wave interfacial instabilities in the coextrusion geometry.
机译:呈现的细节涵盖了在共挤出流动可视化单元中低密度聚乙烯熔体流动的界面不稳定性的研究。单元设计使用分流器将单个熔体进料分成两个熔体流,使熔体流以30°角汇聚并流入10 mm高的普通模头区域。通过单元的侧窗观察到汇合区域中的流动以及到达模具出口的模具区域。使用底部通道中的可调限流板改变两条流的相对流速度,从而改变层厚度比。使用应力双折射和粒子图像测速技术对应力场和速度场进行了量化,当主次流层厚度比超过2:1时,在挤出物中观察到波型界面不稳定性。当挤出物表现出不稳定性时,立即进入模头区域的流动显得稳定。但是,观察到流向模头出口的流动受到干扰。量化扰动的频率,发现其与挤出物中的波扰动的频率相同。使用改良的Leonov模型和Flow 2000软件来模拟通过几何体的熔体流动。总法向应力差(TNSD)符号标准已用于预测共挤出几何形状中波界面不稳定性的存在。

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