首页> 外文会议>2004 PLACE Division conference >Investigation of Layer Thickness Distribution During Co-Extrusion with Generalized Newtonian and Visco-Elastic Flow Models
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Investigation of Layer Thickness Distribution During Co-Extrusion with Generalized Newtonian and Visco-Elastic Flow Models

机译:用广义牛顿和粘弹性流动模型研究共挤过程中的层厚分布

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To investigate the parameters governing layer thickness differences during co-extrusion of an a-symmetric coating, the die used in the Corus pilot line at IJmuiden to produce this coating has been modeled using Polyflow. First the flow field in the whole die was investigated using generalized Newtonian models to map the effects of varying viscosity on layer thickness differences at the die-lips.rnIt is, however, well known that polymer flows exhibit visco-elastic behavior, which can also influence the thickness of the various layers. Therefore and secondly, the flow field in the preland of the die will be investigated with a full visco-elastic model to show the effects of elastic forces in the liquid polymer in the preland.
机译:为了研究控制非对称涂层共挤出过程中层厚度差的参数,已使用Polyflow对IJmuiden的Corus试验生产线用于生产该涂层的模具进行了建模。首先,使用广义牛顿模型研究整个模具中的流场,以绘制粘度变化对模唇处层厚差异的影响。然而,众所周知,聚合物流表现出粘弹性,这也可以影响各个层的​​厚度。因此,其次,将使用完整的粘弹性模型研究模具预压区中的流场,以显示预压区中液态聚合物中弹性力的影响。

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