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Mathematical modeling and numerical simulation for nucleated solution flow through slit die in foam extrusion

机译:泡沫挤出过程中有核溶液流过狭缝模头的数学建模和数值模拟

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Nucleated solution flow models have been previously developed by Baldwin and coworkers to aid modular design of the foam extrusion process. A framework of previously developed design models is applied here to investigate the flow of nucleated polypropylene-CO, solution system. Refinement to the design models is introduced through viscosity reduction factors and Redlich-Kwong equation of state to describe nonideal gas. These models incorporate temperature and concentration dependency of viscosity, surface tension, and solubility. Simulated results of pressure profiles and volumetric flow rates using a power law rheological equation are compared with experimental values from a three pressure tapping slit die. The influence of temperature on the profiles and its effect on design models is discussed. Preliminary results show that temperature plays an important role in the categorization of process design models.
机译:Baldwin及其同事先前已经开发了有核溶液流模型,以辅助泡沫挤出过程的模块化设计。这里使用先前开发的设计模型的框架来研究成核聚丙烯-CO溶液系统的流动。通过粘度降低因子和Redlich-Kwong状态方程来描述设计模型,以描述非理想气体。这些模型结合了温度和浓度对粘度,表面张力和溶解度的依赖性。使用幂律流变方程将压力曲线和体积流量的模拟结果与来自三个压力攻丝狭缝模具的实验值进行比较。讨论了温度对轮廓的影响及其对设计模型的影响。初步结果表明,温度在工艺设计模型的分类中起着重要作用。

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