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Dynamic modelling of die melt temperature profile in polymer extrusion: Effects of process settings, screw geometry and material

机译:聚合物挤出中模头熔体温度曲线的动态建模:工艺设置,螺杆几何形状和材料的影响

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摘要

Extrusion is one of the major methods for processing polymeric materials and the thermal homogeneity of the process output is a major concern for manufacture of high quality extruded products. Therefore, accurate process thermal monitoring and control are important for product quality control. However, most industrial extruders use single point thermocouples for the temperature monitoring/control although their measurements are highly affected by the barrel metal wall temperature. Currently, no industrially established thermal profile measurement technique is available. Furthermore, it has been shown that the melt temperature changes considerably with the die radial position and hence point/ bulk measurements are not sufficient for monitoring and control of the temperature across the melt flow. The majority of process thermal control methods are based on linear models which are not capable of dealing with process nonlinearities. In this work, the die melt temperature profile of a single screw extruder was monitored by a thermocouple mesh technique. The data obtained was used to develop a novel approach of modelling the extruder die melt temperature profile under dynamic conditions (i.e. for predicting the die melt temperature profile in real-time). These newly proposed models were in good agreement with the measured unseen data. They were then used to explore the effects of process settings, material and screw geometry on the die melt temperature profile. The results showed that the process thermal homogeneity was affected in a complex manner by changing the process settings, screw geometry and material.
机译:挤出是加工聚合物材料的主要方法之一,过程输出的热均匀性是制造高质量挤出产品的主要问题。因此,准确的过程热监测和控制对于产品质量控制很重要。但是,大多数工业挤出机都使用单点热电偶进行温度监控/控制,尽管它们的测量值受桶金属壁温的影响很大。当前,没有工业上建立的热分布测量技术可用。此外,已经表明,熔体温度随模具径向位置而显着变化,因此点/体积测量不足以监测和控制熔体流动上的温度。大多数过程热控制方法都基于无法处理过程非线性的线性模型。在这项工作中,通过热电偶筛网技术监测单螺杆挤出机的模头熔融温度曲线。所获得的数据用于开发一种在动态条件下对挤出机模头熔融温度分布进行建模的新颖方法(即用于实时预测模头熔融温度分布)。这些新提出的模型与测得的看不见的数据非常吻合。然后将它们用于探讨工艺设置,材料和螺杆几何形状对模具熔体温度曲线的影响。结果表明,通过更改工艺设置,螺杆几何形状和材料,可以以复杂的方式影响工艺的热均匀性。

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