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Investigation of the Temperature Homogeneity of Die Melt Flows in Polymer Extrusion

机译:聚合物挤出过程中模具熔体流动温度均匀性的研究

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摘要

Polymer extrusion is fundamental to the processing of polymeric materials and melt flow temperature homogeneity is a major factor which influences product quality. Undesirable thermal conditions can cause problems such as melt degradation, dimensional instability, weaknesses in mechanical/optical/geometrical properties, and so forth. It has been revealed that melt temperature varies with time and with radial position across the die. However, the majority of polymer processes use only single-point techniques whose thermal measurements are limited to the single point at which they are fixed. Therefore, it is impossible for such techniques to determine thermal homogeneity across the melt flow. In this work, an extensive investigation was carried out into melt flow thermal behavior of the output of a single extruder with different polymers and screw geometries over a wide range of processing conditions. Melt temperature profiles of the process output were observed using a thermocouple mesh placed in the flow and results confirmed that the melt flow thermal behavior is different at different radial positions. The uniformity of temperature across the melt flow deteriorated considerably with increase in screw rotational speed while it was also shown to be dependent on process settings, screw geometry, and material properties. Moreover, it appears that the effects of the material, machine, and process settings on the quantity and quality of the process output are heavily coupled with each other and this may cause the process to be difficult to predict and variable in nature.
机译:聚合物挤出是聚合物材料加工的基础,熔体流动温度均匀性是影响产品质量的主要因素。不希望的热条件会引起诸如熔体降解,尺寸不稳定性,机械/光学/几何特性的弱点等问题。已经发现,熔体温度随时间和整个模具的径向位置而变化。但是,大多数聚合物工艺仅使用单点技术,其热测量值仅限于固定它们的单点。因此,这种技术不可能确定整个熔体流动的热均匀性。在这项工作中,对在各种加工条件下具有不同聚合物和螺杆几何形状的单个挤出机的输出的熔体流动热行为进行了广泛的研究。使用放置在流中的热电偶网观察了过程输出的熔体温度曲线,结果证实了熔体流的热行为在不同的径向位置是不同的。熔体流动的温度均匀性随着螺杆转速的增加而大大降低,同时还显示出它取决于工艺设置,螺杆几何形状和材料特性。而且,似乎材料,机器和过程设置对过程输出的数量和质量的影响彼此紧密耦合,这可能导致过程难以预测且本质上是可变的。

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