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Analysis of a Single-Screw Extruder with a Grooved Plasticizing Barrel - Experimental Investigation

机译:具有带槽塑化桶的单螺杆挤出机的分析 - 实验研究

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摘要

In the field of extrusion, a very promising high performance extruder was introduced to the European plastics industry in 1999. This new type of single-screw extruder combines a grooved plasticizing barrel with a barrier screw. Compared to conventional extrusion systems, these extruders have by far a higher output and product quality among other advantages such as lower processing costs and lower energy consumption. In the past, both Newtonian and non-Newtonian models were developed to calculate and predict the melting rate along the flow channel. The aim of this paper is to present experimental investigations on the processes within the melting zone of a single-screw extruder with a grooved plasticizing barrel. To visualize the melting mechanisms, screw extraction experiments as well as dynamic pressure measurements were performed. By means of screw extraction experiments a solid bed was clearly identified only in the solid channel and a melt pool only in the melt channel. Analysis of the dynamic pressure signals also showed the same behavior and therefore allowed in-line characterization of the melting process. Thus, theoretical concepts about the melting mechanisms could be confirmed experimentally.
机译:在挤出领域,1999年引入了一个非常有前途的高性能挤出机。这种新型单螺杆挤出机与屏障螺钉相结合。与传统的挤出系统相比,这些挤出机具有较高的输出和产品质量,包括较低的加工成本和降低能耗等优点。过去,开发了牛顿和非牛顿模型以计算和预测流动通道的熔速。本文的目的是在具有带槽塑化桶的单螺杆挤出机的熔化区内的方法上提出实验研究。为了可视化熔化机构,进行螺杆提取实验以及动态压力测量。通过螺杆提取实验,仅在熔体通道中仅在固体通道和熔池中清楚地识别实体床。对动态压力信号的分析还显示出相同的行为,因此允许熔化过程的直线表征。因此,可以通过实验确认关于熔化机制的理论概念。

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