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首页> 外文期刊>International Polymer Processing: The Journal of the Polymer Processing Society >Modeling of Melt Conveying in a Novel Screw-Nested Extruder
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Modeling of Melt Conveying in a Novel Screw-Nested Extruder

机译:新型螺杆巢式挤出机中熔体输送的建模

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摘要

A novel screw-nested extruder is fabricated, which consists of double extrusion systems. The inner screw couples with one inner barrel, whose outer configuration acts as the screw for the outer barrel. The nested screw extrusion systems can co-extrude when the inner barrel/outer screw rotates. Each extrusion system can also work independently as one general extruder. A new mathematical model of an isothermal Newtonian flow is developed to describe the melt flow in the extruder. The analytical solutions of flow rate are well in agreement with the Campbell's experimental data for screw drag flow, screw flight displacement flow and barrel drag flow when the boundary conditions are obtained for the special cases in which the screw core, screw flight and the barrel rotate independently or in pairs. This can not be explained by conventional parallel-plate models. Further, the model is also well used to analyze the melt flow in the inner extrusion system of the novel nested screw extruder.
机译:制造了一种新颖的螺杆嵌套挤出机,该挤出机由双挤出系统组成。内螺杆与一个内筒耦合,内筒的外部构造充当外筒的螺杆。当内筒/外螺杆旋转时,嵌套螺杆挤出系统可以共挤出。每个挤出系统也可以作为一个通用挤出机独立工作。建立了等温牛顿流的新数学模型来描述挤出机中的熔体流。在特殊情况下,当螺杆芯,螺杆飞行和机筒旋转时,在获得边界条件时,流速的解析解与Campbell的螺杆阻力,螺杆排量和筒体阻力实验数据非常吻合。独立地或成对地。传统的平行板模型无法解释这一点。此外,该模型也很好地用于分析新型嵌套螺杆挤出机的内部挤出系统中的熔体流动。

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