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Melt-mixing by novel pitched-tip kneading disks in a co-rotating twin-screw extruder

机译:在同向双螺杆挤出机中通过新型斜桨捏合盘进行熔融混合

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摘要

Melt-mixing in twin-screw extruders is a key process in the development of polymer composites. Quantifying the mixing performance of kneading elements based on their internal physical processes is a challenging problem. We discuss melt-mixing by novel kneading elements called "pitched-tip kneading disk (ptKD)". The disk-stagger angle and tip angle are the main geometric parameters of the ptKDs. We investigated four typical arrangements of the ptKDs, which are forward and backward disk-staggers combined with forward and backward tips. Numerical simulations under a certain feed rate and screw revolution speed were performed, and the mixing process was investigated using Lagrangian statistics. It was found that the four types had different mixing characteristics, and their mixing processes were explained by the coupling effect of drag flow with the disk staggering and pitched-tip and pressure flows, which are controlled by operational conditions. The use of a pitched-tip effectively controls the balance of the pressurization and mixing ability.
机译:在双螺杆挤出机中进行熔融混合是聚合物复合材料开发的关键过程。基于其内部物理过程来量化捏合元件的混合性能是一个具有挑战性的问题。我们讨论了通过新颖的捏合元素称为“尖顶捏合盘(ptKD)”的熔融混合。圆盘交错角和尖端角是ptKD的主要几何参数。我们研究了ptKD的四种典型排列方式,即向前和向后的磁盘交错以及向前和向后的尖端。在一定的进给速度和螺杆转速下进行了数值模拟,并使用拉格朗日统计量研究了混合过程。发现这四种类型具有不同的混合特性,它们的混合过程通过阻力流与圆盘错位以及桨尖和压力流的耦合效应来解释,这取决于操作条件。倾斜尖端的使用有效地控制了加压和混合能力的平衡。

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