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A New Scale-Up Approach For Dispersive Mixing In Twin-Screw Compounding

机译:双螺杆复合中分散混合的新扩大尺度方法

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Scale-up rules in polymer processing are critical in ensuring consistency in product quality and properties when transitioning from low volume laboratory mixing processes to high volume industrial compounding. The scale-up approach investigated in this study evaluates the processes with respect to dispersive mixing. Demand of polymer composites with solid additives, such as carbon microfibers and nanotubes, has become increasingly popular. Dispersive mixing breaks down particles that agglomerate, which is paramount in processing composites because solid additives tend to collect and clump. The amount of stress imparted on the material governs the degree of dispersive mixing. A methodology has been developed to characterize the Residence Stress Distribution (RSD) within a twin-screw extruder in real time through the use of polymeric stress beads. Through this technique, certain mixing scale-up rules can be analyzed. The following research investigated two different scale-up rules. The industry standard for mixing scale-up takes the ratio of outer diameters cubed to convert the volumetric flow rate from the smaller process to a flow rate appropriate in the larger machine. This procedure then resolves both operating conditions since shear rate remains constant. The second rule studied is based on percent drag flow, or the fraction of pumping potential, for different elements along the screw configuration. The percent drag flow rule aims to bring greater focus to operating conditions when scaling-up with respect to dispersive mixing. Through the use of the RSD methodology and a Design of Experiment (DOE) approach, rigorous statistical analysis was used to determine the validity between the scale-up rules of argument.
机译:聚合物加工中的扩大规则对于在从低批量实验室混合过程转变为高批量工业配合时,在高卷实验室混合过程中的持续性方面是至关重要的。本研究中研究的扩展方法评估了相对于分散混合的过程。具有固体添加剂的聚合物复合材料的需求,例如碳微纤维和纳米管,变得越来越受欢迎。分散混合破裂,颗粒凝聚,即在加工复合材料中至关重要,因为固体添加剂倾向于收集和丛。赋予材料上的应力量控制了分散混合的程度。已经开发了一种方法,以通过使用聚合物应激珠实时在双螺杆挤出机内的居住应力分布(RSD)。通过这种技术,可以分析某些混合扩展规则。以下研究调查了两个不同的扩展规则。混合尺度的行业标准使得外径立方的比率从较小的工艺转换成较大的机器中的流量。然后,此过程可以解决操作条件,因为剪切速率保持不变。研究的第二规则基于沿着螺钉配置的不同元件的百分比拖动流,或泵送电位的分数。拖累百分比旨在在分散混合的缩放时更加注重运行条件。通过使用RSD方法和实验(DOE)方法的设计,严格的统计分析用于确定争论的扩大规则之间的有效性。

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