聚丙烯
挤压
聚合物
材料科学
塑料挤出
计算流体力学
聚乳酸
复合材料
扭矩
机械工程
工艺工程
机械
热力学
工程类
物理
作者
Jazmine Aiya D. Marquez,Yufeng Quan,Xiuzhu Zhu,Hung‐Jue Sue,Qingsheng Wang
标识
DOI:10.1021/acs.iecr.4c01039
摘要
Twin-screw extruders are widely used to manufacture various polymers for large-scale processing in the industry. However, new polymers and modified polymers that have not been manufactured before would require experiments to undergo a trial-and-error phase that is time-consuming and costly. In this study, a computational fluid dynamics (CFD)-based model was developed in Ansys Polyflow to describe the extrusion process behavior and predict the processability of different polymers. The optimum processing conditions for polypropylene (PP) and polylactic acid (PLA) acquired from trial-and-error experiments were simulated, and the resulting torque was validated using experimental data. The model was in good agreement with the results of the experiment with a less than 10% difference. It was further validated by determining its effectiveness in calculating the torque for rotation speed and feed rates where the barrel is sufficiently filled with the polymer. Moreover, the investigation also showed that the model has successfully determined the processability of semicrystalline polymers.
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