首页> 外文会议>Society of Plastics Engineers(SPE) Annual Technical Conference; 20070506-11; Cincinnati,OH(US) >SOLIDS COMPACTION AND CONVEYING IN A SINGLE-SCREW EXTRUDER BY DISCRETE PARTICLE MODELING
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SOLIDS COMPACTION AND CONVEYING IN A SINGLE-SCREW EXTRUDER BY DISCRETE PARTICLE MODELING

机译:离散粒子模型在单螺杆挤出机中的固结和输送

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To improve our understanding of granular flow in the solids-conveying zone of a single-screw extruder, a discrete particle model has been developed. The discrete particle approach allowed us to simulate polymer compaction without using the isotropic stress assumption used by continuum models. An elastic-fully plastic contact force displacement model was validated by simulating HDPE and PS under compaction in a batch cell and comparing against reported data in the literature. The particle model and experimental results showed good agreement for PS which exhibited elastic behavior up to the tested limit of 12 Mpa. The simulation for HDPE showed marked deviation above 4 Mpa, over predicting the plastic dissipative losses. The extruder simulations showed exponential pressure development along the axial length of the screw, similar to continuum models, but indicated that bulk density in the screw was affected by attributes of the flow field besides just pressure. The non-isotropic stress distribution of the solids in the screw was examined, with the stresses found to be concentrated at different boundaries depending on pressure development.
机译:为了提高我们对单螺杆挤出机固体输送区颗粒流的理解,已开发了离散颗粒模型。离散粒子方法使我们能够模拟聚合物压实,而无需使用连续模型所使用的各向同性应力假设。通过模拟批料单元中压实下的HDPE和PS并与文献中报道的数据进行比较,验证了弹性全塑性接触力位移模型。颗粒模型和实验结果表明PS具有良好的一致性,PS表现出高达12 Mpa的测试极限的弹性行为。 HDPE的模拟显示,在预测高于4 Mpa时有明显的偏差,超过了预测的塑料耗散损失。挤出机模拟显示沿螺杆轴向长度的指数压力发展,类似于连续模型,但表明螺杆中的堆积密度不仅受压力影响,还受流场属性的影响。检查了螺杆中固体的非各向同性应力分布,根据压力的发展,应力集中在不同的边界。

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