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Discrete Particle Simulations of Solids Compaction and Conveying in a Single-Screw Extruder

机译:单螺杆挤出机中固体压实和输送的离散粒子模拟

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This paper studies granular flow and compaction behavior of high-density polyethylene by discrete particle modeling in order to gain greater understanding of the stress distribution within the solids-conveying zone of a single-screw extruder.The contact force-displacement model used in the simulations was first validated by simulating uniaxial compression in a batch compaction cell.Subsequently,the discrete particle approach was used to model in 3D the movement of particles within the solids-inflow and solids-conveying zone of a 32-mm single-screw extruder.Results of the simulations showed that axial pressure development did not increase in an exponential manner,as suggested by continuum models,largely due to the compressibility of the solids.The nature by which pressure developed was shown to be further complicated by the retarding frictional forces of the granular bed,indicating Archimedean transport phenomena close to the feed opening when the head pressure was low and inadequate stress transmission occurred along the screw.In the cross-channel direction,the anisotropic stress field predicted found that the highest pressure in the screw channel was located at the screw root,while the lowest pressure corresponded to the retreating flight.The results were subsequently discussed in comparison to available continuum models.
机译:本文通过离散颗粒模型研究了高密度聚乙烯的颗粒流动和压实行为,以更好地理解单螺杆挤出机的固体输送区内的应力分布。模拟中使用的接触力-位移模型首先通过模拟在批量压实单元中的单轴压缩来进行验证。随后,使用离散粒子方法对32毫米单螺杆挤出机的固体流入和固体输送区域内的颗粒运动进行3D建模。模拟结果表明,轴向压力的发展并没有像连续模型所表明的那样以指数方式增加,这主要是由于固体的可压缩性。压力的阻滞摩擦力表明,发展压力的性质变得更加复杂。颗粒床,表明当头压低且压力不足时,阿基米德运输现象接近进料口沿横向发生了应力传递。在跨通道方向上,预测的各向异性应力场发现,螺杆通道中的最高压力位于螺杆根部,而最低压力对应于后退行程。随后讨论了结果。与可用的连续体模型相比。

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