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Study of solids conveying in single screw extruders based on flow dynamics and structure of solid pellets

机译:基于流动动力学和固体颗粒结构的单螺杆挤出机固体输送研究

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摘要

Flow of granular matter is presently a subject of extensive research, due to the characteristics of this type of systems (e.g., dilatancy, segregation, arching, clustering) and relevance to various application areas, such as civil construction, agriculture, food processing, geophysics, pharmacology [1, 2]. The plasticating process in single screw polymer extrusion is one of the areas where this research can help to increase the existing knowledge. In the initial turns of an Archimedes-type screw, loose pellets are conveyed forward. However, traditional analyses assume the movement of an elastic solid plug at constant velocity. This work follows previous efforts to predict the characteristics of this flow using the Discrete Element Method (DEM) [3, 4]. Two boundary conditions are considered: a) open-discharge, implying that no compaction of the solids occurs and b) close-discharge, leading to a pressure increase. The dynamics and the structure of the flow were studied by computing the cross- and down channel velocity profiles, the coordination number distribution, the output rate, the residence time distribution and the density profile, as a function of the friction force grain-wall, screw speed and pellet size. The model is able to capture the process of plug formation towards the discharge, and its predictions provide an insight into possible flow fluctuations.
机译:由于这类系统的特性(例如,膨胀性,分离性,拱形,聚类)以及与各种应用领域(如民用建筑,农业,食品加工,地球物理学)的相关性,目前颗粒状物质的流动已成为广泛研究的主题。 ,药理学[1,2]。单螺杆聚合物挤出中的塑化工艺是该研究可以帮助增加现有知识的领域之一。在阿基米德型螺杆的最初转弯中,疏松的药丸被向前输送。但是,传统分析假设弹性固体塞子以恒定速度运动。这项工作遵循了以前使用离散元素方法(DEM)[3,4]来预测这种流动特性的努力。考虑了两个边界条件:a)排料,这意味着没有发生固体压实; b)排料,导致压力增加。通过计算横向和下行通道速度分布,配位数分布,输出速率,停留时间分布和密度分布(作为摩擦力颗粒壁的函数),研究了流动的动力学和结构,螺杆速度和颗粒大小。该模型能够捕获朝向排放的塞子形成过程,其预测结果可以洞悉可能的流量波动。

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