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Particle shape-induced radial segregation of binary mixtures in a rotating drum

机译:旋转滚筒中二元混合物的颗粒形状诱导的径向偏析

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Rotating drums are widely used in various processes such as mixing, coating and drying, where particle segregation remains one of the major concerns. In the past, most of the studies focus on the size or density induced segregation with the assumption that particles are spherical. The particle shape-induced segregation is still not well addressed and understood. In this work, DEM is used to study the radial segregation of binary mixtures of ellipsoidal particles in a rotating drum. The results show that for the binary mixture of ellipsoids (aspect ratio AR = 0.5 or AR = 2.0) and spheres, ellipsoids tend to distribute in the core of the bed, while spherical particles are more likely to accumulate in the periphery. When particle shape difference in the mixture increases, inverse segregation occurs with ellipsoids in the periphery and spheres in the centre. This is attributed to the increased flowability of ellipsoids and the formation of large voids in the free surface flowing layer. Spheres can percolate through the large voids and be trapped in the core section. For the mixture of oblate (AR = 0.5) and prolate (AR = 2.0) spheroids, no segregation is observed. The effect of rotating speed on the degree of segregation is also examined, showing that with the rotating speed increasing from 5 to 40 rpm, the segregation degree reduces for all mixtures. (C) 2018 Elsevier B.V. All rights reserved.
机译:旋转鼓广泛用于各种方法,例如混合,涂覆和干燥,其中颗粒隔离仍然是主要问题之一。在过去,大多数研究专注于尺寸或密度诱导的偏析,假设颗粒是球形的。颗粒形状诱导的偏析仍然没有很好地解决和理解。在这项工作中,DEM用于研究旋转鼓中椭圆形颗粒的二元混合物的径向分离。结果表明,对于椭圆体的二元混合物(纵横比Ar = 0.5或ar = 2.0)和球体,椭圆体倾向于在床的核心中分布,而球形颗粒更可能在周边积聚。当混合物中的颗粒形状差增加时,在中心的周边和球体中,在中心的椭圆体发生反偏析。这归因于椭球的流动性和自由表面流动层中的大空隙的形成。球体可以通过大空隙渗透并被捕获在核心部分中。对于扁烯(Ar = 0.5)的混合物,并且(Ar = 2.0)球状体,没有观察到分离。还检查了旋转速度对偏析程度的影响,表明,随着5至40rpm的旋转速度增加,对所有混合物的分离度降低。 (c)2018 Elsevier B.v.保留所有权利。

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