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Mixing experiments in 3D-printed silos; the role of wall friction and flow correcting inserts

机译:3D印刷筒仓中的混合实验; 墙体摩擦和流动校正插入的作用

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The mixing of particles during silo discharge is of high industrial significance, yet quantitative studies of this process in literature are few. Here we present experimental measurement of particle mixing in 3D-printed silos during complete discharge, accounting for hopper half angle, the wall condition, and the addition of flow correcting inserts. Mono-sized mustard seed are dyed one of two colours (yellow or blue) to enable them to be distinguished during a step-change experiment. The silo is partially filled with yellow particles, followed by an equal mass of blue, then discharged onto a rotating table apparatus which automatically collects particle samples for proportion analysis. The experiments are repeated for six hopper half angles, and for three different wall conditions of different smoothness. Finally, three flow correcting inserts are added to a silo to quantify their influence. It is found that, while the wall condition has a large influence on the mixing and the size of the stagnant "pocket" region (the non-flowing region in a funnel-flow silo), the addition of flow correcting inserts has the greatest effect in reducing mixing and pocket region size. Our method of completely discharging the silo has the advantage that the pocket region mass can be easily quantified, in contrast to classical continuous flow residence-time experiments. (C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:在筒仓放电期间颗粒的混合具有高工业意义,但对文献中该过程的定量研究很少。在这里,我们在完全放电期间呈现3D印刷筒仓中的粒子混合的实验测量,占料斗半角,墙壁状况和流动矫正刀片的添加。单尺寸的芥菜种子染色了两种颜色(黄色或蓝色)中的一种,以使它们能够在逐步改变实验期间区分。筒仓部分填充有黄色颗粒,然后是相等的蓝色,然后排出到旋转台装置上,旋转台装置,其自动收集颗粒样品以进行比例分析。将实验重复为六个料斗的一半角度,以及三种不同的平滑度的不同壁条件。最后,将三个流校正插入刀片添加到筒仓中以量化它们的影响。发现,虽然墙壁条件对混合的影响和漏斗流动“区域(漏斗流动筒仓中的非流动区域)具有很大的影响,但是加入流动校正插入件具有最大的效果减少混合和口袋区域尺寸。我们完全排出筒仓的方法具有优点:与经典连续流动停留时间实验相比,袋区域质量可以容易地量化。 (c)2020日本粉末科技会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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