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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Particle shape matters - Using 3D printed particles to investigate fundamental particle and packing properties
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Particle shape matters - Using 3D printed particles to investigate fundamental particle and packing properties

机译:颗粒形状 - 使用3D印刷颗粒来研究基本粒子和包装性能

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摘要

Whereas particle size and its importance is often stressed, the shape of particulate materials is often not considered in detail even though there is plenty of evidence that it is crucial for operations like transport, mixing, and fluidisation. In this study, we experimentally determine the influence of particle shape on fundamental bulk characteristics of process-engineering interest. Well-defined particles of seven different shapes but equal volume are used which are manufactured by selective laser sintering and their morphology is characterized by 2D image analysis. It is found that particles differ strongly in their packing and piling properties. These findings are exemplarily compared with performed DEM simulations where, using the same model parameters, no simple plug-and-play prediction to different shapes is possible. Thus, the current study closes the gap between ever more advanced simulation methods, considering also non-spherical particles, and the often oversimplified or undefined particle shapes encountered in experimental studies. (C) 2019 Published by Elsevier B.V.
机译:虽然粒度和其重要性经常被压力,但颗粒材料的形状通常不再详细考虑,即使有足够的证据表明运输,混合和排放等操作至关重要。在这项研究中,我们通过实验确定颗粒形状对过程工程兴趣的基本散装特征的影响。通过选择性激光烧结制造的使用七种不同形状的明确颗粒,其形态学的特征在于2D图像分析。发现颗粒在它们的包装和打桩性能中具有强烈差异。将这些发现示例性地与执行的DEM仿真进行比较,其中使用相同的模型参数,没有对不同形状的简单即插即用预测是可能的。因此,目前的研究缩短了更高级的模拟方法之间的间隙,考虑到非球形颗粒,以及在实验研究中遇到的通常过度简化或未确定的颗粒形状。 (c)2019年由elestvier b.v发布。

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