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Cohesion-driven mixing and segregation of dry granular media

机译:凝聚驱动的干颗粒介质混合和分离

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摘要

Granular segregation is a common, yet still puzzling, phenomenon encountered in many natural and engineering processes. Here, we experimentally investigate the effect of particles cohesion on segregation in dry monodisperse and bidisperse systems using a rotating drum mixer. Chemical silanization, glass surface functionalization via a Silane coupling agent, is used to produce cohesive dry glass particles. The cohesive force between the particles is controlled by varying the reaction duration of the silanization process, and is measured using an in-house device specifically designed for this study. The effects of the cohesive force on flow and segregation are then explored and discussed. For monosized particulate systems, while cohesionless particles perfectly mix when tumbled, highly cohesive particles segregate. For bidisperse mixtures of particles, an adequate cohesion-tuning reduces segregation and enhances mixing. Based on these results, a simple scheme is proposed to describe the system’s mixing behaviour with important implications for the control of segregation or mixing in particulate industrial processes.
机译:颗粒分离是许多自然和工程过程中常见但仍令人困惑的现象。在这里,我们实验性地研究了使用旋转鼓式混合器在干燥的单分散和双分散系统中颗粒凝聚对分离的影响。化学硅烷化,即通过硅烷偶联剂对玻璃表面进行功能化,可用于生产粘性干玻璃颗粒。通过改变硅烷化过程的反应持续时间来控制颗粒之间的内聚力,并使用专门为此研究设计的内部设备进行测量。然后探讨并讨论了内聚力对流动和偏析的影响。对于单一大小的颗粒系统,当无粘性颗粒在翻滚时会完美混合,而高粘性颗粒会分离。对于颗粒的双分散混合物,适当的内聚调节可减少偏析并增强混合。根据这些结果,提出了一个简单的方案来描述系统的混合行为,这对于控制颗粒工业过程中的分离或混合具有重要意义。

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