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Enhancing the linear flow of fine granules through the addition of elongated particles

机译:通过添加细长颗粒增强细颗粒的线性流动

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摘要

Sandglasses have been used to record time for thousands of years because of their constant flow rates; however, they now are drawing attention for their substantial scientific importance and extensive industrial applications. The presence of elongated particles in a binary granular system is believed to result in undesired flow because their shape implies a larger resistance to flow. However, our experiments demonstrate that the addition of elongated particles can substantially reduce the flow fluctuation of fine granules and produce a stable linear flow similar to that in an hourglass. On the basis of experimental data and previous reports of flow dynamics, we observed that the linear flow is driven by the “needle particle effect,” including flow orientation, reduced agglomeration, and local perturbation. This phenomenon is observed in several binary granular systems, including fine granules and secondary elongated particles, which demonstrates that our simple method can be widely applied to the accurate measurement of granular flows in industry.
机译:沙漏由于其恒定的流量而被用于记录时间已有数千年的历史。但是,由于它们的重大科学重要性和广泛的工业应用,它们现在正受到关注。据认为,在二元颗粒系统中存在细长颗粒会导致不希望的流动,因为它们的形状意味着较大的流动阻力。但是,我们的实验表明,添加细长颗粒可以大大减少细颗粒的流量波动,并产生类似于沙漏的稳定线性流量。根据实验数据和先前关于流动动力学的报道,我们观察到线性流动是由“针粒效应”驱动的,包括流动方向,减少的团聚和局部扰动。这种现象在包括细颗粒和次级细长颗粒在内的几种二元颗粒系统中都观察到,这表明我们的简单方法可以广泛应用于工业中颗粒流量的精确测量。

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