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Flux of granular particles through a shaken sieve plate

机译:通过振动筛板的颗粒状助焊剂

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摘要

We experimentally investigate a discharging flux of granular particles through a sieve plate subject to vertical vibrations. The mean mass flux shows a non-monotonic relation with the vibration strength. High-speed photography reveals that two stages, the free flight of the particles’ bulk over the plate and the adhesion of the particles’ bulk with the plate, alternately appear, where only the adhesion stage contributes to the flow. With two independent methods, we then measure the adhesion time under different vibration conditions, and define an adhesion flux. The adhesion flux monotonically increases with increasing vibration strength. By rescaling the adhesion flux, we find that the adhesion flux is approximately determined by the peak vibration velocity of the shaker. The conclusion is examined with other sieve geometries.
机译:我们通过实验研究了颗粒颗粒通过筛板时受到垂直振动的排放通量。平均质量通量与振动强度呈非单调关系。高速摄影揭示了两个阶段交替出现,即粒子块在板上的自由飞行和粒子块与板的粘附交替出现,其中只有粘附阶段才有助于流动。然后,我们使用两种独立的方法来测量不同振动条件下的粘合时间,并定义粘合通量。附着通量随着振动强度的增加而单调增加。通过重新调整粘附通量,我们发现粘附通量大约由振动器的峰值振动速度确定。用其他筛子几何形状检查结论。

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