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Bulk mass flow in a vibratory finisher: mechanisms and effect of process parameters

机译:振动修整器的整体质量流量:过程参数的机理和影响

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摘要

Vibratory finishing is a widely-used manufacturing process in which a vibrating container filled with granular media becomes fluidized. The resulting bulk flow entrains workpieces and exposes their surfaces to the impacts resulting from the small-scale media vibrations. The bulk flow is responsible for entrainment and mixing, while the media vibration does work on the surfaces. The selection of machine vibration parameters is commonly based on experience due to the difficulty in predicting the fluidized bed behavior. In this work, a discrete element method was used to investigate how the bulk flow in an actual tub finisher filled with steel balls depends on the tub motion parameters through a parametric study. The underlying mechanisms that create and drive the bulk flow were identified by examining the relationships between the bulk flow rates and the wall forces. Finally, the connection between the wall motion and the wall forces was investigated. The tub frequency was the most effective control parameter and there was an optimal phase difference between the horizontal and vertical vibrations to maximize bulk flow. The relationship between the media packing at the walls and the tangential forces between the walls and the media explained the formation and speed of the bulk flow. Lastly, it was shown that the tangential wall forces, unlike the normal forces, cannot be obtained from the known wall motion alone since they also depend on the media velocities relative to the walls.
机译:振动抛光是一种广泛使用的制造过程,其中填充有颗粒状介质的振动容器会流化。所产生的大量流动会夹带工件,并使它们的表面暴露于小规模介质振动所产生的冲击。大流量负责夹带和混合,而介质振动确实在表面上起作用。机器振动参数的选择通常基于经验,这是由于难以预测流化床的行为。在这项工作中,通过参数研究,使用离散元素方法来研究装满钢球的实际桶装精整机中的总体流量如何取决于桶的运动参数。通过检查整体流速与壁力之间的关系,可以确定产生和驱动整体流动的潜在机制。最后,研究了壁运动与壁力之间的关系。浴盆频率是最有效的控制参数,水平振动和垂直振动之间存在最佳相位差,以最大程度地提高整体流量。壁上的介质堆积与壁与介质之间的切向力之间的关系解释了整体流动的形成和速度。最后,已表明,与法向力不同,切向壁力不能仅从已知壁运动中获得,因为它们还取决于相对于壁的介质速度。

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