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Vibratory Finishing of Immobilized Cylinders

机译:固定气缸的振动精加工

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We report preliminary results from an on-going study investigating the effect of fixing workpieces within the media flow field contained in a typical vibratory finishing bowl. To this end, we studied the surface roughness evolution over the surfaces of workpieces with generic geometries such as cylinders. A granular flow dynamics model applicable to dense granular flow and a previously derived process equation were invoked in order to respectively describe the flow of the abrasive media; and the roughness distribution in terms of the granular pressure and velocity. By solving the granular flow field for the pressure and velocity distribution on a given geometry using a general purpose computational fluid dynamics (CFD) code, we were able to analyse changes in surface roughness distribution from the process equation. The immobilized cylinders were submerged in the top portion of the media flow field so as to facilitate comparison between media flow past the workpieces as experimentally observed and as predicted by the CFD simulations. We conclude with an analysis, based on both experimental and predicted results, of the way in which media flow direction biases the surface roughness distribution on an immobilized cylinder.
机译:我们向正在进行的研究报告初步结果调查典型振动整理碗中包含的介质流场内的固定工件的效果。为此,我们研究了工件表面的表面粗糙度演变,具有诸如圆柱体的通用几何形状。调用适用于致密粒度的粒状动力学模型和先前推导的过程方程,以分别描述磨料介质的流动;在颗粒压力和速度方面的粗糙度分布。通过使用通用计算流体动力学(CFD)代码来求解给定几何体上的压力和速度分布的粒状流场,我们能够分析来自处理方程的表面粗糙度分布的变化。固定的气缸被浸没在介质流场的顶部,以便于介质流动经过实验观察的工件之间的比较,并且通过CFD模拟预测。我们基于介质流动方向偏置在固定圆筒上的表面粗糙度分布的方式的方式中,基于实验和预测结果,得出分析。

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