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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >External aerodynamic force on an ultra-precision diamond fly-cutting machine tool for KDP crystal machining
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External aerodynamic force on an ultra-precision diamond fly-cutting machine tool for KDP crystal machining

机译:用于KDP晶体加工的超精密金刚石飞切机床上的外部空气动力

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摘要

In the ultra-precision fly-cutting machine tool, the speed of the spindle is very high and the distance between the tool holder and the workpiece is small. There will be normal aerodynamic forces below the tool holder and on the workpiece under the influence of external air. The aerodynamic forces will directly result in the vibration of the machine tool and further affect the surface topography of the workpiece. This paper mainly studies the external aerodynamic forces on a fly-cutting machine tool. It results from the periodical and intermittent sweep between the rotating tool holder and the workpiece. The method of computational fluid dynamics (CFD) is adopted to study this phenomenon. Besides, the aerodynamic forces at different spindle speeds are compared. With the increase of the spindle speed, the amplitude and mean value of the aerodynamic force grows regularly. The aerodynamic forces on the slide and below the tool holder when the cutter processes different regions is presented. The aerodynamic force on the slide shows different behaviors at different machining positions along the feed direction. However, the aerodynamic force below the tool holder is identical. The simulated aerodynamic force on the workpiece is well coincident with the experiment results.
机译:在超精密飞行机工具中,主轴的速度非常高,刀架与工件之间的距离很小。在工具架下方将存在正常的空气动力和外部空气的影响下的工件。空气动力将直接导致机床的振动并进一步影响工件的表面形貌。本文主要研究了飞行机床上的外部空气动力。它来自旋转工具架和工件之间的期刊和间歇扫描。采用计算流体动力学(CFD)来研究这种现象。此外,比较不同主轴速度的空气动力学力。随着主轴速度的增加,空气动力力的幅度和平均值定期增长。提出了在刀具处理不同区域的载玻片上和刀架下方的空气动力力。载玻片上的空气动力学力示出了沿进料方向的不同加工位置处的不同行为。然而,刀架下方的空气动力力是相同的。工件上的模拟空气动力力与实验结果均匀巧合。

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