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首页> 外文期刊>Tribology International >Prediction of the erosive footprint in the abrasive jet micro-machining of flat and curved glass
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Prediction of the erosive footprint in the abrasive jet micro-machining of flat and curved glass

机译:平板和曲面玻璃磨料射流微加工中的侵蚀足迹预测

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摘要

A computational fluid dynamics (CFD) procedure is presented for the prediction of the erosive footprint size in abrasive jet micro-machining (AJM). The CFD-obtained footprints were in good agreement with those measured experimentally. The footprint was found to be due to both primary particle impacts in the conical plume emanating from the nozzle, and secondary particle impacts driven by the flow. The footprint depended on target curvature because the spread in lateral particle rebounds differed, depending on the target radius. It thus follows that footprints obtained from shallow channels machined on flat targets cannot be used to predict channel shape on curved surfaces. Since the footprint must consider secondary impacts, this has important implications for surface profile modeling of curved surfaces.
机译:提出了一种计算流体动力学(CFD)程序,用于预测磨料喷射微加工(AJM)中的侵蚀足迹尺寸。 CFD获得的足迹与实验测量的足迹非常吻合。发现足迹是由于从喷嘴发出的锥形羽流中的主要粒子撞击和由流动驱动的次要粒子撞击造成的。足迹取决于目标曲率,因为横向粒子反弹的散布因目标半径而异。因此,由此得出的结论是,从在平坦目标上加工的浅通道获得的足迹无法用于预测曲面上的通道形状。由于足迹必须考虑次要影响,因此这对于曲面的曲面轮廓建模具有重要意义。

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