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Drilling of (Al_2O_3)p/6061 metal matrix composites

机译:(Al_2O_3)p / 6061金属基复合材料的钻孔

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Metal matrix composites have been found to be quite useful in a number of engineering applications including the consumer goods. However, the machining of these materials is tough because of the abrasive characteristics of the reinforced particulates. In this paper drilling studies on Al_2O_3 aluminum-based metal matrix composites have been conducted by using different drills (high-speed steel, carbide-tipped, and polycrystalline diamond (PCD) drills) to produce holes in 10 and 20 vol. percent (Al_2O_3)p/6061. The drilling forces were recorded using dynamometer. Surface finish was evaluated by a surface profilometer, and tool wear and geometry were inspected using optical and scanning electron microscopes (SEM). The drilling characteristics were evaluated in terms of drilling forces, tool wear, chip formation, and drilled-hole quality. It was found that PCD drills outperformed all other drills in terms of drilled-hole quality and minimum drilling forces induced. Better results achieved with the PCD drills are inline with other similar studies with other processes.
机译:已经发现金属基质复合材料在包括消费品在内的许多工程应用中非常有用。然而,由于增强颗粒的磨蚀特性,这些材料的加工很困难。在本文中,已经通过使用不同的钻头(高速钢,硬质合金钻头和多晶金刚石(PCD)钻头)对Al_2O_3铝基金属基复合材料进行了钻探研究,以产生10和20 vol的孔。百分比(Al_2O_3)p / 6061。使用测力计记录钻孔力。用表面轮廓仪评估表面光洁度,并使用光学和扫描电子显微镜(SEM)检查工具的磨损和几何形状。根据钻孔力,工具磨损,切屑形成和钻孔质量对钻孔特性进行了评估。结果发现,PCD钻头在钻孔质量和所产生的最小钻孔力方面均优于其他所有钻头。 PCD钻头获得的更好结果与其他类似研究和其他过程相吻合。

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