首页> 外文OA文献 >The effect of varying cutting speeds on tool wear during conventional and ultrasonic assisted drilling (UAD) of carbon fibre composite (CFC) and titanium alloy stacks.\ud
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The effect of varying cutting speeds on tool wear during conventional and ultrasonic assisted drilling (UAD) of carbon fibre composite (CFC) and titanium alloy stacks.\ud

机译:切削速度的变化对碳纤维复合材料(CFC)和钛合金叠层的常规钻削和超声辅助钻削(UAD)期间刀具磨损的影响。\ ud

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摘要

The application of Carbon Fibre Composite (CFC) and titanium alloys are becoming more prevalent in aerospace industry due to their high-strength-to-weight ratio. However, the drawback of these materials is poor machinability. This paper presents the potential of Ultrasonic Assisted Drilling (UAD) of CFC and titanium Ti6Al4 V stacks in delaying tool wear progression. Experiments comparing conventional and UAD were conducted using 6.1 mm diameter tungsten carbide drills, employing constant feed rate of 0.05 mm/rev and cutting speeds of 25, 50 and 75 m/min, demonstrated that the drills used in UAD underwent lower tool wear rate and thrust forces than conventional drilling.\ud\ud\ud
机译:由于碳纤维复合材料(CFC)和钛合金的高强度重量比,它们的应用在航空航天工业中变得越来越普遍。但是,这些材料的缺点是可加工性差。本文介绍了CFC和钛Ti6Al4 V烟囱的超声辅助钻孔(UAD)在延迟工具磨损进程方面的潜力。使用直径为6.1 mm的碳化钨钻头,以0.05 mm / rev的恒定进给速度和25、50和75 m / min的切削速度进行的比较常规钻头和UAD的实验表明,用于UAD的钻头具有较低的刀具磨损率和推力比常规钻孔

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