首页> 外文会议>CIRP International Conference on High Performance Cutting >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.
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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.

机译:碳纤维复合材料(CFC)和钛合金叠层常规和超声波辅助钻孔(UAD)过程中不同切削速度对刀具磨损的影响。

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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 Ti6A14V 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.
机译:碳纤维复合物(CFC)和钛合金的应用由于其高强度至重量比率,航空航天工业中的普遍存在。然而,这些材料的缺点是可加工性差。本文提出了延迟工具磨损进展中的超声波辅助钻孔(UAD)的超声辅助钻孔(UAD)堆栈。使用6.1毫米直径的碳化钨钻进行比较常规和uAD的实验,采用0.05 mm / Rev和25,50和75米/分钟的切割速度的恒定进料速率,证明了UAD中使用的钻头较低的刀具磨损率和推力比传统钻井。

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