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Ultrasonic assisted deep drilling of Inconel 738LC superalloy

机译:超声波辅助Inconel 738LC超合金的深钻孔

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Superalloys have a poor machinability and are often drilled using Electro Discharge Machining (EDM) methods. However EDM is a time-consuming process and has low surface integrity. Ultrasonic Assisted Drilling (UAD) technology is a modern method of drilling such materials. Although this method has very high capabilities, it has not been introduced widely to industry. In this study a special horn is designed and used to apply both rotation and vibration to drill bits. It can transfer power with high efficiency and has the capability to change tools easily. The setup is used to conduct deep drilling tests on Inconel 738LC with depth-to-diameter ratio of 10. The effect of ultrasonic vibration amplitude, spindle speed and number of steps to drill each hole on machining force and surface roughness were investigated. Optimized conditions and results predicted by Taguchi method showed close agreement with the results obtained by experiments.
机译:高温合金具有较差的可加工性,并且经常使用电放电加工(EDM)方法钻孔。然而,EDM是一种耗时的过程,表面完整性低。超声波辅助钻井(UAD)技术是一种钻取这种材料的现代方法。虽然这种方法具有很高的能力,但它尚未广泛引入工业。在这项研究中,设计了一个特殊的喇叭并用于应用旋转和振动来钻头。它可以高效率传输功率,并具有可轻松更换工具的能力。该设置用于对Inconel 738LC进行深钻测试,深度到直径比为10.进行了超声波振动幅度,主轴速度和步骤次数在加工力和表面粗糙度上进行钻孔的效果。 Taguchi方法预测的优化条件和结果显示了通过实验获得的结果恰好吻合。

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