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Micro-EDM performance of Inconel 718 superalloy with and without ultrasonic vibration

机译:Inconel 718超合金的微EDM性能,具有和无超声波振动

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摘要

Inconel 718 superalloy is an extremely difficult-to-machine aerospace material due to its work hardening nature and poor thermal conductivity. Drilling of cooling holes in this material is much difficult by conventional drilling processes because it has high chemical affinity with cutting tool materials, high welding action of chips at rake face, high strength at high temperature and work hardening nature. In consideration of all these problems, a self-developed setup of drilling ultrasonic assisted micro-EDM (drilling-UA-micro-EDM) has been used to create microholes in this material. A comparative study of machining characteristics of Inconel 718 in terms of material removal rate (MRR), tool wear rate (TWR), hole taper (T_(a)), and radial overcut (ROC) has been investigated due to drilling-micro-EDM without and with the ultrasonic vibration (UV). Comparative results show that the application of UV in drilling-micro-EDM increases MRR and decreases TWR, T_(a)and ROC, and gives microholes of good quality and accuracy.
机译:Inconel 718高温合金是一种极其难以充气的航空航天材料,因为其硬化性质和差导热性差。在这种材料中钻孔的钻孔是常规钻孔过程的难以与切削刀具材料高化学亲和力,在耙面上的碎片高焊接作用,高温高强度和硬化性质。考虑到所有这些问题,用于钻孔超声波辅助微EDM(钻孔-UA-Micro-EDM)的自主开发的设置用于在该材料中产生微孔。在材料去除率(MRR),工具磨损率(TWR),孔锥度(T_(A))和径向过度(ROC)引起的钻孔微微 - 微米的加工特性的比较研究已经研究了EDM没有和超声波振动(UV)。比较结果表明,UV在钻孔微EDM中的应用增加了MRR并降低TWR,T_(A)和ROC,并提供了良好质量和准确性的微孔。

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