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Electrical Discharge Machining (EDM) Characteristics Associated with Electrical Discharge Energy on Machining of Cemented Tungsten Carbide

机译:与硬质合金碳化钨加工中的放电能量相关的放电加工(EDM)特性

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摘要

In this investigation, cemented tungsten carbides graded K10 and P10 were machined by electrical discharge machining (EDM) using an electrolytic copper electrode. The machining parameters of EDM were varied to explore the effects of electrical discharge energy on the machining characteristics, such as material removal rate (MRR), electrode wear rate (EWR), and surface roughness. Moreover, the effects of the electrical discharge energy on heat-affected layers, surface cracks and machining debris were also determined. The experimental results show that the MRR increased with the density of the electrical discharge energy; the EWR and diameter of the machining debris were also related to the density of the electrical discharge energy. When the amount of electrical discharge energy was set to a high level, serious surface cracks on the machined surface of the cemented tungsten carbides caused by EDM were evident.
机译:在这项研究中,使用电解铜电极通过放电加工(EDM)加工了等级为K10和P10的硬质合金碳化钨。改变EDM的加工参数以探索放电能量对加工特性的影响,例如材料去除率(MRR),电极磨损率(EWR)和表面粗糙度。此外,还确定了放电能量对热影响层,表面裂纹和加工碎屑的影响。实验结果表明,MRR随放电能量密度的增加而增加; EWR和加工碎屑的直径也与放电能量的密度有关。当将放电能量设定为高水平时,由EDM引起的在硬质合金碳化钨的机械加工表面上的严重表面裂纹是明显的。

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