Optimization the Effect of Electrode Material Change on EDM Process Performance Using Taguchi Method

S. Aghdeab, Ahmed Ghazi Abdulameer, Lujain Hussein Abdulameer, A. Mohammed
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引用次数: 1

Abstract

Electrical Discharge Machining (EDM) is a widespread Nontraditional Machining (NTM) processes for manufacturing of a complicated geometry or very hard metals parts that are difficult to machine by traditional machining operations. Electrical discharge machining is a material removal (MR) process characterized by using electrical discharge erosion. This paper discusses the optimal parameters of EDM on high-speed steel (HSS) AISI M2 as a workpiece using copper and brass as an electrode. The input parameters used for experimental work are current (10, 24 and 42 A), pulse on time (100, 150 and 200 µs), and pulse off time (4, 12 and 25 µs) that have effect on the material removal rate (MRR), electrode wear rate (EWR) and wear ratio (WR). A Minitab software environment was used to adopt Taguchi method to analyze the effect of input on output parameters of EDM. The results of the present work showed that the best of MRR in copper and brass electrodes with (current 42 A, pulse on time 100 µs and pulse off time 25 µs) are (84.355×10-3 g/min) and (43.243×10-3 g/min) respectively, and the MRR predicted by Taguchi are (86.1751×10-3 g/min) in copper electrode by using the parameters with (current 10 A, pulse on time 200 µs and pulse off time 25 µs) and (43.2979×10-3 g/min) in brass electrode at current 42 A, pulse on time 100 µs, and pulse off time 25 µs. The lowest EWR occurs with a value of (1.4510×10-3 g/min) with (current 10 A, pulse on time 100 µs, pulse off time 4 µs) variables when using a copper electrode. The highest WR (2.602508) was found for the brass electrode with (current 24 A, pulse on time 200 µs, pulse off time 4 µs) variables.
利用田口法优化电极材料变化对电火花加工工艺性能的影响
电火花加工(EDM)是一种广泛应用的非传统加工(NTM)工艺,用于制造传统加工工艺难以加工的复杂几何形状或非常坚硬的金属零件。电火花加工是一种以电火花腐蚀为特征的材料去除工艺。讨论了以铜和黄铜为电极,对高速钢AISI M2作为工件进行电火花加工的最佳工艺参数。用于实验工作的输入参数为电流(10、24和42 A)、脉冲接通时间(100、150和200µs)和脉冲断开时间(4、12和25µs),这些参数会影响材料去除率(MRR)、电极磨损率(EWR)和磨损比(WR)。利用Minitab软件环境,采用田口法分析了输入对电火花加工输出参数的影响。现在工作的结果表明,最好的MRR铜和黄铜电极(当前42、脉冲在100µ年代和脉冲时间25日µs)是(84.355×三分g /分钟)和(43.243×三分g /分钟)分别与田口方法预测的MRR(86.1751×三分g /分钟)在铜电极通过使用参数与(目前的10,脉冲在200µ年代和脉冲时间25日µs)和(43.2979×三分g /分钟)在当前42黄铜电极,100µ年代脉冲在时间和脉冲时间25µ年代。当使用铜电极时,当(电流10 a,脉冲接通时间100µs,脉冲关闭时间4µs)变量时,最低EWR值为(1.4510×10-3 g/min)。当黄铜电极的电流为24 A,脉冲接通时间为200µs,脉冲关闭时间为4µs时,其WR最高,为2.602508。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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