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Optimization of Electric Discharge Machining Process Parameters for H13 Steel by Using Taguchi Method

机译:使用Taguchi方法优化H13钢的电气放电加工过程参数

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Electrical discharge machining (EDM) is the most versatile non-traditional machining process which is used for manufacturing geometrically complex and hard material that is extremely difficult to machine by conventional machining processes. As it is non-contact machining process, no or negligible amount of forces are acted on the workpiece so that it can machine any material irrespective of its hardness except non-conducting materials. In this investigation, the process parameters such as peak current, pulse on time, and gap voltage of EDM were experimentally optimized to obtain the optimum machining characteristics enumerated as material removal rate (MRR) and electrode wear rate (EWR) by using Taguchi technique for machining H13 steel. The obtained results were analyzed by using analysis of variance (ANOVA) to identify the significance of each process parameter on the machining characteristics of EDM. The analysis of Taguchi method reveals that pulse on time and peak current have significantly affected the material removal rate and electrode wear rate.
机译:电气放电加工(EDM)是最通用的非传统加工过程,用于制造几何复合物和硬质材料,其通过常规加工过程极其难以加工。由于它是非接触加工过程,因此在工件上作用不计或可忽略的力量,使得它可以在除非非导电材料之外的硬度无关紧要任何材料。在该研究中,实验优化了诸如峰值电流,接通时间的脉冲,脉冲和EDM的间隙电压,以通过使用Taguchi技术获得作为材料去除速率(MRR)和电极磨损率(EWR)所枚举的最佳加工特性。加工H13钢。通过使用方差分析(ANOVA)来分析所得结果,以确定每个过程参数对EDM的加工特性的重要性。 Taguchi方法的分析表明,脉冲对时间和峰值电流具有显着影响材料去除率和电极磨损率。

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