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Electro‑Discharge Machining Performance of Nimonic 80A: An Experimental Observation

机译:镍80A的电火花加工性能:实验观察

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The present work reports electro-discharge machining (EDM) performance of superalloy Nimonic 80A. Experiments are conducted using a two-factor three-level full factorial design of experiment in consideration with two important electrical parameters: peak discharge current and pulse-on duration. Machining performance is evaluated in purview of material removal efficiency, rate of electrode wear, and surface integrity of the EDMed part product. Apart from morphological study, surface topographic measures including surface roughness, impact of surface cracking, white layer thickness, material migration, phase alteration, and micro-indentation hardness are studied in detail. Results of qualitative analysis on crater morphology are correlated with roughness value of the machined specimen. Effects of peak current and pulse-on time on influencing EDM performance indicators are also reported. An optimal parametric combination is determined for superior process performance. In doing so, utility theory is utilized to aggregate multi-performance characteristics to compute a unique index (called overall utility degree). The parametric combination which corresponds to maximum overall utility is assumed to be the best. It is determined that maximum material removal efficiency, minimal tool wear rate, and superior surface finish can be achieved at parameters setting: I-p = 35 A and T-on = 1000 mu m. The said optimal setting corresponds to overall utility value of 6.53. Confirmatory test result yields: MRR = 9.05 x 10(-3) g/s, TWR = 1.2 x 10(-5) g/s, and R-a = 14.1 mu m at optimal setting.
机译:本工作报告了高温合金Nimonic 80A的放电加工(EDM)性能。考虑到两个重要的电参数:峰值放电电流和脉冲接通持续时间,使用两因素三电平全因子实验设计进行实验。加工性能是根据材料去除效率,电极磨损率和EDM零件产品的表面完整性来评估的。除形态研究外,还详细研究了表面形貌测量,包括表面粗糙度,表面裂纹的影响,白层厚度,材料迁移,相变和微压痕硬度。陨石坑形态的定性分析结果与机加工试样的粗糙度值相关。还报告了峰值电流和脉冲接通时间对影响EDM性能指标的影响。确定最佳参数组合以实现出色的过程性能。在此过程中,效用理论可用于汇总多种性能特征,以计算唯一指标(称为总体效用程度)。假定与最大总效用相对应的参数组合为最佳。确定在以下参数设置下可获得最大的材料去除效率,最小的刀具磨损率和优异的表面光洁度:I-p = 35 A,T-on = 1000μm。所述最佳设置对应于6.53的总效用值。验证性测试结果表明:在最佳设置下,MRR = 9.05 x 10(-3)g / s,TWR = 1.2 x 10(-5)g / s,R-a = 14.1μm。

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