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Electrical Discharge Machining of Inconel 718 using Cryo-Processed Rotary Cu-Electrode

机译:使用冷冻加工旋转Cu电极的Inconel 718的电气放电加工

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This paper focuses on the impact of machining factors on surface quality in electric discharge machining (EDM) of Inconel 718. Drilling has been performed by a cryogenic treated copper tool. Experiments were accompanied by dissimilar machining factors viz. tool diameter, discharge current, pulse on time pulse off time, tool rotation and hole depth. The thickness of work piece material remains constant. Surface roughness is measured by optical surface profiler. Taguchi based L_(18) orthogonal array of experimental design was employed to accomplish machining. Analysis of variance (ANOVA) has been employed to find out optimum factors for minimum surface roughness (SR). It was found that pulse off time, pulse on time and tool rotation are greatest affecting factors that affects SR for cryo-treated Cu tool electrode. Tool diameter is least affecting factor that affects SR. A linear regression model has been developed to find out optimum combination for SR of Inconel 718 work piece.
机译:本文侧重于加工因子对Inconel 718的电气放电加工(EDM)表面质量的影响。通过低温处理的铜工具进行了钻孔。实验伴随着异种加工因子viz。工具直径,放电电流,脉冲接通时间脉冲关闭时间,刀具旋转和孔深度。工件材料的厚度保持恒定。表面粗糙度通过光学表面分析器测量。基于Taguchi的L_(18)正交的实验设计阵列来实现加工。已经采用了对差异(ANOVA)的分析来找出最小表面粗糙度(SR)的最佳因素。发现脉冲关闭时间,脉冲按时和刀具旋转是影响Cryo处理Cu刀具电极的SR的最大影响因素。刀具直径最小影响影响SR的因素。已经开发了线性回归模型,以找出Inconel 718工件的SR的最佳组合。

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