Drilling of Ti Grade-2 Alloy Using WC Tool in Micro-EDM and Its Multiparameter Optimization

Alemu Workie Kebede, Tanmoy Majumder, Promod Kumar Patowari, Chinmaya Kumar Sahoo
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Abstract

In this study, microelectrical discharge machining (μEDM) is used for drilling microholes on a thin sheet of Ti Grade 2 alloy of thickness 50 μm using a tungsten carbide (WC) microtool of diameter 470 μm. The main focus of the study is to understand the electrical and nonelectrical μEDM parameters on the accuracy, precision, and machining efficiency of drilled holes. The controllable process factors such as capacitance, voltage, tool rotation, and feed rate are considered when conducting the experiments based on a Taguchi L16 orthogonal array. The main effect and interaction contour plots have been prepared to investigate the influence of the process parameters on the response measures like material removal rate, overcut, circularity, and taper angle of the drilled holes. Analysis of variance (ANOVA) has been carried out to study the percentage contribution and significance of each process parameter on the performance measures. The micrographic images reveal the quality of the profiles and edges of the drilled holes. Further, the Overall Evaluation Criterion (OEC) is applied for multiparameter optimization.

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在显微线切割中使用 WC 工具钻削 Ti Grade-2 合金及其多参数优化
在本研究中,使用直径为 470 μm 的碳化钨 (WC) 微型刀具在厚度为 50 μm 的 2 级 Ti 合金薄片上进行微放电加工 (μEDM),以钻出微孔。研究的重点是了解电性和非电性微电子机械加工参数对钻孔精度、准确度和加工效率的影响。在基于 Taguchi L16 正交阵列进行实验时,考虑了电容、电压、刀具旋转和进给速率等可控工艺因素。编制了主效应和交互等值线图,以研究工艺参数对材料去除率、过切、圆度和钻孔锥角等响应指标的影响。还进行了方差分析(ANOVA),以研究各工艺参数对性能指标的贡献率和显著性。显微图像显示了钻孔的轮廓和边缘质量。此外,总体评价标准 (OEC) 被应用于多参数优化。
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