首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Statistical analysis and optimization study on the machinability of beryllium-copper alloy in electro discharge machining
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Statistical analysis and optimization study on the machinability of beryllium-copper alloy in electro discharge machining

机译:铍铜合金电火花加工性能统计分析与优化研究

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摘要

Beryllium-copper alloys have several industrial applications but are exposed to serious machinability challenges by conventional machining processes because of excessive tool wear and poor surface finish. This study explores the machinability of beryllium-copper alloy in an electro discharge machining process based on particularly dielectric medium parameters, oil and deionized water. Machinability characteristics were evaluated for material removal rate (MRR), electrode wear ratio (EWR) and the quality of the machined surfaces in terms of surface roughness (R_a). Experimental results were statistically analyzed and optimized using analysis of variance, Taguchi's orthogonal array and grey relation analysis. Response surface methodology has been used for modeling and prediction of the optimal experimental conditions. It was observed that the dielectric medium is a significant parameter, as is the working current for the machinability of beryllium-copper alloys. Electrode shape deformations, depending on electro discharge machining parameter variations, were also analyzed as an appendix section.
机译:铍铜合金具有多种工业应用,但由于过度的工具磨损和不良的表面光洁度,使其在常规加工工艺中面临严重的可加工性挑战。这项研究基于特殊的介电介质参数,油和去离子水,探索了铍铜合金在放电加工过程中的可加工性。就材料去除率(MRR),电极磨损率(EWR)和机械加工表面的质量,以表面粗糙度(R_a)评估了可加工性特征。使用方差分析,田口正交阵列和灰色关联分析对实验结果进行统计分析和优化。响应面方法已用于最佳实验条件的建模和预测。据观察,介电介质是重要的参数,铍铜合金可加工性的工作电流也是如此。附录中还分析了取决于放电加工参数变化的电极形状变形。

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