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Analysis on electrochemical discharge machining during micro-channel cutting on glass

机译:玻璃微通道切割过程中电化学放电加工分析

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摘要

Modern industrial field of micro-machining has an attractive attention to increase the machinability of electrically non-conducting materials. Electrochemical discharge micro-machining process has the ability to machine high strength non-conducting brittle materials like glass. This paper shows a development of second-order correlation between the various machining criteria and different process parameters such as applied voltage, electrolyte concentration and inter-electrode gap (IEG). The analysis of variance (ANOVA) has been performed to find out the adequacy of the developed models. The research paper includes the effects of various process parameters on material removal rate (MRR), overcut (OC), heat affected zone (HAZ) and machining depth (MD) during micro-channel generation on glass. This paper also represents the single as well as multi-objective optimised results to determine the suitable parametric combination for maximum MRR and machining depth and minimum overcut and HAZ area using response surface methodology (RSM) and genetic algorithm (GA).
机译:现代工业领域的微加工具有吸引人的注意力,可以提高电非导电材料的可加工性。电化学放电微加工过程具有机器高强度非导电脆性材料的能力。本文示出了各种加工标准和不同工艺参数之间的二阶相关性的发展,例如施加的电压,电解质浓度和电极间隙(IEG)。已经执行了对方差(ANOVA)的分析,以找出开发模型的充分性。研究论文包括各种工艺参数对玻璃微渠道发电期间材料去除率(MRR),过度(OC),热影响区(HAZ)和加工深度(MD)的影响。本文还表示单一的单一以及多目标优化结果,以确定使用响应面方法(RSM)和遗传算法(GA)的最大MRR和加工深度和最小过度和HAZ区域的合适参数组合。

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