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Multi criteria optimization of Electrochemical Discharge Micromachining process during micro-channel generation on glass

机译:微通道在玻璃微通道发电期间电化学放电微加工过程的多标准优化

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- Electrochemical Discharge micro-machining process appears better utility with greater effectiveness in the modern micro-machining industrial field. Electrochemical discharge micromachining process is involved to generate micro-channel as well as curve profile on glass for utilization as micro-fluidic device. This paper shows second order mathematical modeling of correlation between the machining criteria such as machining rate as a form of material removal rate(MRR), overcut(OC), machining depth(MD) with various process parameters like applied voltage (V), electrolyte concentration (wt%) and inter-electrode gap (IEG) (mm). The analysis of variance (ANOVA) has been performed to find out the adequacy of the developed models. This paper also shows the multi objective optimization to achieve the optimal parametric combination for maximum MRR, MD and minimum OC using response surface methodology (RSM).
机译:- 电化学放电微加工过程似乎在现代微加工工业领域具有更大效益的效用。 电化学放电微加工过程涉及产生微通道以及玻璃上的曲线轮廓,以利用作为微流体装置。 本文示出了二阶数学建模的加工标准之间的相关性,例如加工速率,作为材料去除速率(MRR)的形式,过度(OC),加工深度(MD),具有施加电压(V),电解质等各种工艺参数 浓度(wt%)和电极间隙(IEG)(mm)。 已经执行了对方差(ANOVA)的分析,以找出开发模型的充分性。 本文还显示了多目标优化,实现最大MRR,MD和最小OC的最佳参数组合使用响应面方法(RSM)。

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