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首页> 外文期刊>The Archive of Mechanical Engineering >An Influence of Parameters of Micro-electrical Discharge Machining on Wear of Tool Electrode
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An Influence of Parameters of Micro-electrical Discharge Machining on Wear of Tool Electrode

机译:微放电加工参数对工具电极磨损的影响

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To achieve better precision of features generated using the micro-electrical discharge machining (micro-EDM), there is a necessity to minimize the wear of the tool electrode, because a change in the dimensions of the electrode is reflected directly or indirectly on the feature. This paper presents a novel modeling and analysis approach of the tool wear in micro-EDM using a systematic statistical method exemplifying the influences of capacitance, feed rate and voltage on the tool wear ratio. The association between tool wear ratio and the input factors is comprehended by using main effect plots, interaction effects and regression analysis. A maximum variation of four-fold in the tool wear ratio have been observed which indicated that the tool wear ratio varies significantly over the trials. As the capacitance increases from 1 to 10 nF, the increase in tool wear ratio is by 33%. An increase in voltage as well as capacitance would lead to an increase in the number of charged particles, the number of collisions among them, which further enhances the transfer of the proportion of heat energy to the tool surface. Furthermore, to model the tool wear phenomenon, a regression relationship between tool wear ratio and the process inputs has been developed.
机译:为了获得使用微电火花加工(micro-EDM)生成的特征更好的精度,有必要将工具电极的磨损降到最低,因为电极尺寸的变化会直接或间接地反映在特征上。本文提出了一种新颖的建模和分析方法,该方法使用系统的统计方法对微型EDM中的刀具磨损进行了建模,该方法说明了电容,进给速度和电压对刀具磨损率的影响。通过使用主效应图,相互作用效应和回归分析,可以了解刀具磨损率与输入因子之间的关联。观察到工具磨损率有最大四倍的变化,这表明工具磨损率在整个试验中变化很大。当电容从1 nF增加到10 nF时,工具磨损率增加了33%。电压以及电容的增加将导致带电粒子数量(其中它们之间的碰撞数量)增加,这进一步提高了热能比例向工具表面的传递。此外,为了建模工具磨损现象,已经开发了工具磨损率与过程输入之间的回归关系。

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