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Form Characterization of Microhole Produced by Microelectrical Discharge Drilling

机译:微放电钻产生的微孔的形态表征

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This article discusses the characterization of form of microholes produced by microelectrical discharge drilling (micro-EDD) on beryllium-copper alloy using tungsten carbide electrode of 300 mu m diameter. Using a fixed set of micro-EDD parameters, microholes of different aspect ratio were drilled. The selected form characteristics diameter, roundness, and taper angle were investigated. The hole diameter and roundness were estimated by using scanning electron microscope (SEM) and graphical calculation. The microhole was sectioned to measure the depth and taper angle. The variations of these form characteristics were plotted against aspect ratio. This experimental study showed that diameter, roundness error, and taper angle of the microhole increase with the increase of aspect ratio almost at the same rate. The electrode wear ratio was not insignificant for low aspect ratio microhole. However, it increased sharply with the increase of aspect ratio.
机译:本文讨论了使用直径为300μm的碳化钨电极在铍铜合金上进行微放电钻孔(micro-EDD)产生的微孔形式的表征。使用一组固定的微EDD参数,可以钻出不同纵横比的微孔。研究了所选形状特征的直径,圆度和锥角。孔的直径和圆度通过使用扫描电子显微镜(SEM)和图形计算来估计。将微孔切成切片以测量深度和锥角。将这些形状特征的变化与纵横比作图。该实验研究表明,微孔的直径,圆度误差和锥角几乎以相同的速率随长宽比的增加而增加。对于低深宽比的微孔,电极的磨损率并不重要。但是,随着长宽比的增加,它急剧增加。

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