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Influence of reaction force on the electrode in micro hole drilling by micro EDM

机译:微型电火花加工中反作用力对电极的影响

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Micro electrical discharge machining (EDM) is widely used to drill micro hole with high aspect ratio in any electrically conductive material regardless its hardness. Due to the electrode wear during machining, the electrode has to be prepared long to compensate the wear length. It is found that the discharge gap of a micro hole by a long and thin electrode is larger than that by a short electrode. Although there is no mechanical contact during EDM, the reaction force generated by electrical discharges causes the long and thin electrode to bend, resulting in the hole diameter larger than the expected. In this paper, a simple model is used to estimate the deflection of electrode in order to explain the large diameter of a micro hole by a long electrode. Experimental results indicate that the theoretical values agree with the real machining results.
机译:微电路放电加工(EDM)广泛用于钻孔,具有在任何导电材料中具有高纵横比的微孔,无论其硬度如何。由于电极磨损在加工过程中,必须长时间制备电极以补偿磨损长度。发现微孔的微孔的放电间隙大于短电极的微孔。尽管在EDM期间没有机械接触,但是通过电放电产生的反作用力使得长而薄的电极弯曲,导致孔径大于预期。在本文中,使用简单模型来估计电极的偏转,以便通过长电极解释微孔的大直径。实验结果表明理论值与实际加工结果一致。

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