Accretion Machining by EDM with Thin Electrode (1st Report)

H. Takezawa, N. Mohri, K. Furutani
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Abstract

Accretion machining by electrical discharge machining (EDM) with a high wear rate of green compact or semisintered electrodes has recently been carried out. Also, it has been observed that the wear rate of thin electrodes for various materials is very high with a high discharge current. In this study, a thin tungsten electrode is used for material accretion or surface modification of a small area. For this purpose, continuous discharge and single discharge machining experiments were performed by EDM with a thin electrode. Then the voltage and current waveforms and the cross section of the accreted surface were observed. In accretion machining, these waveforms revealed a continuous short-circuit phenomenon and a wire explosion phenomenon subsequent to the continuous short-circuited state. These observations indicated that the accreted layer was very hard (1000HV) and that the accretion area was very small (150μm in diameter). This clearly indicates that microaccretion machining can be performed using this technique.
薄电极电火花吸积加工(第一期报告)
利用高磨损率的绿色致密或半互连电极进行放电加工(EDM)是近年来开展的一项研究。此外,还观察到,在高放电电流下,各种材料的薄电极的磨损率都很高。在本研究中,使用薄钨电极进行小面积的材料吸积或表面改性。为此,利用薄电极进行了连续放电和单放电电火花加工实验。然后观察了增积表面的电压、电流波形和截面。在吸积加工过程中,这些波形表现出连续短路现象和连续短路状态后的爆丝现象。这些观测结果表明,吸积层非常坚硬(1000HV),吸积面积很小(直径150μm)。这清楚地表明,微吸积加工可以使用这种技术进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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