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Clarifying mechanism of determining tool electrode wear ratio in EDM using spectroscopic measurement of vapor density

机译:用光谱法测量蒸气密度确定电火花加工中工具电极磨损率的澄清机理

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This paper clarifies the mechanism of determining tool electrode wear ratio in electrical discharge machining (EDM) by spectroscopic measurement of the vapor density of the tool electrode material. The relative density of copper vapor in EDM arc plasma was obtained from radiant fluxes emitted from the arc plasma and the temperature of the arc plasma obtained from the radiant fluxes of two different wavelengths using the line pair method. Longer pulse duration is known to result in lower tool electrode wear ratio and deposition of a thicker carbon layer on the tool electrode surface. On the other hand, the density of copper vapor evaporated from the tool electrode surface was found to be lower when the carbon layer was thicker, indicating that tool electrode wear is prevented by the protective effects of the carbon layer.
机译:本文通过光谱测量工具电极材料的蒸气密度,阐明了确定放电加工(EDM)中工具电极磨损率的机理。使用线对方法,由电弧等离子体发出的辐射通量和由两种不同波长的辐射通量得到的电弧等离子体的温度,得出EDM电弧等离子体中铜蒸气的相对密度。已知较长的脉冲持续时间会导致较低的工具电极磨损率,并在工具电极表面上沉积较厚的碳层。另一方面,发现当碳层较厚时从工具电极表面蒸发的铜蒸气的密度较低,这表明通过碳层的保护作用可以防止工具电极的磨损。

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