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Single Pulse Study of Electrochemical Discharge Machining of Metal Matrix Composites

机译:金属基复合材料电化学放电加工的单脉冲研究

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Single pulse experiments were conducted to study electrochemical discharge machining (ECDM) of particulate reinforced metal matrix composites (MMCs) which are widely used in the packaging industry. This article reports the first phase of this study with an emphasis on the effects of pulse current on crater volume. The results showed that all the ECDM craters have a circular shape surrounded by a rim of re-solidified material. This indicates that ECDM craters were created by arc effect. The craters produced by both electrical discharge machining (EDM) and ECDM increased in volume with increasing peak current. However, within the range of currents studied, the craters formed by ECDM were always smaller than those produced by EDM alone under the same current. Moreover, the crater volume difference between EDM and ECDM did not change considerably with increasing current. This is considered to be due to an increase in ECDM current mainly enhances the arc energy and has little effect on the ECM action. Furthermore, the experiment results showed that the efficiency of the arc action in ECDM is reduced when the percent of reinforcement phase is increased.
机译:进行单脉冲实验以研究广泛应用于包装行业的颗粒增强金属基质复合材料(MMC)的电化学放电加工(ECDM)。本文报告了本研究的第一阶段,重点是脉搏电流对火山口的影响。结果表明,所有ECDM陨石坑都具有由重新固化材料边缘包围的圆形形状。这表明ECDM Craters是通过电弧效应产生的。通过电气放电加工(EDM)和ECDM产生的陨石仪随着峰值电流的增加而增加。然而,在所研究的电流范围内,通过ECDM形成的陨石坑总是小于通过EDM在相同电流下单独生产的凹槽。此外,EDM和ECDM之间的火山口体积差异不会随着电流的增加而变化。这被认为是由于ECDM电流的增加主要增强了电弧能量,对ECM动作产生影响不大。此外,实验结果表明,当增强阶段的百分比增加时,ECDM中的弧动作的效率降低。

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