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Electrochemical Machining of Micro Deep Holes by Using Micro Drill as Cathode

机译:以微钻为阴极的微深孔电化学加工

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摘要

Helical groove of micro drill is capable to carry away reaction products out of the machining zone and hence to improve machine accuracy and depth in electrochemical machining process. This work presents an investigation of electrochemical machining of micro deep holes by using micro drill as tool electrode. Effects of electrolyte solution type, drill rotation rate and working voltage on machining depth and inlet side gap have been discussed accordingly. Experimental results show that using mixed electrolyte solution assists the process to achieve better machining inlet side gap. Drill rotation rate in range of 5000rpm to 10000rpm does not markedly affect the machining depth and inlet side gap. Machining depth and inlet side gap increases with the working voltage from 6V to 8V.
机译:微型钻的螺旋槽能够将反应产物带出加工区,从而提高电化学加工过程中的加工精度和深度。这项工作提出了通过使用微钻作为工具电极对微深孔进行电化学加工的研究。相应地讨论了电解质溶液类型,钻头转速和工作电压对加工深度和入口侧间隙的影响。实验结果表明,使用混合电解质溶液有助于实现更好的加工入口侧间隙。钻头转速在5000rpm至10000rpm范围内不会显着影响加工深度和入口侧间隙。加工深度和入口侧间隙会随着工作电压从6V增加到8V而增加。

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