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The drilling of Al2O3 using a pulsed DC supply with a rotary abrasive electrode by the electrochemical discharge process

机译:使用带有旋转磨料电极的脉冲直流电源通过电化学放电工艺对Al 2 O 3 进行钻孔

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摘要

The electrochemical discharge machining (ECDM) process has the potential to machine electrically non-conductive high-strength, high-temperature-resistant (HSHTR) ceramics, such as aluminum oxide (Al2O3). However, the conventional tool configurations and machining parameters show that the volume of material removed decreases with increasing machining depth and, finally, restricts the machining after a certain depth. To overcome this problem and to increase the volume of material removed during drilling operations on Al2O3, two different types of tool configurations, i.e., a spring-fed cylindrical hollow brass tool as a stationary electrode and a spring-fed cylindrical abrasive tool as a rotary electrode, were considered. The volume of material removed by each electrode was assessed under the influence of three parameters, namely, pulsed DC supply voltage, duty factor, and electrolyte conductivity, each at five different levels. The results revealed that the machining ability of the abrasive rotary electrode was better than the hollow stationary electrode, as it would enhance the cutting ability due to the presence of abrasive grains during machining.
机译:电化学放电加工(ECDM)工艺具有加工非导电高强度,耐高温(HSHTR)陶瓷的潜力,例如氧化铝(Al 2 O 3 )。但是,传统的刀具配置和加工参数表明,去除的材料量随加工深度的增加而减小,并且最终限制了一定深度后的加工。为了克服这个问题并增加在Al 2 O 3 上进行钻孔操作时去除的材料量,有两种不同类型的工具配置,即弹簧喂入的圆柱孔考虑使用黄铜工具作为固定电极,并使用弹簧喂入的圆柱磨具作为旋转电极。在三个参数(脉冲直流电源电压,占空比和电解质电导率)的影响下,评估了每个电极去除的材料量,这些参数分别处于五个不同的水平。结果表明,磨料旋转电极的加工性能优于空心固定电极,因为在加工过程中磨料颗粒的存在会增强切削性能。

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