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Process Parameter Optimization and Experimental Study of Micro-holes in Electrochemical Micromachining Using Pulse Current

机译:使用脉冲电流进行电化学微机械微孔微孔的过程参数优化与实验研究

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摘要

Electrochemical micro-machining (EMM) has become one of the main machining methods for production of miniaturized parts and components. Utilizing a developed EMM set-up, sets of experiments have been carried out to investigate the influences of some of the predominant electrochemical process parameters such as pulse frequency, feed rate of tool, machining voltage and ultrasonic frequency on the machining accuracy of micro-holes. According to the present investigation, the most effective zone of pulse on time and ultrasonic frequency can be considered as 15-50μs and 26 KHZ, respectively, which can gives a desirable machining accuracy for micro-holes. A machining voltage range of 6-10V can be commended to obtain high machining accuracy. From the micrographs of the machined micro-holes, it may be observed that a lower value of electrolyte concentration with moderate machining voltage and moderate value of pulse on time will produce more accurate shape of micro-holes.
机译:电化学微加工(EMM)已成为生产小型化零部件的主要加工方法之一。利用开发的EMM设置,已经进行了一组实验,以研究一些主要电化学工艺参数的影响,例如脉冲频率,工具的脉冲频率,进给速率,加工电压和超声波频率的微孔的加工精度。根据本研究,分别可以将最有效的脉冲区域视为15-50μs和26kHz,这可以为微孔提供理想的加工精度。可以赞扬6-10V的加工电压范围,以获得高加工精度。从机加工微孔的显微照片,可以观察到,电解质浓度的较低值以适度的加工电压和适度的脉冲值,随着时间的推移会产生更精确的微孔形状。

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