Development and Performance Evaluation of Modular RC-based Power Supply for Micro-EDM

Wan Ahmad Bin Wan Azhar, T. Saleh
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引用次数: 1

Abstract

One of the demanding manufacturing processes nowadays is Micro-EDM. Micro-EDM stands for Micro Electrical Discharge Machining. A low discharge energy per pulse is important to achieve micro-level machining by controlling parameters such as gap voltage and type of power supply. Furthermore, developing a Micro-EDM machine is time-consuming and complex. Generally, the power supply unit is built along with the development of the EDM machine and it is not sold separately in the market. Therefore, the purpose of this research is to develop and evaluate a modular power supply unit that is compatible with any EDM or CNC machine for micro machining. The power supply unit is based on Resistor-Capacitor (RC) power supply with the options to vary the output voltage and the capacitance value. In addition, the current is monitored using micro-controller ATmega328p to provide options for short circuit current detection levels. A prototype of a Micro-EDM machine is built for the evaluation of the power supply. Performance evaluations of the power supply are conducted with through-holes drilling by studying the machining time, MRR, diametrical overcut and taper angle with a different variation of gap voltage, RC's capacitance, and short circuit current detection level. The evaluation results show that the power supply is capable to perform Micro-EDM machining. The power supply can deliver power up to 360 W. During the discharging, the peak current is recorded to spike up to 7A. The discharge energy per pulse can easily be controlled by changing the output voltage and the RC's capacitance. It is found that at lower discharge energy per pulse, the peak current is lower resulting improvement in MRR, diametrical overcut and taper angle at cost of longer machining time. Furthermore, short circuit current detection level results indicate that machining time is reduced by approximately 5 minutes for every 20 percent increase of the detection level.
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基于模块化rc的微细电火花加工电源的研制与性能评价
当今要求苛刻的制造工艺之一是微细电火花加工。微细电火花加工是指微细电火花加工。通过控制间隙电压和电源类型等参数,实现低脉冲放电能量是实现微细加工的关键。此外,开发微细电火花加工机床耗时且复杂。一般来说,电源单元是随着电火花机床的发展而建立的,在市场上不单独销售。因此,本研究的目的是开发和评估一种模块化电源单元,该电源单元可与任何用于微加工的EDM或CNC机床兼容。电源单元基于电阻-电容(RC)电源,可选择改变输出电压和电容值。此外,使用微控制器ATmega328p监测电流,以提供短路电流检测水平的选项。建立了微型电火花加工机床样机,对电源进行了评价。通过研究不同间隙电压、RC电容、短路电流检测电平变化下的加工时间、MRR、直径过切和锥度角,对通孔钻削电源进行性能评价。评价结果表明,该电源能够进行微细电火花加工。电源最大输出功率为360w。在放电过程中,峰值电流被记录为峰值高达7A。每个脉冲的放电能量可以很容易地通过改变输出电压和RC的电容来控制。结果表明,在每脉冲放电能量较低的情况下,峰值电流较低,以较长的加工时间为代价,提高了MRR、直径过切和锥度角。此外,短路电流检测电平结果表明,每增加20%的检测电平,加工时间减少约5分钟。
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