首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Experimental investigation on the discharge stability in micro-EDM based on finite-successive pulses discharge method
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Experimental investigation on the discharge stability in micro-EDM based on finite-successive pulses discharge method

机译:基于有限连续脉冲放电法的微EDM放电稳定性的实验研究

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摘要

The discharge stability is crucial for micro-electrical discharge machining (EDM) performances such as material removal rate, tool wear ratio and surface integrity. In this study, based on the finite-successive pulses discharge method, the discharge stability of micro-EDM was systematically explored by focusing on the effective discharge rate (EDR) and uniformity of craters distribution (UCD). Specifically, a novel uniformity index method was adopted to achieve the mathematical characterization of UCD. The effects of the essential parameters including open-circuit voltage, peak current, pulse duration, duty cycle, electrode rotating speed, gap width and dielectric medium on EDR and UCD were assessed by analysis of variance. The results indicated that the pulse duration is a significant parameter for the EDR, while the peak current is significant parameter for both EDR and UCD. Moreover, the influencing mechanisms of machining parameters on EDR and UCD were also discussed. Finally, the optimal parameter combinations were obtained through signal-to-noise (S/N) ratio response graphs, and the feasibility to optimize machining parameters based on EDR and UCD was confirmed by verification experiments. The results of this work are expected to be helpful to achieve parameter optimization from a clearer perspective, and further improve the micro-EDM performances as well.
机译:放电稳定性对于微电路放电加工(EDM)性能,例如材料去除率,工具磨损比和表面完整性至关重要。在本研究中,基于有限连续的脉冲放电方法,通过专注于有效放电速率(EDR)和陨石坑分布(UCD)的均匀性来系统地探索微EDM的放电稳定性。具体地,采用了一种新的均匀性指标方法来实现UCD的数学表征。通过对差异分析评估EDR和UCD上的开路电压,峰值电流,脉冲持续时间,占空比,电极转速,间隙宽度和介电介质的基本参数的影响。结果表明,脉冲持续时间是EDR的重要参数,而峰值电流是EDR和UCD的重要参数。此外,还讨论了EDR和UCD上加工参数的影响机制。最后,通过信号 - 噪声(S / N)比率响应曲线图获得了最佳参数组合,并通过验证实验确认了基于EDR和UCD的加工参数的可行性。这项工作的结果预计将有助于从更清晰的角度实现参数优化,并进一步提高微EDM性能。

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