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首页> 外文期刊>Electrochimica Acta >Super finishing with ultrasonic and magnetic assistance in electrochemical micro-machining
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Super finishing with ultrasonic and magnetic assistance in electrochemical micro-machining

机译:在超声微加工中借助超声和磁辅助进行超精加工

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摘要

A super finishing process that uses ultrasonic and magnetic assistance in electrochemical micro-machining (EMM) with high efficiency to assist in the discharging of dregs out of the electrodes' gap on free-form surfaces is investigated in this study. The factors affecting the effects of the ultrasonic and magnetic assistance in EMM are discussed. The main experimental parameters are the frequency and power level of the ultrasonics, the magnetic strength, the distances between the two magnets, the rotational speed of the magnetic system, the current density, the on/off period of the pulsed-current, and the electrode geometry. A higher current density with ultrasonic and magnetic assistance reduces the finish time and avoids the difficulty of dreg discharge. Providing a large magnetic field intensity or using a small distance between the two magnets produces a large magnetic force and enhances discharge ability to produce a better finish. A large rotational speed of the magnetic system along with ultrasonic assistance produces a better finish as well. The average effect of ultrasonic or magnetic assistance is better than the effect of pulsing the current, and the machining time need not to be prolonged by the off time. Rotational magnetic assistance during the ultrasonic electrochemical finishing process contributes to a reduction in the processing time and making the surface of the workpiece smooth and bright.
机译:在这项研究中,研究了一种超精加工工艺,该工艺在超声微加工(EMM)中使用超声和磁辅助技术,以帮助将残渣从自由形式表面上的电极间隙中排出。讨论了影响EMM中超声和磁辅助作用的因素。主要的实验参数是超声波的频率和功率水平,磁强度,两个磁体之间的距离,磁系统的旋转速度,电流密度,脉冲电流的开/关时间以及电极几何形状。借助超声波和电磁辅助技术,较高的电流密度可减少精加工时间,并避免了残渣放电的困难。提供较大的磁场强度或在两个磁体之间使用较小的距离会产生较大的磁力,并增强放电能力以产生更好的光洁度。磁系统的大旋转速度以及超声辅助也会产生更好的光洁度。超声或电磁辅助的平均效果要比对电流施加脉冲的效果更好,并且不需要通过关闭时间来延长加工时间。超声波电化学精加工过程中的旋转磁辅助有助于减少加工时间,并使工件表面光滑明亮。

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