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Analysis of electrochemical machining process with ultrashort pulses considering stray inductance of pulse power supply

机译:考虑脉冲电源杂散电感的超短脉冲电化学加工过程分析

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Machining characteristics of electrochemical machining with ultrashort pulses were investigated using numerical analysis considering the inductance of a power supply circuit. In a pulse power supply circuit of ECM, stray inductance occurs in the electric feeders. Because stray inductance influences the flow of the pulse current, the formation of the electric double layer is affected by the inductance. In order to investigate the influence of the inductance on the machining characteristics, numerical analysis was conducted considering the inductance of the power supply circuit. The electric field was analyzed by numerical simulation considering the electric double layer and faradaic current, and the circuit equation of the pulse power supply was solved considering stray inductance of the pulse power supply. Analytical results show that the inductance increases the rise time of electric current flowing through the machining gap when pulse voltage is applied. Therefore, longer pulse duration of pulse power supply is necessary to form the electric double layer when the inductance is larger. The voltage continues to be applied to the working gap even after the pulse voltage becomes low, limiting the effect of ultrashort voltage pulses due to inductance.
机译:考虑到电源电路的电感,利用数值分析研究了超短脉冲电化学加工的加工特性。在ECM的脉冲电源电路中,在电气馈线中会产生杂散电感。由于杂散电感会影响脉冲电流的流动,因此双电层的形成会受到电感的影响。为了研究电感对加工特性的影响,考虑了电源电路的电感进行了数值分析。通过考虑双电层和法拉第电流的数值模拟对电场进行了分析,并考虑了脉冲电源的杂散电感,从而解决了脉冲电源的电路方程。分析结果表明,当施加脉冲电压时,电感会增加流过加工间隙的电流的上升时间。因此,当电感较大时,需要较长的脉冲电源脉冲持续时间以形成双电层。即使在脉冲电压变低之后,电压仍继续施加到工作间隙,从而限制了由于电感引起的超短电压脉冲的影响。

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