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Study on Parameter Determination for ECM Equivalent Circuit and its Verification

机译:ECM等效电路参数确定及其验证研究

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摘要

The analysis of the electrochemical machining (ECM) model expressed by an equivalent circuit is helpful to understand the ECM characteristics, such as the removal rate and machining accuracy. Although the performance of an electrochemical cell can usually be represented by an equivalent circuit, the equivalent circuit for electrochemical machining (ECM) has not been well established. The reason is that the ECM phenomenon is much more complicated due to the anodic dissolution and other reactions. In the previous study, a method to determine each parameter in the equivalent circuit was proposed by comparing the computed current waveforms with the experimentally obtained ones, using genetic algorithm. However, the parameters of the anode and cathode could not be distinguished, because materials for both electrodes were the same. In this research, experiments and computations were conducted when different materials and combinations were used. As the result, the parameters of the anode and cathode are successfully distinguished, by comparing each material combination. Moreover, in order to prove the credibility for the parameter determination, experiments under different experimental conditions were carried out. In experiments, the applied voltage, the kind of electrolyte, the electrolyte concentration and the gap-distance was changed respectively. The parameters determined under those conditions were compared and discussed with some generally-known phenomena. As the result, since the obtained parameters could be well explained by the generally-known phenomena, the credibility was confirmed.
机译:用等效电路表示的电化学加工(ECM)模型的分析有助于理解ECM特性,例如去除率和加工精度。尽管电化学电池的性能通常可以用等效电路表示,但用于电化学加工的等效电路(ECM)尚未很好地建立。原因是由于阳极溶解和其他反应,ECM现象要复杂得多。在先前的研究中,通过遗传算法将计算出的电流波形与实验获得的电流波形进行比较,提出了一种确定等效电路中每个参数的方法。但是,由于两个电极的材料相同,因此无法区分阳极和阴极的参数。在这项研究中,当使用不同的材料和组合时进行了实验和计算。结果,通过比较每种材料组合,可以成功地区分阳极和阴极的参数。此外,为了证明参数确定的可靠性,在不同的实验条件下进行了实验。在实验中,分别改变了施加电压,电解质种类,电解质浓度和间隙距离。比较了在这些条件下确定的参数,并与一些普遍已知的现象进行了讨论。结果,由于可以用众所周知的现象很好地解释获得的参数,因此可以确认可信度。

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