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Pulse electrochemical finishing: Modeling and experiment

机译:脉冲电化学精加工:建模和实验

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摘要

Surface quality of the workpiece has great influence on its service performance and lifespan. Pulse electrochemical finishing (PECF) provides an effective method for improving surface quality of the workpiece. In PECF, surface irregularities are removed by electrochemical dissolution rather than by cutting force. Due to non-contact nature of the process, there is no residual stress and thermal effect on the workpiece surface. For successful utilization of PECF, in present manufacturing, it still demands for more intensive research, including the mechanism of anodic smoothing. The anodic smoothing characteristics of PECF are analyzed through a developed mathematical model. The main influencing factors such as the finishing time, the interelectrode gap, the applied voltage and the rotational speed of electrode have been examined. The predictive values based on the developed mathematical model are found to be in reasonable agreement with the experimental values. The surface roughness Rz ranges from 3 μm to 1.22 μm. The research achievement through various parametric studies can be used as a guideline for the operation of a PECF system.
机译:工件的表面质量对其使用寿命和使用寿命有很大影响。脉冲电化学抛光(PECF)提供了一种有效的方法来改善工件的表面质量。在PECF中,表面不规则性是通过电化学溶解而不是通过切削力消除的。由于该过程的非接触性质,因此在工件表面上没有残留应力和热效应。为了成功地利用PECF,在目前的制造中,仍然需要进行更深入的研究,包括阳极平滑的机理。通过开发的数学模型分析了PECF的阳极平滑特性。研究了完成时间,电极间间隙,外加电压和电极转速等主要影响因素。发现基于开发的数学模型的预测值与实验值合理地一致。表面粗糙度Rz在3μm至1.22μm的范围内。通过各种参数研究获得的研究成果可以用作PECF系统运行的指南。

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