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Study on Numerical Controlled Electrochemical Turning

机译:数控电化学车削的研究

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A preliminary study of Numerical Controlled Electrochemical Turning (NC-ECT) technology was presented in this paper. NC-ECT is suitable for machining revolving workpieces which are made of difficult-to-cut materials or have low rigidity, and it is difficult or expensive for machining these workpieces by use of traditional turning or traditional Electrochemical Machining (ECM) method. To carry out the study, an experimental setup was developed on the basis of a common lathe, and a kind of inner-spraying cathode with rectangle section outlet was designed according to the process of machining cylindrical surface. First, the NC-ECT method was simply described. Then, considering the structure of the cathode and the process of machining, the method for calculating the inter-electrode gap in machining the cylindrical surface was given. Finally, the experiments of machining the cylindrical surface were carried out. Experiments showed that the calculated inter-electrode gaps are well consistent with the actual value of the machining process, which decreases with the increase of the rotational speed of workpiece and increases almost linearly with the increase of the working voltage. Experiments also showed that the inter-electrode gap keeps a certain relationship with the working current, the inter-electrode gap can be controlled according to working current in the machining process.
机译:本文对数控电化学车削(NC-ECT)技术进行了初步研究。 NC-ECT适用于加工由难切削材料制成或具有低刚度的旋转工件,并且通过使用传统的车削或传统的电化学加工(ECM)方法来加工这些工件既困难又昂贵。为了进行这项研究,在普通车床的基础上开发了一个实验装置,并根据加工圆柱面的过程设计了一种带有矩形截面出口的内喷阴极。首先,简单描述了NC-ECT方法。然后,考虑到阴极的结构和加工过程,给出了在加工圆柱表面时电极间间隙的计算方法。最后,进行了圆柱表面加工的实验。实验表明,计算出的电极间间隙与加工过程的实际值非常吻合,随着工件转速的增加而减小,而随着工作电压的增加而线性增加。实验还表明,电极间间隙与工作电流有一定关系,在加工过程中可以根据工作电流控制电极间间隙。

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