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Performance Assessment of Design Electrode in Ultrasonic-Aided of Freeform Surface Finishing

机译:超声波辅助的自由曲面精加工中设计电极的性能评估

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摘要

The most effective geometry for design electrode and the advantage of low cost equipment in ultrasonic-aided electrochemical finishing for a freeform surface following turning machining was investigated. The proposed design process used an effective electrode instead of the mate electrode as in conventional ECM. Hence higher electrical current is not required when the effective design electrode is used to reduce the response area. Through simple equipment attachment, electrochemical finishing can follow the traditional cutting on the same machine. The controlled factors included the chemical composition and concentration of the electrolyte, the initial gap width, the flow rate of electrolyte, workpiece rotational speed, and die material. The design electrode is primarily discussed among the factors affecting the electrochemical finishing. The experimental parameters were current rating, electrode feed rate, frequency , power level of ultrasonics, and electrode geometry. The effective design electrode with small wedge angle and small edge rounding radius had an optimal value for higher current density and provided larger discharge space, which produce a smoother surface. The electrode of globe-shape with small radius performed best in the finishing process. The electrochemical finishing needed only a short time to make the workpiece smooth and bright and save the need for the precise process of traditional machining. The ultrasonic-aided electrochemical finishing is recommended for the finishing process of the freeform surface.
机译:研究了用于设计电极的最有效几何形状,以及在车削加工后的自由曲面超声辅助电化学精加工中使用低成本设备的优势。提议的设计过程使用有效电极代替了常规ECM中的配对电极。因此,当使用有效设计电极减小响应面积时,不需要较高的电流。通过简单的设备连接,电化学精加工可以遵循同一台机器上的传统切割方法。受控因素包括电解液的化学成分和浓度,初始间隙宽度,电解液的流速,工件转速和模具材料。主要在影响电化学修整的因素中讨论设计电极。实验参数是额定电流,电极进给速度,频率,超声波功率水平和电极几何形状。有效的设计电极具有较小的楔角和较小的倒圆角半径,具有较高的电流密度和较大的放电空间(可产生平滑表面)的最佳值。具有小半径的球形电极在精加工过程中表现最佳。电化学精加工只需要很短的时间就可以使工件光滑,光亮,并且省去了传统机加工的精确过程。对于自由曲面的精加工,建议使用超声辅助的电化学精加工。

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