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Synchronous Finish Processes Using Grinding and Ultrasonic Electrochemical Finishing on Hole-Wall Surface

机译:在孔壁表面上使用研磨和超声电化学精加工进行同步精加工

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The current study using ultrasonic energy transmitted into the electrolyte to assist in discharging of electrolytic product and cuttings out of the machining gap in the synchronous finish processes of grinding and electrochemical finishing on hole-wall surface beyond traditional process of holes machining instead of conventional hand or machine polishing. The design finish-tool includes a grinding-tool and an electrode as a hole-wall surface finish improvement that goes beyond traditional rough boring. In the experiment, the finish-tool is completely inserted to the hole; the electrode is used with continuous or pulsed direct current. The electrode form and the machining process are obviously different from electrochemical grinding (ECG). The experimental results show that the large supply of current density is effectively to reach the amount of the material removal and is advantageous to the finish processes. The finish effect is better with a high rotational speed of the finish-tool because the dregs and cuttings discharge of electrochemical finishing and grinding becomes easier and is also advantageous to the finish. The average effect of the ultrasonics is more better than the pulsed current while the machining time needs not to be prolonged by the off-time. The synchronous processes of grinding and ultrasonic electrochemical finishing just require a short time to make the hole-wall surface smooth and bright.
机译:当前的研究是利用超声波能量传输到电解质中,以在传统的孔加工工艺(而不是传统的手工或手工加工)上对孔壁表面进行研磨和电化学精加工的同步精加工过程中,协助电解产物的排出和切出加工间隙。机抛光。设计精加工工具包括一个磨削工具和一个电极,作为孔壁表面光洁度的改进,这超出了传统的粗镗。在实验中,精加工工具已完全插入孔中。电极用于连续或脉冲直流电。电极的形状和加工过程与电化学研磨(ECG)明显不同。实验结果表明,大量的电流密度有效地达到了材料去除的量,并且对精加工工艺是有利的。精加工工具的转速高时,精加工效果更好,这是因为电化学精加工和磨削的残渣和碎屑排出变得更容易,并且也有利于精加工。超声波的平均效果比脉冲电流更好,而关闭时间无需延长加工时间。研磨和超声电化学精加工的同步过程只需要很短的时间即可使孔壁表面光滑明亮。

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