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Effects of electrode rotational speed on processing performances of AISI 304 in micro-electrical discharge machining

机译:电极旋转速度对微电路出电加工中AISI 304加工性能的影响

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Rotating electrodes can effectively improve the processing performance of micro-electrical discharge machining (micro-EDM), but there is still a lack of systematic research on the specific effects of electrode rotation and rotational speed changes. In this paper, the effects of electrode rotation and rotational speed on the discharge channel, debris stress, and debris motion in micro-EDM were analyzed theoretically. An AISI304 sheet was used as the workpiece and helical tungsten carbide alloy as the electrode. The through-hole drilling experiments of micro-EDM were carried out at low and high discharge energy and different electrode rotational speeds. In terms of processing efficiency, the effects of electrode rotation and rotational speed on material removal rate (MRR), relative tool wear ratio (RTWR), and short circuit number were analyzed. The results show that MRR increases first and then decreases, RTWR and short circuit number decrease first and then increase. In the aspect of processing precision, the impacts of electrode rotation and rotational speed on taper angle and overcut were analyzed. The results show that the electrode rotational speed has little effect on the change of the taper angle. In addition, when the electrode rotational speed is small, there is no obvious change in overcut. When the speed is too high, the overcut increases obviously and shows a trend of continuous increase. Finally, by comparing the experimental results, the optimal electrode rotational speeds of micro-EDM with two kinds of discharge energy were determined. The final experimental results also verify the correctness of the previous theoretical analysis.
机译:旋转电极可以有效地提高微电路放电加工(微EDM)的加工性能,但仍然缺乏对电极旋转和转速变化的特定影响的系统研究。本文在理论上分析了电极旋转和旋转速度对微EDM中的放电通道,碎片应力和碎屑运动的影响。 AISI304片材用作工件和螺旋碳化钨合金作为电极。微EDM的通孔钻井实验在低放电能量和不同的电极转速下进行。在处理效率方面,分析了电极旋转和转速对材料去除率(MRR),相对工具磨损比(RTWR)和短路数的影响。结果表明,MRR首先增加,然后降低,RTWR和短路数首先减小,然后增加。在处理精度的方面,分析了电极旋转和旋转速度对锥角和过度的影响。结果表明,电极转速对锥角的变化影响不大。另外,当电极转速很小时,过度没有明显的变化。当速度太高时,过度显然会增加并显示出持续增加的趋势。最后,通过比较实验结果,确定微EDM的最佳电极转速,具有两种放电能量。最终的实验结果还验证了先前的理论分析的正确性。

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