西安理工大学机械与精密仪器工程学院,陕西,西安,710048
纸质出版:2012
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刘蜀阳, 黄玉美. 负极性电火花加工时的电极损耗机理及积碳层的减损作用研究[J]. 电子学报, 2012,40(4):654-660.
LIU Shu-yang, HUANG Yu-mei. The Study on the Wear Mechanism of Electrode Materials in Negative EDM Process and the Effect of Carbon Deposition Layer[J]. Acta Electronica Sinica, 2012, 40(4): 654-660.
刘蜀阳, 黄玉美. 负极性电火花加工时的电极损耗机理及积碳层的减损作用研究[J]. 电子学报, 2012,40(4):654-660. DOI: 10.3969/j.issn.0372-2112.2012.04.006.
LIU Shu-yang, HUANG Yu-mei. The Study on the Wear Mechanism of Electrode Materials in Negative EDM Process and the Effect of Carbon Deposition Layer[J]. Acta Electronica Sinica, 2012, 40(4): 654-660. DOI: 10.3969/j.issn.0372-2112.2012.04.006.
本文基于场致发射理论
对负极性电火花加工时电极材料的损耗情况及极间做功能量进行了研究
设计并分别进行了不同工艺参数下紫铜电极和A3#钢电极单孔负极性电火花加工对比实验.实验研究结果表明:相同工艺参数下
紫铜电极比A3#钢电极加工时的极间放电能量大
加工效率高且电极材料的损耗率低:表面积碳层对紫铜电极材料有着良好的减损作用
而对A3#钢电极则作用甚微;且对紫铜电极而言
在保证有效消电离的情况下
极间有效放电时间比越高
加工效率越高
电极的损耗率越低
而相应的积碳层对电极材料的减损率则减小.
Based on the field-emission theory
the wear of electrode materials and the work energy were studied
and the single-hole EDMing contrast experiments with different process parameters were designed and carried out.The analysis on experimental results show that
copper electrode has the higher discharging energy
higher machining efficiency but lower material wear comparing with A3# steel ones;the carbon deposition layer on the end surface plays a better role in reducing the wear of copper electrode while has little effect on A3# ones;and to copper electrode
the bigger ratios of valid discharging time will be helpful to improve the machining efficiency
lower the wear of electrode
but the wear-reducing function of carbon deposition layer will recede either.
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