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Effects of Different Electrode Materials on High-speed Electrical Discharge Machining of W9Mo3Cr4V

机译:不同电极材料对W9Mo3Cr4V高速放电加工的影响

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In order to break through the limit in material removal rate (MRR) of electrical discharge machining (EDM), electric arc machining (EAM), as a new and high-speed processing method, is used to machine difficult-to-machine materials. This method has an exciting high MRR with tens times increase in EDM and a low relative electrode wear ratio (REWR) when machining W9Mo3Cr4V. The electrode material is an important factor that affects the processing cost and quality of EAM. In this paper, traditionally conductive metal materials were used as electrode materials to process W9Mo3Cr4V in EAM, including brass (H62), copper (T2), stainless steel 304, aluminum alloy 6061 and graphite (C). Experimental results show that tubular graphite (C) is the best electrode material for EAM. Additionally, when tubular graphite with 16mm external diameter and 12mm internal diameter is used as tool electrode, the effects of processing parameters (peak current, electrode polarity, electrode speed and flushing pressure) are also investigated in present study. MRR, REWR, white layer thickness (WLT) and surface roughness (Rz) are selected as output responses.
机译:为了突破放电加工(EDM)的材料去除率(MRR)的限制,电弧加工(EAM)作为一种新型的高速加工方法,被用于加工难加工的材料。当加工W9Mo3Cr4V时,此方法具有令人兴奋的高MRR,EDM会增加十倍,并且相对电极磨损率(REWR)低。电极材料是影响EAM加工成本和质量的重要因素。在本文中,传统的导电金属材料被用作电极材料来处理EAM中的W9Mo3Cr4V,包括黄铜(H62),铜(T2),不锈钢304,铝合金6061和石墨(C)。实验结果表明,管状石墨(C)是EAM的最佳电极材料。此外,当使用外径为16mm且内径为12mm的管状石墨作为工具电极时,还研究了加工参数(峰值电流,电极极性,电极速度和冲洗压力)的影响。选择MRR,REWR,白层厚度(WLT)和表面粗糙度(Rz)作为输出响应。

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