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Performance and surface alloying characteristics of Cu-Cr and Cu-Mo powder metal tool electrodes in electrical discharge machining

机译:Cu-Cr和Cu-Mo粉末金属工具电极在放电加工中的性能和表面合金化特性

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摘要

The main objective of this study is to investigate the effect of Cu-Cr and Cu-Mo powder metal (PM) tool electrodes on electrical discharge machining (EDM) performance outputs. The EDM performance measures used in the study are material removal rate (MRR), tool electrode wear rate (EWR), average workpiece surface roughness (R-a), machined workpiece surface hardness, abrasive wear resistance, corrosion resistance, and workpiece alloyed layer depth and composition. The EDM performance of Cu-Cr and Cu-Mo PM electrodes produced at three different mixing ratios (15, 25, and 35wt% Cr or Mo), compacting pressures (P-c = 600, 700, and 800MPa), and sintering temperatures (T-s = 800, 850, and 900 degrees C) are compared with those machined with electrolytic Cu and Cu PM electrodes when machining SAE 1040 steel workpiece. Analyses revealed that tool materials were deposited as a layer over the work surface yielding high surface hardness, strong abrasion, and corrosion resistance. Moreover, the mixing ratio, P-c, and T-s affect the MRR, EWR, and R-a values.
机译:这项研究的主要目的是研究Cu-Cr和Cu-Mo粉末金属(PM)工具电极对放电加工(EDM)性能输出的影响。研究中使用的EDM性能指标是材料去除率(MRR),工具电极磨损率(EWR),平均工件表面粗糙度(Ra),加工后的工件表面硬度,耐磨性,耐腐蚀性以及工件合金层深度和组成。在三种不同的混合比例(15、25和35wt%的Cr或Mo),压实压力(Pc = 600、700和800MPa)和烧结温度(Ts)下产生的Cu-Cr和Cu-Mo PM电极的EDM性能在加工SAE 1040钢工件时,将其与用电解Cu和Cu PM电极加工的温度(= 800、850和900摄氏度)进行了比较。分析表明,工具材料在工作表面上沉积为一层,从而产生高表面硬度,强耐磨性和耐腐蚀性。此外,混合比P-c和T-s影响MRR,EWR和R-a值。

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