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Surface Characterization and Tribological Performance Analysis of Electric Discharge Machined Duplex Stainless Steel

机译:电气放电加工双面不锈钢的表面特征与摩擦学性能分析

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摘要

The present article focused on the surface characterization of electric discharge machined duplex stainless steel (DSS-2205) alloy with three variants of electrode material (Graphite, Copper-Tungsten and Tungsten electrodes). Experimentation was executed as per Taguchi L18 orthogonal array to inspect the influence of electric discharge machining (EDM) parameters on the material removal rate and surface roughness. The results revealed that the discharge current (contribution: 45.10%), dielectric medium (contribution: 18.24%) majorly affects the material removal rate, whereas electrode material (contribution: 38.72%), pulse-on-time (contribution: 26.11%) were the significant parameters affecting the surface roughness. The machined surface at high spark energy in EDM oil portrayed porosity, oxides formation, and intermetallic compounds. Moreover, a pin-on-disc wear analysis was executed and the machined surface exhibits 70% superior wear resistance compared to the un-machined sample. The surface thus produced also exhibited improved surface wettability responses. The outcomes depict that EDMed DSS alloy can be considered in the different biomedical and industrial applications.
机译:本文集中于电气放电加工双相不锈钢(DSS-2205)合金的表面表征,具有三个电极材料(石墨,铜 - 钨和钨电极)。根据Taguchi L18正交阵列执行实验,以检查电气放电加工(EDM)参数对材料去除率和表面粗糙度的影响。结果表明,放电电流(贡献:45.10%),介电介质(贡献:18.24%)主要影响材料去除率,而电极材料(贡献:38.72%),脉冲时间(贡献:26.11%)是影响表面粗糙度的重要参数。在EDM油中的高火花能量下的加工表面描绘了孔隙率,氧化物形成和金属间化合物。此外,与未加工的样品相比,执行了销盘磨损分析,加工表面表现出70%的耐磨性。由此产生的表面也表现出改善的表面润湿性反应。结果描绘了在不同的生物医学和工业应用中可以考虑EdMed DSS合金。

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