首页> 外文期刊>Journal of Metallurgical and Materials Engineering Research >EXPERIMENTAL INVESTIGATION ON METALLURGICAL CHARACTERISTICS AND SURFACE ROUGHNESS OF INCONEL 825 USING MICRO ELECTRICAL DISCHARGE MACHINING WITH CRYOGENICALLY TREATED BRASS ELECTRODE
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EXPERIMENTAL INVESTIGATION ON METALLURGICAL CHARACTERISTICS AND SURFACE ROUGHNESS OF INCONEL 825 USING MICRO ELECTRICAL DISCHARGE MACHINING WITH CRYOGENICALLY TREATED BRASS ELECTRODE

机译:使用微电放电加工与低温处理黄铜电极的冶金特性和表面粗糙度的实验研究

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摘要

Efficiency and surface superiority would extensively affect the performance of micro electrical discharge machining process (μEDM). Thus the machining performance would be better by improving the material removal rate and surface quality. In this investigation, cryogenic LN2 cooling was introduced to the conventional μEDM setup for developing a modern process of cryogenically cooled μEDM process (CμEDM). The positive outcomes of this method were projected by selecting discharge current (Ip) and pulse on duration (Ton) for concluding the effects of the machining performance includes material removal rate (MRR) and surface integrity. Surface quality was also analyzed by micro structural analysis and a scanning electron microscope (SEM) for evaluation of the effects cryogenically cooled μEDM process. The experimental result shows 60 to 80% of improvement in material removal rate and 30 to 48% in average roughness values. Hence it is suggested that cryogenically cooled μEDM facilitates improvement in productivity and surface quality.
机译:效率和表面优势将广泛影响微细电火花加工工艺(μEDM)的性能。因此,通过提高材料去除率和表面质量,可以提高加工性能。在本研究中,将低温液氮冷却引入到传统的μ电火花加工装置中,以开发低温冷却μ电火花加工(Cμ电火花加工)的现代工艺。通过选择放电电流(Ip)和脉冲持续时间(吨)来预测该方法的积极结果,从而得出加工性能的影响,包括材料去除率(MRR)和表面完整性。通过微观结构分析和扫描电子显微镜(SEM)对表面质量进行了分析,以评估低温冷却μEDM工艺的效果。实验结果表明,材料去除率提高了60%至80%,平均粗糙度值提高了30%至48%。因此,低温冷却μ电火花加工有助于提高生产率和表面质量。

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