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Empirical Investigations during WEDM of Ni-27Cu-3.15Al-2Fe-1.5Mn Based Superalloy for High Temperature Corrosion Resistance Applications

机译:基于Ni-27Cu-3.15A-3.15A-1.5MN高温合金的WEDM期间的经验研究用于高温耐腐蚀应用

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摘要

Monel K-500, a nickel–copper based alloy, is a very hard and tough material. Machining of such hard and tough materials always becomes a challenge for industry and this has been resolved by wire electric discharge machining (WEDM), a popular non-conventional machining method used for machining tough and hard materials having complex shapes. For the first time reported in this present research work is an experimental investigation executed on Ni-27Cu-3.15Al-2Fe-1.5Mn based superalloy using WEDM to model cutting rate (CR) and surface roughness (SR) using response surface methodology (RSM). The process parameters have been selected as pulse-on time, pulse-off time, spark-gap voltage and wire-feed rate. Experiments have been planned according to the central composite design (CCD). The results show that pulse-on time has a direct effect on CR while the pulse-off time has a reverse effect. The CR increases as pulse-on time increases, and decreases as pulse-off time increases. SR increases as pulse-on time increases, and decreases as pulse-off time increases. Furthermore, increase in spark-gap voltage decreases CR and SR both. The wire feed-rate has a negligible effect for both the response parameters. The optimized values of CR and SR achieved through multi-response optimization are 2.48 mm/min and 2.12 µm, respectively.
机译:Monel K-500,镍铜基合金,是一种非常坚硬且坚韧的材料。加工这种艰难和坚韧的材料总是成为工业挑战,这已经通过电火花电气放电加工(WEDM)解决了一种流行的非传统加工方法,用于加工具有复杂形状的坚韧和硬质材料。由于在本发明的第一次报告中,研究工作是使用WEDM以模型切割速率(CR)和表面粗糙度(SR)在基于Ni-27cu-3.15A-3F-1.5mn的超合金上执行的实验研究。使用响应表面方法(RSM )。已经选择了处理参数作为脉冲接通时间,脉冲关闭时间,火花间隙电压和导线进给速率。根据中央复合设计(CCD)计划了实验。结果表明,脉冲接通时间对CR直接影响,而脉冲关闭时间具有相反的效果。 CR随着脉冲的时间增加而增加,随着脉冲关闭时间的增加而降低。 Sr随着脉冲的时间增加而增加,随着脉冲关闭时间的增加而降低。此外,火花间隙电压的增加降低了Cr和Sr。电线馈送速率对响应参数具有可忽略的效果。通过多响应优化实现的Cr和Sr的优化值分别为2.48毫米/分钟和2.12μm。

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