工业控制电火花加工刀具磨损率的比较与优化

Prince Chawla, Supinderiit Singh Kang
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引用次数: 0

摘要

超级合金是一种先进的工程材料,在航空航天和国防工业中具有很大的潜力。Inconel 625,一种镍铬耐热合金,用于各种应用,如制造航空航天紧固件,燃气轮机工程和热处理设备。本研究采用电火花加工技术在铬镍铁合金625上加工孔,并考虑了脉冲电流、脉冲导通时间和冲洗压力三个控制因素。考虑这三个因素,每个因素有三个级别,并获得刀具磨损率(TWR)作为响应度量。实验结果基于田口方法的(L18 21*33)正交阵列。利用方差分析技术对TWR的信噪比进行了分析,结果表明脉冲电流、脉冲开启时间和冲洗压力对TWR的信噪比影响显著。实验结果表明,采用低温处理的电极可以降低TWR。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
To Compare and Optimization of Tool Wear Rate Using Electric Discharge Machining for Industrial Control
Super alloys are advanced engineering materials having high potential for aerospace and defence industries. Inconel 625, a nickel-chromium heat resistant alloy used in various applications such as in the manufacturing of aerospace fasteners, gas turbine engineering and heat treatment equipment. In this research, electric discharge machining is used for making holes on Inconel 625 and three control factors namely pulse current, pulse on time and flushing pressure are considered. These three factors having three levels each be taken into consideration and tool wear rate (TWR) is attained as a response measure. The experiment results are based on (L18 21*33) orthogonal array of Taguchi's methodology. The Anova technique is used for S/N ratio for TWR and showing that pulse current, pulse on time and flushing pressure are significant. The experiment results prove that the TWR is decreased by the use of cryogenically treated electrode.
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