电火花加工参数对WC/6%Co复合材料影响的统计研究——第二部分:通过期望函数(DF)进行参数分析与优化

S. Assarzadeh, M. Ghoreishi
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引用次数: 6

摘要

在第一部分之后,在第二部分中,对每个先前开发的响应(MRR, TWR和Ra)进行了完整的参数分析,包括主效应以及显著的双向交互因素的联合效应。主要揭示了所有的响应都受放电能量的速率和程度的影响,但存在争议。通过提高放电密度或提高火花频率来增加MRR。低twr基本上可以通过低电流水平与延长脉冲导通时间或更长的脉冲导通时间与更小的占空比的组合来建立。通过混合低电流强度和较短的脉冲导通时间或低电流水平和较高的间隙电压,可以实现更少的粗糙表面。此外,为了确定最优设置的精确数值,将基于期望函数概念的多目标优化技术应用于响应方程,以折衷的方式同时找到能够在所研究的过程域中产生最高MRR和最低TWR和Ra的输入参数的最优点。然后对得到的预测最优结果进行解释和实验验证,计算确认误差。相对验证误差的值,都被发现是相当令人满意的(在最坏的情况下约为11%);验证了该方法在WC-6%Co复合材料高度互联电火花加工参数优化中的有效性和可靠性。
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Statistical Investigation into the Effects of Electro-Discharge Machining Parameters on WC/6%Co Composite-Part 2: Parametric Analysis and Optimization through Desirability Function (DF)
A B S T R A C T Following the first part, in the second part, a complete parametric analysis including main effects along with the joint effects of significant two-way interactive factors are performed over each previously developed response (MRR, TWR, and Ra). It has mainly been revealed that all the responses are affected by the rate and extent of discharge energy but in a controversial manner. The MRR increases by either enhancing electrical discharge density or rising sparking frequency. Low TWRs can essentially be established by a combination of low current levels with prolonged pulse on-times or longer pulse on- times with smaller duty cycles. Less rough surfaces are achievable via a blend of either low current intensity with shorter pulse on-time or low current level with higher gap voltage. Moreover, to locate the exact numerical values of optimal settings, a multi-objective optimization technique based on the concept of desirability function was then applied to the response equations to simultaneously find optimum points of input parameters capable of producing the highest possible amount of MRR and lowest amounts of TWR and Ra within the investigated process domain in a compromise manner. The obtained predicted optimal results were then interpreted and verified experimentally to compute confirmation errors. The values of relative validation errors, all being found to be quite satisfactory (about 11% at the worst case); proves the effectiveness and reliability of suggested approach in optimizing the highly interconnected EDM parameters on WC-6%Co composite.
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