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Multi-objective optimisation of high-speed electrical discharge machining process using a Taguchi fuzzy-based approach

机译:基于Taguchi模糊方法的高速放电加工过程多目标优化

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The paper describes the application of the fuzzy logic analysis coupled with Taguchi methods to optimise the precision and accuracy of the high-speed electrical discharge machining (EDM) process. A fuzzy logic system is used to investigate relationships between the machining precision and accuracy for determining the efficiency of each parameter design of the Taguchi dynamic experiments. From the fuzzy inference process, the optimal process conditions for the high-speed EDM process can be easily determined as A_1B_1C_3D_1E_3F_3G_1H_3. In addition, the analysis of variance (ANOVA) is also employed to identify factor B (pulse time), C (duty cycle), and D (peak value of discharge current) as the most important parameters, which account for about 81.5 percent of the variance. The factors E (powder concentration) and H (powder size) are found to have relatively weaker impacts on the process design of the high-speed EDM. Furthermore, a confirmation experiment of the optimal process shows that the targeted multiple performance characteristics are significantly improved to achieve more desirable levels.
机译:本文介绍了模糊逻辑分析与Taguchi方法相结合的应用,以优化高速放电加工(EDM)工艺的精度和准确性。模糊逻辑系统用于研究加工精度与精度之间的关系,以确定田口动态实验的每个参数设计的效率。从模糊推理过程中,可以轻松地将高速EDM过程的最佳过程条件确定为A_1B_1C_3D_1E_3F_3G_1H_3。此外,还使用方差分析(ANOVA)来确定因子B(脉冲时间),C(占空比)和D(放电电流的峰值)是最重要的参数,约占参数的81.5%。差异。发现因素E(粉末浓度)和H(粉末尺寸)对高速EDM的工艺设计影响相对较小。此外,最佳过程的确认实验表明,针对性的多种性能特征得到了显着改善,以达到更理想的水平。

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