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首页> 外文期刊>Measurement >Application of Taguchi coupled Fuzzy Multi Attribute Decision Making (FMADM) for optimizing surface quality in turning austenitic and duplex stainless steels
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Application of Taguchi coupled Fuzzy Multi Attribute Decision Making (FMADM) for optimizing surface quality in turning austenitic and duplex stainless steels

机译:Taguchi耦合模糊多属性决策(FMADM)在优化奥氏体和双相不锈钢表面质量中的应用

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摘要

In the present study, Taguchi approach is coupled with fuzzy-multiple attribute decision making methods for achieving better surface quality in constant cutting speed face turning of EN 1.4404 austenitic, EN 1.4462 standard duplex and EN 1.4410 super duplex stainless steels. Two typical multiple attribute decision making techniques were simultaneously adopted to determine multi-surface quality characteristics indices. The differences in rankings among derived indices are solved through converting each crisp values into trapezoidal fuzzy number and unifying them using fuzzy simple additive weight method. The fuzzy numbers are then deffuzified into crisp values employing techniques like; the spread, mode and area between centroid of centroids. Through this procedure, the decision maker is provided with necessary decision tools to optimize the cutting conditions with less sensitivity to the change of weights and no difference in ranking among the deffuzification techniques. Additionally, results of analyses of means and the validation experiments confirm that the optimum cutting conditions derived by this method produce far better surface finish than the best finish obtained during the course of experimentation. Analyses of variance results have shown the predominant effect of feed rate on surface quality. Finally, the collected chip at constant cutting speed and varying feed rates and depth of cuts has shown that friendlier-to-machine chips are obtained when machining austenitic stainless steels than duplex stainless steel grades.
机译:在本研究中,Taguchi方法与模糊多属性决策方法相结合,以在恒定切削速度下对EN 1.4404奥氏体不锈钢,EN 1.4462标准双相不锈钢和EN 1.4410超级双相不锈钢的端面切削具有更好的表面质量。同时采用两种典型的多属性决策技术来确定多表面质量特征指标。通过将每个明快的值转换为梯形模糊数并使用模糊简单加法权重方法将它们统一来解决导出索引之间的排名差异。然后使用类似的技术将模糊数模糊化为清晰的值。质心之间的分布,众数和面积。通过此过程,决策者可以使用必要的决策工具来优化切割条件,从而对权重变化的敏感性较低,并且脱脂技术之间的排名没有差异。另外,均值分析和验证实验的结果证实,与在实验过程中获得的最佳光洁度相比,用这种方法得出的最佳切削条件产生的表面光洁度要好得多。方差结果分析显示进给速度对表面质量的主要影响。最后,以恒定的切削速度,变化的进给速度和切削深度所收集的切屑显示出,与双相不锈钢相比,在加工奥氏体不锈钢时可获得对机器更友好的切屑。

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