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Optimization for Turning Metal Matrix Composites with Multiple Performance Characteristics

机译:具有多种性能特征的车削金属基复合材料的优化

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In this paper,an optimization technique for turning metal matrix composites (MMCs) is proposed using the Taguchi method with multiple performance characteristics.The orthogonal array,multi-response signal to noise (S/N) ratio and analysis of variance (ANOVA) are employed to study the performance characteristics.The cutting parameters (cutting velocity and feed) and cutting time are optimized with consideration of multiple performance characteristics including tool wear,surface roughness and the power required to perform the machining operation.The results showed that cutting time was the dominant variable on multiple cutting performance characteristics.Confirmation tests of the optimal levels with the initial cutting parameters are carried out in order to illustrate the effectiveness of this method in turning metal matrix composite.
机译:本文提出了一种具有多性能特征的Taguchi方法优化车削金属基复合材料(MMCs)的技术。正交阵列,多响应信噪比(S / N)和方差分析(ANOVA)考虑到刀具磨损,表面粗糙度和执行加工操作所需的多种性能特征,对切削参数(切削速度和进给)和切削时间进行了优化,结果表明切削时间为为了说明该方法在车削金属基复合材料中的有效性,对初始切削参数的最佳水平进行了确认试验。

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