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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Multi-response optimization of machining parameters on red mud-based aluminum metal matrix composites in turning process
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Multi-response optimization of machining parameters on red mud-based aluminum metal matrix composites in turning process

机译:车削过程中赤泥基铝金属基复合材料加工参数的多响应优化

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This paper presents the findings of an experimental investigation into the effects of cutting speed, feed rate, depth of cut, and nose radius in computer numerical control (CNC) turning operation performed on red mud-based aluminum metal matrix composites. This paper investigates optimization design of a turning process performed on red mud-based aluminum metal matrix composites. The major performance characteristics selected to evaluate the process are surface roughness, power consumption, and vibration, and the corresponding turning parameters are cutting speed, feed, depth of cut, and nose radius. Taguchi-based grey analysis, which uses grey relational grade as performance index, is specifically adopted to determine the optimal combination of turning parameters. The principal component analysis (PCA) is applied to evaluate the weighting values corresponding to various performance characteristics. L9 orthogonal array design has been used for conducting the experiments. The outcome of confirmation experiments reveals that grey relational analysis coupled with PCA can effectively be used to obtain the optimal combination of turning parameters. Hence, this confirms that the proposed approach in this study can be a useful tool to improve the turning performance of red mud-based aluminum metal matrix composites in CNC turning process.
机译:本文介绍了对红泥基铝金属基复合材料进行的计算机数控(CNC)车削操作中切削速度,进给速度,切削深度和刀尖半径的影响的实验研究结果。本文研究了赤泥基铝金属基复合材料车削工艺的优化设计。选择用来评估该工艺的主要性能特征是表面粗糙度,功耗和振动,相应的车削参数是切削速度,进给,切削深度和刀尖半径。特别是采用基于Taguchi的灰色分析方法,以灰色关联度作为性能指标,以确定转弯参数的最佳组合。主成分分析(PCA)用于评估与各种性能特征相对应的权重值。 L9正交阵列设计已用于进行实验。确认实验的结果表明,灰色关联分析与PCA结合可以有效地获得转向参数的最佳组合。因此,这证实了本研究中提出的方法可以成为改善CNC车削过程中赤泥基铝金属基复合材料车削性能的有用工具。

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