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Optimization in CNC end milling of UNS C34000 medimum leaded brass with multiple surface roughnesses characteristics

机译:具有多种表面粗糙度特征的UNS C34000中等铅黄铜的CNC端铣削的优化

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摘要

The present study highlights a multi-objective optimization problem by applying utility concept coupled with Taguchi method through a case study in CNC end milling of UNS C34000 medium leaded brass. The study aimed at evaluating the best process environment which could simultaneously satisfy multiple requirements of surface quality. In view of the fact, the traditional Taguchi method cannot solve a multi-objective optimization problem; to overcome this limitation, utility theory has been coupled with Taguchi method. Depending on Taguchi’s Lower-the-Better (LB) response criteria; individual surface quality characteristics has been transformed into corresponding utility values. Individual utility values have been aggregated finally to compute overall utility degree which serves as representative objective function for optimizing using Taguchi method. Utility theory has been adopted to convert a multi-response optimization problem into a single response optimization problem; in which overall utility degree serves as the representative single objective function for optimization. The study of combined utility theory and Taguchi method for predicting optimal setting. Based on Taguchi’s Signal-to-Noise ratio (S/N), analysis has been made on the overall utility degree and optimal process environment has been selected finally which corresponds to highest S/N Ratio. Optimal result has been verified through confirmatory test. The case study indicates application feasibility of the aforesaid methodology proposed for multiresponse optimization and off-line control of multiple surface quality characteristics in CNC end milling.
机译:本研究通过在UNS C34000中铅黄铜的CNC立铣削中的案例研究,通过将效用概念与田口方法相结合,突出了多目标优化问题。该研究旨在评估可以同时满足多种表面质量要求的最佳工艺环境。有鉴于此,传统的田口方法无法解决多目标优化问题。为了克服这一局限性,效用理论已经与田口方法相结合。取决于田口的最低(LB)响应标准;各个表面质量特性已转换为相应的实用价值。最终汇总了各个效用值,以计算总体效用度,作为使用Taguchi方法进行优化的代表目标函数。已经采用效用理论将多响应优化问题转换为单响应优化问题。其中,总效用是代表优化的单个目标函数。效用理论和田口方法相结合的预测最佳设置的研究。根据田口的信噪比(S / N),分析了整个设备的实用程度,并最终选择了与最高信噪比相对应的最佳工艺环境。最佳结果已通过验证性测试验证。案例研究表明,上述方法在数控立铣刀中的多响应优化和多表面质量特征的离线控制中的应用可行性。

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