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Optimization Of Axial Rake Angle for Face Milling Using Taguchi Method and Finite Element Analysis

机译:使用TAGUCHI方法优化面部研磨轴向角角度和有限元分析

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This study employed the Taguchi approach in combination with finite element analysis (DEFORM3D) to investigate face milling process onto AL6061. The factors studied in this investigation were cutting speed, feed rate, and axial rake angle. The simulation of flank wear was generated according to Usui's wear model though the L_9(3~4) of the orthogonal array experiment. ANOVA analysis and F test were conducted to find the significant factor that contributes to tool wear in the signal to noise ratio. Finally, the confirmation test has been carried out at optimal parameter.
机译:本研究采用Taguchi方法与有限元分析(Deform3D)组合,以将面部研磨过程研究到AL6061上。本研究中研究的因素是切割速度,进料速率和轴向耙角。根据USUI的磨损模型,虽然正交阵列实验的L_9(3〜4),因此根据USUI的磨损模型进行了模拟。进行ANOVA分析和F测试以找到有助于刀具磨损到噪声比的重要因素。最后,已经在最佳参数下进行了确认测试。

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