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Modeling and Optimization of Cutting Parameters in Dry Turning of Inconel 718 using Coated Carbide Inserts

机译:使用涂层碳化物插入物的干式转向干式匝数的模拟与优化

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This work presents a statistical approach for optimization of dry turning parameters of Inconel 718. Based on Taguchi's L9 orthogonal array, turning experiments were carried out at various levels of cutting parameters to evaluate the performance measures such as cutting force, surface roughness and tool wear. The turning operations were carried out in a medium duty lathe machine with PVD coated carbide cutting insert. The optimal cutting conditions were determined using the Taguchi's Signal to Noise (S/N) ratio which was calculated for R_a, R_t, R_z and F_z according to the "smaller-the-better" criteria. Tool wear was analyzed using scanning electron micrograph. The statistical analysis of results using ANOVA reveals that feed rate and depth of cut has maximum weightage for affecting the responses. The mathematical model for the individual responses has been developed using regression analysis as a function of the cutting parameters as independent variables. The developed regression model shows a high determination coefficient i.e., R~2 = 0.912 for R_a, R_t, 0.943 for R2and 0.882 for F_zwhich proves the model accuracy. The predicted value from the developed model and experimental values are found to be very close to each other justifying the significance of the model. Confirmation experiments were conducted on the optimum cutting conditions to illustrate the effectiveness of Taguchi's optimization technique.
机译:这项工作提出了一种统计方法,用于优化Inconel 718的干转向参数。基于Taguchi的L9正交阵列,在各种切割参数下进行转动实验,以评估切割力,表面粗糙度和工具磨损等性能测量。转动操作在具有PVD涂层碳化物切削刀片的中等占用车床机器中进行。使用Taguchi的信号与噪声(S / N)比率确定最佳切割条件,该噪声(S / N)比率根据“较小 - 更好”的标准计算R_A,R_T,R_Z和F_Z。使用扫描电子显微照片分析工具磨损。使用ANOVA的结果的统计分析显示,进料速率和切割深度具有影响响应的最大重量。通过作为切割参数作为独立变量的函数,使用回归分析开发了各个响应的数学模型。发布的回归模型显示了高判定系数I.E.,对于F_Z的R_A,R_T,0.943的R〜2 = 0.912,用于F_ZWHICH的R2和0.882,以其证明了模型精度。发现来自开发模型和实验值的预测值是非常接近彼此的毅力,证明模型的重要性。在最佳的切削条件下进行确认实验,以说明Taguchi的优化技术的有效性。

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