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Optimization of Cutting Parameters Based on Surface Roughness and Assistance of Workpiece Surface Temperature in Turning Process | Science Publications

机译:切削过程中基于表面粗糙度和工件表面温度辅助的切削参数优化科学出版物

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> Problem statement: In machining operation, the quality of surface finish is an important requirement for many turned workpieces. Thus, the choice of optimized cutting parameters is very important for controlling the required surface quality. Approach: The focus of present experimental study is to optimize the cutting parameters using two performance measures, workpiece surface temperature and surface roughness. Optimal cutting parameters for each performance measure were obtained employing Taguchi techniques. The orthogonal array, signal to noise ratio and analysis of variance were employed to study the performance characteristics in turning operation. Results: The experimental results showed that the workpiece surface temperature can be sensed and used effectively as an indicator to control the cutting performance and improves the optimization process. Conclusion: Thus, it is possible to increase machine utilization and decrease production cost in an automated manufacturing environment.
机译: > 问题陈述:在机加工操作中,表面光洁度的质量是许多车削工件的重要要求。因此,选择最佳的切削参数对于控制所需的表面质量非常重要。 方法:当前实验研究的重点是使用两种性能指标(工件表面温度和表面粗糙度)来优化切削参数。使用田口技术获得每种性能指标的最佳切削参数。利用正交阵列,信噪比和方差分析来研究转弯操作中的性能特征。 结果:实验结果表明,工件表面温度可以被感知并有效地用作控制切削性能和改善优化过程的指标。 结论:因此,可以在自动化制造环境中提高机器利用率并降低生产成本。

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