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Estimation and optimization of flank wear and tool lifespan in finish turning of AISI 304 stainless steel using desirability function approach

机译:使用期望函数法估算和优化AISI 304不锈钢精加工的后刀面磨损和刀具寿命

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The wear of cutting tools remains a major obstacle. The effects of wear are not only antagonistic at the lifespan and productivity, but also harmful with the surface quality. The present work deals with some machinability studies on flank wear, surface roughness, and lifespan in ?nish turning of AISI 304 stainless steel using multilayer Ti(C,N)/Al2O3/TiN coated carbide inserts. The machining experiments are conducted based on the response surface methodology (RSM). Combined effects of three cutting parameters, namely cutting speed, feed rate and cutting time on the two performance outputs (i.e. VB and Ra), and combined effects of two cutting parameters, namely cutting speed and feed rate on lifespan (T), are explored employing the analysis of variance (ANOVA). The relationship between the variables and the technological parameters is determined using a quadratic regression model and optimal cutting conditions for each performance level are established through desirability function approach (DFA) optimization. The results show that the flank wear is influenced principally by the cutting time and in the second level by the cutting speed. In addition, it is indicated that the cutting time is the dominant factor affecting workpiece surface roughness followed by feed rate, while lifespan is influenced by cutting speed. The optimum level of input parameters for composite desirability was found Vc1-f1-t1 for VB, Ra and Vc1-f1 for T, with a maximum percentage of error 6.38%.
机译:切削工具的磨损仍然是主要障碍。磨损的影响不仅不利于使用寿命和生产率,而且有害于表面质量。本工作涉及使用多层Ti(C,N)/ Al2O3 / TiN涂层硬质合金刀片对AISI 304不锈钢进行精加工时的后刀面磨损,表面粗糙度和寿命的可机加工性研究。加工实验基于响应面方法(RSM)进行。探讨了切削速度,进给速度和切削时间这三个切削参数对两个性能输出(即VB和Ra)的综合影响,以及切削速度和进给速度对寿命(T)的两个切削参数的综合影响。采用方差分析(ANOVA)。使用二次回归模型确定变量与工艺参数之间的关系,并通过合意函数法(DFA)优化为每个性能水平确定最佳切削条件。结果表明,后刀面磨损主要受切削时间的影响,而在第二级切削速度则受切削速度的影响。此外,表明切削时间是影响工件表面粗糙度的主要因素,其次是进给速度,而寿命则受切削速度的影响。对于VB,发现复合参数的最佳输入参数水平是Vc1-f1-t1,对于T是Ra,而对于Vc1-f1是Vc1-f1,最大误差百分比为6.38%。

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