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首页> 外文期刊>Materials & design >Design optimization of cutting parameters when turning hardened AISI 4140 steel (63 HRC) with Al_2O_3 + TiCN mixed ceramic tool
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Design optimization of cutting parameters when turning hardened AISI 4140 steel (63 HRC) with Al_2O_3 + TiCN mixed ceramic tool

机译:使用Al_2O_3 + TiCN混合陶瓷刀具对淬硬的AISI 4140钢(63 HRC)进行车削时的切削参数设计优化

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摘要

Due to their high hardness and wear resistance, Al_2O_3-based ceramics are one of the most suitable cutting tool materials for machining hardened steels. However, their high degree of brittleness usually leads to inconsistent results and sudden catastrophic failures. This necessitates a process optimization when machining hardened steels with Al_2O_3 based ceramic cutting tools. The present paper outlines an experimental study to achieve this by employing Taguchi techniques. Combined effects of three cutting parameters, namely cutting speed, feed rate and depth of cut on two performance measures, flank wear (VB) and surface roughness (R_a), were investigated employing an orthogonal array and the analysis of variance (ANOVA). Optimal cutting parameters for each performance measure were obtained; also the relationship between the parameters and the performance measures were determined using multiple linear regression.
机译:由于其高硬度和耐磨性,Al_2O_3基陶瓷是用于加工淬硬钢的最合适的切削刀具材料之一。但是,它们的高度脆性通常会导致结果不一致和突然的灾难性故障。当使用基于Al_2O_3的陶瓷切削刀具加工淬硬钢时,这就需要优化工艺。本文概述了通过使用Taguchi技术来实现此目的的实验研究。利用正交阵列和方差分析(ANOVA),研究了切削速度,进给速度和切削深度这三个切削参数对两个性能指标,侧面磨损(VB)和表面粗糙度(R_a)的综合影响。获得了每种性能指标的最佳切割参数;使用多元线性回归确定参数与性能指标之间的关系。

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