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Taguchi optimization of machining parameters in drilling of AISI D2 steel using cryo-treated carbide drills

机译:Taguchi优化使用冷冻处理硬质合金钻头在AISI D2钢中钻孔的加工参数

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This study focused on using the Taguchi technique to optimize the process parameters in drilling of AISI D2 steel with carbide drills to minimize the surface roughness (Ra) and thrust forces (Ff). The drilling experiments were conducted on a CNC vertical machining centre according to the L18 experimental design. Uncoated drills were classified into three groups: untreated (U), cryo-treated (CT) and cryo-treated and tempered (CTT). The experimental results showed that the CTT drills exhibited the best performance in terms of Ra and Ff due to the improved wear resistance of carbide drills after the cryogenic treatment and tempering. As a result of analysis of variance (ANOVA), it was found that the most influential parameter on both Ra and Ff was the feed rate, with percentage contributions of 66.97% and 80.07%, respectively. The results showed that the Taguchitechnique is a powerful method to optimize the process parameters in drilling of tool steel.
机译:这项研究的重点是使用Taguchi技术优化硬质合金钻头AISI D2钢的钻孔工艺参数,以最大程度地降低表面粗糙度(Ra)和推力(Ff)。根据L18实验设计,在CNC立式加工中心上进行了钻孔实验。未经涂层的钻头分为三类:未经处理的(U),经过低温处理的(CT)和经过低温处理的回火(CTT)。实验结果表明,CTT钻头在Ra和Ff方面表现出最佳性能,这是因为经过深冷处理和回火后,硬质合金钻头的耐磨性得到了改善。作为方差分析(ANOVA)的结果,发现Ra和Ff上最有影响力的参数是进料速度,分别贡献了66.97%和80.07%的百分比。结果表明,Taguchi技术是一种优化工具钢钻孔工艺参数的有效方法。

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