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Effect of Cutting Parameters on Cutting Force and Surface Roughness During Finish Hard Turning AISI52100 Grade Steel

机译:切削参数对精硬车削AISI52100级钢时切削力和表面粗糙度的影响

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摘要

The present work is an attempt to develop a force prediction model during finish machining of EN31 steel (equivalent to AISI 52100 steel) hardened to 60±2 HRC using hone edge uncoated CBN tool and to analyze the combination of the machining parameters for better performance within a selected range of machining parameters. A full factorial design of experiments procedure was used to develop the force and surface roughness regression models, within the range of parameters selected. The regression models developed show that the dependence of the cutting forces i.e. cutting, radial and axial forces and surface roughness on machining parameters are significant, hence they could be used for making predictions for the forces and surface roughness. The predictions from the developed models were compared with the measured force and surface roughness values. To test the quality of fit of data, the ANOVA analysis was undertaken. The favourable range of the machining parameter values is proposed for energy efficient machining.
机译:当前的工作是尝试开发使用磨边未涂层的CBN工具对EN31钢(相当于AISI 52100钢)进行淬硬至60±2 HRC的精加工时的力预测模型,并分析加工参数的组合以在内部获得更好的性能。选定的加工参数范围。在选择的参数范围内,使用实验程序的全因子设计来开发力和表面粗糙度回归模型。所建立的回归模型表明,切削力即切削力,径向力和轴向力以及表面粗糙度对加工参数的依赖性很大,因此它们可用于预测力和表面粗糙度。将已开发模型的预测与测得的力和表面粗糙度值进行比较。为了测试数据的拟合质量,进行了ANOVA分析。为节能加工提出了加工参数值的有利范围。

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