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Determining the Effect of Cutting Fluids on Surface Roughness in Turning AISI 1330 Alloy Steel Using Taguchi Method

机译:用田口法测定切削液对车削AISI 1330合金钢表面粗糙度的影响

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Taguchi method has been employed to investigate the effects of cutting fluids on surface roughness in turning AISI 1330 alloy steel, using manually operated lathe machine. Experiments have been conducted using L27 (34) orthogonal array and each experiment was repeated three times and each test used a new cutting tool, High Speed Steel (HSS), to ensure accurate readings of the surface roughness. The statistical methods of Signal-to-Noise (S/N) ratio and the Analysis of Variance (ANOVA) were applied to investigate effects of cutting speed, feed rate and depth of cut on surface roughness under different cutting fluids. Minitab 14 software was used to analyze the effect of variables on the surface roughness. Results obtained indicated that optimal variables for the minimum surface roughness were cutting speed of 35 m/min (level 2), feed of 0.124 mm/rev (level 1), depth of cut of 0.3 mm (level 1) and a cutting fluid with a viscosity of 2.898 mm2/s (level 3). Hence, the optimal parameters to obtain better surface roughness of the workpiece material were obtained when groundnut oil based cutting fluid was used. Analysis of variance shows that feed rate has the most significant effect on surface roughness.
机译:Taguchi方法已被用来研究切削液对AISI 1330合金钢车削表面粗糙度的影响,方法是使用手动车床。使用L27(34)正交阵列进行了实验,每个实验重复了3次,并且每个测试都使用了新的切削工具High Speed Steel(HSS),以确保表面粗糙度的准确读数。应用信噪比(S / N)和方差分析(ANOVA)的统计方法研究切削速度,进给速度和切削深度对不同切削液下表面粗糙度的影响。 Minitab 14软件用于分析变量对表面粗糙度的影响。获得的结果表明,最小表面粗糙度的最佳变量是切削速度为35 m / min(等级2),进给量为0.124 mm / rev(等级1),切削深度为0.3 mm(等级1)和切削液粘度为2.898平方毫米/秒(级别3)。因此,当使用花生油基切削液时,可获得获得最佳工件表面粗糙度的最佳参数。方差分析表明,进给速度对表面粗糙度影响最大。

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