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Modelling and Prediction of Effect of Machining Parameters on Surface Roughness in Turning Operations

机译:机加工参数对转动作业表面粗糙度影响的建模与预测

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In this study, effects of different machining parameters on surface roughness in turning of St-37 material are presented. The machining experiments were carried out on the CNC lathe. In order to minimize the number of experiments, the experimental design was set up using Taguchi's L27 orthogonal array. Cutting speed (150 m/min, 200 m/min, and 250 m/min), feed rate (0,1 mm /rev, 0,2 mm/rev, and 0,3 mm/rev), depth of cut (0,5 mm, 1 mm, and 1,5 mm), and tool nose radius (0,4 mm, 0,8 mm and 1,2 mm) were used as control factors. The analysis of variance (ANOVA) was performed in order to determine the impact of the control factors on surface roughness. Signal/noise (S/N) ratios were determined in the Taguchi design. The results of the regression models and Taguchi Analysis revealed that the most effective parameters on surface roughness (Ra and Rz) were the feed rate (f) and tool nose radius (R).
机译:在该研究中,提出了不同加工参数对ST-37材料转动方面粗糙度的影响。加工实验在CNC车床上进行。为了最小化实验的数量,使用Taguchi的L27正交阵列建立了实验设计。切割速度(150米/分钟,200米/分钟和250米/分钟),进料速率(0,1 mm / Rev,0.2 mm / Rev和0.3 mm / Rev),切割深度( 0.5毫米,1毫米和1.5毫米),刀尖半径(0.4mm,0.8 mm和1,2 mm)用作对照因子。进行方差分析(ANOVA)以确定对照因子对表面粗糙度的影响。在Taguchi设计中确定了信号/噪声(S / N)比率。回归模型和Taguchi分析的结果表明,表面粗糙度(RA和RZ)上最有效的参数是进料速率(F)和刀尖半径(R)。

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