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Effect of Process Parameters on the Surface Quality of Machined Aluminum and Steel Products

机译:工艺参数对机加工铝和钢制品表面质量的影响

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In a turning process, surface roughness depends on machining process parameters. The aim in this work is to improve the quality of the machined surface of the by controlling the main input parameters of the turning process for aluminum and steel materials. The effect of the machining parameters on surface roughness was studied using the orthogonal L9 Taguchi method. Four process parameters chosen were the length of the specimen (L), diameter of die specimen (D), feed rate (F), and depth of cut (T). The optimization method was performed using the signal to calculate noise ratio (S / N) for the changing response of all experiments. The results were analyzed using the analysis of variance (ANOVA). The main conclusion of this work is that F and T are the most important factors and can influence the machined surface quality in terms of surface roughness, whereas the other factors are insignificant. The minimum surface roughness for aluminum is 1.03 urn and 5.02 um for steel specimens, which were obtained using a more suitable set of parameters with values of T 0.5 mm, F 0.5 RPM., L1000 mm, and D 40 mm.
机译:在转弯过程中,表面粗糙度取决于加工过程参数。这项工作的目的是通过控制铝和钢材的转动过程的主输入参数来提高机加工表面的质量。使用正交L9 Taguchi方法研究了加工参数对表面粗糙度的影响。选择的四个工艺参数是样品(L)的长度,模具样本(D),进料速率(F)和切割景深(T)。使用该信号进行优化方法来计算用于改变所有实验的响应的噪声比(S / N)。使用方差分析(ANOVA)分析结果。这项工作的主要结论是F和T是最重要的因素,并且可以在表面粗糙度方面影响加工的表面质量,而其他因素是微不足道的。铝的最小表面粗糙度为1.03瓮和5.02 um,用于使用更合适的参数一组具有T.5mm,F 0.5 RPM的值,L1000 mm和D 40 mm。

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