7024铝合金口袋铣削加工MRR和表面粗糙度参数的优化

M. Abdulrazaq, Adil Shabeeb Jaber, A. S. Hammood, Ahmed Ghazi Abdulameer
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引用次数: 0

摘要

本工作的目的是研究铣削过程中导致7024铝合金表面粗糙度和材料去除率最佳值的工艺变量。在C-TEK数控铣床上进行加工操作。采用田口的参数设计方法,完成了所选参数对所选特性的影响;还使用方差分析来评估每个参数对过程输出的贡献。不同进给量的使用范围为(60,80和100)mm/min,研究发现,高进给量可获得高材料去除率和良好的表面粗糙度。另一方面,使用三个水平的主轴转速发现,较高的主轴转速可以获得更好的表面粗糙度,而对MRR的影响很小。加工结果表明,当进给量为100 mm/min、主轴转速为1000 r.p.m.、切削深度为0.6 mm时,工件的MRR最大,达到2.40 mm3/min;当进给量为100 mm/min、主轴转速为1000 r.p.m.、切削深度为0.2 mm时,工件表面粗糙度较好,达到0.41µm。通过Taguchi设计实验和方差分析(ANOVA)确定了加工参数对材料去除率和表面粗糙度的重要程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Machining Parameters for MRR and Surface Roughness for 7024 AL-alloy in Pocket Milling Process
The objective of this work is the investigation of milling process variables which resulting in optimal values of the surface roughness and material removal rate during machining of 7024 Al-alloy. The machining operation implemented on C-TEK CNC milling machine. The effects of the selected parameters on the chosen characteristics have been accomplished using Taguchi’s parameter design approach; also ANOVA had been used to evaluate the contribution of each parameter on the process outputs. Different feed rates are used ranging from (60, 80 and 100) mm/min, found that high feed rates gives a high material removal rates and good surface roughness. On the other hand, using three levels of spindle speeds found that a higher spindle speeds gives better surface roughness with a little effect on MRR. The process results showed that maximum MRR achieved (2.40) mm3/min when machining feed rate (100) mm/min, spindle speed (1000) r.p.m, and depth of cut (0.6) mm while good surface roughness (0.41 µm) when machining feed rate (100) mm/min, spindle speed (1000) r.p.m, and depth of cut (0.2) mm. The level of importance of the machining parameters for material removal rate and surface roughness and is determined by using Taguchi designing experiments and the variance analysis (ANOVA).
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