基于田口灰色关联分析的(4032)铝合金铣削加工参数优化

Sami Abbas Hammood
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引用次数: 1

摘要

研究了4032铝合金立铣削工艺参数、刀具材料和几何形状对多响应输出的影响。这可以通过提出一种将田口法与灰色关联分析相结合的方法来实现。选择了三个切削参数(主轴转速、进给速度和切削深度),每个参数有三个级别。采用三种不同材料和几何形状的工具设计了基于矩阵L9的实验测试和运行。采用灰色关联分析方法对具有多种输出特性的立铣削过程进行了求解。方差分析结果表明,主轴转速和刀具是影响多目标响应的主要参数,贡献率分别为52.75%和24%。此外,通过验证试验验证了立铣削工艺参数的最佳组合,以确定多响应输出的改善程度。确认试验获得最小(表面粗糙度和显微硬度)和最大金属去除率,灰色关联度为0.784,改善率为2.3%。
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 Cutting Parameters for Milling Process of (4032) Al-Alloy using Taguchi-Based Grey Relational Analysis
The objective of this work is to study the influence of end milling cutting process parameters, tool material and geometry on multi-response outputs for 4032 Al-alloy. This can be done by proposing an approach that combines Taguchi method with grey relational analysis. Three cutting parameters have been selected (spindle speed, feed rate and cut depth) with three levels for each parameter. Three tools with different materials and geometry have been also used to design the experimental tests and runs based on matrix L9. The end milling process with several output characteristics is solved using a grey relational analysis. The results of analysis of variance (ANOVA) showed that the major influencing parameters on multi-objective response were spindle speed and cutting tool with contribution percentage (52.75%, 24%), respectively. In addition, the optimum combination of end milling process parameters was then validated by performing confirmation tests to determine the improvement in multi-response outputs. The confirmation tests obtained a minimum (surface roughness and micro-hardness) and maximum metal removal rate with grey relational grade of 0.784 and improvement percentage of 2.3%.
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