首页> 外文期刊>Journal of King Saud University: Physics and Mathematics >Optimization of powder metallurgy processing parameters of Al 2O 3/Cu composite through Taguchi method with Grey relational analysis
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Optimization of powder metallurgy processing parameters of Al 2O 3/Cu composite through Taguchi method with Grey relational analysis

机译:优化Al 2 O 3 / CU复合通过TAGUCHI方法灰色关系分析

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This article investigates the effect of powder metallurgy processing parameters on multi-responses: mass density and hardness of Al2O3/Cu composite based on Taguchi method coupled with Grey relational analysis. Based on Taguchi’s L18orthogonal array, the experimental trial runs were conducted with four controllable powder processing parameters: milling time, compaction pressure, sintering temperature and holding time. The Grey relational analysis (GRA) was performed to find the optimal powder processing condition with Grey relational grade (GRG) as a measure of performance index. Analysis of variance (ANOVA), 3D surface plots and contour plots were used to express the most influential parameter that affects mass density and hardness of Al2O3/Cu composite. Confirmation tests were conducted to make sure the validity of test results. The scanning electron microscope (SEM) images show the presence of Al2O3particle in the composite. TheEnergy Dispersive X-Ray(EDX) spectrum indicates the presence of chemical elements: Cu, Al, O in the composite. The results show that the optimal powder metallurgy parameter combination is A2B3C3D1. The mean Grey relational coefficient (GRC) analysis shows that the mass density was more easily influenced by factors considered compare to hardness. The mean GRG result shows that the compaction pressure has the strongest correlation to responses. The result of 3D surface plots, contour plots and ANOVA indicate that the compaction pressure has most influential parameter that affect GRG. The % contribution of parameters shows that the % contribution of compaction pressure is significant (80.22%) compare to other main effects and interaction effects. The confirmation tests revealed that the performance characteristic of Al2O3/Cu composite was improved by GRA based Taguchi technique. The Monte Carlo simulated model summery show that based on Taguchi L18Orthogonal Array design, one can easily find the reality of what will be happening in a process. Therefore, optimization of processes parameter could be simplified by using the Grey-based Taguchi method.
机译:本文研究了粉末冶金加工参数对多响应的影响:基于灰色关系分析的Taguchi方法基于Taguchi方法的Al2O3 / Cu复合材料的质量密度和硬度。基于Taguchi的L18正交阵列,使用四个可控粉末处理参数进行实验试运行:铣削时间,压实压力,烧结温度和保持时间。进行灰色关系分析(GRA)以找到具有灰色关系级(GRG)的最佳粉末处理条件,作为性能指标的量度。方差分析(ANOVA),3D表面图和轮廓图用于表达影响AL2O3 / Cu复合材料的质量密度和硬度的最有影响力的参数。进行确认测试以确保测试结果的有效性。扫描电子显微镜(SEM)图像显示复合材料中的Al2O3粒子的存在。 TheEnergy分散X射线(EDX)光谱表明了复合材料中的化学元素:Cu,Al,O。结果表明,最佳粉末冶金参数组合为A2B3C3D1。平均灰色关系系数(GRC)分析表明,质量密度更容易受到与硬度相比的因素的影响。平均GRG结果表明压实压力与响应具有最强的相关性。 3D表面图,轮廓图和ANOVA的结果表明压力压力最有影响力的影响GRG。参数的%贡献表明,与其他主要效应和相互作用效应相比,压力压力的%贡献是显着的(80.22%)。确认试验表明,基于GRA的Taguchi技术改善了Al2O3 / Cu复合材料的性能特性。 Monte Carlo模拟模型夏天表明,基于Taguchi L18正交阵列设计,可以容易地找到一个过程中发生的事情的现实。因此,通过使用基于灰色的Taguchi方法可以简化过程参数的优化。

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