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Multi-performance Optimization of Drilling Carbon Fiber Reinforced Polymer Using Taguchi: Membership Function

机译:浅谈钻碳纤维增强聚合物的多功能优化,MADUCHI:隶属函数

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摘要

The CFRP composite materials are widely used in aircraft, automobiles, infrastructures, 3D printing and many more areas where light weight and high strength is a major factor. This study outlines the implementation of Taguchi technique combined with the membership function to optimize the drilling process parameters using Taguchi L-27 array with multiple performance characteristics to minimize the objective. The experiments were performed by using three drill bit types at three levels of cutting speeds and feed rates. The responses namely thrust force and torque were measured by using Kistler multicomponent dynamometer 9257B; circularity and cylindricity were measured by using TESA micro-hite 3D Co-ordinated Measuring Machine (CMM). The drilling process parameters which directly influenced the performance characteristics were optimized using response surface methodology (RSM). The ANOVA (Analysis of Variance) results clearly indicated that the feed rate was the significant factor which affected the responses. The experimental values of S/N ratio were compared with predicted values of the membership function, and were found to be in good agreement with each other.
机译:CFRP复合材料广泛应用于飞机,汽车,基础设施,3D印刷等许多较小的较大领域是一个主要因素。本研究概述了Taguchi技术的实现结合了隶属函数,以使用Taguchi L-27阵列优化钻井过程参数,具有多种性能特征,以最小化目标。通过使用三个切割速度和进料速率的三个钻头类型进行实验。通过使用Kistler多组分测功机9257b测量响应即推力和扭矩;通过使用TESA微信3D协调测量机(CMM)测量圆形和圆柱状。使用响应表面方法(RSM)进行直接影响性能特征的钻孔工艺参数。 ANOVA(方差分析)结果清楚地表明进料速率是影响反应的重要因素。将S / N比的实验值与隶属函数的预测值进行比较,并被发现彼此吻合良好。

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