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Optimization of FSW Process Parameters During Joining of Al to Cu Using Taguchi-Based GA

机译:使用基于Taguchi的GA将Al到Cu的FSW工艺参数进行优化

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Friction stir welding (FSW) is a new and effective solid-state joining process and getting evolved to join the dissimilar materials such as aluminum (Al) and copper (Cu). FSW tool design, geometry, and FSW process parameters possess a considerable impact on the material movement and stirring during joining and govern the microstructure and mechanical properties of the joints. In the present study, the effect of the combination of different process parameters, i.e., shoulder diameter (A), welding speed (B), and rotational speed (C) on the ultimate tensile strength (UTS) during joining of Al-6101, and pure copper has been studied. The joining is performed using the cylindrical tool pin, and the Taguchi's L_9 standard orthogonal array for three process parameters each at three levels are chosen to perform the experimentation. The optimal combination of the FSW parameters yielding maximum UTS is determined using the ANOM (Analysis of Mean), and the significance of each parameter on the UTS is ascertained through ANOVA (Analysis of Variance). It is observed that the UTS of the FSWed joints varied significantly within the selected process parameter range. Further, the observed results were verified by applying genetic algorithm (GA) using the MATLAB software.
机译:摩擦搅拌焊接(FSW)是一种新的且有效的固态连接过程,并进化以加入诸如铝(Al)和铜(Cu)的异种材料。 FSW工具设计,几何和FSW工艺参数对连接期间的材料运动和搅拌具有相当大的影响,并控制关节的微观结构和机械性能。在本研究中,在AL-6101的连接期间,不同工艺参数,即肩直径(A),焊接速度(A),焊接速度(B)和转速(C)的施加效果,已经研究过纯铜。使用圆柱形工具引脚进行连接,并且选择三个过程参数的Taguchi的L_9标准正交阵列,每个阵列在三个级别下进行三个级别以执行实验。使用ANOM确定产生最大UTS的FSW参数的最佳组合,并且通过ANOVA(方差分析)确定UTS上每个参数的显着性。观察到,FSWED接头的UTS在所选过程参数范围内显着变化。此外,通过使用MATLAB软件应用遗传算法(GA)来验证观察结果。

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