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Hybrid multi-response optimization of friction stir spot welds: failure load, effective bonded size and flash volume as responses

机译:搅拌摩擦点焊的混合多响应优化:失效载荷,有效粘结尺寸和溢料量作为响应

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Friction stir spot welding (FSSW) is a multi-input multi-response process. Effective multi-response optimization of welds is desirable to create welds with a balance of quality responses. In order to eliminate the subjectivity (uncertainty and engineering judgment) with the existing multi-response Taguchi-based Greyrelational analysis, principal component analysis (PCA) was integrated into it. The PCA helps in determining the effective optimal weighting values required for the estimation of Grey relational grade (GRG). As a result, tool rotational speed, plunge depth and dwell time were employed as input parameters while failure load (FL), expelled flash volume (EFV) and effective bonded size (EBS) of conical pin friction stir spot-welded joint of AA2219-O alloy were the chosen output responses. EFV was minimized while FL and EBS of the joints were maximized using this hybrid multi-response approach. From the analysis of variance of GRG and its response graphs, the significant parameters and their levels were obtained. Experimental results confirmed the effectiveness and robustness of this method. In addition, three critical zones were observed on the fracture surfaces ofjoints, namely, tool impelled unbonded zone, partially bonded zone and effective bondedugget zone. The weld nugget failed by circumferential nugget shear mode.
机译:搅拌摩擦点焊(FSSW)是一种多输入多响应过程。需要有效的焊缝多响应优化,以创建具有质量响应平衡的焊缝。为了消除现有的基于Taguchi的多响应Greyrelational分析的主观性(不确定性和工程判断力),将主成分分析(PCA)集成到其中。 PCA帮助确定估计灰色关联等级(GRG)所需的有效最佳加权值。结果,工具转速,切入深度和停留时间被用作输入参数,而AA2219-的圆锥销摩擦搅拌点焊接头的失效载荷(FL),排出飞边体积(EFV)和有效粘结尺寸(EBS)则作为输入参数。 O合金是所选的输出响应。使用这种混合多响应方法,可以将EFV最小化,同时将关节的FL和EBS最大化。通过对GRG的方差分析及其响应图,获得了重要的参数及其水平。实验结果证实了该方法的有效性和鲁棒性。此外,在接头的断裂面上还观察到了三个临界区,即工具推动的非结合区,部分结合区和有效结合/熔核区。焊点熔核因周向熔核剪切模式而失效。

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