Taguchi approach for the optimization of refill friction stir spot welding parameters for AA2198-T8 aluminum alloy

被引:0
作者
Camila Caroline de Castro
Athos Henrique Plaine
Nelson Guedes de Alcântara
Jorge Fernandez dos Santos
机构
[1] Federal University of Sao Carlos (UFSCar),Department of Materials Engineering (DEMa)
[2] Helmholtz Zentrum Geesthacht GmbH (HZG),undefined
[3] Institute of Materials Research,undefined
[4] Materials Mechanics,undefined
[5] Solid State Joining Processes (WMP),undefined
来源
The International Journal of Advanced Manufacturing Technology | 2018年 / 99卷
关键词
Refill friction stir spot welding; Aerospace materials; Aluminum alloy; Taguchi method;
D O I
暂无
中图分类号
学科分类号
摘要
The present study features analytical and experimental results of AA2198-T8 joints produced by the refill friction stir spot welding of 1.6-mm-thick sheets. The selection of proper parameters for this process, such as tool rotational speed (RS), welding time (WT), and tool plunge depth (PD), played an important role in assuring weld strength. In this work, experimental tests were carried out based on the welding conditions according to Taguchi method, in order to determine optimal welding parameters and investigate the effect of those in the joint’s mechanical properties and welded area. Results based on lap shear strength showed that RS and PD were responsible for more than 80% of strength variance, while the analysis based on the stir zone area measurement of the welds endorsed that WT had an insignificant contribution to the strength. Higher strength was correlated to bigger stir zone area, which results from higher RS and PD values.
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页码:1927 / 1936
页数:9
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[1]  
Amancio-Filho ST(2011)Preliminary investigation of the microstructure and mechanical behaviour of 2024 aluminium alloy friction spot welds Mater Trans 52 985-991
[2]  
Camillo AP(2015)The optimization of friction spot welding process parameters in AA6181-T4 and Ti6Al4V dissimilar joints Mater Des 83 36-41
[3]  
Bergmann L(2012)Parameters optimization for friction spot welding of AZ31 magnesium alloy by Taguchi method Soldagem & Inspeção 17 26-31
[4]  
Plaine AH(2011)Mechanical and microstructural investigation of friction spot welded AA6181-T4 aluminium alloy Mater Des 32 1094-1100
[5]  
Gonzalez AR(2014)Optimization of friction spot welding process parameters for AA2198-T8 sheets Mater Manuf Process 29 934-940
[6]  
Suhuddin UFH(2018)Texture development and material flow behavior during refill friction stir spot welding of AlMgSc Metall Mater Trans A 49 241-254
[7]  
dos Santos JF(2017)Microstructure and mechanical properties of keyhole repair welds in AA 7075-T651 using refill friction stir spot welding Mater Des 132 283-294
[8]  
Alcântara NG(2009)Weibull statistics for evaluating failure behaviors and joining reliability of friction stir spot welded 5052 aluminum alloy Materials Tansactions 50 145-151
[9]  
Campanelli LC(2012)The evolution of Al-Li Base products for aerospace and space applications Metall Mater Trans A 43 3325-3337
[10]  
Suhuddin UFH(2012)Application of Taguchi approach to optimize friction stir spot welding parameters of polypropylene Mater Des 35 113-119