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Articles

Comparison of fatigue behaviour between resistance spot and friction stir spot welded aluminium alloy sheets

Pages 62-71 | Published online: 04 Dec 2013

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Read on this site (10)

Daisuke Ogawa, Toshifumi Kakiuchi, Keigo Hashiba & Yoshihiko Uematsu. (2019) Residual stress measurement of Al/steel dissimilar friction stir weld. Science and Technology of Welding and Joining 24:8, pages 685-694.
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Z. Shen, Y. Ding, J. Chen, L. Fu, X. C. Liu, H. Chen, W. Guo & A. P. Gerlich. (2019) Microstructure, static and fatigue properties of refill friction stir spot welded 7075-T6 aluminium alloy using a modified tool. Science and Technology of Welding and Joining 24:7, pages 587-600.
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I. Ibrahim, R. Ito, T. Kakiuchi, Y. Uematsu, K. Yun & C. Matsuda. (2016) Fatigue behaviour of Al/steel dissimilar resistance spot welds fabricated using Al–Mg interlayer. Science and Technology of Welding and Joining 21:3, pages 223-233.
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I. Ibrahim, Y. Uematsu, T. Kakiuchi, Y. Tozaki & Y. Mizutani. (2015) Fatigue behaviour of dissimilar Al alloy/galvanised steel friction stir spot welds fabricated by scroll grooved tool without probe. Science and Technology of Welding and Joining 20:8, pages 670-678.
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Z. Shen, Y. Chen, J. S. C. Hou, X. Yang & A. P. Gerlich. (2015) Influence of processing parameters on microstructure and mechanical performance of refill friction stir spot welded 7075-T6 aluminium alloy. Science and Technology of Welding and Joining 20:1, pages 48-57.
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Y. Q. Zhao, H. J. Liu, Z. Lin, S. X. Chen & J. C. Hou. (2014) Microstructures and mechanical properties of friction spot welded Alclad 7B04-T74 aluminium alloy. Science and Technology of Welding and Joining 19:7, pages 617-622.
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Y Uematsu, T Kakiuchi, Y Tozaki & H Kojin. (2012) Comparative study of fatigue behaviour in dissimilar Al alloy/steel and Mg alloy/steel friction stir spot welds fabricated by scroll grooved tool without probe. Science and Technology of Welding and Joining 17:5, pages 348-356.
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V.-X. Tran & J. Pan. (2010) Failure modes of friction stir spot welds in cross-tension specimens of dissimilar aluminium sheets. Science and Technology of Welding and Joining 15:4, pages 286-292.
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Y. S. Sato, A. Shiota, H. Kokawa, K. Okamoto, Q. Yang & C. Kim. (2010) Effect of interfacial microstructure on lap shear strength of friction stir spot weld of aluminium alloy to magnesium alloy. Science and Technology of Welding and Joining 15:4, pages 319-324.
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D. Bakavos & P. B. Prangnell. (2009) Effect of reduced or zero pin length and anvil insulation on friction stir spot welding thin gauge 6111 automotive sheet. Science and Technology of Welding and Joining 14:5, pages 443-456.
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Articles from other publishers (53)

Yoshihiko Uematsu, Yoshihiro Ozeki & Paul Dario Toasa Caiza. (2023) Tensile-shear properties of steel-Al adhesively bonded dissimilar joints and the effect of Al plate thickness. Scientific Reports 13:1.
Crossref
H. Schäfer, L.A. Blaga, E. Stöver & B. Klusemann. (2023) Refill friction stir spot welding of thermoplastic composites: Case study on Carbon-fiber-reinforced polyphenylene sulfide. Thin-Walled Structures 191, pages 111037.
Crossref
Willian S. de Carvalho, Jonathan Draper, Talina Terrazas-Monje, Athanasios Toumpis, Alexander Galloway & Sergio T. Amancio-Filho. (2023) Fatigue life assessment and fracture mechanisms of additively manufactured metal-fiber reinforced thermoplastic hybrid structures produced via ultrasonic joining. Journal of Materials Research and Technology 26, pages 5716-5730.
Crossref
Ramzi Gassaa, Larbi Hemmouche, Riad Badji, Lionel Gilson, Luc Rabet & Oussama Mimouni. (2023) Effect of rotational speed and copper interlayer on the mechanical and fracture behaviour of friction stir spot welds of 5754 aluminium alloy. Metallurgical Research & Technology 120:1, pages 118.
Crossref
Chaitanya Sharma, Ajay Tripathi, Vikas Upadhyay, Vijay Verma & Sumit K. Sharma. (2021) Friction Stir Spot Welding-Process and Weld Properties: A Review. Journal of The Institution of Engineers (India): Series D 102:2, pages 549-565.
Crossref
Pritam Kumar Rana, R. Ganesh Narayanan & Satish V. Kailas. (2021) Assessing the dwell time effect during friction stir spot welding of aluminum polyethylene multilayer sheets by experiments and numerical simulations. The International Journal of Advanced Manufacturing Technology 114:7-8, pages 1953-1973.
Crossref
Omer Ekinci & Zulkuf Balalan. (2021) Effect of tool pin geometry on microstructure and mechanical properties of friction stir spot welds of 7075-T651 aluminium alloy. Metallurgical Research & Technology 118:1, pages 110.
Crossref
Dominik Walz, Martin Werz & Stefan Weihe. 2021. Advances in Automotive Production Technology – Theory and Application. Advances in Automotive Production Technology – Theory and Application 361 368 .
J.Y. Cao, C.C. Zhang, Y.F. Xing & M. Wang. (2020) Pin plunging reinforced refill friction stir spot welding of Alclad 2219 to 7075 alloy. Journal of Materials Processing Technology 284, pages 116760.
Crossref
Zhongke Zhang, Yang Yu, Huaxia Zhao & Hui Tong. (2020) Effect of Loading Methods on the Fatigue Properties of Dissimilar Al/Steel Keyhole-Free FSSW Joints. Materials 13:19, pages 4247.
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Balsam H. Abed, Omar S. Salih & Khalid M. Sowoud. (2020) Pinless friction stir spot welding of aluminium alloy with copper interlayer. Open Engineering 10:1, pages 804-813.
Crossref
Jinzhen Han, M. Paidar, R. Vaira Vignesh, Kush P. Mehta, A. Heidarzadeh & O. O. Ojo. (2020) Effect of shoulder features during friction spot extrusion welding of 2024-T3 to 6061-T6 aluminium alloys. Archives of Civil and Mechanical Engineering 20:3.
Crossref
Andrzej Kubit, Mateusz Drabczyk, Tomasz Trzepiecinski, Wojciech Bochnowski, Ľuboš Kaščák & Jan Slota. (2020) Fatigue Life Assessment of Refill Friction Stir Spot Welded Alclad 7075-T6 Aluminium Alloy Joints. Metals 10:5, pages 633.
Crossref
Anuranjan Kumar, Kanwer Singh Arora, Rajneesh Kumar Gupta & G. A. Harmain. (2019) Investigation on interface morphology and joint configuration of dissimilar sheet thickness FSSW of marine grade Al alloy. Journal of the Brazilian Society of Mechanical Sciences and Engineering 41:9.
Crossref
Isam Jabbar Ibrahim & Guney Guven Yapici. (2019) Optimization of the intermediate layer friction stir spot welding process. The International Journal of Advanced Manufacturing Technology 104:1-4, pages 993-1004.
Crossref
Andrzej Kubit, Tomasz Trzepiecinski, Wojciech Bochnowski, Mateusz Drabczyk & Koen Faes. (2019) Analysis of the mechanism of fatigue failure of the Refill Friction Stir Spot Welded overlap joints. Archives of Civil and Mechanical Engineering 19:4, pages 1419-1430.
Crossref
Antonio Gloria, Roberto Montanari, Maria Richetta & Alessandra Varone. (2019) Alloys for Aeronautic Applications: State of the Art and Perspectives. Metals 9:6, pages 662.
Crossref
Nurul Muhayat, Bobby Priatmana Putra & Triyono. (2019) Mechanical Properties and Microstructure of Friction Stir Spot Welded 6082-T6 Aluminium Alloy Joint. MATEC Web of Conferences 269, pages 01005.
Crossref
Angshuman Kapil, Taeseon Lee, Anupam Vivek, Ronald Cooper, Elizabeth Hetrick & Glenn Daehn. (2019) Spot impact welding of an age-hardening aluminum alloy: Process, structure and properties. Journal of Manufacturing Processes 37, pages 42-52.
Crossref
. 2019. Fatigue in Friction Stir Welding. Fatigue in Friction Stir Welding 145 186 .
S. Suresh, K. Venkatesan & Elango Natarajan. (2018) Influence of SiC Nanoparticle Reinforcement on FSS Welded 6061-T6 Aluminum Alloy. Journal of Nanomaterials 2018, pages 1-11.
Crossref
Andrzej Kubit, Magdalena Bucior, Dawid Wydrzyński, Tomasz Trzepieciński & Maciej Pytel. (2017) Failure mechanisms of refill friction stir spot welded 7075-T6 aluminium alloy single-lap joints. The International Journal of Advanced Manufacturing Technology 94:9-12, pages 4479-4491.
Crossref
F. Zarghani, S.M. Mousavizade, H.R. Ezatpour & G.R. Ebrahimi. (2018) High mechanical performance of similar Al joints produced by a novel spot friction welding technique. Vacuum 147, pages 172-186.
Crossref
Zhanxiang Ling, Yang Li, Zhen Luo, Sansan Ao, Zhanghua Yin, Yunlong Gu & Qiang Chen. (2017) Microstructure and fatigue behavior of resistance element welded dissimilar joints of DP780 dual-phase steel to 6061-T6 aluminum alloy. The International Journal of Advanced Manufacturing Technology 92:5-8, pages 1923-1931.
Crossref
HaiYang Lei, YongBing Li & Blair E. Carlson. (2017) Cold metal transfer spot welding of 1 mm thick AA6061-T6. Journal of Manufacturing Processes 28, pages 209-219.
Crossref
P.S. Effertz, L. Quintino & V. Infante. (2017) The optimization of process parameters for friction spot welded 7050-T76 aluminium alloy using a Taguchi orthogonal array. The International Journal of Advanced Manufacturing Technology 91:9-12, pages 3683-3695.
Crossref
Dawid Wydrzyński, Magdalena Bucior & Andrzej Kubit. (2017) The effects of welding parameters on the tensile shear strength of refill friction stir spot welding of 7075-T6 aluminium alloy joints. ITM Web of Conferences 15, pages 04012.
Crossref
Andrzej Kubit, Magdalena Bucior, Dawid Wydrzyński & Łukasz Bąk. (2017) Experimental investigation of the degree of weakening in structural notch area of 7075-T6 aluminum alloy sheet welded with the RFSSW method. ITM Web of Conferences 15, pages 04006.
Crossref
Z. Shen, Y. Ding, J. Chen & A.P. Gerlich. (2016) Comparison of fatigue behavior in Mg/Mg similar and Mg/steel dissimilar refill friction stir spot welds. International Journal of Fatigue 92, pages 78-86.
Crossref
P.S. Effertz, V. Infante, L. Quintino, U. Suhuddin, S. Hanke & J.F. dos Santos. (2016) Fatigue life assessment of friction spot welded 7050-T76 aluminium alloy using Weibull distribution. International Journal of Fatigue 87, pages 381-390.
Crossref
Fengbin Qiao, Kai Cheng, Lianfeng Wang & Lijie Guo. (2015) An experimental investigation on the dissimilar joining of AA6061 and 1Cr18Ni9Ti by refill friction stir spot welding and its mechanical properties. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 230:4, pages 779-785.
Crossref
H. Badarinarayan, S. B. Behravesh, S. D. Bhole, D. L. Chen, J. Grantham, M. F. Horstemeyer, H. Jahed, J. B. Jordon, S. Lambert, H. A. Patel, X. Su & Y. Yang. 2016. Essential Readings in Magnesium Technology. Essential Readings in Magnesium Technology 557 562 .
Rajarshi Sarkar, Shiladitya Sengupta, Tapan Kumar Pal & Mahadev Shome. (2015) Microstructure and Mechanical Properties of Friction Stir Spot-Welded IF/DP Dissimilar Steel Joints. Metallurgical and Materials Transactions A 46:11, pages 5182-5200.
Crossref
Jeong Kyun Hong. Fatigue Evaluation Procedure Development for Aluminum Alloy Spot Welds Using the Battelle Structural Stress Method. Fatigue Evaluation Procedure Development for Aluminum Alloy Spot Welds Using the Battelle Structural Stress Method.
Xi Jing Wang, Xiao Long Wang, Zhong Ke Zhang, Lei Wang, Qing Shan Zhao & Xiang Bin Deng. (2014) Fatigue Behavior of Friction Spot Stir Welding with No-Keyhole of Aluminum Alloy. Advanced Materials Research 1052, pages 509-513.
Crossref
Y.Q. Zhao, H.J. Liu, S.X. Chen, Z. Lin & J.C. Hou. (2014) Effects of sleeve plunge depth on microstructures and mechanical properties of friction spot welded alclad 7B04-T74 aluminum alloy. Materials & Design (1980-2015) 62, pages 40-46.
Crossref
Seyed Behzad Behravesh, Hamid Jahed & Steve Lambert. (2014) Fatigue characterization and modeling of AZ31B magnesium alloy spot-welds. International Journal of Fatigue 64, pages 1-13.
Crossref
Naci Kurgan. (2014) Investigation of the effect of diffusion bonding parameters on microstructure and mechanical properties of 7075 aluminium alloy. The International Journal of Advanced Manufacturing Technology 71:9-12, pages 2115-2124.
Crossref
Zhikang Shen, Xinqi Yang, Shuo Yang, Zhaohua Zhang & Yuhuan Yin. (2014) Microstructure and mechanical properties of friction spot welded 6061-T4 aluminum alloy. Materials & Design (1980-2015) 54, pages 766-778.
Crossref
H. Badarinarayan, S.B. Behravesh, S.D. Bhole, D.L. Chen, J. Grantham, M.F. Horstemeyer, H. Jahed, J.B. Jordon, S. Lambert, H.A. Patel, X. Su & Y. Yang. 2014. Essential Readings in Magnesium Technology. Essential Readings in Magnesium Technology 557 562 .
Zhikang Shen, Xinqi Yang, Zhaohua Zhang, Lei Cui & Yuhuan Yin. (2013) Mechanical properties and failure mechanisms of friction stir spot welds of AA 6061-T4 sheets. Materials & Design 49, pages 181-191.
Crossref
Zhikang Shen, Xinqi Yang, Zhaohua Zhang, Lei Cui & Tielong Li. (2013) Microstructure and failure mechanisms of refill friction stir spot welded 7075-T6 aluminum alloy joints. Materials & Design 44, pages 476-486.
Crossref
Zhaohua Zhang, Xinqi Yang, Jialong Zhang, Guang Zhou, Xiaodong Xu & Binlian Zou. (2011) Effect of welding parameters on microstructure and mechanical properties of friction stir spot welded 5052 aluminum alloy. Materials & Design 32:8-9, pages 4461-4470.
Crossref
Y. UEMATSU, K. TOKAJI, Y. TOZAKI, Y. NAKASHIMA & T. SHIMIZU. (2011) Fatigue behaviour of dissimilar friction stir spot welds between A6061-T6 and low carbon steel sheets welded by a scroll grooved tool without probe. Fatigue & Fracture of Engineering Materials & Structures 34:8, pages 581-591.
Crossref
H. Badarinarayan, S.B. Behravesh, S.D. Bhole, D.L. Chen, J. Grantham, M.F. Horstemeyer, H. Jahed, J.B. Jordon, S. Lambert, H.A. Patel, X. Su & Y. Yang. 2011. Magnesium Technology 2011. Magnesium Technology 2011 629 634 .
H. Badarinarayan, S. B. Behravesh, S. D. Bhole, D. L. Chen, J. Grantham, M. F. Horstemeyer, H. Jahed, J. B. Jordon, S. Lambert, H. A. Patel, X. Su & Y. Yang. 2016. Magnesium Technology 2011. Magnesium Technology 2011 629 634 .
J. B. Jordon, M. F. Horstemeyer, S. R. Daniewicz, H. Badarinarayan & J. Grantham. (2010) Fatigue Characterization and Modeling of Friction Stir Spot Welds in Magnesium AZ31 Alloy. Journal of Engineering Materials and Technology 132:4.
Crossref
Van-Xuan Tran & Jwo Pan. (2010) Analytical stress intensity factor solutions for resistance and friction stir spot welds in lap-shear specimens of different materials and thicknesses. Engineering Fracture Mechanics 77:14, pages 2611-2639.
Crossref
Van-Xuan Tran, Jwo Pan & Tsung-Yu Pan. (2010) Fatigue Behavior of Dissimilar 5754/7075 and 7075/5754 Spot Friction Welds in Lap-Shear Specimens. SAE International Journal of Materials and Manufacturing 3:1, pages 608-614.
Crossref
V.-X. Tran & J. Pan. (2010) Fatigue behavior of dissimilar spot friction welds in lap-shear and cross-tension specimens of aluminum and steel sheets. International Journal of Fatigue 32:7, pages 1167-1179.
Crossref
V.-X. Tran & J. Pan. (2010) Effects of weld geometry and sheet thickness on stress intensity factor solutions for spot and spot friction welds in lap-shear specimens of similar and dissimilar materials. Engineering Fracture Mechanics 77:9, pages 1417-1438.
Crossref
Antonio Monaco Da Silva, Egoitz Aldanondo, Imanol Olaran, Pedro Alvarez & Alberto Echeverria. Effect of Joining Parameters on Performance of Similar and Dissimilar AA5754-H22 and AA6082-T6 Friction Stir Spot Welded Aluminium Alloys. Effect of Joining Parameters on Performance of Similar and Dissimilar AA5754-H22 and AA6082-T6 Friction Stir Spot Welded Aluminium Alloys.
Yoshihiko Uematsu, Keiro Tokaji, Yasunari Tozaki & Yasuhito. Nakashimac. (2010) Fatigue behaviour of dissimilar friction stir spot weld between A6061 and SPCC welded by a scrolled groove shoulder tool. Procedia Engineering 2:1, pages 193-201.
Crossref

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