RESEARCH PAPER |
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Fretting Behavior of Self-piercing Riveted Aluminum Alloy Joints |
ZHAO Lun, HE Xiaocong, XING Baoying, ZHANG Xianlian, TAI Jiaqi
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Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, Kunming 650500; |
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Abstract Two groups of Al alloy substrates with different thicknesses were selected to prepare SA15 and SA25 self-piercing riveted joints and fatigue tests were conducted. The validity of fatigue data was verified by two-parameter Weibull distribution. Fatigue behavior of the joints was analyzed by S-N curves, which were fitted by empirical formula of fatigue three-parameter. The relation between fretting wear and fatigue failure was investigated by a scanning electron microscope (SEM). The results revealed that experimental data were valid because of they obeyed Weibull distribution. S-N curves of the joints can be well fitted by the empirical formula, the fatigue performance of SA25 joints is superior to that of SA15 joints. SA25 joints have excellent fatigue performance during middle-low fatigue life domain. SA15 joints failed in the upper substrate near rivet head, and SA25 joints fractured at the bottom substrate along the button. SA15 joints appeared severer fretting behavior at the riveting interface between two substrates, while SA25 joints appeared severer fretting wear at the interface between bottom substrate and rivet leg. Fatigue failure position coincided with the severer fretting wear position, which reveals that fretting wear is one of the significant factors for the fatigue failure of the joints.
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Published: 25 July 2017
Online: 2018-05-04
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1 Zhang Xianlian,He Xiaocong,Cheng Qiang,et al. Investigation on the static strength of self-piercing riveted joints in dissimilar sheets about 1420 aluminum-lithium alloy [J]. Mater Rev:Res,2015,29(12):76(in Chinese). 张先炼,何晓聪,程强,等. 1420铝锂合金自冲铆异质组合接头静力学性能研究[J]. 材料导报:研究篇,2015,29(12):76. 2 Zhang Xianlian,He Xiaocong,Xing Baoying,et al. Influence of heat treatment of fatigue performances for self-piercing riveting similar and dissimilar titanium,aluminium and copper alloys [J]. Mater Des,2016,97:108. 3 He X C, Gu F X, Ball A. A review of numerical analysis of friction stir welding [J]. Prog Mater Sci,2014,65:1. 4 Xing B Y, He X C, Zeng K,et al. Mechanical properties of self-pier-cing riveted joints in aluminum alloy 5052 [J]. Int J Adv Manuf Technol,2014,75:351. 5 He X C,Zhao L,Deng C J,et al. Self-piercing riveting of similar and dissimilar metal substrates of aluminum alloy and copper alloy [J]. Mater Des,2015,65:923. 6 Huang L,Bonnen J,Lasecki J,et al. Fatigue and fretting of mixed metal self-piercing riveted joint [J]. Int J Fatigue,2016,83:230. 7 Huang L,Shi Y,Guo H,et al. Fatigue behavior and life prediction of self-piercing riveted joint [J]. Int J Fatigue,2016,88:96. 8 Gay A,Fabien L,Sebastien B,et al. Fatigue performance of a self-piercing rivet joint between aluminium and glass fiber reinforced thermoplastic composite [J]. Int J Fatigue,2016,83:127. 9 Xing Baoying. Investigation of forming mechanism and mechanical property of self-pierce riveted joints [D]. Kunming: Kunming University of Science and Technology,2014(in Chinese). 邢保英. 自冲铆连接机理及力学性能研究 [D]. 昆明:昆明理工大学,2014. 10 Gao Zhentong,Fu Huimin,Liang Meixun. A method for fitting S-N curve [J]. J Beijing Univ Aeronaut Astronaut,1987(1):115(in Chinese). 高镇同, 傅惠民, 梁美训. S-N曲线拟合 [J].北京航空航天学报,1987(1):115. 11 Zhang Ming. Research on failure mechanism and control technology of fretting fatigue [D]. Nanjing:Nangjing University of Aeronautics and Astronautics,2013(in Chinese). 张明. 微动疲劳损伤机理及其防护对策的研究 [D]. 南京:南京航空航天大学,2013. 12 周仲荣,Leo Vincent. 微动磨损 [M]. 北京: 科学出版社,2002. |
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