[1] 李永兵,李亚庭,楼铭,等.轿车车身轻量化及其对连接技术的挑战[J].机械工程学报,2012,48(18):44-54. LI Yongbing,LI Yating,LOU Ming,et al. Lightweighting of car body and its challenges to joining technologies[J]. Journal of Mechanical Engineering,2012,48(18):44-54. [2] 李永兵,马运五,楼铭,等.轻量化多材料汽车车身连接技术进展[J].机械工程学报,2016,52(24):1-23. LI Yongbing,MA Yunwu,LOU Ming,et al. Advances in welding and jointing processes of multi-material light-weight car body[J]. Journal of Mechanical Engineering,2016,52(24):1-23. [3] HE X C,PEARSON I,YOUNG K. Self-pierce riveting for sheet materials:State of the art[J]. Journal of Materials Processing Technology,2008,199(1-3):27-36. [4] HE X C,WANG Y F,LU Y,et al. Self-piercing riveting of similar and dissimilar titanium sheet materials[J]. The International Journal of Advanced Manufacturing Technology,2015,80(9-12):2105-2115. [5] 金鑫,李永兵,楼铭,等.基于正交试验的铝合金——高强钢异种金属自冲铆接工艺优化[J].汽车工程学报,2011,1(4):185-191. JIN Xin,LI Yongbing,LOU Ming,et al. Process optimi-zation of self-piercing riveting aluminum to high strength steel using DOE method[J]. Chinese Journal of Automotive Engineering,2011,1(4):185-191. [6] 马运五,楼铭,李永兵.铝合金高强钢自冲铆接工艺仿真研究[J].汽车工艺与材料,2017(8):11-15,19. MA Yunwu,LOU Ming,LI Yongbing. Simulation research on self-piercing riveting process of aluminum alloy to high strength steel[J]. Automobile Technology & Material,2017(8):11-15,19. [7] MORI K,ABE Y,KATO T. Self-pierce riveting of multiple steel and aluminium alloy sheets[J]. Journal of Materials Processing Technology,2014,214(10):2002-2008. [8] CHEN Y K,HAN L,CHRYSANTHOU A,et al. Fretting wear in self-piercing riveted aluminium alloy sheet[J]. Wear,2003,255(7):1463-1470. [9] 周仲荣.关于微动磨损与微动疲劳的研究[J].中国机械工程,2000(10):75-79. ZHOU Zhongrong. Research on fretting wear and fretting fatigue[J]. China Mechanical Engineering,2000(10):75-79. [10] 张先炼,何晓聪,邢保英,等. TA1纯钛与1420铝锂合金异质薄板自冲铆接微动疲劳特性[J].材料工程,2019,47(4):143-151. ZHANG Xianlian,HE Xiaocong,XING Baoying,et al. Fretting fatigue characteristics of self-piercing rivetingin dissimilar sheets of TA1 pure titanium and 1420 aluminum-lithium alloys[J]. Journal of Materials Engineering,2019,47(4):143-151. [11] HAN L,CHRYSANTHOU A,O'SULLIVAN J M. Fretting behaviour of self-piercing riveted aluminium alloy joints under different interfacial conditions[J]. Materials & Design,2006,27(3):200-208. [12] HE X C,DENG C ZHANG X L. Fretting behavior of SPR joining dissimilar sheets of titanium and copper alloys[J]. Metals,2016,6(12):1-9. [13] HUANG L,BONNEN J,LASECKI J,et al. Fatigue and fretting of mixed metal self-piercing riveted joint[J]. International Journal of Fatigue,2016,83:230-239. [14] MORAES J F C,RAO H M,JORDON J B,et al. High cycle fatigue mechanisms of aluminum self-piercing riveted joints[J]. Fatigue & Fracture of Engineering Materials & Structures,2017,41(1):57-70. [15] 何晓聪,何家宁,柯建宏,等.自冲铆接头的质量评价及强度可靠性预测[J].湖南大学学报,2010,37(12):1-4. HE Xiaocong,HE Jianing,KE Jianhong,et al. Quality evaluation and strength reliability prediction of self-pierce riveted joints[J]. Journal of Hunan University,2010,37(12):1-4. [16] 高镇同,傅惠民,梁美训. S-N曲线拟合法[J].北京航空航天大学学报,1987(1):115-119. GAO Zhentong,FU Huimin,LIANG Meixun. A method for fitting S-N curve[J]. Journal of Beijing University of Aeronautics and Astronautics,1987(1):115-119. [17] 钟群鹏,赵子华,张峥.断口学的发展及微观断裂机理研究[J].机械强度,2005(3):358-370. ZHONG Qunpeng,ZHAO Zihua,ZHANG Zheng. Development of "fractography" and research of fracture micromechanism[J]. Journal of Mechanical Strength,2005(3):358-370. |