[1]王志勇,韩善灵,卢翔.汽车车身轻量化材料无铆冲压连接技术的研究进展[J].热加工工艺,2019,48(17):5-10,4.
Wang Z Y, Han S L, Lu X. Research progress of clinching technology for lightweight automobile body materials [J]. Hot Working Technology, 2019, 48 (17): 5-10,4.
[2]皮智谋.几种先进的焊接技术研究现状综述[J].热加工工艺,2013,42(23):8-13.
Pi Z M. Research review of several advanced welding technology [J]. Hot Working Technology, 2013,42 (23): 8-13.
[3]何玉林.金属板料无铆钉自冲铆接成形规律的研究[D].桂林:桂林电子科技大学,2011.
He Y L. Research on the Deformation Behaviors of the Clinch Joining of Metallic Sheets [D]. Guilin: Guilin University of Electronic Science and Technology, 2011.
[4]Oudjene M, Ben-Ayed L.On the parametrical study of clinch joining of metallic sheetsusing the Taguchi method[J].Engineering Structures,2008,30 (6):1782-1788.
[5]李晓静,李晓雷.汽车制造业中自冲铆接的新型连接工艺初探[J].天津职业院校联合学报,2007,9(7):16-18.
Li X J, Li X L. A kind of late-mode joining technique-self-piercing riveting in automobile manufacturing [J]. Journal of Tianjin Voca-tional Institutes, 2007,9 (7): 16-18.
[6]刘亚丽.无铆钉连接技术研究及有限元模拟[D].南京:南京航空航天大学,2005.
Liu Y L. Research on the Technology and the Simulation Using Finite Element Analysis of Clinching[D]. Nanjing: Nanjing University of Aeronautics and Astronautics, 2005.
[7]Vavis J. Economics of clinched joint compared to riveted joint and example of applyingcalculations to a volur product[J]. Journal of Materials Processing Technology, 2006, 172(1):130-138.
[8]杨照军.无铆连接技术在金属防火门行业的应用可行性研究[J].机电信息,2020,(11):78-79.
Yang Z J. Feasibility study on the application of clinching technology in the metal fireproof door industry [J]. Mechanical and Electrical Information, 2020,(11):78-79.
[9]杨欣怡.板材无铆连接机理研究[D].西安:西安建筑科技大学,2018.
Yang X Y. Study on Mechanism of No-riveting Connection of Sheet [D]. Xi′an: Xi′an University of Architecture and Technology, 2018.
[10]黄兴,杨宏,陈东,等.铝合金车身设计中的铆接技术[J].汽车工艺师,2019,(8):45-48.
Huang X, Yang H, Chen D, et al. Riveting technology in designing aluminum alloy body [J]. Auto Manufacturing Engineer, 2019, (8): 45-48.
[11]钟丽慧,孔淑华,高荣波,等.无铆钉冲连质量检验及其影响因素[J].电焊机,2018,48(6):37-44,54.
Zhong L H, Kong S H, Gao R B, et al. Quality inspection of clinchen and its influencing factors [J]. Electric Welding Machine, 2018,48 (6): 37-44,54.
[12]李孟强.CFRP/Al异质材料胶接/无铆钉铆接及混合连接技术研究[D].北京:北京理工大学,2018.
Li M Q. Research on CFRP/Al Heteroplastic Bonding/Clinching and Hybrid Connection Technology [D]. Beijing: Beijing University of Technology, 2018.
[13]朱上,李志辉,闫丽珍,等.预时效对汽车用新型Al-Mg-Si-Cu-Zn合金烘烤硬化性的影响[J].稀有金属,2022,46(3):281-288.
Zhu S, Li Z H, Yan L Z,et al. Bake-hardening response in a novel Al-Mg-Si-Cu-Zn alloy with pre-aging[J]. Chinese Journal of Rare Metals. 2022,46(3):281-288.
[14]李永兵,马运五,楼铭,等.轻量化薄壁结构点连接技术研究进展[J].机械工程学报,2020,56(6):125-146.
Li Y B, Ma Y W, Lou M, et al. Advances in spot joining technologies of lightweight thin-walled structures [J]. Journal of Mechanical Engineering, 2020,56 (6): 125-146.
[15]张启森.新型车身接合粘接技术探究[J].粘接,2022,49(4):160-162.
Zhang Q S. Research on new body bonding technology [J]. Adhesion, 2022,49 (4): 160-162.
[16]何玉林,党菁,宗鹏举,等.板材无铆钉连接技术的进展[J].锻压技术,2021,46(6):8-15.
He Y L, Dang J, Zong P J, et al. Development of clinching technology for sheets [J]. Forging & Stamping Technology, 2021,46 (6): 8-15.
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