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《材料导报》期刊社  2017, Vol. 31 Issue (12): 84-88    https://doi.org/10.11896/j.issn.1005-023X.2017.012.018
  材料研究 |
铝锂合金T型自冲铆接头疲劳特性及失效机理*
程强, 何晓聪, 邢保英, 张越
昆明理工大学机电工程学院, 昆明 650500
Fatigue Properties and Failure Mechanisms of Self-piercing Riveted T Joints in Aluminum-Lithium Alloys
CHENG Qiang, HE Xiaocong, XING Baoying, ZHANG Yue
Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, Kunming 650500
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摘要 为研究T型自冲铆接头的疲劳特性,以铝锂合金(AL1420)同种及其与铜合金(H62)和不锈钢(410)异种组合制备的AA、HA和SA三组T型自冲铆接头为研究对象,基于其静力学试验采用正弦波进行拉-拉加载疲劳试验,用二参数威布尔分布对所得疲劳数据的有效性进行验证,采用最小二乘拟合直线得到拟合的F-N曲线,并采用SEM扫描电镜对各组典型疲劳失效断口进行微观分析。结果表明:SA组疲劳寿命对载荷变化最敏感,并且疲劳寿命随相对滑移量的增加而减小;由三组T型接头失效形式可看出接头薄弱环节有由铆钉向板材转移的趋势;从微观分析疲劳断口可知裂纹萌生区多为形貌特征较为平坦的准解理,裂纹瞬断区形貌更加突出,多为沿晶断裂或韧窝形貌。
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程强
何晓聪
邢保英
张越
关键词:  铝锂合金  T型自冲铆接头  疲劳试验  SEM扫描电镜  断裂特征    
Abstract: In order to study the fatigue properties of self-piercing riveted(SPR) T joints, three sets of T joints (1420 aluminum-lithium alloys joined with itself (AA joints), with H62 copper alloys (HA joints) and with 410 stainless steel(SA joints)) were prepared. Fatigue test were conducted on the basis of peeling test. The effectiveness of test data was analyzed by two-parameter Weibull distribution, and the equations of fatigue load-fatigue life curves were calculated by least square method. Scanning electron microscope was adopted to observe the appearance of the joints fracture. The results show that the fatigue life of SA joints was the most sensitive to the load fluctuation which were loaded on joints, and fatigue life decreased with the increasing relative slippage. The weak point of the joints transferred from rivets to sheets. From micro-view, the fracture features of crack initiation region is flatter than the fracture features of crack transient zone which are mainly the intergranular fracture or the dimple.
Key words:  aluminum-lithium alloys    self-piercing riveted(SPR) T joints    fatigue test    scanning electron microscope    fracture features
               出版日期:  2017-06-25      发布日期:  2018-05-08
ZTFLH:  TG447  
基金资助: *国家自然科学基金(51565023;51565022);国家科技重大专项项目(2012ZX04012-031);云南省教育厅科学研究基金重大专项项目(ZD201504)
通讯作者:  何晓聪:通讯作者,男,1955年生,博士,教授,博士研究生导师,从事薄板材料连接新技术研究 E-mail:xiaocong_he@126.com   
作者简介:  程强:男,1989年生,硕士研究生,主要研究方向为薄板材料连接新技术 E-mail:qiangcheng1214@163.com
引用本文:    
程强, 何晓聪, 邢保英, 张越. 铝锂合金T型自冲铆接头疲劳特性及失效机理*[J]. 《材料导报》期刊社, 2017, 31(12): 84-88.
CHENG Qiang, HE Xiaocong, XING Baoying, ZHANG Yue. Fatigue Properties and Failure Mechanisms of Self-piercing Riveted T Joints in Aluminum-Lithium Alloys. Materials Reports, 2017, 31(12): 84-88.
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http://www.mater-rep.com/CN/10.11896/j.issn.1005-023X.2017.012.018  或          http://www.mater-rep.com/CN/Y2017/V31/I12/84
1 Mucha J. A study of quality parameters and behavior of self-piercing riveted aluminum sheets with different joining conditions[J]. J Mech Eng,2011,57(4):323.
2 Pickin C G, et al. Joining of lightweight sandwich sheets to aluminum using self-pierce riveting[J]. Mater Des,2007,28(8):2361.
3 Lu Yi, He Xiaocong, Wang Yifeng, et al. Effect of local heat treatment on the mechanical properties of steel-titanium self-piercing riveted joints[J]. Mater Rev:Res,2015,29(5):120(in Chinese).
卢毅, 何晓聪, 王医锋, 等. 局部热处理对钢-钛自冲铆接头力学性能的影响[J]. 材料导报:研究篇,2015,29(5):120.
4 Zhou Changrong, Pan Qinglin, Zhu Chaoming,et al. Development and study of new types aluminum-lithium alloys[J]. Mater Rev,2004,18(5):30(in Chinese).
周昌荣, 潘青林, 朱朝明, 等. 新型铝锂合金的研究和发展[J]. 材料导报,2004,18(5):30.
5 He Xiaocong, Zhao Lun, Deng Chengjiang, et al. Self-piercing riveting of similar and dissimilar metal sheets of aluminum alloy and copper alloy[J]. Mater Des,2015,65:923
6 Zhao Lun, He Xiaocong, Xing Baoying, et al. Influence of sheet thickness on fatigue behavior and fretting of self-piercing riveted joints in aluminum alloy 5052[J]. Mater Des,2015,87:1010.
7 He Xiaocong. An approximate method via coefficient of variation for strength prediction of self-piercing riveted joints[C]//Applied Mechanics and Materials. Luoyang, China,2010:334.
8 Se-Hyung kang, Ho-Kyung Kim. Fatigue strength evaluation of self-piercing riveted Al-5052 joints under different specimen configurations[J]. Int J Fatigue,2015,80:58.
9 Xing Baoying, He Xiaocong, Wang Yuqi, et al. Static mechanical properties and failure mechanism of self-piercing riveted aluminum alloy joint[J]. Trans China Welding Institution,2016,37(6):47(in Chinese).
邢保英, 何晓聪, 王玉奇, 等. 铝合金自冲铆接头疲劳性能及失效机理[J]. 焊接学报,2016,37(6):47.
10 Karbhari V M, Wang Q. Influence of triaxial braid denier on ribbon-based fiber reinforced dental composites [J]. Dental Mater,2007,23(8):969.
11 何明鉴. 机械构件的微动疲劳[M]. 北京:国防工业出版社,1994:33.
12 Zhao Lun, He Xiaocong, Lu Yi, et al. Mechanism of fretting fatigue damage on single-lap self-piercing riveted joints of 5052 aluminum alloy[J]. Hot Working Technol,2016,45(5):16(in Chinese).
赵伦, 何晓聪, 卢毅, 等. 5052铝合金单搭自冲铆接头微动疲劳损伤机理研究[J]. 热加工工艺,2016,45(5):16.
13 熊峻江. 疲劳断裂可靠性工程学[M]. 北京:国防工业出版社,2008:4.
14 钟群鹏, 赵子华. 断口学[M]. 北京:高等教育出版社,2006:200.
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