材料科学与工程

铝-钢异种金属搅拌摩擦焊研究现状及展望

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  • 1. 中国科学院金属研究所沈阳材料科学国家(联合)实验室 沈阳 110016;
    2. 沈阳理工大学材料科学与工程学院 沈阳 110168
相倩,女,1992年出生.主要研究方向为异种金属搅拌摩擦焊.E-mail:15942008369@163.com

收稿日期: 2016-09-25

  修回日期: 2017-02-05

  网络出版日期: 2017-10-20

基金资助

国家自然科学基金资助项目(51331008)。

Research Status and Prospect on Friction Stir Welded Dissimilar Al-Steel Joints

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  • 1. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016;
    2. Materials Science and Engineering, Shenyang Ligong University, Shenyang 110168

Received date: 2016-09-25

  Revised date: 2017-02-05

  Online published: 2017-10-20

摘要

搅拌摩擦焊作为一种新型的固相连接技术,具有优质、高效、节能、环境友好等优点,广泛应用于航空航天、船舶、轨道交通、汽车等工业领域。为了实现车体轻量化,铝-钢异种金属的搅拌摩擦焊研究得到越来越多的重视。从搅拌摩擦焊的工艺、组织及性能三个方面,对铝-钢异种金属搅拌摩擦焊的国内外研究现状进行综述。研究现状表明,通过控制界面金属间化合物的生成量,可得到高质量的铝-钢异种金属的搅拌摩擦对焊、搭焊及点焊接头,优化工艺参数下其拉伸性能可与母材相当,然而在铝-钢界面的精细结构表征和复杂应力状态下接头的力学性能方面还需要进一步的深入研究。此外,对未来铝-钢异种金属搅拌摩擦焊的研究方向进行展望。

本文引用格式

相倩, 吕念春, 薛鹏, 马宗义 . 铝-钢异种金属搅拌摩擦焊研究现状及展望[J]. 机械工程学报, 2017 , 53(20) : 28 -37 . DOI: 10.3901/JME.2017.20.028

Abstract

Friction stir welding (FSW) is a relatively new solid-state joining process, which is an energy efficient, environment friendly and versatile joining technique. Therefore it has been widely used in aerospace, marine, railway, automobile and other industrial fields. In order to realize the light weight of the vehicle, the research on the FSW of dissimilar Al alloy and steel has been paid more and more attention. In this review article, the current state of understanding and development on the FSW of Al alloy and steel are discussed. Particular emphasis was given to three aspects: the FSW parameters, microstructural evolution and mechanical properties. It is demonstrated that high-quality FSW joints of butt, lap and spot welding types can be obtained by controlling the formation of the intermetallic compounds on the Al-Fe interface, and the tensile strength is comparable to the Al base metal under optimized FSW parameters, however, further study is still needed to investigate the accurate microstructure of the Al-Fe interface and the mechanical behavior under complex stress state. At the same time, the further research and development direction in FSW of Al and steel are suggested.

参考文献

[1] 龙江启,兰凤崇,陈吉清. 车身轻量化与钢铝一体化架构新技术研究进展[J]. 机械工程学报,2008,44(6):27-35. LONG Jiangqi,LAN Fengchong,CHEN Jiqing. New technology of lightweight and steel-aluminum hybrid structure car body[J]. Chinese Journal of Mechanical Engineering,2008,44(6):27-35.
[2] 邢亮,马向东,李龙波,等. 铝合金与钢的焊接现状及发展趋势[J/OL]. 中国科技论文在线,2013[2013-04-01]. http://www.paper.edu.cn/html/releasepaper/2013/04/18/. XING Liang,MA Xiangdong,LI Longbo,et al. The study progress and development on the welding of Al alloys to steel[J]. Sciencepaper Online,2013[2013-04-01]. http://www.paper.edu.cn/html/releasepaper/2013/04/18/.
[3] MISHRA R S,MA Z Y. Friction stir welding and processing[J]. Materials Science and Engineering R,2005,50(1-2):1-78.
[4] 汪建梅. 铝与钢异种材料焊接工艺研究[D]. 沈阳:沈阳航空航天大学,2013. WANG Jianmei. Welding research of aluminum-steel dissimilar materials[D]. Shenyang:Shenyang Aerospace University,2013.
[5] 李亚江. 焊接冶金学—材料焊接性[M]. 北京:机械工业出版社,2006. LI Yajiang. Welding metallurgy-weldability of materials[M]. Beijing:China Machine Press,2006.
[6] 李亚江,王娟,刘鹏. 异种难焊材料的焊接及应用[M]. 北京:化学工业出版社,2003. LI Yajiang,WANG Juan,LIU Peng. Welding and application of hard-to-weld dissimilar materials[M]. Beijing:Chemical Industry Press, 2003.
[7] 薛鹏,张星星,吴利辉,等. 搅拌摩擦焊接与加工研究进展[J]. 金属学报,2016,52(10):1222-1238. XUE Peng,ZHANG Xingxing,WU Lihui,et al. Research progress on friction stir welding and processing[J]. Acta Metallurgica Sinica,2016,52(10):1222-1238.
[8] MASSALSKI T B. Binary alloy phase diagrams[M]. New York:ASM International,1990.
[9] UZUN H,DONNE C D,ARGAGNOTTO A,et al. Friction stir welding of dissimilar Al6013-T4 to X5CrNi18-10 stainless steel[J]. Materials & Design,2005,26(1):41-46.
[10] LEE W B,SCHMUECKER M,MERCARDO U A,et al. Interfacial reaction in steel-aluminum joints made by friction stir welding[J]. Scripta Materialia,2006,55(4):355-358.
[11] CHEN C M,KOVACEVIC R. Joining of Al 6061 alloy to AISI1018 steel by combined effects of fusion and solid state welding[J]. International Journal of Machine Tools and Manufacture,2004,44(11):1205-1214.
[12] JIANG W H,KOVACEVIC R. Feasibility study of friction stir welding of 6061-T6 aluminum with AISI 1018 steel[J]. Journal of Engineering Manufacture,2004,218(10):1323-1331.
[13] WATANABE T,TAKAYAMA H,YANAGISAWA A. Joining of aluminum alloy to steel by friction stir welding[J]. Journal of Materials Processing Technology,2006,178(1-2):342-349.
[14] KIMAPONG K,WATANABE T. Effect of Welding process parameters on mechanical property of FSW lap joint between aluminum alloy and steel[J]. Materials Transactions,2005,46(10):2211-2217.
[15] KIMAPONG K,WATANABE T. Lap joint of A5083 aluminum alloy and SS400 steel by friction stir welding[J]. Materials Transactions,2005,46(4):835-841.
[16] ELREFAEY A,GOUDA M,TAKAHASHI M. Characterization of aluminum/steel lap joint by friction stir welding[J]. Journal of Materials Engineering and Performance,2005,14(1):10-17.
[17] ELREFAEY A,TAKAHASHI M,IKEUCHI K. Friction-stir-welded lap joint of aluminum to zinc-coated steel[J]. Quarterly Journal of the Japan Welding Society,2010,23(2):186-193.
[18] CHEN Y C,NAKATA K. Effect of the surface state of steel on the microstructure and mechanical properties of dissimilar metal lap joints of aluminum and steel by friction stir welding[J]. Metallurgical and Materials Transactions A,2009,39(8):1985-1992.
[19] 张贵锋,苏伟,韦中新,等. 搅拌摩擦钎焊制备铝/钢防腐双金属复合板新技术[J]. 焊管,2010,33(3):18-24. ZHANG Guifeng,SU Wei,WEI Zhongxin,et al. Fabrication of Al/steel bimetallic composite plate by a novel process of friction stir brazing (FSB)[J]. Welded Pipe and Tube,2010,33(3):18-24.
[20] THOMAS W M,NICHOLAS E D,NEEDHAM J C,et al. Friction welding[P]. US Patent 5460317,1995.
[21] 王希靖,张亚州,张忠科,等. 铝/钢无匙孔搅拌摩擦点焊焊接性分析[J]. 焊接学报,2015,36(1):1-4. WANG Xijing,ZHANG Yazhou,ZHANG Zhongke,et al. Welding analyses of friction stir spot welding without keyhole between aluminum alloy and zinc-coated steel[J]. Transactions of the China Welding Institution,2015,36(1):1-4.
[22] SPINELLA D J,BROCKENBROUGH J R,FRIDY J M. Trends in aluminum resistance spot welding for the automotive industry[J]. Welding Journal,2005,84(1):34-40.
[23] 秦红姗,杨新岐. 一种替代传统电阻点焊的创新技术—搅拌摩擦点焊[J]. 电焊机,2006,36(7):27-40. QIN Hongshan,YANG Xinqi. A new innovative joining technology to replace conventional resistance spot welding-friction stir spot welding[J]. Electric Welding Machine,2006,36(7):27-40.
[24] MIYAGAWA K,TSUBAKI M,YASUI T,et al. Spot welding between aluminium alloy and low-carbon steel by friction stirring[J]. Welding International,2009,23(8):559-564.
[25] FIGNER G,VALIANT R,WEINBERGER T,et al. Friction stir spot welds between aluminium and steel automotive sheets:Influence of welding parameters on mechanical properties and microstructure[J]. Welding in the World,2009,53(1-2):13-23.
[26] BOZZI S,ETTER A L,BAUDIN T. Mechanical behavior and microstructure of aluminum-steel sheets joined by FSSW[J]. Texture Stress and Microstructure,2008,28:1-8.
[27] FEREIDUNI E,MOVAHEDI M,KOKABI A H. Aluminum/steel joints made by an alternative friction stir spot welding process[J]. Journal of Materials Processing Technology,2015,224:1-10.
[28] IBRAHIM I,UEMATSU Y,KAKIUCHI T. Fatigue behaviour of dissimilar Al alloy/galvanised steel friction stir spot welds fabricated by scroll grooved tool without probe[J]. Science and Technology of Welding and Joining,2015,20(8):670-678.
[29] CHEN Y C,GHOLINIA A,PRANGNELL P B. Interface structure and bonding in abrasion circle friction stir spot welding:A novel approach for rapid welding aluminium alloy to steel automotive sheet[J]. Materials Chemistry and Physics,2012,134(1):459-463.
[30] DEHGHANI M,AKBARI MOUSAVI S A A,AMADEH A. Effects of welding parameters and tool geometry on properties of 3003-H18 aluminum alloy to mild steel friction stir weld[J]. Transactions of Nonferrous Metals Society of China,2013,23(7):1957-1965.
[31] LIU X,LAN S H,NI J. Analysis of process parameters effects on friction stir welding of dissimilar aluminum alloy to advanced high strength steel[J]. Materials & Design,2014,59:50-62.
[32] COELHO R S,KOSTKA A,dos SANTOS J F,et al. Friction-stir dissimilar welding of aluminium alloy to high strength steels:Mechanical properties and their relation to microstructure[J]. Materials Science and Engineering A,2012,556:175-183.
[33] KUNDU S,ROY D,BHOLA R,et al. Microstructure and tensile strength of friction stir welded joints between interstitial free steel and commercially pure aluminium[J]. Materials & Design,2013,50:370-375.
[34] MOVAHEDI M,KOKABI A H,REIHANI S M S,et al. Effect of tool travel and rotation speeds on weld zone defects and joint strength of aluminium steel lap joints made by friction stir welding[J]. Science and Technology of Welding and Joining,2012,17(2):162-167.
[35] HAGHSHENAS M,ABDEL-GWAD A,OMRAN A M. Friction stir weld assisted diffusion bonding of 5754 aluminum alloy to coated high strength steels[J]. Materials & Design,2014,55:442-449.
[36] OGURA T,SAITO Y,NISHIDA T. Partitioning evaluation of mechanical properties and the interfacial microstructure in a friction stir welded aluminum alloy/stainless steel lap joint[J]. Scripta Materialia,2012,66(8):531-534.
[37] OGURA T,NISHIDA T,TANAKA Y. Microscale evaluation of mechanical properties of friction stir welded A6061 aluminium alloy/304 stainless steel dissimilar lap joint[J]. Science and Technology of Welding and Joining,2013,18(2):108-113.
[38] MOVAHEDI M,KOKABI A H,REIHANI S M S. Effect of annealing treatment on joint strength of aluminum/steel friction stir lap weld[J]. Materials & Design,2013,44:487-492.
[39] XUE P,XIAO B L,NI D R,et al. Enhanced mechanical properties of friction stir welded dissimilar Al–Cu joint by intermetallic compounds[J]. Materials Science and Engineering A,2010,527(21-22):5723-5727.
[40] SPRINGER H,KOSTKA A,dos SANTOS J F. Influence of intermetallic phases and Kirkendall-porosity on the mechanical properties of joints between steel and aluminium alloys[J]. Materials Science and Engineering A,2011,528(13-14):4630-4642.
[41] SPRINGER H,KOSTKA A,PAYTON E J. On the formation and growth of intermetallic phases during interdiffusion between low-carbon steel and aluminum alloys[J]. Acta Materialia,2011,59(4):1586-1600.
[42] BOZZI S,HELBERT-ETTER A L,BAUDIN T. Intermetallic compounds in Al 6016/IF-steel friction stir spot welds[J]. Materials Science and Engineering A,2010,527(16-17):4505-4509.
[43] TRAN V X,PAN J. Fatigue behavior of dissimilar spot friction welds in lap-shear and cross-tension specimens of aluminum and steel sheets[J]. International Journal of Fatigue,2010,32(7):1167-1179.
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