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鉴于搅拌摩擦点焊受到国内外越来越多学者的关注研究,本文在大量文献分析的基础上对搅拌摩擦点焊进行了分类和总结.详细综述了搅拌摩擦点焊的工艺方法、接头组织和力学性能以及焊接过程数值模拟等方面的研究,归纳了该工艺在航空、航天和汽车领域的应用,最后,分析了搅拌摩擦点焊当前存在的主要问题.

参考文献

[1] 任淑荣,马宗义,陈礼清.搅拌摩擦焊接及其加工研究现状与展望[J].材料导报,2007(01):86-92.
[2] 李晓辉,汪苏,夏彩云.双焦点激光焊接工艺参数对焊缝成形影响[J].航空材料学报,2008(01):45-48.
[3] 赵衍华,张丽娜,刘景铎,杜岩锋,王国庆.搅拌摩擦点焊技术简介[J].航天制造技术,2009(02):1-5.
[4] THOMAS W M;NICHOLAS E D;NEEDHAM J C et al.Friction Stir Welding[P].Great Britain Patent:9125978.8,1991-12-06.
[5] Mishra RS;Ma ZY .Friction stir welding and processing[J].Materials Science & Engineering, R. Reports: A Review Journal,2005(1/2):III-0.
[6] 魏世同,郝传勇.01420铝锂合金的搅拌摩擦焊接[J].航空材料学报,2006(06):21-25.
[7] C J Dawes .An introduction to friction stir welding and its development[J].Welding & Metal Fabrication: Welding and Joining Practice and Technology,1995(1):13-14,16-0.
[8] RHODES C G;MAHONEY M W .Effect of friction stir welding on micro structure of 7075 aluminum[J].Scripta Materialia,1997,36(01):69-75.
[9] DAWES C J;THOMAS W M .Friction stir process welds aluminium alloys:the process produces low-distortion,high-quality,low-cost welds on aluminium[J].Welding Journal,1996,75(03):41-45.
[10] 汪洪峰,左敦稳,邵定林,李光,董春林.工艺参数对搅拌摩擦焊7022铝合金残余应力及耐磨耐蚀性能的影响[J].航空材料学报,2011(01):41-47.
[11] 代建辉,赵华夏,栾国红.无针搅拌摩擦点焊技术研究现状分析[J].航空制造技术,2013(11):52-55.
[12] SAKANO R;MURAKAMI K;YAMASHITA K.Development of spot FSW robot system for automobile body members[A].Kobe,Japan:TWI,2004
[13] N.-T. Nguyen;D.-Y. Kim;H. Y. Kim .Assessment of the failure load for an AA6061-T6 friction stir spot welding joint[J].Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture,2011(10):1746-1756.
[14] SCHILLING C;DOS SANTOS J .Method and device for linking at least two adjoining work pieces by friction welding[P].USA Patetit:6722556B2,2004-04-20.
[15] 杨洪刚,赵欣.铝合金回填式搅拌摩擦点焊工艺试验[J].焊接技术,2012(11):24-26.
[16] 王朗,王敏,郭立杰.LY12铝合金回填式搅拌摩擦点焊工艺研究[J].热加工工艺,2013(01):150-153.
[17] Y. Tozaki;Y. Uematsu;K. Tokaji .A newly developed tool without probe for friction stir spot welding and its performance[J].Journal of Materials Processing Technology,2010(6/7):844-851.
[18] BAKAVOS D;PRANGNELL P B .Effect of reduced or zero pin length and anvil insulation on friction stir spot welding thin gauge 6111 automotive sheet[J].SCIENCE AND TECHNOLOGY OF WELDING AND JOINING,2009,14(05):443-456.
[19] Chase D. Cox;Brian T. Gibson;Alvin M. Strauss;George E. Cook .Effect of Pin Length and Rotation Rate on the Tensile Strength of a Friction Stir Spot-Welded Al Alloy: A Contribution to Automated Production[J].Materials and Manufacturing Processes,2012(4/6):472-478.
[20] Philip B Prangnell;Dimitrios Bakavos .Novel Approaches to Friction Spot Welding Thin Aluminium Automotive Sheet[J].Materials Science Forum,2010(Pt.2):1237-1242.
[21] 方圆 .无匙孔搅拌摩擦点焊工艺及接头性能研究[D].镇江:江苏科技大学,2009.
[22] Y.F. Sun;H. Fujii;N. Takaki;Y. Okitsu .Microstructure and mechanical properties of mild steel joints prepared by a flat friction stir spot welding technique[J].Materials & design,2012(May):384-392.
[23] Y. F. Sun;H. Fujii;N. Takaki .Novel spot friction stir welding of 6061 and 5052 Al alloys[J].Science and Technology of Welding and Joining,2011(7):605-612.
[24] Y.F. Sun;H. Fujii;N. Takaki;Y. Okitsu .Microstructure and mechanical properties of dissimilar Al alloy/steel joints prepared by a flat spot friction stir welding technique[J].Materials & design,2013(May):350-357.
[25] VENUKUMAR S;YALAGI S G;MUTHUKUMARAN S et al.Static shear strength and fatigue life of refill friction stir spot welded AA6061-T6 sheets[J].SCIENCE AND TECHNOLOGY OF WELDING AND JOINING,2014,19(03):214-223.
[26] Mustafa Kemal Bilici;Ahmet irfan Yukler .Influence of tool geometry and process parameters on macrostructure and static strength in friction stir spot welded polyethylene sheets[J].Materials & design,2012(Jan.):145-152.
[27] D.-A. Wang;S.-C. Lee .Microstructures and failure mechanisms of friction stir spot welds of aluminum 6061-T6 sheets[J].Journal of Materials Processing Technology,2007(1/3):291-297.
[28] Dung-An Wang;Chia-Wei Chao;Pai-Chen Lin;Jun-Yen Uan .Mechanical characterization of friction stir spot microwelds[J].Journal of Materials Processing Technology,2010(14):1942-1948.
[29] 严铿,黎志云,付娟.复合搅拌摩擦点焊接头的金属流动行为[J].江苏科技大学学报(自然科学版),2008(02):35-38.
[30] Seung-Wook Baek;Don-Hyun Choi;Chang-Yong Lee .Microstructure and Mechanical Properties of Friction Stir Spot Welded Galvanized Steel[J].Materials transactions,2010(5):1044-1050.
[31] W. Yuan;R. S. Mishra;S. Webb;Y. L. Chen;B. Carlson;D. R. Herling;G. J. Grant .Effect of tool design and process parameters on properties of Al alloy 6016 friction stir spot welds[J].Journal of Materials Processing Technology,2011(6):972-977.
[32] LI W Y;LI J F;GAO D L.Pinless friction stir spot welding of 2024 aluminum alloy:effect of welding parameters[A].Singapore:International Institute of Welding,2013:72-77.
[33] Chen, YC;Komazaki, T;Tsumura, T;Nakata, K .Role of zinc coat in friction stir lap welding Al and zinc coated steel[J].Materials Science and Technology,2008(1):33-39.
[34] Keyan Feng;Mitsuhiro Watanabe;Shinji Kumai .Microstructure and Joint Strength of Friction Stir Spot Welded 6022 Aluminum Alloy Sheets and Plated Steel Sheets[J].Materials transactions,2011(7):1418-1425.
[35] T. Rosendo;B. Parra;M.A.D. Tier;A.A.M. da Silva;J.F. dos Santos;T.R. Strohaecker;N.G. Alcantara .Mechanical and microstructural investigation of friction spot welded AA6181-T4 aluminium alloy[J].Materials & design,2011(3):1094-1100.
[36] 蒋若蓉,李文亚,杨夏炜,高大路,王卫兵,栾国红.薄板铝合金无针搅拌摩擦焊搭接接头性能研究[C].第十八次全国焊接学术会议论文集,2013:1-5.
[37] Y. Uematsu;K. Tokaji;Y. Tozaki;T. Kurita;S. Murata .Effect of re-filling probe hole on tensile failure and fatigue behaviour of friction stir spot welded joints in Al-Mg-Si alloy[J].International Journal of Fatigue,2008(10/11):1956-1966.
[38] H. Badarinarayan;Q. Yang;S. Zhu .Effect of tool geometry on static strength of friction stir spot-welded aluminum alloy[J].International Journal of Machine Tools & Manufacture: Design, research and application,2009(2):142-148.
[39] H. Badarinarayan;Y. Shi;X. Li;K. Okamoto .Effect of tool geometry on hook formation and static strength of friction stir spot welded aluminum 5754-O sheets[J].International Journal of Machine Tools & Manufacture: Design, research and application,2009(11):814-823.
[40] Zhikang Shen;Xinqi Yang;Zhaohua Zhang;Lei Cui;Tielong Li .Microstructure and failure mechanisms of refill friction stir spot welded 7075-T6 aluminum alloy joints[J].Materials & design,2013(Feb.):476-486.
[41] Zhikang Shen;Xinqi Yang;Shuo Yang;Zhaohua Zhang;Yuhuan Yin .Microstructure and mechanical properties of friction spot welded 6061-T4 aluminum alloy[J].Materials & design,2014(Feb.):766-778.
[42] Preliminary study on the feasibility of friction spot welding in PMMA[J].Materials Letters,2010(19):2098-2101.
[43] Zhaohua Zhang;Xinqi Yang;Jialong Zhang;Guang Zhou;Xiaodong Xu;Binlian Zou .Effect of welding parameters on microstructure and mechanical properties of friction stir spot welded 5052 aluminum alloy[J].Materials & design,2011(8/9):4461-4470.
[44] Y.H. Yin .Microstructural features and mechanical properties of AM60 and AZ31 friction stir spot welds[J].Materials & design,2010(10):P.4764.
[45] YAMAMOTO M;GERLICH A;NORTH T H et al.Cracking in dissimilar Mg alloy friction stir spot welds[J].SCIENCE AND TECHNOLOGY OF WELDING AND JOINING,2008,13(07):583-592.
[46] T. G. Santos;R. M. Miranda;P. Vilaca .Microstructural mapping of friction stir welded AA 7075-T6 and AlMgSc alloys using electrical conductivity[J].Science and Technology of Welding and Joining,2011(7):630-635.
[47] Y.H. Yin;N. Sun;T.H. North;S.S. Hu .Microstructures and mechanical properties in dissimilar AZ91/AZ31 spot welds[J].Materials Characterization,2010(10):1018-1028.
[48] P. SU;A. GERLICH;T.H. NORTH .Intermixing in Dissimilar Friction Stir Spot Welds[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2007(3):584-595.
[49] Yasunari Tozaki;Yoshihiko Uematsu;Keiro Tokaji .Effect of tool geometry on microstructure and static strength in friction stir spot welded aluminium alloys[J].International Journal of Machine Tools & Manufacture: Design, research and application,2007(15):2230-2236.
[50] Yuan-Ching Lin;Ju-Jen Liu;Ben-Yuan Lin;Chun-Ming Lin;Hsien-Lung Tsai .Effects of process parameters on strength of Mg alloy AZ61 friction stir spot welds[J].Materials & design,2012(Mar.):350-357.
[51] Mustafa Kemal Bilici;Ahmet Irfan Yukler .Effects of welding parameters on friction stir spot welding of high density polyethylene sheets[J].Materials & design,2012(Jan.):545-550.
[52] Y. H. Yin;N. Sun;T. H. North .Influence of tool design on mechanical properties of AZ31 friction stir spot welds[J].Science and Technology of Welding and Joining,2010(1):81-86.
[53] Leonardo Contri Campanelli;Uceu Fuad Hasan Suhuddin;Armando Italo Sette Antonialli;Jorge Fernandez dos Santos;Nelson Guedes de Alcantara;Claudemiro Bolfarini .Metallurgy and mechanical performance of AZ31 magnesium alloy friction spot welds[J].Journal of Materials Processing Technology,2013(4):515-521.
[54] V.-X. Tran;J. Pan;T. Pan .Effects of processing time on strengths and failure modes of dissimilar spot friction welds between aluminum 5754-O and 7075-T6 sheets[J].Journal of Materials Processing Technology,2009(8):3724-3739.
[55] Mustafa Kemal Bilici .Application of Taguchi approach to optimize friction stir spot welding parameters of polypropylene[J].Materials & design,2012(Mar.):113-119.
[56] Don-Hyun Choi;Byung-Wook Ahn;Chang-Yong Lee .Effect of Pin Shapes on Joint Characteristics of Friction Stir Spot Welded AA5J32 Sheet[J].Materials transactions,2010(5):1028-1032.
[57] Hyung-Seop Shin;Yoon-Chul Jung .Characteristics of dissimilar friction stir spot welding of bulk metallic glass to lightweight crystalline metals[J].Intermetallics,2010(10):2000-2004.
[58] SHIN H S;JUNG Y C .Characteristics of friction stir spot welding of Zr-based bulk metallic glass sheets[J].Journal of Alloys and Compounds,2010,504(01):279-282.
[59] S. John Prakash;S. Muthukumaran .Refilling Probe Hole of Friction Spot Joints by Friction Forming[J].Materials and Manufacturing Processes,2011(10/12):1539-1545.
[60] M. Simoncini;A. Forcellese .Effect of the welding parameters and tool configuration on micro- and macro-mechanical properties of similar and dissimilar FSWed joints in AA5754 and AZ31 thin sheets[J].Materials & design,2012(Oct.):50-60.
[61] A. Forcellese;F. Gabrielli;M. Simoncini .Mechanical properties and microstructure of joints in AZ31 thin sheets obtained by friction stir welding using 'pin' and 'pinless' tool configurations[J].Materials & design,2012(Feb.):219-229.
[62] V.-X. Tran;J. Pan;T. Pan .Fatigue behavior of spot friction welds in lap-shear and cross-tension specimens of dissimilar aluminum sheets[J].International Journal of Fatigue,2010(7):1022-1041.
[63] UEMATSU Y;TOKAJI K;TOZAKI Y .Fatigue behaviour of dissimilar friction stir spot weld between A6061 and SPCC welded by a scrolled groove shoulder tool[J].Procedia Engineering,2010,2(01):193-201.
[64] J. B. Jordon;M. F. Horstemeyer;S. R. Daniewicz;H. Badarinarayan;J. Grantham .Fatigue Characterization and Modeling of Friction Stir Spot Welds in Magnesium AZ31 Alloy[J].Journal of engineering materials and technology,2010(4):041008:1-041008:10.
[65] Soran Hassanifard;Masoud Mohammadpour;Hossein Ahmadi Rashid .A novel method for improving fatigue life of friction stir spot welded joints using localized plasticity[J].Materials & design,2014(Jan.):962-971.
[66] Rao, H.M.;Jordon, J.B.;Barkey, M.E.;Guo, Y.B.;Su, X.;Badarinarayan, H..Influence of structural integrity on fatigue behavior of friction stir spot welded AZ31 Mg alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2013:369-380.
[67] Uematsu, Y.;Tokaji, K.;Tozaki, Y.;Nakashima, Y.;Shimizu, T. .Fatigue behaviour of dissimilar friction stir spot welds between A6061-T6 and low carbon steel sheets welded by a scroll grooved tool without probe[J].Fatigue & Fracture of Engineering Materials and Structures,2011(8):581-591.
[68] Y. Uematsu;T. Kakiuchi;Y. Tozaki .Comparative study of fatigue behaviour in dissimilar Al alloy/steel and Mg alloy/steel friction stir spot welds fabricated by scroll grooved tool without probe[J].Science and Technology of Welding and Joining,2012(5):348-356.
[69] TRAN V X;PAN J;PAN T .Fatigue behavior of aluminum 5754-O and 6111-T4 spot friction welds in lap-shear specimens[J].International Journal of Fatigue,2008,30(12):2175-2190.
[70] Chowdhury, S.H.;Chen, D.L.;Bhole, S.D.;Cao, X.;Wanjara, P..Lap shear strength and fatigue behavior of friction stir spot welded dissimilar magnesium-to-aluminum joints with adhesive[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2013:53-60.
[71] P. C. Lin;Z. M. Su;R. Y. He;Z. L. Lin.Failure modes and fatigue life estimations of spot friction welds in cross-tension specimens of aluminum 6061-T6 sheets[J].International Journal of Fatigue,2012:25-35.
[72] Karim H. Muci-Kiichler;Sindhura Kalagara;William J. Arbegast .Simulation of a Refill Friction Stir Spot Welding Process Using a Fully Coupled Thermo-Mechanical FEM Model[J].Journal of manufacturing science and engineering,2010(1):014503-1-014503-5.
[73] D.-A. Wang;C.-H. Chen .Fatigue lives of friction stir spot welds in aluminum 6061-T6 sheets[J].Journal of Materials Processing Technology,2009(1):367-375.
[74] Ahmadi, S.R.;Hassanifard, S.;Pour, M.M. .Fatigue life prediction of friction stir spot welds based on cyclic strain range with hardness distribution and finite element analysis[J].Acta Mechanica,2012(4):829-839.
[75] MOKHTAR AWANG;VICTOR H. MUCINO .Energy Generation during Friction Stir Spot Welding (FSSW) of Al 6061-T6 Plates[J].Materials and Manufacturing Processes,2010(1/3):167-174.
[76] GERLICH A;SU P;NORTH T .Peak temperatures and microstructures in aluminum and magnesium alloy friction stir spot welds[J].SCIENCE AND TECHNOLOGY OF WELDING AND JOINING,2005,10(06):647-652.
[77] H. Atharifar .Optimum parameters design for friction stir spot welding using a genetically optimized neural network system[J].Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture,2010(3):403-418.
[78] M. K. Kulekci;U. Esme;O. Er;Y. Kazancoglu .Modeling and prediction of weld shear strength in friction stir spot welding using design of experiments and neural network[J].Materialwissenschaft und Werkstofftechnik,2011(11):990-995.
[79] R. Karthikeyan;V. Balasubramanian .Predictions of the optimized friction stir spot welding process parameters for joining AA2024 aluminum alloy using RSM[J].The International Journal of Advanced Manufacturing Technology,2010(1/4):173-183.
[80] Dongun Kim;Harsha Badarinarayan;IllRyu;Ji Hoon Kim;Chongmin Kim;Kazutaka Okamoto;R. H. Wagoner;Kwansoo Chung .Numerical Simulation of Friction Stir Spot Welding Process for Aluminum Alloys[J].Metals and Materials International,2010(2):323-332.
[81] ZHANGZH;LIWY;LIJF.Numerical analysis on formation mechanism of Hook during pinless friction stir spot welding[A].Singapore:International Institute of Welding,2013
[82] 丁荣辉,黎文献,路彦军,肖于德,巢国辉.搅拌摩擦焊接技术最新进展[J].轻合金加工技术,2005(02):16-20.
[83] 秦红珊,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(07):27-30.
[84] 张健,董春林,李光,栾国红.搅拌摩擦点焊在航空领域的应用[J].航空制造技术,2009(16):70-73.
[85] 秦红珊,杨新岐.搅拌摩擦点焊技术及在汽车工业应用前景[J].汽车技术,2006(01):1-5.
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