论述了微动疲劳,尤其是铝合金微动疲劳的研究的必要性;阐述了微动疲劳实验设计的最新方案与优化实验结果.介绍了微动疲劳的影响因素,特别是从接触压力、应力幅度及摩擦系数三点进行了说明.说明微观结构对微动疲劳的影响的决定性作用,对微动疲劳寿命的预测的最新方法进行了介绍.重点阐述了当前的研究现状和成果,并引入了微动疲劳的最新的防护措施.最后,根据当前的研究情况,提出了一些尚待解决的问题.
参考文献
[1] | Waterhouse R B.Fretting corrosion[M].Oxford:pergamon Press,1972 |
[2] | R.B.Waterhouse.Fretting fatigue[M].Elsevier Applied Science,London,1981 |
[3] | 杨茂胜,陈跃良,郁大照,胡家林.微动疲劳研究的现状与展望[J].强度与环境,2008(06):45-54. |
[4] | 何明鉴.机械构件的微动疲劳[M].北京:国防工业出版社,1994 |
[5] | 蒋小松,何国求,刘兵,向学渊,胡正飞,朱旻昊.材料的微动疲劳机理及防护措施的研究进展[J].材料导报,2008(12):10-13. |
[6] | C. Santus .Fretting fatigue of aluminum alloy in contact with steel in oil drill pipe connections, modeling to interpret test results[J].International Journal of Fatigue,2008(4):677-688. |
[7] | P. Orbanic;M. Fajdiga .A neural network approach to describing the fretting fatigue in aluminium-steel couplings[J].International Journal of Fatigue,2003(3):201-207. |
[8] | Ouaki b;Goudreau C.Fretting fatigue analysis of aluminium conductor wires near the suspension clamp:metallurgical and fracture mechanics analysis[M]. |
[9] | Frederic Lanoue;Aurelian Vadean;Bernard Sanschagrin .Finite element analysis and contact modelling considerations of interference fits for fretting fatigue strength calculations[J].Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies,2009(10):1587-1602. |
[10] | Ran Guoa;Rui-Chun Duanb .Fretting fatigue behavior of riveted Al 6XXX components.Materials[J].Science and engineering A,2008,483-484:398-401. |
[11] | Rossino LS;Castro F C.Issues on the mean stress effect in fretting fatigue of a 7050-T7451 Al alloy posed by new experimental data[J].International Journal of Fatigue,2009 |
[12] | Prithvi Raj Arora;M.S.D. Jacob;Mohd. Sapuan Salit .Experimental evaluation of fretting fatigue test apparatus[J].International Journal of Fatigue,2007(5):941-952. |
[13] | B. Alfredsson;A. Cadario .A study on fretting friction evolution and fretting fatigue crack initiation for a spherical contact[J].International Journal of Fatigue,2004(10):1037-1052. |
[14] | Sachin R. Shinde;David W. Hoeppner .Fretting fatigue behavior in 7075-T6 aluminum alloy[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2006(3/4):426-434. |
[15] | C. Giummarra;G. H. Bray;D. J. Duquette .Fretting fatigue in 2XXX series aerospace aluminium alloys[J].Tribology International,2006(10):1206-1212. |
[16] | Matthew P. Szolwinski;Thomas N. Farris .Observation, analysis and prediction of fretting fatigue in 2024-T351 aluminum alloy[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,1998(1):24-36. |
[17] | VENKATESH T A et al.An Experimental Investigation of Fretting Fatigue in Ti-6Al-4V:the Role of Contact Conditions and Microstructure[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2011,32A(05):1131. |
[18] | Prithvi Raj Arora;M.S.D. Jacob;Mohd. Sapuan Salit .Experimental evaluation of fretting fatigue test apparatus[J].International Journal of Fatigue,2007(5):941-952. |
[19] | 高护生,周惠久.接触压力对微动疲劳强度的影响[J].西安石油学院学报,1993(03):31. |
[20] | Lykins C.D.;Mall S. .An evaluation of parameters for predicting fretting fatigue crack initiation[J].International Journal of Fatigue,2000(8):703-716. |
[21] | Sanat Wagle;Hiroshi Kato .Ultrasonic detection of fretting fatigue damage at bolt joints of aluminum alloy plates[J].International Journal of Fatigue,2009(8/9):1378-1385. |
[22] | Dobromirski J M.Variables of fretting process:are they 50 of them[A].ASTM |
[23] | Nishioka,K;K.Hirakawa .Fundamental Investigations of Fretting Fatigue.Iv.The Effect of Mean Stress[J].Bulletin of the Japan Society of Mechanical Engineers,1969,12(51):408-414. |
[24] | Ran Guo;Rui-Chun Duan;Gerard Mesmacque;Lixiang Zhang;Abdelwaheb Amrouche;Rongxin Guo.Fretting fatigue behavior of riveted Al 6XXX components[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008:398-401. |
[25] | Sergio Munoz;Carlos Navarro;Jaime Dommguez .Application of fracture mechanics to estimate fretting fatigue endurance curves[J].Engineering Fracture Mechanics,2007(14):2168-2186. |
[26] | 乐晓斌;何明鉴 .微动疲劳寿命预测方法的探讨[J].机械强度,1996,18(03):53-55. |
[27] | M. Buciumeanu;I. Crudu;L. Palaghian;A. S. Miranda;F. S. Silva .Influence of wear damage on the fretting fatigue life prediction of an A17175 alloy[J].International Journal of Fatigue,2009(8/9):1278-1285. |
[28] | G.H. Majzoobi;M. Jaleh .Duplex surface treatments on AL7075-T6 alloy against fretting fatigue behavior by application of titanium coating plus nitriding[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2007(0):673-681. |
[29] | Halil Ibrahim Y?KSEL.EFFECTS OF SHOT-PEENING ON HIGH CYCLE FRETTING FATIGUE BEHAVIOR OF Ti-6Al-4V[J].JOURNAL OF AERONAUTICS AND SPACE TECHNOLOGIES,2003(01):51-64. |
[30] | N.K. Ramakrishna Naidu;S.G.S. Raman .Effect of shot blasting on plain fatigue and fretting fatigue behaviour of Al-Mg-Si alloy AA6061[J].International Journal of Fatigue,2005(3):323-331. |
[31] | B. Rajasekaran;S. Ganesh Sundara Raman;S. V. Joshi;G. Sundararajan .Effect of microarc oxidised layer thickness on plain fatigue and fretting fatigue behaviour of Al-Mg-Si alloy[J].International Journal of Fatigue,2008(7):1259-1266. |
[32] | G. H. Majzoobi;J. Nemati;A. J. Novin Rooz;G. H. Farrahi .Modification of fretting fatigue behavior of AL7075-T6 alloy by the application of titanium coating using IBED technique and shot peening[J].Tribology International,2009(1):121-129. |
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