随着镁合金应用的日益广泛,其疲劳性能也越来越受到人们的重视.对近年来有关表面处理镁合金疲劳性能的研究进行了总结,归纳了喷丸处理、滚压强化、阳极氧化、激光熔融等表面处理方法对镁合金疲劳性能的影响及机理.最后对改善镁合金疲劳性能未来应重点发展的表面处理技术进行了展望.
参考文献
[1] | Gray J E;Luan 13 .Protective coatings on magnesium and its alloys--A critical review[J].Journal of Alloys and Compounds,2002,336:88. |
[2] | Viehweger B;Leyens C et al.Straube O:Magnesium entwicklungen fiir den Automobilbau[J].ATZ-Automobiltechnische Zeitschrift,2005,107(10):922. |
[3] | Nobre JP.;Dias AM.;Kornmeier M. .An empirical methodology to estimate a local yield stress in work-hardened surface layers[J].Experimental Mechanics,2004(1):76-84. |
[4] | Hilpert M;Wagner L;Kainer,K.U.Magnesium alloys and their applications[M].Wiley-VCH:Weinheim,2000:525. |
[5] | Altenberger I.[A].Wiley-VCH:Weinheim,2003:421. |
[6] | Wagner, L .Mechanical surface treatments on titanium, aluminum and magnesium alloys[J].Materials Science & Engineering. A, Structural Materials: Properties, Microstructure and Processing,1999(2):210-216. |
[7] | Zhang P;Lindemann J .Influence of shot peening on high cycle fatigue properties of the high-strength wrought magnesium alloy AZ80[J].Scripta Materialia,2005,52:485. |
[8] | Deiseroth D;Zinn W;Scholtes B.Consequences of mechanical surface treatments on near surface properties of Mg-alloyAZ31[A].Wolfsburg.Germany,1998:409. |
[9] | Zinn W.;Scholtes B. .Mechanical Surface Treatments of Lightweight Materials-Effects on Fatigue Strength and Near-Surface Microstructures[J].Journal of Materials Engineering and Performance,1999(2):145-151. |
[10] | 陈振华.变形镁合金[M].北京:化学工业出版社,2005 |
[11] | 钱存济,黄洪生,施引礽.航空铸镁机轮滚压强化[J].西安工业学院学报,1993(01):61-65. |
[12] | Zhang P;Lindemann J .Effect of roller burnishing on the high cycle fatigue performance of the high-strength wrought magnesium alloy AZ80[J].Scripta Materialia,2005,52:1011. |
[13] | Wagner L;Hilpert M;Wendt J et al.On methods for improving the fatigue performance of the wrought magnesium alloys AZ31 and AZ80[J].Materials Science Forum,2003,419-422:93. |
[14] | Wendt J;Hilpert M;Koese J.Surface and environmental effects on the fatigue behavior of wrought and cast magnesium alloys[A].,2001:281. |
[15] | 冯忠信;张建中;陈新增 .ZM1Mg合金的表面滚压强化[J].金属学报,1994,30(09):422. |
[16] | 冯忠信;何家文 等.ZM1镁合金的滚压形变强化及机理[J].机械工程学报,1996,32(01):103. |
[17] | G. Chen;H.Lou .Improvement of Fatigue Behaviour of Mechanically Surface TreatedMaterials by annealing[J].Scripta materialia,1999(8):873-881,-0. |
[18] | Ostrovsky,Ⅱ ya .Method of anodizing of magnesium and magnesium alloys and producing conductive layers on an anodized surface[P].US 20030000847,2003-01-02. |
[19] | Guang Ling Song;Andrej Atrens .Corrosion mechanisms of magnesium alloys[J].Advanced Engineering Materials,1999(1):11-33. |
[20] | Osgood C C.Fatigue Design[J].New York:Wiley-Interscience,1982 |
[21] | Saijo A;Hino M;Hiramatsu M et al.Environmentsl friendly anodizing on AZ91D magnesium alloys and coating characteristics[J].Acta Metallurgica Sinica,2005,18(03):411. |
[22] | Ogarevic V V;Stephens R I .Fatigue of magnesium alloys[J].Annual Review of Materials Science,1990,20:141. |
[23] | Eifert A J;Thomas J P;Rateick R G .Influence of anodization on the fatigue life of WFA3-T6 magnesium[J].Scripta Materialia,1999,40(08):929. |
[24] | Yerokhin AL;Shatrov A;Samsonov V;Shashkov P;Leyland A;Matthews A .Fatigue properties of Keronite((R)) coatings on a magnesium alloy[J].Surface & Coatings Technology,2004(1):78-84. |
[25] | Ferguson WG.;Liu W.;MacCulloch J. .Corrosion fatigue performance of magnesium alloys[J].International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics,2003(8/9):1601-1607. |
[26] | Eliezer E M;Gutman E et al.Corrosion fatigue and mechanochemical behavior of magnesium alloys[J].Corrosion Review,1998,16:1. |
[27] | 孙希泰.材料表面强化技术[M].北京:化学工业出版社,2005 |
[28] | Haferkamp H;Dilthey U.Beam welding of magnesium alloys[A].Wolfsburg.Germany,1998:595. |
[29] | Hilpert M;Wagner L .Corrosion fatigue behavior of the high strength magnesium AZ80[J].Materials Engineering and Performance,2000,9:402. |
[30] | Kusukawa K;Takao K .Fatigue crack initiation behavior and notch sensitivity of AZ92A magnesium alloy[J].Transactions of Japan Society of Mechanical Engineers Series A,2002,68(07):1092. |
[31] | Koutsomicha[is A;Saettas L;Badekas H .Laser treatment of magnesium[J].Journal of Materials Science,1994,29:6543. |
[32] | Haferkamp H;Niemeyer M et al.Laser and electron beam welding of magnesium materials[J].Welding and Cutting,2000,52(08):178. |
[33] | Haferkamp H;yon Alvensleben M.Fatigue strength of laser beam welded magnesium alloys[A].Vienna,Austria,1999:389. |
[34] | Dube D;Fiset M.Characterization and performance of laser melted AZ91D and AM60B[J].Materials Science and Engineering,2001(A299):38. |
[35] | Clemens JA;Wolke JG;Klein CP;de Groot-K .Fatigue behavior of calcium phosphate coatings with different stability under dry and wet conditions.[J].Journal of biomedical materials research, Part B. Applied biomaterials,1999(5):741-748. |
[36] | 叶宏,孙智富,张津,詹捷.AZ91D镁合金表面热喷涂陶瓷涂层研究[J].现代制造工程,2004(11):61-62. |
[37] | 曾荣昌,韩恩厚,柯伟,刘路,徐永波.挤压镁合金AM60的腐蚀疲劳[J].材料研究学报,2005(01):1-7. |
[38] | Wick A;Schulze V;Voehringer O.Influence of the shot reening temperature on the relaration behaviour of residual stresses during cyclit bending[A].Institute of Precision Mechanics,Warsaw,Poland,1999:42. |
[39] | Menig R.;Schulze V.;Vohringer O. .Optimized warm peening of the quenched and tempered steel AISI 4140[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):198-206. |
[40] | Sun H Q;Shi Y N;Zhang M X et al.Plastic strain-induced grain refinement in the nanometer scale in a Mg alloy[J].Acta Materialia,2007,55:975. |
[41] | Lu K;Lu J .Nanostructured surface layer on metallic materials induced by surface mechanical attrition treatment[J].Materials Science and Engineering,2004,A375-377:38. |
[42] | Tao N R;Wang Z B et al.An investigation of surface nanocrystallization mechanism in Fe induced by surface mechanical attrition treatment[J].Acta Materialia,2002,50:4603. |
[43] | Roland T;Retraint D;Lu K;Lu J .Fatigue life improvement through surface nanostructuring of stainless steel by means of surface mechanical attrition treatment[J].Scripta materialia,2006(11):1949-1954. |
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