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对近年来颗粒增强铝基复合材料疲劳性能研究进展进行了总结,介绍了颗粒增强铝基复合材料的强化机制,概括了影响材料疲劳性能的几个重要的因素,从裂纹萌生以及裂纹扩展方面阐述了其疲劳行为及微观失效机制,并提出了未来颗粒增强铝基复合材料的研究趋势.

参考文献

[1] 樊建中,石力开.颗粒增强铝基复合材料研究与应用发展[J].宇航材料工艺,2012(01):1-7.
[2] 沈军,谢怀勤.航空用复合材料的研究与应用进展[J].玻璃钢/复合材料,2006(05):48-54.
[3] 陈剑锋,武高辉,孙东立,姜龙涛.金属基复合材料的强化机制[J].航空材料学报,2002(02):49-53.
[4] Chawla N;Habel U;Shen Y L et al.The effect of matrix microstructure on the tensile and fatigue behavior of SiC particle-reinforced 2080 Al matrix composites[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2000,31(2):531.
[5] Chawla N;Jones J W;Andres C et al.Effect of SiC volume fraction and particle size on the fatigue resistance of a 2080 Al/SiCp composite[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1998,29(11):2843.
[6] Davis L C;Allison J E .Residual stresses and their effects on deformation[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1993,24(11):2487.
[7] Ibrahim I A;Mohamed F A;Lavernia E J .Particulate reinforced metal matrix composites-A review[J].Journal of Materials Science,1991,26(5):1137.
[8] Christman T;Suresh S .Microstructural development in an aluminum alloy-SiC whisker composite[J].Acta Metall,1988,36(7):1691.
[9] Taya M;Mori T .Dislocations punched-out around a short fiber in a short fiber metal matrix composite subjected to uniform temperature change[J].Acta Metall,1987,35(1):155.
[10] Javier LLorca .Fatigue of particle-and whisker-reinforced metal-matrix composites[J].Progress in materials science,2002(3):283-353.
[11] Starink M J;Wang P;Sinclair I et al.Microstructure and strengthening of Al-Li-Cu-Mg alloys and MMCs:Ⅱ.Modelling of yield strength[J].ACTA MATERIALIA,1999,47(14):3855.
[12] Cevdet Kaynak;Suha Boylu .Effects of SiC particulates on the fatigue behaviour of an Al-alloy matrix composite[J].Materials & Design,2006(9):776-782.
[13] Hall J N;Wayne Jones J;Sachdev A K .Particle size,volume fraction and matrix strength effects on fatigue behavior and particle fracture in 2124 aluminurn-SiCp composites[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1994,183(1):69.
[14] Park B G;Crosky A G;Hellier A K .High cycle fatigue behaviour of microsphere Al2O3-Al particulate metal matrix composites[J].Composites Part B:Eng,2008,39(7):1257.
[15] Bekheet N E;Gadelrab R M;Salah M F et al.The effects of aging on the hardness and fatigue behavior of 2024 Al alloy/SiC composites[J].Materials and Design,2002,23(2):153.
[16] N. Chawla;Yu. -Lin. Shen .Mechanical behavior of particle reinforced metal matrix composites[J].Advanced Engineering Materials,2001(6):357-370.
[17] Kumai S;Hu J;Higo Y et al.Effect of dendrite cell size and particle distribution on the near-threshold fatigue crake growth behaviour of cast Al-SiCp composites[J].Acta Metall,1996,44(6):2249.
[18] Zhenzhong CHEN,Ping HE,Liqing CHEN.The Role of Particles in Fatigue Crack Propagation of Aluminum Matrix Composites and Casting Aluminum Alloys[J].材料科学技术学报(英文版),2007(02):213-216.
[19] Montanari R;Sili A;Costanza G .Improvement of the fatigue behaviour of Al 6061/20% SiCp composites by means of titanium coatings[J].Composites Science and Technology,2001,61(14):2047.
[20] G. Costanza;R. Montanari;F. Quadrini;A. Sili .Influence of Ti coatings on the fatigue behaviour of Al-matrix MMCs. Part Ⅰ: fatigue tests and materials characterization[J].Composites, Part B. Engineering,2005(5):439-445.
[21] 李伟;李沛勇;何晓磊 .喷丸强化对SiC颗粒增强铝基复合材料疲劳性能的影响[J].材料工程,2009,30(Z1):98.
[22] C. S. Shin;J. C. Huang .Effect of temper, specimen orientation and test temperature on the tensile and fatigue properties of SiC particles reinforced PM 6061 Al alloy[J].International Journal of Fatigue,2010(10):1573-1581.
[23] Fatigue behaviour of SiC-particulate-reinforced aluminium alloy composites with different particle sizes at elevated temperatures[J].Composites science and technology,2008(13):p.2785.
[24] Kumai S;King J E;Knott J F .Fatigue in SiC-particulatereinforced aluminium alloy composites[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1991,146(1):317.
[25] N. Chawla;C. Andres .The Interactive Role of Inclusions and SiC Reinforcement on the High-Cycle Fatigue Resistance of Particle Reinforced Metal Matrix Composites[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2000(3):951-958.
[26] Tszeng T C .The effects of particle clustering on the mechanical behavior of particle reinforced composites[J].Composites Part B:Eng,1998,29(3):299.
[27] Boselli J;Gregson P J;Sinclair I .Quantification of particle distribution effects on fatigue in an Al-SiCp composite[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2004,379(1):72.
[28] Bonnen J J;Allison J E;Jones J W .Fatigue behavior of a 2xxx series aluminum alloy reinforced with 15 vol% SiCp[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1991,22(5):1007.
[29] 邹利华,樊建中,左涛,马自力,魏少华.粉末冶金15%SiCp/2009Al复合材料的高周疲劳性能[J].中国有色金属学报,2010(10):1955-1961.
[30] S.C. Tjong;G.S. Wang;Y-.W. Mai .High cycle fatigue response of in-situ Al-based composites containing TiB_2 and Al_2O_3 submicron particles[J].Composites science and technology,2005(10):1537-1546.
[31] 周云峰,毛昌辉,杨剑,梁秋实,刘坤.WCp/2024Al复合材料疲劳性能研究[J].稀有金属,2010(06):870-874.
[32] Liu G;Shang J K .Fatigue crack tip opening behavior in particulate reinforced Al-alloy composites[J].ACTA MATERIALIA,1996,44(1):79.
[33] Bonnen J J;You C P;Allison J E.Fatigue properties of SiC particulate reinforced Al-alloys[A].Honolulu,1990
[34] Mason J J;Ritchie R O .Fatigue crack growth resistance in SiC particulate and whisker reinforced P/M 2124 aluminum matrix composites[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1997,231(1):170.
[35] Xu X X;King J E;Bhattacharjee D .Crack deflection during fatigue and monotonic fracture of a SiC whisker reinforced 2009 aluminium alloy[J].ACTA METALLURGICA ET MATERIALIA,1994,42(7):2353.
[36] Knowles D M;King J E .The influence of aging on fatigue crack growth in SiC-particulate reinforced 8090[J].ACTA METALLURGICA ET MATERIALIA,1991,39(5):793.
[37] 钟群鹏;赵子华.断口学[M].北京:高等教育出版社,2006
[38] Suresh S;Sugimura Y;Tschegg E K .The growth of a fatigue crack approaching a perpendicularly-oriented,bimaterial interface[J].Scripta Metallurgica et Materialia,1992,27(9):1189.
[39] Sugimura Y;Suresh S .Effects of SiC content on fatigue crack growth in[J].METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE,1992,23(8):2231.
[40] Sharma M M;Ziemian C W;Eden T J .Fatigue behavior of SiC particulate reinforced spray-formed 7XXX series Al-alloys[J].Materials and Design,2011,32(8):4304.
[41] Shang J K;Yu W;Ritchie R O .Role of silicon carbide particles in fatigue crack growth in SiC-particulate-reinforced aluminum alloy composites[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,1988,102(2):181.
[42] 黎常浩,陈振华,陈鼎,李微.喷射沉积SiCp/Al-20Si复合材料高周疲劳行为研究[J].机械工程学报,2012(10):40-44.
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