颗粒强化机制研究对于复合材料的设计及性能预测具有极其重要的意义,一直是复合材料学领域的研究热点.但相关的系统报道甚少,本文就颗粒增强铝基复合材料的强化机制从直接强化、间接强化与混合强化三个方面展开综述,并指出这些强化机制所存在的不足及其发展趋势.
参考文献
[1] | Ruixiao Zheng;Han Yang;Tong Liu;Kei Ameyama;Chaoli Ma .Microstructure and mechanical properties of aluminum alloy matrix composites reinforced with Fe-based metallic glass particles[J].Materials & design,2014(Jan.):512-518. |
[2] | Yin, Z.;Huang, C.;Zou, B.;Liu, H.;Zhu, H.;Wang, J..Study of the mechanical properties, strengthening and toughening mechanisms of Al_2O_3/TiC micro-nano-composite ceramic tool material[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2013:9-15. |
[3] | Lai, J.;Zhang, Z.;Chen, X.-G..The thermal stability of mechanical properties of Al-B _4C composites alloyed with Sc and Zr at elevated temperatures[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2012:462-470. |
[4] | M.Taya,R.J .Arsenault.Comparison between a shear lag type model and Eshelby type model in predicting the mechanical properties of a short fiber composite[J].Scripta Metallurgica et Materialia,1987,21(3):349-354. |
[5] | V.C.Nardone;K.M.Prewo .On the strength of discontinuous silicon carbide reinforced aluminum composites[J].Scripta Metallurgica et Materialia,1986,20(1):43-48. |
[6] | A.Levy;J.M.Papazian .Tensile properties of short fiberreinforced SiC/Al composites Part Ⅱ.Finite-element analysis[J].Metallurgical Transactions,1990,21A(2):411-420. |
[7] | Z.Wang;K.G.Prashanth;S.Scudino et al.Tensile properties of A1 matrix composites reinforced in with situ devitrified Al84 Gd6Ni7Co3 glassy particles[J].Journal of Alloys and Compounds,2014,586:S419-S422. |
[8] | Q. Zhang;B.L. Xiao;W.G. Wang .Reactive mechanism and mechanical properties of in situ composites fabricated from an Al-TiO_2 system by friction stir processing[J].Acta materialia,2012(20):7090-7103. |
[9] | Z.Wang;J.Tan;B.A.Sun et al.Fabrication and mechanical properties of Al-based metal matrix composites reinforced with Mg65Cu20 Zn5Y10 metallic glassparticles[J].Materials Science and Engineering A,2014,600:53-58. |
[10] | 吴星平,石锦罡,吴昊,陈名海,刘宁,李清文.真空搅拌铸造制备SiC颗粒增强ADC12铝基复合材料及其力学性能表征[J].材料工程,2014(01):6-11. |
[11] | 徐娜,宗亚平,张芳,左良.SiCp/Al-2618复合材料的应力-应变曲线和增强颗粒受力的模拟[J].金属学报,2007(08):863-867. |
[12] | 苏雅璇,马乃恒,易宏展,王浩伟.原位合成TiB2/ZL109复合材料的力学性能[J].热加工工艺,2006(18):11-12,16. |
[13] | Mingliang Wang;Dong Chen;Zhe Chen;Yi Wu;Feifei Wang;Naiheng Ma;Haowei Wang.Mechanical properties of in-situ TiB_2/A356 composites[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2014:246-254. |
[14] | Song MS;Zhang MX;Zhang SG;Huang B;Li JG .In situ fabrication of TiC particulates locally reinforced aluminum matrix composites by self-propagating reaction during casting[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2008(1/2):166-171. |
[15] | M.S. Song;B. Huang;M.X. Zhang .In situ synthesis of ZrC particles and its formation mechanism by self-propagating reaction from Al-Zr-C elemental powders[J].Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems,2009(1/2):34-38. |
[16] | 李侠,陈康华,黄大为.增强颗粒对颗粒增强铝基复合材料强度的影响[J].铝加工,2006(02):9-13. |
[17] | 宋旼,李侠,陈康华.颗粒增强铝基复合材料断裂韧性与拉伸延性的解析模型[J].材料科学与工程学报,2007(05):690-694. |
[18] | 张鹏,李付国.界面对颗粒增强金属基复合材料强化性能的影响[J].材料科学与工艺,2010(02):192-198. |
[19] | H.B.Michael Rajan;S.Ramabalan;I.Dinaharan;S.J.Vijay .Effect of TiB2 content and temperature on sliding wear behavior of AA7075/TiB2 in situ aluminum cast composites[J].Archives of Civil and Mechanical Engineering,2014,14:72-79. |
[20] | H.B. Michael Rajan;S. Ramabalan;I. Dinaharan;S.J. Vijay .Synthesis and characterization of in situ formed titanium diboride particulate reinforced AA7075 aluminum alloy cast composites[J].Materials & design,2013(Feb.):438-445. |
[21] | S.Suresh;N.Shenbaga Vinayaga Moorthi .AluminiumTitanium Diboride (Al-TiB2) Metal Matrix Composites:Challenges and Opportunities[J].Procedia Engineering,2012,38:89-97. |
[22] | Kangle Tian;Yutao Zhao;Lei Jiao.Effects of in situ generated ZrB_2 nano-particles on microstructure and tensile properties of 2024A1 matrix composites[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2014:1-6. |
[23] | 朱和国,王恒志,孙强金,吴申庆.Al-TiO2-B系XD合成铝基复合材料的力学性能[J].材料科学与工程学报,2005(01):8-11. |
[24] | 赵火平,尧军平,谭艳军,张磊.原位合成TiB_2/Al-7Si复合材料的微观组织及强化机理[J].热加工工艺,2009(22):83-85,92. |
[25] | 邢建东;陈金德.材料成形技术基础[M].北京:机械工业出版社,2011 |
[26] | 郑梦,赵玉涛,陈登斌,张钊,董洪标.原位纳米Al2O3颗粒增强铝基复合材料的制备与微结构研究[J].功能材料,2011(z4):748-750,754. |
[27] | I.Dinaharan;G.Ashok Kumar;S.J.Vijay;N.Murugan .Development of Al3Ti and Al3Zr intermetallic particulate reinforced aluminum alloy AA6061 in situ composites using friction stir processing[J].Materials and Design,2014,63:213-222. |
[28] | 祝晓辉,赵玉涛,李桂荣,陈刚,佘昌俊,轩动华,郑梦.高频磁场下原位合成Al3(Ti0.5Zr0.5)p/6005A复合材料的显微组织与性能[J].机械工程材料,2011(03):71-75. |
[29] | 吴锵;刘瑛;丁锡锋.材料科学基础[M].北京:国防工业出版社,2012 |
[30] | 朱和国,袁运站,王恒志,熊党生,吴申庆.Al-TiO2-C系XD合成铝基复合材料的反应机理及拉伸性能[J].材料科学与工程学报,2006(05):658-661,690. |
[31] | 许辰苏,吴洁琼,章鹏,陈科,李险峰,王浩伟.搅拌摩擦加工对原位TiB2/7075复合材料性能的影响[J].材料研究学报,2013(02):197-201. |
[32] | 贺春林;才庆魁.SiCp/Al基复合材料的结构、力学与腐蚀性能[M].沈阳:东北大学出版社,2008 |
[33] | 吴承建;陈国良;强文江.金属材料学[M].北京:冶金工业出版社,2009 |
[34] | Morteza Alizadeh .Strengthening mechanisms in particulate Al/B4C composites produced by repeated roll bonding process[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2011(5):2243-2247. |
[35] | R.J.Arsenault;N.Shi .Dislocation generation due to difference between coefficients of thermal expansion[J].Material Science and Enginerring,1986,81:175-187. |
[36] | 薛箐,王俊,韩延峰,陈冲,孙宝德.Ce02添加剂在原位TiB2颗粒增强2014铝合金复合材料中的作用[J].中国有色金属学报,2012(05):1012-1017. |
[37] | Ram Naresh Rai;A.K. Prasada Rao;G.L. Dutta.Forming Behaviour of AI-TiC In-situ Composites[J].Materials Science Forum,2013:418-422. |
[38] | 徐睿,欧阳求保,虞红,顾海麟,张荻.原位TiB2/A356铝基复合材料的微观组织和阻尼性能[J].特种铸造及有色合金,2010(06):552-555. |
[39] | W.S.Miller;F.J.Humphreys .Strengthening mechanisms in metal matrix composites[J].Scripta Metal et Mater,1991,25:33-38. |
[40] | M.F.Ashby .Working hardening of dispersion-hardened crystals[J].Philosophical Magazine,1966,14(132):1157-1178. |
[41] | Fei Tang;Iver E. Anderson;Thomas Gnaupel-Herold .Pure Al matrix composites produced by vacuum hot pressing: tensile properties and strengthening mechanisms[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2004(2):362-373. |
[42] | 宋旼,谢灿强,贺跃辉.颗粒失效对SiC增强铝基复合材料屈服应力的影响模型[J].中国有色金属学报,2010(02):244-249. |
[43] | 李高宏,李建平,夏峰,赵娟.Al3Ti-TiB2-SiC/Al-13Si复合材料的增强机理[J].西安工业学院学报,2005(05):449-454. |
[44] | 钟龙华,赵玉涛,张松利,陈帅,吴江敬,焦雷.脉冲磁场下原位合成TiB2/7O55铝基复合材料的组织和力学性能[J].功能材料,2013(03):340-344. |
[45] | Liu G;Sun J;Nan CW;Chen KH .Experiment and multiscale modeling of the coupled influence of constituents and precipitates on the ductile fracture of heat-treatable aluminum alloys[J].Acta materialia,2005(12):3459-3468. |
[46] | 袁运站 .Al-ZrO<,2>、Al-ZrO<,2>-C系铝基复合材料的制备、反应机理及性能[D].南京理工大学,2007. |
[47] | 庄伟彬,宗亚平,张跃波,曹新建.铁基复合材料碳化硅粒子混合尺寸增强作用机理[J].材料科学与工程学报,2013(01):1-5,141. |
[48] | I.S. Lee;CJ. Hsu;C.F. Chen;NJ. Ho;P.W. Kao .Particle-reinforced aluminum matrix composites produced from powder mixtures via friction stir processing[J].Composites science and technology,2011(5):693-698. |
[49] | Mazahery, A.;Ostadshabani, M. .Investigation on mechanical properties of nano-Al_2O _3-reinforced aluminum matrix composites[J].Journal of Composite Materials,2011(24):2579-2586. |
[50] | M.Tabandeh Khorshid;S.A.Jenabali Jahromi;M.M.Moshksar .Mechanical properties of tri-modal Al matrix composites reinforced by nano-and submicron-sized Al2O3 particulates developed by wetattrition milling and hot extrusion[J].Materials and Design,2010,31:3880-3884. |
[51] | J. Lai;Z. Zhang;X.-G. Chen.Precipitation strengthening of Al-B_4C metal matrix composites alloyed with Sc and Zr[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2013:227-235. |
[52] | Kaka Ma;Haiming Wen;Tao Hu .Mechanical behavior and strengthening mechanisms in ultrafine grain precipitation-strengthened aluminum alloy[J].Acta materialia,2014(1):141-155. |
[53] | 关明,樊建锋.Al_(72) Ni_(12)Co_(16)/A365准晶颗粒增强铝基复合材料的制备及其力学性能[J].复合材料学报,2010(01):51-56. |
[54] | X. C. TONG;A. K. GHOSH .Fabrication of in situ TiC reinforced aluminum matrix composites[J].Journal of Materials Science,2001(16):4059-4069. |
[55] | 赵玉涛;戴起勋;陈刚.金属基复合材料[M].北京:机械工业出版社,2007 |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%