综述了目前铝合金强化技术的研究现状和进展.简述了旋涡搅拌铸造法、压力铸造法、喷射铸造法、熔铸直接接触反应法、细晶强化法等几种铝合金强化技术工艺.简介了国内外铝合金强化技术的发展概况以及铝合金强化技术的应用,同时展望了铝合金材料的发展.
参考文献
[1] | 国家自然科学基金委员会.金属材料科学[M].北京:科学出版社,1995:74. |
[2] | Lioyd D J .Particle reinforced aluminum and magnesium matrix composites[J].Int Rev Mater,1994,39(01):1. |
[3] | 李志辉,熊柏青,张永安,朱宝宏,王锋,刘红伟.7B04铝合金的时效沉淀析出及强化行为[J].中国有色金属学报,2007(02):248-253. |
[4] | 邓运来,周亮,晋坤,张新明.2124铝合金蠕变时效的微结构与性能[J].中国有色金属学报,2010(11):2106-2111. |
[5] | 李杰,宋仁国,陈小明,马晓春.7050高强铝合金强化固溶处理研究[J].热加工工艺,2009(06):125-128. |
[6] | 陈康华,李侠,宋旼,黄大为.SiCp/Al合金复合材料时效强化的综合模型[J].金属学报,2006(08):887-891. |
[7] | 商宝川,尹志民,周向,何振波,林森.固溶-时效对Al-Zn-Mg-Sc-Zr合金板材组织与性能的影响[J].中国有色金属学报,2010(11):2063-2069. |
[8] | Leszek A. Dobrzanski;Anna Wlodarczyk;Marcin Adamiak .The structure and properties of PM composite materials based on EN AW-2124 aluminum alloy reinforced with the BN or Al_2O_3 ceramic particles[J].Journal of Materials Processing Technology,2006(1/3):186-191. |
[9] | Dobrzanski L A;Wtodarczyk A;Adamiak M .Structure,properties and corrosion resistance of PM composite materials based on ENAW-2124 aluminum alloy reinforced with the Al2O3 ceramic particles[J].Journal of Materials Processing Technology,2005,162-163:27. |
[10] | Muhamed Ashraf P;Shibli S M A .Reinforcing aluminum with cerium oxide:A new and effective technique to prevent corrosion in marine environments[J].Electrochemistry Communications,2007,9:443. |
[11] | Ryosuke Matsuzaki;Motoko Shibata;Akira Todoroki .Reinforcing an aluminum/GFRP co-cured single lap joint using inter-adherend fiber[J].Composites. Part A, Applied science and manufacturing,2008(5):786-795. |
[12] | 赵志浩,王静,左玉波,崔建忠.7050铝合金低频电磁铸锭挤压板的微观组织及时效特性[J].金属学报,2007(09):949-955. |
[13] | 魏艳妮,李京龙,熊江涛,张赋升.利用搅拌摩擦加工对6061铝合金进行表面改性[J].电焊机,2010(10):30-33. |
[14] | 孙淼,许存官,何建平,王锋,周香林,杨滨.熔铸-原位合成TiC/7075复合材料的拉伸和磨损性能[J].稀有金属材料与工程,2009(02):308-312. |
[15] | 魏艳妮,李京龙,熊江涛,张赋升,钱锦文,李雪飞.铝合金搅拌摩擦加工原位反应生成物颗粒增强机制[J].航空材料学报,2010(01):47-51. |
[16] | Vieira A C;Sequeira P D;Comes J R et al.Dry sliding wear of Al alloy/SiCP function alloy graded composites:Influence of processing conditions[J].Wear,2009,267:585. |
[17] | 张国定;赵昌正.金属及复合材料[M].上海:上海大学出版社,1996:11. |
[18] | Sung Yun-Mo;Yoo Kyung-Yol;Ducn S A et al.Wetting behavior and mullite formation at the interface of inviscid melt-spun CaO-Al2O)3 fibre-reinforced Al-Si alloy (4032)composites[J].Journal of Materials Science,2008,29:5583. |
[19] | 郭锋,李平,苏勋家,侯根良,谷建荣.LY12铝合金表面电火花强化层组织与性能研究[J].材料工程,2010(01):28-31. |
[20] | 朱丽洁,孙扬善,左爱军,薛烽.原位合成TiC颗粒强化铝合金组织与性能[J].航空材料学报,2009(06):89-93. |
[21] | Aleksandar Vencl;Ilija Bobic;Saioa Arostegui;Biljana Bobic;Aleksandar Marinkovic;Miroslav Babic .Structural, mechanical and tribological properties of A356 aluminium alloy reinforced with Al_2O_3, SiC and SiC + graphite particles[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2010(2):631-639. |
[22] | Rao R N;Das S .Effect of matrix alloy and influence of SiC particle on the sliding wear characteristics of aluminum alloy composites[J].Materials & Design,2010,31:1200. |
[23] | Das T;Bandyopadhyay S;Blairs S .DSC and DMA studies of particulate reinforced metal matrix composites[J].Journal of Materials Science,2009,29:5680. |
[24] | Yu Zhiqiang;Wu Gaohui;Jiang Longtao et al.Effect of coating Al2O3 reinforcing particles on the interface and mechanical properties of 6061 alloy aluminum matrix composites[J].Materials Letters,2005,59:2281. |
[25] | Razaghian A;Emamy M;Najimi A A et al.Sr effect on the microstructure and tensile properties of A357 aluminum alloy and Al2O3/SiC-A357 cast composites[J].Materials Characterization,2009,60:1361. |
[26] | Dong Lua;Celisa J P;Kenzari S et al.Tribological behavior of aluminum matrix composites containing complex metallic alloys AlCuFeB or A1CuFeCr particles[J].Wear,2011,270:528. |
[27] | Rao R N;Das S .Wear coefflcient and reliability of sliding wear test procedure for high strength aluminum alloy and composite[J].Materials & Design,2010,31:3227. |
[28] | 刘兵;金其坚.先进材料进展[M].北京:北京科学技术出版社,1995:44. |
[29] | Pradeep Pohatgi .Cast aluminium matrix composites for automotive applications[J].JOM-Journal of the Minerals Metals and Materials Society,2007,43(04):10. |
[30] | 李月珠.快速凝固技术及新材料[M].北京:国防工业出版社,1993:320. |
[31] | 甘永学.铸造铝基复合材料的研究进展[J].轻合金加工技术,1994(12):6. |
[32] | Krzysztof Naplocha;Kazimierz Granat .Microwave activated combustion synthesis of porous Al-Ti structures for composite reinforcing[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,2009(1/2):178-184. |
[33] | Sansoucy E;Marcoux P;Ajdelsztajn L;Jodoin B .Properties of SiC-reinforced aluminum alloy coatings produced by the cold gas dynamic spraying process[J].Surface & Coatings Technology,2008(16):3988-3996. |
[34] | 陈瑞芳,桑毅,武敬伟,花银群,蔡兰.7050铝合金激光冲击强化的试验和数值模拟[J].江苏大学学报(自然科学版),2009(02):113-117. |
[35] | 魏德强,信卫坡,王荣.CVC8铝合金电子束改性的组织与性能的研究[J].装备制造技术,2010(01):41-42,63. |
[36] | 周磊,李应红,汪诚,周鑫.LY2铝合金激光冲击处理工艺[J].强激光与粒子束,2010(08):1780-1784. |
[37] | 胡芳友,卢长亮,易德先,胡滨,王增平.激光熔铸修理与变形强化对铝合金疲劳性能影响研究[J].应用激光,2008(02):112-114. |
[38] | 鲁金忠,张永康,孔德军,杨超君.激光两点冲击强化处理LC4合金的实验[J].农业机械学报,2006(12):206-208,176. |
[39] | Velhinho A;Botas J D;Ariza E et al.Tribocorrosionstudies in centrifugally castAl-Matrix SiCp-reinforced functionally graded composites[J].Materials Science Forum,2004,455-456:871. |
[40] | Miracle D B .Metal matrix composites-from science to technological significance[J].Composites Science and Technology,2005,65:2526. |
[41] | Das S .Development of aluminum alloy composites for engineering applications[J].Transactions of the Indian Institute of Metals,2004,57(04):325. |
[42] | 张伟,刘金明,欧阳玲玉.提高铝合金强度的技术途径和方法[J].金属世界,2008(06):31-33. |
[43] | Mondal D P;Das S .High stress abrasive wear behavior of aluminum hard particle composites:Effect of experimental parameters,particle size and volume fraction[J].Tribology International,2006,39:470. |
[44] | Yang Haining;Gu Mingyuan;Jiang Weiji et al.Interface microstructure and reaction in Gr/Al metal matrix composites[J].Journal of Materials Science,2006,31:1903. |
[45] | 李桂荣,赵玉涛,李季,王宏明,陈刚.稀土钇强化Al-Zn-Mg-Cu铝合金的组织特征[J].江苏大学学报(自然科学版),2010(01):49-52. |
[46] | Rao R N;Das S;Mondal D P et al.Effect of heat treatment on the sliding wear behavior of aluminum alloy (Al-ZnMg) hard particle composite[J].Tribology International,2010,43:330. |
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%