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7000系超高强铝合金是航空航天工业的主要结构材料之一,T6(峰时效)状态下该系合金强度最高但对应力腐蚀(SCC)十分敏感,RRA(回归再时效)工艺兼顾了合金的强度和抗应力腐蚀性能,适应目前航空航天工业对结构材料的要求.综述了过去30年超高强铝合金RRA热处理工艺的发展和最新研究动态,并较全面地介绍了RRA热处理对超高强铝合金组织与性能的影响.

参考文献

[1] 今村次男 .[J].轻金属,1999,49:302.
[2] Cina B .[P].US 3856584,1974-12-24.
[3] Islam M V;Wallace W .[J].Metals and Technology,1983(10):386.
[4] Brown M H .[P].US 4477292,1984-10-16.
[5] Lin J;Kersker M M .[P].US 5108520,1992-04-28.
[6] Hall M B;Martin J W .[J].Zeitschrift fur Metallkunde,1994,85(02):134.
[7] Robinson J S;Whelan D A .[J].Materials Science and Technology,1999,15(06):717.
[8] 吴一雷.超高强度铝合金的发展与应用[J].航空材料学报,1994(01):49.
[9] Luckasak D A;Hart R M.[J].Light Metal Age,1991(10):11.
[10] Jacobs A J .[J].Transactions ASM,1965,58:579.
[11] Wallace W;Beddoes J C;deMalherbe M C .[J].Canadian Aeronautics and Space Journal,1981,27:222.
[12] Islam M U;Wallale W .[J].Materials Technology,1983(10):386.
[13] Nguyen Cong;Danh Rajan K;Wallace W .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1983,14(09):1843.
[14] Danh Nguyen;Rajan K;Wallace W .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1985,16(11):2068.
[15] Islam M U;Wallace W .[J].Metals and Technology,1984,11(08):320.
[16] Holt R T;Parameswaran V R;Wallace W .[J].Canadian Aeronautics and Space Journal,1996,42(02):83.
[17] Rajan K;Wallace;Beddoes J C .[J].Journal of Materials Science,1982,17:2817.
[18] Ural K .[J].Journal of Materials Science Letters,1994,13(05):383.
[19] 大西忠一;久米秀树 .[J].轻金属,1991,41(09):582.
[20] Knano M;Araki I;Cui Q .[J].Materials Science and Technology,1994,10(07):599.
[21] Lukasak D A;Hart I M .[J].Journal of Aerospace Engineering,1991,11(09):21.
[22] 汝继刚,伊琳娜,张禄山.DSA处理对超高强铝合金性能的影响[J].稀有金属,1999(06):414-416.
[23] Brown Melvin H;Staley James T;Liv John et al.[P].US 4863528,1989-09-05.
[24] 大西忠一 .[J].热处理,1992,32(02):83.
[25] 阎大京.时效制度对7475和7050铝合金应力腐蚀及剥层腐蚀性能的影响[J].材料工程,1993(02):13.
[26] Park J K;Ardell A J .[J].Metallurgical and Materials Transactions,1984,15A:1531.
[27] Park J K;Ardell A J .[J].Metallurgical and Materials Transactions,1983,14A:1957.
[28] Park J K;Ardell A J .[J].Acta Metallurgica Et Materialia,1991,39(04):591.
[29] Talianker M;Cina B .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1989,20(10):2087.
[30] Lin Zhaoqi;Jiang Wenhui;Yang Shenkun.[A].北京,1990:480.
[31] 张坤,刘志义,郑青春,许晓嫦,叶呈武.高Zn超高强铝合金的回归再时效处理[J].中南大学学报(自然科学版),2005(02):188-192.
[32] Swanson R E;Bernstein I M;Thompson A W .[J].Script Metallurgical,1982,16(03):321.
[33] Robinson J S;Whelan S D;Cudd R L .[J].Materials Science and Technology,1999,15:717.
[34] Uguz A;Martin J W .[J].Journal of Materials Science,1995,30(23):5923.
[35] 李成功;巫世杰 .[J].中国有色金属学报,2002,12(03):16.
[36] Raizenne D;Wu X;Poon C.[A].Orlando,2001
[37] Baig A M .Spar Aerospace Report 11-797-03-SE-005-01[R].,1999.
[38] Raizenne.[A].Orlando,2002
[39] 柴志刚,孟繁玲,邹青.Al-Li合金时效-回归-再时效析出δ′相的行为[J].物理学报,2001(07):1401-1404.
[40] Komisarov V;Talianker M;Cina B .Structural Materials:Properties,Microstructure and Processing[J].Materials Science and Engineering A,1998,242(1-2):39.
[41] Ghosh K S;Das K;Chatterjee U K .[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,2004,35 A(12):3681.
[42] 赵刚,刘春明,朱丽颖,崔文芳,李洪晓.2014合金的回归再时效[J].材料与冶金学报,2003(03):210-215.
[43] Steven R;Kenzie Mc .[J].Light Metal Age,1997,6:36.
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