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采用光学显微镜(OM)、扫描电镜(SEM)和X射线衍射谱仪研究了固溶处理对高纯7055铝合金组织的影响.结果表明:合金固溶时,粗大的初生AlZnMgCu相溶解缓慢,并逐渐球化;而初生AlZnMgCuFeTi相几乎不溶解.固溶温度越高(460-480℃),时间越长(0-240min),初生AlZnMgCu相溶解越多,再结晶越多,晶粒尺寸越大.再结晶主要于初始晶界上的粗大初生相上形核(PSN机制),并向弥散Al3Zr粒子少的变形晶粒内部长大.490℃固溶时,出现过烧组织,晶粒粗大.分级固溶较单级固溶可更好的控制合金组织,如460℃×120min+480℃×60min与480℃×180min相比,再结晶和晶粒尺寸小得多,但初生AlZnMgCu相溶解程度相差不大.

参考文献

[1] Engler O;Sachot E;Ehrstr(o)m J C .Recrystallisation and texture in hot deformed aluminium alloy 7010 thick plates[J].Materials Science and Technology,1996,12:717-729.
[2] Robson JD. .Optimizing the homogenization of zirconium containing commercial aluminium alloys using a novel process model[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):219-229.
[3] Robson J D;Prangnell P B .Predicting the recrystallized volume fraction in AA7050 hot rolled plate[J].Materials Science and Technology,2002,18(06):607-619.
[4] Kanghua Chen;Hongwei Liu;Zhuo Zhang .The improvement of constituent dissolution and mechanical properties of 7055 aluminum alloy by stepped heat treatments[J].Journal of Materials Processing Technology,2003(1):190-196.
[5] 宁爱林,刘志义,郑青春,曾苏民.分级固溶对7A04铝合金组织与性能的影响[J].中国有色金属学报,2004(07):1211-1216.
[6] 王洪斌,刘慧敏,黄进峰,张济山,张永安,熊柏青.热处理对喷射成形超高强Al-Zn-Mg-Cu系铝合金的影响[J].中国有色金属学报,2004(03):398-404.
[7] Bryant A J;Thomas A T .The relationship between grain structure and quench-sensitivity of an extruded Al-Zn-Mg alloy[J].Journal of the Institute of Metals,1972,100:40-44.
[8] Yamazaki S;Otsuka H;Kikuchi T .Peripheral-recrystallized structures formed in Al-Zn-Mg-Cu-Zr alloy materials during extrusion and their quenching sensitivity[J].Journal of Materials Processing Technology,1993,38(04):689-701.
[9] Zakharov V V;Novikov Ⅱ;Elagin Ⅵ.Decomposition of the solid solution in unrecyrstallized plates of AlZnMgMnZr alloy[J].Metallov i Term Obrab Metal,1970(05):70-73.
[10] Fjeldly H;Roven J;Rauch E .Strain localization in solution heat treated Al-Zn-Mg alloy[J].Materials Science and Engineering A,2001,380:165-170.
[11] Park B K;Vruggink J E .Properties and microstructure of intermediate thermal-49[Z].
[12] Lin F S;Starke E A .Effect of copper content and degree of recrystallization on the fatigue resistance of 7xxx type aluminum alloys[J].Materials Science and Engineering A,1979,39(01):27-41.
[13] Sanders R E;Starke E A.Effects of intermediate thermal-mechanical treatment on the fatigue property of a 7050 aluminum alloy[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1978(09):1087-1100.
[14] Yanxia Li;Ping Li;Gang Zhao et al.The constituents in Al-208[Z].
[15] Suzuki Hisashi;Kanno Motohiro;Saitoh Hiroshi .Different effects between Zr and Cr addition on recrystallization of hot-rolled AlZnMgCu alloys[J].Japanese Journal of Institute of Light Metals(Japan),1986,36(01):22-28.
[16] Hahn G T;Rosenfield A R.Metallurgical factor affecting fracture toughness of aluminum alloys[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1975(06):653-665.
[17] Humphreys F J;Hatherly M.Recrystallization and related annealing phenomena[M].New York:Elsevier Science Inc,1995
[18] Vandermeer R A;Gordon P.Recovery and recrystallization of metals[M].New York:Interscience Publ,1963
[19] 李松瑞;周善初;田荣璋.金属热处理[M].长沙:中南大学出版社,2003
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