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根据超高强铝合金淬火、时效组织透射电镜观察结果,以及合金断裂行为与断口形貌分析,提出了一种Al-Zn-Mg-Cu合金产生延性断裂的物理模型.对平衡相、基体沉淀相、无析出微区的断裂行为进行了分析.研究结果表明,在晶内同步变形条件下,平衡相粒子最先断裂;晶内沉淀区内裂纹的形成与扩展早于无析出区,沉淀区内初始孔洞扩展与聚合,导致沉淀区断裂,这是合金断裂的主要原因;无析出区最后断裂.引起淬火敏感性的平衡相粒子,不是造成合金断裂的直接原因,粒子周围的无析出微区起到了限制裂纹扩展和协调变形的作用,是合金形成延性拉伸断口的原因.

参考文献

[1] Young K;Chulkim S;Sublee K .A study on the microstructure of DO23 Al3Zr and LI2 (Al+ 12.5at% Cu)3Zr intermetallic compounds synthesized by PBM and SPS[J].Intermetallics,2002,10:185-194.
[2] Phillips M A;Clemens B M;Nix W D .A model for dislocation behavior during deformation of Al/Al3 Sc (fcc/LI2) multilayers[J].Acta Materialia,2003,51:3157-3170.
[3] Robson J D;Prangnell P B .Modeling Al3Zr dispersoid precipitation in multicomponent aluminium alloys[J].Materials Science and Engineering,2003,352:240-250.
[4] Christian B. Fuller;David N. Seidman;David C. Dunand .Mechanical properties of Al(Sc,Zr) alloys at ambient and elevated temperatures[J].Acta materialia,2003(16):4803-4814.
[5] Roder O;Schauerte O;lujering G et al.Correlation between microstructure and mechanical properties of Al-Mg alloys without and with scandium[J].Materials Science Forum,1999,107-113:1955-50.
[6] Harada Y.;Dunand D.C. .CREEP PROPERTIES OF Al_3Sc AND A1_3(Sc, iv) INTERMETALLICS[J].Acta materialia,2000(13):3477-3487.
[7] Vijaya S;Syatyaprasad K;Gokhale A .Effect of minor Sc additions on structure,age hardening and tensile properties of Al alloy AA8090 plate[J].Scripta Materialia,2004,50:903-908.
[8] 张国君,刘刚,丁向东,孙军,陈康华.含有不同尺度量级第二相的高强铝合金拉伸延性模型[J].中国有色金属学报,2002(z1):1-10.
[9] Suni J P;Doherty R D;Weiland H.Recrystallization and grain growth[A].Berlin:Springer-Verlag,2001:1069-1077.
[10] Turski M .Precipitation Kinetics of Al3Zr Dispersoids in 7 ××× Aluminum Alloys[D].Mancheter:University of Mancheter,2001.
[11] Deschamps A;Solas D;Brechet Y.Proceedings of Eurormat 99.Microstructure,Mechanical Properties and Process[M].Weinhem:Wiley-VCH,2001:121-132.
[12] G. Sha;A. Cerezo .Field ion microscopy and 3-D atom probe analysis of Al_3Zr particles in 7050 Al alloy[J].Ultramicroscopy,2005(2):151-159.
[13] 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.
[14] Sprows D O;Shumaker M B;Walsh J D .Developments in fracture mechanics test methods[J].Materials Science and Technology,2001,145:45-53.
[15] S. Lee;A. Utsunomiya;H. Akamatsu .Influence of scandium and zirconium on grain stability and superplastic ductilities in ultrafine-grained Al-Mg alloys[J].Acta materialia,2002(3):553-564.
[16] 余宗生.金属物理[M].北京:冶金工业出版社,2000:305-308.
[17] Vladivoj Ocenasek;Margarita Slamova .Resistance to recrystallization due to Sc and Zr addition to Al-Mg alloys[J].Materials Characterization,2001(2):157-162.
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