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综合评述了NiAl基复合材料强韧化的研究进展,着重介绍了提高NiAl基复合材料强韧化的几种方法及机理,包括合金化、细化微观组织或复相强化、采用先进工艺技术等.每一种方法都只能在一定的范围内达到改善性能的目的.并就目前研究进展中存在的不足以及该领域的发展方向提出一些看法.如果深化原子尺度精细结构研究,结合新的工艺及设备开发有望从根本上解决NiAl合金的性能障碍.

参考文献

[1] Curls C.Al-Ni intermetallics obtained by SHS:A time-resolved X-ray diffraction study[J].Intermetallics,2007(15):1163.
[2] Wang Zhong.Synthesis and structural features of NiAl nanoparticles by hydrogen plasma-metal reaction[J].Materials Letters,2006(60):2227.
[3] Chao Jiang.Site preference of transition-metal elements in B2 NiAl:A comprehensive study[J].Acta Materialia,2007(55):4799.
[4] Chen Y;Wang H M.Laser melted TiC reinforced nickelaluminide matrix in situ composites[J].Journal of Alloys and Compounds,2005(391):49.
[5] Frommeyer G et al.APFLM investigations on site occupancies of the ternary alloying elements Cr,Fe,and Re in NiAl[J].Ultramicroscopy,2004,101(2-4):139.
[6] 郭建亭,任维丽,周健.NiAl合金化研究进展[J].金属学报,2002(06):667-672.
[7] Wang Y L.The effects of iron on the creep properties of NiAl[J].Intermetallics,2006(14):800.
[8] Medvedeva.Ab-initio study of interfacial strength and misfit dislocations in eutecic composites:NiAl/Mo[J].Acta Materialia,2004(52):675.
[9] Huai Kaiwen.The microstructure of Au-doped NiAlCr(Mo) eutectic and its mechanical properties[J].Materials Letters,2005(59):3291.
[10] 肖旋,郭建亭,于海朋.NiAl(Ti)-Cr(Mo)共晶合金的微观组织和力学性能[J].金属学报,2006(10):1031-1035.
[11] Huai K W;Guo J T;Du X H.Microstructure and mechanical properties of NiAl-Cr(Mo)/Hf alloy prepared by injection casting[J].Materials & Design,2007(28):1940.
[12] Hagihara K;Sngino Y;Umakoshi Y.The effect of Ti-addition on plastic deformation and fracture behavior of directionally solidified NiAl/Cr(Mo) eutectic alloys[J].Interme tallics,2006(14):1326.
[13] Li Hu-tian;Gou Jian-ting;Ye Heng-qiang;Wang Qiang;He Ji-Cheng .Simultaneous improvement of strength and ductility in NiAl-Cr(Mo)-Hf near eutectic alloy by small amount of Ti alloying addition[J].Materials Letters,2008(1):61-64.
[14] Fischer R.Precipitation of Cr-rich phases in a Ni50Al-2Cr alloy[J].Intermetallics,2006(14):156.
[15] Ferrandini P L.Growth and characterization of the NiAl-NiAlNb eutectic structure[J].Journal of Crystal Growth,2005(275):e147.
[16] Guo J T;Huai K W;Gao Q.Effects of rare earth elements on the microstructure and mechanical properties of NiAlbased eutectic alloy[J].Intermetallics,2007(15):727.
[17] Guo J T;Sheng L Y;Tian Y X et al.Effect of Ho on the microstrueture and compressive properties of NiAl-based eu tectic alloy[J].Materials Letters,2008,5:038.
[18] 任维丽,郭建亭,周继扬.钇对NiAl-28Cr-5.5Mo-0.5Hf合金显微组织和力学性能的影响[J].中国稀土学报,2002(02):146-149.
[19] 张恒,张力.纳米复合材料实用化技术前景[J].材料导报,2001(08):20-22.
[20] 杨福宝,郭建亭,周继扬.机械合金化合成NiAl/HfB2复合材料的组织与力学性能[J].金属学报,2001(05):483-487.
[21] 刘耀东,张学秋.机械合金化法合成金属间化合物NiAl粉末[J].中国粉体技术,2006(01):15-16.
[22] Albiter A.Improvement of the mechanical properties in a nanoerystalline NiAl intermetallie alloy with Fe,Ga and Mo additions[J].Materials Science and Engineering,2003(347):154.
[23] Grzegorz Derez.X-ray studies on NiAl-Al2O3 composite powder with nsnoerystalline NiAl phase[J].Journal of Alloys and Compounds,2006(423):112.
[24] Huai K W.Microstructure and mechanical behavior of NiAl-hased alloy prepared by powder metallurgical route[J].Intermetallics,2007(15):749.
[25] 夏冬生,李博,郭建亭,李谷松,于彦.NiAl(Co)-TiC粉末的机械合金化原位制备纳米复合材料[J].材料工程,2004(09):33-37.
[26] Fubao YANG,Jianting GUO,Jiyang ZHOU.Reactive Milling and Mechanical Properties of NiAl Composite with HfC Dispersoids[J].材料科学技术学报(英文版),2002(01):59-62.
[27] 杨福宝,郭建亭,周继扬.机械合金化合成NiAl/HfB2复合材料的组织与力学性能[J].金属学报,2001(05):483-487.
[28] Chen Y;Wang H M.Laser melted TiC reinforced nickel aluminide matrix in situ composites[J].Journal of Alloys and Compounds,2005(391):49.
[29] Dercz G.Dispersion analysis of NiAl-TiC composite powder ground in a high-energy attritorial mill[J].Journal of Materials Processing Technology,2006(175):334.
[30] Yu L G;Dai J Y;Xing Z P et al.High resolution electron microscopy observation of interfacial structures in NiAl-matrix in situ composites reinforced by TiC partieulate[J].Journal of Materials Research,1997,12:1790.
[31] Xing Z P;Guo J T;Han Y F .Mierostrueture and mechanical behavior of the NiAl-TiC in situ composite[J].Metallurgical and Materials Transactions,1997,28A(04):1079.
[32] Guo J T;Xing Z P .Investigation of NiAl-TiB2 in situ composites[J].Materials Research,1997,12:1083.
[33] Jiang DT.;Guo JT. .Elevated temperature compressive behavior of in-situ multiphase composites NiAl/Cr(Mo)-TiC[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1998(1/2):154-161.
[34] Jiang DT.;Shi CX.;Lin DL.;Guo JT. .Microstructure and compressive properties of in situ composite (Ni-40Al-10Ti)-(0,20%)TiC[J].Journal of Materials Science Letters,2000(2):115-117.
[35] Michalski A.NiAl-Al2O3 composites produced by pulse plasma sintering with the participation of the SHS reaction[J].Intermetallics,2006(14):603.
[36] Karin M. Carling;Emily A. Carter .Effects of segregating elements on the adhesive strength and structure of the alpha-Al_2O_3/beta-NiAl interface[J].Acta materialia,2007(8):2791-2803.
[37] Bei H;George E P.Microstructures and mechanical properties of a directionally solidified NiAl-Mo eutectic alloy[J].Acta Materialia,2005(53):69.
[38] Cui C Y.Effects of Hf additions on high-temperature mechanical properties of a directionally solidified NiAl/Cr (Mo) eutectic alloy[J].Journal of Alloys and Compounds,2007(08):1.
[39] Guo J T.The effect of solidification rate on microstructure and mechanical properties of an eutectic NiAl-Cr(Mo)-Hf alloy[J].Materials Letters,2004(58):3233.
[40] ZHANG Zhi-gang,LIU Xian-bin,GONG Sheng-kai,XU Hui-bin.Microstructure and properties of β-NiAl and its eutectic alloy with Cr and Mo additions[J].中国有色金属学会会刊(英文版),2006(z3):2046-2049.
[41] Joslin S M.Fracture behavior of directionaUy solidified NiAl-Mo and NiAl-V eutectics[J].Materials Science and Engineering,1995(A196):9.
[42] Achim Walter.Hassek Nanostructures from directionally solidified NiAl-W eutectic alloys[J].Electrochimica Acta,2006(52):1799.
[43] Darolia R;Walston W S;Noebe R.Mechanical properties of high purity single crystal NiAl[J].Intermetallics,1999(07):1195.
[44] Golberg D;Sauthoff G .Effects of ageing at 673K on the compressive behaviour of <110> oriented soft NiAl single crystals and polyerystals with and without Ti additions[J].Intermetallics,1996,4:143.
[45] Golberg D;Sauthoff G .Effects of strain-rate and ageing at 573 and 973K on the mechanical (compressive) behaviour of《110》 oriented soft NiAl single crystals with and without microalloying additions of Ti,Zr,and Hf.Ⅱ[J].Intermetallics,1996,4:253.
[46] 陈健.NiAl基金属间化合物多晶和单晶合金的力学性能研究[J].航空材料学报,1996(03):1.
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