Laves相NbCr2的高温抗氧化性能限制了其作为高温结构材料在1200℃以上的应用进程.本文对Laves相NbCr2高温抗氧化性的研究进展进行了综合评述,着重介绍了Laves相NbCr2高温抗氧化性的影响因素及提高其抗氧化性的几种方法,包括合金化、稀土元素效应及防护涂层等,并就目前研究进展中的不足以及今后发展方向提出了一些看法.
参考文献
[1] | 傅恒志.未来航空发动机材料面临的挑战与发展趋向[J].航空材料学报,1998,18(4):52. |
[2] | 李志林,曲选辉,黄伯云.新型高温结构材料-金属间化合物的研究动态[J].材料导报,1995,(3):16. |
[3] | Takasugi T,Hanada S,Yoshida M.High temperature mechanical properties of C15 laves phase Cr2Nb intermetallics[J].Mater.Sci.Eng.,1995,Al92/193,(2):805. |
[4] | Liu C T,Zhu J H,Brady M P,et al.Physical metallurgy and mechanical properties of transition-metal Laves phase alloys[J].Intermetallics,2000,8 (9 -11):1119. |
[5] | David L Davidson,Chan K S,Anton D L.The effects on fracture toughness of ductile-phase composition and morphology in Nb-Cr-Ti and Nb-Si in-situ composites[J].Metall Mater.Trans.,1996,27A (10):3007. |
[6] | Brady M P,Zhu J H,Liu C T,et al.Oxidation resistance and mechanical properties of Laves phase reinforced Cr in-situ composites[J].Intermetallics,2000,(8):1111. |
[7] | 张永刚,韩雅芳,陈国良,等编.金属间化合物结构材料[M].北京:国防工业出版社,2001.932. |
[8] | David L Davidson,Chan K S.The effect of microstructure on the fracture resistance of Nb-Cr-Ti in situ composites[J].Scripta Materialia,1997,38 (7):1155. |
[9] | Liu C T,Tortorelli P F,Horton J A,et al.Effects of alloy additions on the microstructure and properties of Cr-Cr2 Nb alloys[J].Materials Science and Engineering,1996,A214 (1):23. |
[10] | Anton D L,Shah D M.Ductile Phase Toughening of Brittle Intermetallics[C].Materials Research Society Proceedings,Materials Research Society,Pittsburgh,PA,1990,V194:45. |
[11] | Bewlay B P,Sutliff J A,Jackson M R,et al.Microstructural and crystallographic relationships in directionally solidified Cr2 Nb-Nb and Cr2Nb-Cr eutectics[J].Acta metal.Mater.1994,42(8):2869. |
[12] | Petrovic J J,Vasudevan A K.Key developments in high temperature structural silicides[J].Materials Science and Engineering,1999,A261 (1):1. |
[13] | Brady M P,Tortorelli P F.The effect of microstructure and temperature on the oxidation behavior of two phase Cr-Cr2X (X =Nb,Ta) alloys[C].Symposium on High Temperature Corrosion and Materials Chemistry; San Diego,USA:The Electrhemical society,1998.466. |
[14] | Brady M P,Sachenko P.Effect of Fe on the oxidation/internal nitridation behavior and tensile properties of Cr and oxide dispersion ductilized Cr[J].Scripta Materialia,2005,52 (9): |
[15] | Brady M P,Tortorelli P F,Payzant E A,et al.Oxidation behavior of Cr2N,CrNbN,and CrTaN phase mixtures formed on nitrided Cr and laves-reinforced Cr alloys.Oxidation of Metals[J].2004,61 (5/6):379. |
[16] | Brady M P,Tortorelli P F,Walker L R.Water vapor and oxygen/sulfur-impurity effects on oxidation and nitridation in single-and two-phase Cr-Nb alloys[J].Oxidation of Metals,2002,58(3/4):297. |
[17] | Ohta T N,Kaneno Y,Inoue H,et al.Microstructures and mechanical properties of NbCr2 and ZrCr2 laves phase alloys prepared by powder metallurgy[J].Journal of Materials Science,2003,38 (4):657. |
[18] | 肖平安.Laves相TiCr2微粒增强Ti基合金的制备及其组织、性能和力学行为的研究[D],长沙:中南工业大学,2002.36. |
[19] | 肖平安,曲选辉,雷长明,等.含TiCr2 Laves相过共析钛铬合金的制备[J].中国有色金属学报,2002,12(2):236. |
[20] | 何玉定,曲选辉,黄伯云.机械活化热压合成Laves相TiCr2及其力学性能的研究[J].稀有金属,2003,27(2):303. |
[21] | 何玉定,曲选辉,黄伯云,等.Laves相TiCr2的相变特征[J].中国有色金属学报,1998,18(增刊1):115. |
[22] | Yao Q,Sun J,Zhang Y,et al.First-principles studies of ternary site occupancy in the C15 NbCr2 Laves phase[J].Acta Materialia,2006,54 (3):3585. |
[23] | 鲁世强,黄伯云,贺跃辉.机械合金化对Laves相Cr2Nb固相热反应合成的影响[J].航空学报,2003,124(16):568. |
[24] | 马燕青,鲁世强,胡春文,等.Laves相铬化物的研究概况[J].国外金属加工,2004,25(2):10. |
[25] | 李铁藩.金属高温氧化和热腐蚀[M].北京:化学工业出版社,2003.227. |
[26] | Kofstad P,Lillerud K P.On high temperature oxidation of chromium[J].J.Electrochem.Soc.1980,127(11):2411. |
[27] | Espevik S,Rapp R A,Daniel P L,et al.Oxidation of Ni-Cr -W ternary alloys[J].Oxid.Met.,1980,14 (2):85. |
[28] | Stott F H,Wood G C,Fountain G J.The influence of yttrium additions on the oxidation resistance of a directionally solidified Ni-Al-Cr3 C2 eutectic alloy[J].Oxid.Met.,1980,14 (2),135. |
[29] | 李美栓,辛丽,钱余海,等.氧化膜应力研究进展[J].腐蚀科学与防护技术,1999,11(5):300. |
[30] | Pilling N B,Bedworth R E.The Oxidation of Metals at High Temperatures[J].Journal of institute of metal,1923,29 (3):529. |
[31] | Meier G H,Pettit F S.High temperature oxidation and corrosion of intermetallic compounds[J].Materials Science and Technology,1992,8 (4):331. |
[32] | Flower H M,Wilcox B A.In situ oxidation of Ni-30wt.% Cr and TDNiCr in the high voltage electron microscope[J].Corro.Sci.,1977,17 (3):253. |
[33] | Rhys-Jones T N,Grabke H J,Kudielka H.The effect of various amounts of alloyed cerium and cerium oxide on the high temperature oxidation of Fe-10Cr and Fe-20Cr alloys[J].Corro.Sci.,1987,27 (1),49. |
[34] | Ramanarayanan T A,Raghavan M,Petkovicluton R.The characteristics of alumina scales formed on Fe-based yttria-dispersed alloys[J].J.Electrochem.Soc.,1984,131 (4):923. |
[35] | 钱余海,李美栓,张亚明.氧化膜开裂和剥落行为[J].腐蚀科学与防护技术,2003,15(2):90. |
[36] | Whittle D P,Stringer J.Improvements in High Temperature Oxidation Resistance by Additions of Reactive Elements or Oxide Dispersions[J].Philos.Trans.R.Soc.London Set.1980,A295(1413):309. |
[37] | Przybylski K,Yurek G J.The Influence of Implanted Yttrium on the Mechanisms of Growth of Chromia Scales[J].Mater.Sci.Forum,1989,43:1. |
[38] | 李铁藩.21世纪高温氧化的发展方向[J].材料保护,2000,33(1):12. |
[39] | 陈云峰,熊华平,毛唯.液相Al-Si共渗提高Ti3Al基合金高温抗氧化性[J].腐蚀科学与防护技术,2005,17(1):39. |
[40] | He Yi-Rong,Rapp R A,Tortorelli P F.Oxidation-resistant Gedoped silicide coating on Cr-Cr2 Nb alloys by pack cementation[J].Materials Science and Engineering,1997,A222 (2):109. |
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%