综述了作为一种新型超高温金属结构材料的铌-硅基共晶自生复合材料的研究进展,讨论了该材料的成分设计特点,介绍了该材料密度低、承温能力高、室温断裂韧性好、高温强度高和高温持久寿命长等性能优势.
参考文献
[1] | Betteridge W;Shaw S W K .Development of Superalloys[J].Materials Science and Technology,1987,3(01):15. |
[2] | HinoT;Kobayashi T;Koizumi Y et al.Development of a new single Crystal Super-alloy for Industrial Gas Turbines[Z].Superalloys,2000. |
[3] | 郑运荣;肖程波;殷克勤 .燃气涡轮叶片材料的发展趋势[Z].北京航空材料研究院讲座资料,2001. |
[4] | Dimiduk D M;Miracle D B;WARD C H .Development of intermetallic materials for aerospace systems[J].Materials Science and Technology,1992,8(04):367. |
[5] | 《稀有金属材料加工手册》编写组.稀有金属材料加工手册[M].北京:冶金工业出版社,1984:267. |
[6] | Bewlay B P;Lewandowksi J J;Jackson M R .Refractory Metal-Intermetallic In-Situ Composites for Aircraft Engines[J].Journal of The Minerals,Metals & Materials Society,1997,60(01):44. |
[7] | SUBRAMANIAN P R;Shields Jr J A .Refractory Metals and Materials:Joining and Applications[J].Journal of The Minerals,Metals & Materials Society,1996,48(01):33. |
[8] | M.R.Jackson;B.P.Bewlay .High-Temperature Refractory Metal-Intermetallic Composites[J].JOM,1996(1):39-44. |
[9] | Buckman R W.Alloying of Refractory Metals[M].Metals Park, Ohio:ASM,1988:419. |
[10] | Hisatoshi Hirai;Tatsuo Tabaru;Hidetoshi Ueno;Akira Kitahara;Shuji Hanada .Microstructures and mechanical properties of directionally solidified Nb-xMo-22Ti-18Si in-situ composites[J].日本金属学会誌,2000(6):474-480. |
[11] | Kwai S. Chan;David L. Davidson .The Fracture Resistance and Crack-Tip Micromechanics of In-Situ Intermetallic Composites[J].JOM,1996(9):62-67. |
[12] | Massalsici T B .Binary Alloy Phase Diagrams[M].Metals Park, Ohio:ASM,1986,1:768. |
[13] | Bewlay B P;Briant C L.Recent Advances In Nb-Silicide In-Situ Composites[A].Plansee Holding AG:Reutte,2001(01):404. |
[14] | Bewlay B P;Jackson M P;Lipsitt H A .The Balance of Mechanical and Environmental Properties of a Multielement Niobium-Niobium Silicide-Based In Situ Composites[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1996,27(12):3801. |
[15] | Saqib M;Srinivasan R;Weiss I .Ordering Transformations in the Nb3Si Phase in Nb-10Si Alloy[J].Scripta Metallurgica et Materialia,1992,27(04):425. |
[16] | Chang K M;Bewlay B P et al.Cold-Crucible Directional Solidification of Refractory Metal-Silicide Eutectics[J].Journal of the Minerals,Metals & Materials Society,1992,44(06):59. |
[17] | Mendiratta M G;Dimiduk D M .Strength and Toughness of a Nb/Nb5Si3 Composites[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1993,24(02):501. |
[18] | B. P. Bewlay;M. R. Jackson;P. R. Subramanian .Processing high-temperature refractory-metal silicide in-situ composites[J].JOM,1999(4):32-36. |
[19] | D.L.Davidson;K.S.Chan .Fatigue and Fracture Toughness of a Nb-Ti-Cr-Al-X Single-Phase Alloy at Ambient Temperature[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,2000(4):1075-1084. |
[20] | Mendiratta M G;Lewandowski J J;Dimiduk D M .Strength and Ductile-Phase Toughening in the Two-Phase Nb/Nb5Si3 Alloys[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1991,22(07):1573. |
[21] | Davidson D L;Chan K S;Anton D L .The Effect on Fracture Toughness of Ductile-Phase Composition and Morphology in Nb-Cr-Ti and Nb-Si In Situ Composites[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1996,27(10):3007. |
[22] | Rigney J D;Lewandowski J J .Loading Rate and Test Temperature on Fracture of In Situ Niobium Silicide-Niobium Composites[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1996(27):3292. |
[23] | Woodford D A .Critical Property Evaluation of High-Temperature Composites:A Case Study in Materials Design[J].Journal of The Minerals,Metals & Materials Society,1990,42(11):50. |
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%