从粉末制备、成形、烧结、热处理等方面综述了粉末冶金方法制备TiAl金属间化合物的最新进展.着重评述了粉末冶金TiAl基合金的几种烧结工艺,其中包括热等静压、自蔓延高温合成、粉末注射成形、放电等离子烧结等,同时论述了上述各方法的优势以及局限性,并指出了今后的研究方向.
参考文献
[1] | 张永刚;韩雅芳;陈国良.金属间化合物结构材料[M].北京:国防工业出版社,2001:1008. |
[2] | Wang G X;Dahms M .TiAl-based alloys prepared by elemental powder metallurgy[J].Powder Metallurgy International,1992,24(04):219. |
[3] | Moll John H;McTiernan Brian J .PM TiAl alloys:the sky's the limit[J].Mathematica Policy Research,2000,18:18. |
[4] | 王尔德,李小强,胡连喜.粉末冶金法制备TiAl基合金[J].粉末冶金技术,2002(05):287-293. |
[5] | 刘咏,黄伯云,周科朝,贺跃辉,唐志宏.粉末冶金γ-TiAl基合金研究的最新进展[J].航空材料学报,2001(04):50-55. |
[6] | Gouma P I;Saunders N;Loretto M H .Microstructural evolution and microseg-regation of gas atomized powders of a TiAl based alloy[J].Materials Science and Technology,1996,12(10):823. |
[7] | 王尔德,胡连喜,李小强.高能球磨Ti/Al复合粉体的反应烧结致密行为[J].粉末冶金技术,2003(05):259-263. |
[8] | 李小强,李元元.大塑性变形-反应烧结TiAl合金的高温压缩屈服强度[J].稀有金属材料与工程,2004(03):289-292. |
[9] | 李小强,胡连喜,王尔德,贺文雄,刘祖岩.Microstructure of TiAl alloy prepared by intense plastic deformation and subsequent reaction sintering[J].中国有色金属学会会刊(英文版),2002(04):621-624. |
[10] | Hsiung L M;Nieh T G .Microstructure and properties of powder metallurgy TiAl alloys[J].Materials Science and Engineering,2004,A364(01) |
[11] | Yolton C F;Kim Y W;Habel U.Powder metallurgy processing of gamma titanium aluminide[A].San Diego.California,2003:233. |
[12] | Habel U;McTiernan Brian J.HIP temperature and properties of a gas-atomized γ-titanium aluminide alloy[J].Intermetallics,2004(12):63. |
[13] | Habel U;Das G;Yolton F.Processing,microstructure and tensile properties of gamma-TiAl PM alloy 395mm[A].San Diego,California,2003:297. |
[14] | Yolton F;Habel U;Kim Y W.Processing,microstructures and mechanical properties of PM gamma titanium aluminides[A].,2004:215. |
[15] | 刘咏,黄伯云,周科朝,贺跃辉.热等静压对粉末冶金TiAl 合金显微组织和相成分的影响[J].粉末冶金技术,2001(03):165-169. |
[16] | 刘咏,黄伯云,贺跃辉.元素粉末冶金方法制备TiAl基合金[J].粉末冶金材料科学与工程,1999(03):189-194. |
[17] | Yongchan Kim;Nack J. Kim;Taesik Yoon;S. Ahn .Densification behavior of PIMed TiAl parts[J].粉体および粉末冶金,1999(8):882-886. |
[18] | Good-Sun Choi;Jin-Young;Dong-Hi Lee .Resistance/spark sintering under pressure of intermetallic TiAl powders[J].Journal of Korean Institute of Metal and Materials,1992,30(07):840. |
[19] | Hitoshi Hashimoto;Hiraku Sato .Synthesis of TiAl-TiB_2 Composite Material by Mechanical Alloying and Spark Plasma Activated Sintering[J].粉体および粉末冶金,1996(3):289-294. |
[20] | Um Tae Young;Park Yong Ho;Hashimoto Hitoshi et al.Formation mechanism and the microstructure of Ti-Al intermetallic compound system composite materials fabricated by spark plasma-combustion[J].Journal of the Japan Society of Powder and Powder Metallurgy,1996,43(04):438. |
[21] | Matsugi K;Ishibashi N;Hatayama T et al.Microstructure of spark sintered titanium luminide compacts[J].Intermetallics,1996,4:457. |
[22] | Hashimoto Hitoshi;Sato Hiraku;Chauhan Sundeep et al.Effect of nitrogen on properties of TiAl-TiB2 composite material synthesized by nitrogen shock mechanical alloying and spark plasma activated sintering[J].Journal of the Japan Society of Powder and Powder Metallurgy,1997,44(06):542. |
[23] | Lee D B;Park J H;Park Y H et al.High temperature oxida tion of TiAl/SiCp composites manufactured by MA-SPS process[J].Materials Transactions,1997,38(04):306. |
[24] | Calderon HA.;Garibay-Febles V.;Umemoto M.;Yamaguchi M. .Mechanical properties of nanocrystalline Ti-Al-X alloys[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(0):196-205. |
[25] | Mei Bingchu;Yoshinari Miyamoto.Investigation of TiAl/Ti2 AlC composites prepared by spark plasma sintering[J].Materials Chemistry and Physics,2002(75):291. |
[26] | 朱教群,梅炳初,周卫兵.放电等离子烧结制备致密TiAl/Ti2AlC复合材料[J].材料科学与工程学报,2003(03):356-359. |
[27] | 岳云龙,吴海涛,王志杰,张联盟.TiC/TiAl复合材料微观结构观察及强韧化机理分析[J].济南大学学报(自然科学版),2004(02):98-102. |
[28] | YUE Yun-long,GONG Yan-sheng,WU Hai-tao,WANG Chuan-bin,ZHANG Lian-meng.Fabrication and Mechanical Properties of TiC/TiAl Composites[J].武汉理工大学学报(材料科学版)英,2004(01):1-4. |
[29] | Yue Y L;Gong Y S;Shen Q et al.sombustion synthesis of γ-TiAl intermetallic compound Powder[J].Key Engineering Materials,2003,249:467. |
[30] | 岳云龙,吴海涛,吴波,王志杰,陶文宏.TiAl化合物的热爆合成热力学与动力学分析[J].济南大学学报(自然科学版),2005(02):106-109. |
[31] | Mei B C;Miyamoto Y .Preparation of Ti-Al intermetallic compounds by spark plasma sintering[J].Metallurgical and Materials Transactions,2001,32A(3A):843. |
[32] | Denquin A;Naka S .Phase transformation mechanisms involved in two-phase TiAl-based alloys-Ⅰ.Lamellar structure formation[J].Acta Materiae Compositae Sinica,1996,44(01):343. |
[33] | 谢鲲,王健农,唐建成.循环热处理细化TiAl晶粒[J].稀有金属材料与工程,1999(04):248. |
[34] | Yang Jie;Wang J N;Wang Yong.Refining grain size of a TiAl alloy by cyclic heat treatment through discontinuous coarsening[J].Intermetallics,2003(11):971. |
[35] | 唐建成,黄伯云,贺跃辉,周科朝,刘文胜,唐志宏,鲁世强.两步热处理制备高延性TiAl基合金机理[J].中国有色金属学报,2002(02):221-225. |
[36] | Tang J C;Huang B Y;Liu W S.A high ductility TiAl alloy made by two-step heat treatment[J].Materials Research Bulletin,2003(38):2019. |
[37] | 张永刚;韩雅芳;陈国良.金属间化合物结构材料[M].北京:国防工业出版社,2001:1018. |
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%