介绍了TiAl基合金薄板的铸造冶金工艺、元素粉合成工艺、合金粉成形工艺及单元素箔板叠轧工艺4大类成形技术.评述了国内外TiAl基合金薄板成形技术的发展现状,以及TiAl基合金薄板在航空航天领域应用研究状况.指出TiAl基合金的研究重点已经从基础研究转向应用基础研究,其实用化研究进程正在加快.
参考文献
[1] | Kim YW. .EFFECTS OF MICROSTRUCTURE ON THE DEFORMATION AND FRACTURE OF GAMMA-TIAL ALLOYS[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1995(0):519-533. |
[2] | Liu C T .Recent Advances in Ordered Intermetallics[J].Materials Chemistry and Physics,1995,42(02):77-86. |
[3] | F. Appel;M. Oehring .Novel design concepts for gamma-base titanium aluminide alloys[J].Intermetallics,2000(9/11):1283-1312. |
[4] | Dimiduk DM .Gamma titanium aluminide alloys--an assessment within the competition of aerospace structural materials[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1999(2):281-288. |
[5] | Edward A. Loria .Gamma titanium aluminides as prospective structural materials[J].Intermetallics,2000(9/11):1339-1345. |
[6] | Draper SL;Krause D;Lerch B;Locci IE;Doehnert B;Nigam R;Das G;Sickles P;Tabernig B;Reger N .Development and evaluation of TiAl sheet structures for hypersonic applications[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2007(1-2):330-342. |
[7] | Semiatin SL.;Smith PR. .MICROSTRUCTURAL EVOLUTION DURING ROLLING OF TI-22AL-23NB SHEET[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1995(1/2):26-35. |
[8] | Foster M A;Smith P R;Miracle D B .Effect of Heat Treatment on Tensile and Creep Properties of'Neat'Ti-22Al-23Nb in Transverse Orientation[J].Scrpta Metallurglca Matedalia,1995,33:975-981. |
[9] | Dary F C;Pollock T M .Effects of High Temperature Air and Vacuum Exposures on Room Temperature Tensile Behavior of(O+B2)Titanium Aluminide Ti-22Al-23Nb[J].Materials Science and Engineering A,1996,208:188-202. |
[10] | Jha,S C;Forster J A;Pandey A K et al.Cold Rolled Titanium Aluminide and Titanium AHoy Foils[J].ISIJ International,1991,31:1267-1271. |
[11] | Boehlert C J;Majumdar B S;Krishnamurthy S et al.Role of Matrix Microstructure on Room-Temperature Tensile Properties and Fiber-Strength Utilization of Orthorhombic Ti-Alloy-Based Composite[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materals Science,1997,28A:309-323. |
[12] | Graves J A;Smith P R;Rhodes C G.Evaluation of Ti22Al-23Nb Orthorhombic Alloy for Use as Matrix in High Temperature Ti-Based Composite[A].,1992:31-42. |
[13] | Rhodes C G;Graves J A;Smith P R.Structural Intermetallies[A].Warrendale,USA,1993:45-49. |
[14] | Semiatin S L;Seetharaman v .Deformation and Microstructure Development During Hot-Pack Rolling of Near-Gamma Titanium Aluminide Alloy[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1995,26A:371-381. |
[15] | Fujitsuna N;Miyamoto Y;Ashida Y.Structure Intermetallies[M].TMS:Warrendale:PA,1993:187-190. |
[16] | Matsuo Munetsugu;Hanamura Toshihiro;Kimura Masao et al.Microstructural Characterization of Twin-roll Cast Gamma Titanium Aluminide Sheet[J].JSIJ International,1991,31(03):289-297. |
[17] | Toshihiro Hanamura;Keizo Hashimoto .Improvement of Microstrueture and Mechanical Properties in TiB2-Doped TiAl Alloy by Direct Sheet Casting[J].Materials Transactions-Japan Institute of Metals,1998,39:724-730. |
[18] | Hiroshi Fukutomi;Masayasu Ueno;Mizuki Nakamura;Tetsuya Suzuki;Shiomi Kikuchi .Production of TiAl sheet with oriented lamellar microstructure by diffusional reaction of aluminum and textured titanium foils[J].Materials transactions,1999(7):654-658. |
[19] | Hiroshi Fukutomi;Mizuki Nakamura .Void Formation by the Reactive Diffusion of Titanium and Aluminum Foils[J].Materials transactions,2000(9):1244-1246. |
[20] | David E A;Jeffrey A H .Processing Intermetallic Composites by Self-Propagating,High-Temperature Synthesis[J].Journal of the Minerals Metals and Materials sclciety,1994,3:31-35. |
[21] | Jewett T J;Dahms M .Protective Coatings for Reactively Synthesizing TiAl Sheet Material[J].Journal of Materials Science Letters,1996,15:1432-1434. |
[22] | Wang G;Dahms M .Synthesizing Gamma-TiAl Alloys by Reactive Powder Processing[J].Journal of the Minerals,Metals & Materials Society,1993,5:52-56. |
[23] | Senkov ON.;Uchic MD. .Microstructure evolution during annealing of an amorphous TiAl sheet[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2003(1/2):216-224. |
[24] | Senkov O N;Uchic M D;Menon S et al.Crystallization Kinetics of Amorphous TiAl Sheet Produced by PV D[J].Scripta Materialia,2002,46:187-192. |
[25] | Uenishi K .Application of Mechanically Alloyed Ti-Al Powders for Low Pressure Plasma Spraying[J].Zeitschrift fur Met allkunde,1999,90:289-293. |
[26] | Sanjay Sampath;Herbert Herman .Plasma Spray Forming Metals,Intermemllies and Composites[J].Journal of the Minerals,Metals & Materials Society,1993,7:42-49. |
[27] | Tomita M;Noguchi Y .MITI Program on High-Temperature Intermetallics[J].Transactions of Nonferrous Metals Society of China,1999,9(Suppl.1):346-349. |
[28] | Koeppe C.;Clemens H.;Schretter P.;Glatz W.;Bartels A. .OPTIMIZING THE PROPERTIES OF TIAL SHEET MATERIAL FOR APPLICATION IN HEAT PROTECTION SHIELDS OR PROPULSION SYSTEMS[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1995(1/2):182-193. |
[29] | Wang Erde;Li Xiaoqiang;Hu Lianxi .Process of TiAl Based Anlly by Powder Metallurgy[J].Powder Metallurgy Technology,2002,20:287-293. |
[30] | 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. |
[31] | Wang G;Dahms M .Titanium Aluminides from Cold-Extruded Elemental Powders with Al-Contents of 25-75%Al[J].Journal of Materials Science,1994,29:1847-1853. |
[32] | E. PARANSKY;E.Y. GUTMANAS;I. GOTMAN;M. KOCZAK .Pressure-Assisted Reactive Synthesis of Titanium Aluminides from Dense 50Al-50Ti Elemental Powder Blends[J].Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science,1996(8):2130-2139. |
[33] | Wang G;Dahms M .An Effective Method for Reducing Porosity in Titanium Aluminide Alloy Ti52Al48 Prepared by Elemental Powder Metallurgy[J].Scripta Materialia,1992,26(09):1469-1474. |
[34] | Wang G;Dahms M .Reaction Sintering of Cold-Extruded Elemental Powder Mixture Ti-48Al[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1993,24A:1517-1526. |
[35] | Clemens H .Intermetallic γ-TiAl Based Alloy Sheet Materials-Processing and Mechanical Properties[J].Zeitschrift fur Metallkunde,1995,86:814-822. |
[36] | Cerling R;Leitgeb R;Schimansky F P .Porosity and Argon Concentration in Gas Atomized γ-TiAl Powder and Hot Isostatically Pressed Compacts[J].Materials Science and Engineering A,1998,252:239-247. |
[37] | Kim Y W .Gamma Titanium Aluminides[J].Journal of the Minerals,Metals & Materials Society,1995,47:39-11. |
[38] | Semiatin S L;Vollmer D C;EI-soudani S .Understanding Failure of Near-Gamma Titanium Aluminides during Rolling[J].Scripta Metallurgica et Materialia,1990,24:1409-1413. |
[39] | Semiatin S L;Ohls M;Kerr W R .Temperature Transients during Hot Pack Rolling of High Temperature Alloys[J].Scripta Metallurgica et Materialia,1991,25:1851-1856. |
[40] | 张功才.TiAl金属间化合物薄板的等温轧制设备及其工艺[J].钛合金信息,1996(01):7-8. |
[41] | Clemens H;Lorich A;Eberhardt N et al.Technology,Properties and Applications of Intermetallic γ-TiAl Based Alloys[J].Zeitschrift fur Metallkunde,1999,90:569-580. |
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%