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Al_3Ti金属间化合物的研究进展 被引量:12

Progress on the Research of Al_3Ti Intermetallics
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摘要 综述了Al3Ti金属间化合物的研究进展,介绍了其室温脆性改善的方法,分析了合金化结构变异和复相强化对于材料塑性、韧性提高的机理,并对Al3Ti金属间化合物的制备方法和主要应用进行了分类评述,并指出了今后的研究和发展方向。 The progress on the research of Al3Ti intermetallics is reviewed. It introduces the methods to improve its brittleness under normal temperature and analyses the mechanism of the enhancement of its flexibility through structure-transformed treatment and multiphase reinforcement. It also reviews the production and application of Al3 Ti intermetallics by classifications. Finally, further research directions are put forward.
出处 《机械工程材料》 CAS CSCD 北大核心 2007年第9期1-3,6,共4页 Materials For Mechanical Engineering
基金 山东省自然科学基金资助项目(Y2006F03)
关键词 Al3Ti金属间化合物 合金化结构变异 复相强化 Al3Ti intermetallic compound Ll2 modified titanium trialuminide multiphase reinforcement
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参考文献16

  • 1Tohru Takahashi,Koji Tominaga,Yasuhiko Tsuehida,et al.Mechanical properties of L12 modified titanium trialuminides alloyed with chromium,iron and vanadium[J].Materials Science and Engineering,2002,A329/331:474-480.
  • 2Varin R A,Zbroniec L.High-temperature ordered intermetallic alloys Ⅶ[C]//Koch CC,Liu CT,Stoloff NS,MRS Symp Proc.Pittsburgh,USA:MRS,1997:121-126.
  • 3Varin R A,Zbroniec L,Czujko T,et al.Fracture toughness of intermetallic compacts consolidated from nanocrystalline powders[J].Materials Science and Engineering,2001,A300:1-11.
  • 4Varin R A,Zbroniec L,Wang Z G.Fracture toughness and yield strength of boron-doped,high (Ti+Mn)L12 titanium trialuminides[J].Intermetallics,2001,9:195-207.
  • 5宋凯,季世军,孙俊才.Mg-Ni非晶合金形成范围的热力学预测[J].金属热处理,2001,26(5):21-22. 被引量:5
  • 6张津徐,傅云义,孙坚,胡赓祥.复相Al_3Ti基合金的高温强化[J].材料工程,2000,28(11):26-28. 被引量:2
  • 7Heilmaier M,Saage H,Eckert J.Formation of ODS Ll2(Al,Cr)3Ti by mechanical alloying[J].Materials Science and Engineering,1997,A239/240:652-657.
  • 8惠林海,耿浩然,王守仁,徐福松.Al_3Ti及其L1_2型变异合金的制备[J].济南大学学报(自然科学版),2007,21(2):188-188. 被引量:1
  • 9张俊善,汪涛,祝美丽,刘瑞岩.燃烧合成TiAl_3化学反应动力学研究[J].金属学报,2002,38(10):1027-1030. 被引量:9
  • 10Kumar K S,Dipietro M S,Whittenberger J D.Compression response of monolithic and particulate-reinforced composites of Al67 Ti25 Cr8 and A166 Ti25 Mn9[J].Acta Metallurgica et Materialia,1993,41,1379-1389.

二级参考文献29

  • 1Ji S J,Int J Hydrogen Energy,1999年,24卷,59页
  • 2Orimo S,J Alloy Compound,1997年,253/254卷,94页
  • 3徐祖耀,金属材料热力学,1981年,188页
  • 4Sercombe T B,Schaffer G B.Rapid manufacturing of aluminum composites[J].Science,2003,301 (29):1225-1227.
  • 5Satoh Shyuji,Ogasawara,Tadaoki.Foamed ceramic body and process for production thereof[P].United States Patent.4758538,1988-07-19.
  • 6Sundermum E V.Method of manufacturing ceramic foam bodies[P].United States Patent.3745201,1973-05-10.
  • 7Montanaro L,Jo rand Y,Fantozzi G,et al.Ceramic foam by powder processing[J].Journal of Europe Ceramic Society,1998,18(9):1339-1350.
  • 8Peng H X,Fan Z G Evans J R,et al.Microstructure of ceramic foam[J].Journal of Europe Ceramic Society,2000,20(7):807-813.
  • 9Chao W J,Chou K S,et al.Studies on the control of porous properties in the fabrication of porous supports[J].Key Engineering Materials,1995,114:93-108.
  • 10Fini M,Giavaresi Aldini N N,et al.About substitute composed of polymethyl methacrylate and alpha-triealcium phosphate:results in terms of osteoblast function and bone tissue formation[J].Biomaterials,2002,23 (23):4523-4531.

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