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颗粒增强钛基复合材料研究新进展 被引量:14

Advanced Progress on Research of Particulate Reinforced Titanium Composites
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摘要 颗粒增强钛基复合材料具有高比强度、低密度、高弹性模量等特点,成为钛基复合材料的发展趋势。目前日本的Toyota公司采用粉末冶金技术制备了原位反应生成的TiB颗粒增强钛基复合材料,已在汽车发动机进、排气阀等部件得到应用。美国Dynamet公司开发了颗粒增强钛基复合材料CermeTi系列,利用其好的耐磨性能在军事、汽车、体育、医疗器械方面进行了开发。我国西北有色金属研究院研制出了性能优异的TP-650钛基复合材料,并且上海交通大学等亦在原位反应法方面作出了较好的结果。 Particulate reinforced titanium matrix composites with high specific strength, low density and high specific modulus have attracted considerable attentions in recent years and are expected to find more applications in the near future. Toyota central research development laboratories Inc, Japan by advanced powder-metallurgy technology creates TiB reinforced titanium matrix composite, which is used as automotive components such as intake and exhaust engine-valves. Dynamet technology Inc, U.S.A develops Cerme Ti composites and is evaluating these composites for potential applications in military vehicles, commercial automotive engines, sporting goods, industrial tooling and biomedical devices, taking advantage of their exceptional wear resistance. Northwest Institute for Nonferrous Metal Research, P R. China fabricates TP-650 composite that exhibits better mechanical properties while Shanghai Jiao Tong university obtains better results of TiMMC composite by a novel in-situ method.
出处 《稀有金属快报》 CSCD 2006年第4期1-5,共5页 Rare Metals Letters
关键词 钛基复合材料 颗粒增强 TIB 应用开发 titanium matrix composite particulate reinforcement TiB application research
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参考文献18

  • 1[1]Hanusiak W M,Fields J L,Nansen D S.Titanium Matrix Composites (TMC) Starus In:G Lütjeringeds[C].Ti -2003Science and Technology v.4.Hamburg:Wiley-VCH,2004:2 463~2 469
  • 2毛小南.颗粒增强钛基复合材料在汽车工业上的应用[J].钛工业进展,2000,17(2):5-12. 被引量:6
  • 3[3]Araki Hiroyasu,Akira Ishikawa.Mechanical Properties of Mechanically Alloyed TiC Particulate-Reinforced Titanium[J].粉体および粉末冶金,2001,43(10):1247~1252
  • 4[4]Tong W,Ravichandran G,Christman T,et al.Processing Sic-Particulate Reinforced Titanium-Based Metal Matrix Compositesby Shock Wave Consolidation[J].Acta Metallurgica et Materialia,1995,43(1):235~250
  • 5吕维洁,张小农,张荻,吴人洁,卞玉君,方平伟.原位合成TiC和TiB增强钛基复合材料[J].材料工程,1999,27(8):9-11. 被引量:10
  • 6郝斌,崔华,蔡元华,程军胜,杨滨,张济山.搅拌铸造法制备金属基复合材料的热力学和动力学机制[J].稀有金属快报,2005,24(6):22-25. 被引量:11
  • 7[7]Furuta T,Yamaguchi T,Sh1bata Y,et al.P/M Titanium Metal Matrix Composite For Exhaust Valve[C].In:Saito Teds.Titanium '99:Science and Technology,Russia:SaintPetersburg,2000
  • 8[9]ZhangX.Cost-Effective Manufacture of Particulate Reinforced Titanium Matrix Composites[C].In:Sun C Teds.17th American Society for Composites Technical Conference.Park Dayton OH:American Society for Composites,2002:7~11
  • 9[10]Bhat BVR.,Subramanyam J,Pras ad VVB.Preparation of Ti-TiB-TiC & Ti-TiB Composites by In-situ Reaction Hotpressing[J].Materials Science & Engineering A,2002,325(1~2):126~130
  • 10[11]Abkowitz Susan M,Abkowitz Stanley et al.Extending the Life of Shot Sleeves With Titanium Metal Matrix Composite(MMC)Liners.[C].In:Fisher Harvey eds.2003 Transactions Congress Sessions/22nd International Die Casting Congress&Exposition.Chicago:North American Die Casting Association,2003:109~116

二级参考文献25

  • 1李昊,桂满昌,周彼德.搅拌铸造金属基复合材料的热力学和动力学机制[J].中国空间科学技术,1997,17(1):9-16. 被引量:16
  • 2[1]Kacar A S,Rana F,Stefanescu D M. Kinetics of Gas to Liquid Transfer of Particles in Metal Matrix Composites[J].Mater Sci Eng, 1991 ,A135:95~100
  • 3[2]Mortensen A,Jin I, Solidification Processing of Metal Matrix Composites[J]. Inter Mater Rev, 1992,37(2): 101~105
  • 4Fan Z ,Key Eng Mater,1997年,127/131卷,131期,423页
  • 5Tsang H T ,Scripta Mater,1997年,37卷,9期,1359页
  • 6罗国珍,稀有金属材料与工程,1997年,26卷,2期,1页
  • 7Jiang J Q ,Mater Sci Tech,1996年,12卷,4期,362页
  • 8Fan Z ,Scripta Mater,1995年,32卷,6期,833页
  • 9安继儒,中外常用金属材料手册,1990年,436页
  • 10Gerard Curran. Materials World, 1998; 1:20

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