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石墨烯/Ti60复合材料组织与力学性能研究 被引量:4

Research on Microstructure and Mechanical Properties of Graphene/Ti60 Composites
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摘要 石墨烯与Ti60合金粉末经过球磨混合后,采用放电等离子烧结法(SPS)制备出石墨烯/Ti60复合材料,并在900℃对其进行热轧加工。采用扫描电子显微镜(SEM)、能谱仪(EDS)、金相显微镜和万能试验机对烧结态与轧制态Ti60合金、石墨烯/Ti60复合材料的微观组织和力学性能进行分析。结果表明:添加质量分数为0.1%的石墨烯能够减小复合材料原始β相尺寸,增大α相尺寸。经热轧加工后,石墨烯/Ti60复合材料在室温、600℃和700℃的抗拉强度分别为1353.0、746.6和391.7 MPa,相比Ti60合金分别提高了9.24%、9.46%和2.99%。 After graphene and Ti60 alloy powders were mixed by ball milling,the graphene/Ti60 composites were prepared by spark plasma sintering(SPS),and hot rolled at 900℃.The microstructure and mechanical properties of sintered and hot rolled Ti60 alloy and graphene/Ti60 composites were analyzed by scanning electron microscope(SEM),energy dispersive spectrometer(EDS),metallographic microscope and universal testing machine.The results show that adding graphene with a mass fraction of 0.1%can reduce the size of originalβphase and increase the size ofαphase of the composite.After hot rolling,the tensile strengths of graphene/Ti60 composites at room temperature,600℃and 700℃are 1353.0 MPa,746.6 MPa and 391.7 MPa,respectively,which are 9.24%,9.46%and 2.99%higher than that of Ti60 alloy,respectively.
作者 赵会宇 张媚 于佳石 孙国栋 Zhao Huiyu;Zhang Mei;Yu Jiashi;Sun Guodong(School of Materials Science and Engineering,Northeastern University,Shenyang 110819,China;Xi’an Rare Metal Materials Institute Co.,Ltd.,Xi’an 710016,China;Northwest Nonferrous Metals Research Institute,Xi’an 710016,China)
出处 《钛工业进展》 CAS 2022年第2期29-32,共4页 Titanium Industry Progress
基金 陕西省自然科学基金资助项目(2020JC-50)。
关键词 钛基复合材料 石墨烯 显微组织 力学性能 titanium matrix composite graphene microstructure mechanical properties
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  • 1程超,陈志勇,秦绪山,刘建荣,王清江.TA32钛合金厚板的微观组织、织构与力学性能[J].金属学报,2020,56(2):193-202. 被引量:11
  • 2沈寅忠.位错理论的形成与发展[J].金属世界,1995(2):10-11. 被引量:5
  • 3G.Liitjering,Property optimization through microstructural control in titanium and aluminum alloys,Mater.Sci.Eng.,A263,117(1999).
  • 4H.M.Flower,D.R.F.West,The effect of silicon on the structure and mechanical properties of an α+β titanium alloy,J.Mater.Sci.,17,1221(1982).
  • 5M.Es-souni,Creep deformation behavior of three hightemperature near α-Ti alloys,Metall.Mater.Trans.,32A,285(2001).
  • 6C.Leyens,M.Peters,D.Weinem,W.A.Kaysser,Influence of long-term annealing on tensile properties and fracture of near-α titanium alloy Ti-6Al-2.75Sn-4Zr-0.4Mo-0.45Si,Metall.Mater.Trans.,27A,1709(1996).
  • 7D.Weinem,J.Kuimpfert,M.Perters,W.A.Kaysser,Processing window of the near-α-titanium alloy TIMETAL-1100 to produce a fine-grained β-structure,Mater.Sci.Eng.,A206,55(1996).
  • 8Y.G.Li,P.A.Blenkinsop,M.H.Loretto,D.Rugg,W.Voice,Effect of carbon and oxygen on microstructure and mechanical properties of Ti-25V-15Cr-2Al (wt%) alloys,Acta Mater.,47,2889(1999).
  • 9S.Z.Zhang,G.P.Li,Y.Y.Liu,R.Yang,Effect of carbon on the upper (alpha+beta) phase field of titanium alloy Ti-5.6Al-4.8Sn-2Zr-1Mo-0.35Si,Mater.Sci.Technol.,20,167(2004).
  • 10C.Ouchi,H.Iizumi,S.Mitao,Effect of ultra-high purification and addition of interstitial elements on properties of pure titanium and titanium alloy,Mater.Sci.Eng.,A243,186(1998).

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