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As-cast Microstructure,Mechanical Properties and Casting Fluidity of ZA84 Magnesium Alloy Containing TiC

As-cast Microstructure,Mechanical Properties and Casting Fluidity of ZA84 Magnesium Alloy Containing TiC
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摘要 The as-cast microstructure, mechanical properties and casting fluidity of ZA84 alloy containing TiC were investigated. The experimental results indicate that adding 0.5wt%TiC to ZA84 alloy can refine the as-cast microstructure, and do not cause the formation of any new phase. After 0.5wt%TiC was added to the ZA84 alloy, the morphology of ternary phases on the grain boundaries changed from coarse quasi-continuous net to fine disconnected net, and the distribution of ternary phases became dispersive and homogeneous. At the same time, the tensile properties of ZA84+0.5TiC alloy at room temperature were comparable to those of AZ91D alloy, and were higher than those of ZA84 alloy. At 150 ℃, the tensile and creep properties of ZA84+0.5TiC alloy were also higher than those of ZA84 and AZ91D alloys. In addition, compared with the AZ91D alloy, the casting fluidity of ZA84+0.5TiC alloy was slightly poor, but better than that of ZA84 alloy. The reason could be related to the effect of TiC on the solidification temperature range of ZA84 alloy. The as-cast microstructure, mechanical properties and casting fluidity of ZA84 alloy containing TiC were investigated. The experimental results indicate that adding 0.5wt%TiC to ZA84 alloy can refine the as-cast microstructure, and do not cause the formation of any new phase. After 0.5wt%TiC was added to the ZA84 alloy, the morphology of ternary phases on the grain boundaries changed from coarse quasi-continuous net to fine disconnected net, and the distribution of ternary phases became dispersive and homogeneous. At the same time, the tensile properties of ZA84+0.5TiC alloy at room temperature were comparable to those of AZ91D alloy, and were higher than those of ZA84 alloy. At 150 ℃, the tensile and creep properties of ZA84+0.5TiC alloy were also higher than those of ZA84 and AZ91D alloys. In addition, compared with the AZ91D alloy, the casting fluidity of ZA84+0.5TiC alloy was slightly poor, but better than that of ZA84 alloy. The reason could be related to the effect of TiC on the solidification temperature range of ZA84 alloy.
作者 杨明波
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2008年第6期854-858,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Funds for Distinguished Young Scholar in China(No.50725413) the Major State Basic Research Develop-ment Program of China(973)(No.2007CB613704) the Natural ScienceFoundation Project of CQ CSTC(No.2007BB4400) Chongqing Scienceand Technology Commission in China (No.2006AA4012-9-6)
关键词 elevated temperature magnesium alloy Mg-Zn-Al alloys ZA84 magnesium alloy TIC elevated temperature magnesium alloy Mg-Zn-Al alloys ZA84 magnesium alloy TiC
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参考文献11

  • 1张静,李忠盛,GUO Zheng-xiao,潘复生.Solidification microstructural constituent and its crystallographic morphology of permanent-mould-cast Mg-Zn-Al alloys[J].中国有色金属学会会刊:英文版,2006,16(2):452-458. 被引量:25
  • 2A. Luo,M. O. Pekguleryuz.Cast magnesium alloys for elevated temperature applications[J].Journal of Materials Science.1994(20)
  • 3Balasubramani N,,Srinivasan A,Pillai U T S,Raghukandan K,Pai B C.Effect of Antimony Addition on the Microstructure and Mechanical Properties of ZA84 Magnesium Alloy[].Journal of Alloys and Compounds.2008
  • 4Tyagi R.Synthesis and Tribological Characterization of In-situ Cast Al–TiC Composites[].Wear.2005
  • 5Pekgleryz O,Kaya Arslan A.Creep Magnesium Alloys for Powertrain Applications[].Advanced Engineering Materials.2003
  • 6Z. Zhang,R. Tremblay,D. Dube.Microstructure and mechanical properties of ZA104 (0.3-0.6Ca) die-casting magnesium alloys[].Journal of Materials Science.2004
  • 7ZHANG Z,TREMBALAY R,DUBE D.Microstructure and creep resistantance of Mg-10Zn-4Al-0.15Ca permanent moulding alloy[].Journal of Materials Science.2002
  • 8Zhang Z,Couture A,Luo A.An investigation of the properties of Mg-Zn-Al alloys[].Scripta Materialia.1998
  • 9Zhang Z,Tremblay R,Coutune A.Solidification microstructure of ZA102, ZA104 and ZA106 magnesium alloys and its effect on creep deformation[].Canadian Metallurgical Quarterly.2000
  • 10WANG Y X,GUAN S K,ZENG X Q.Effects of RE on the microstructure and mechanical properties of Mg-8Zn-4Al magnesium alloy[].Materials Science Engineering A Structural Materials Properties Microstructure and Processing.2006

二级参考文献13

  • 1HUMBLE P.Towards a cheap creep resistant magnesium alloy[J].Materials Forum,1997,21:45-56.
  • 2POL MEAR I J.Light Alloys:Metallurgy of the Light Metals[M].London:Arnold,1995.
  • 3FOERSTER G S.New developments in magnesium die casting[A].Proceeding of the IMA 33rd Annual Meeting[C].Montreal,Quebec,1976.35-39.
  • 4ZHANG Z,TREMBLAY R,DUBE D.Microstructure and mechanical properties of ZA104(0.3-0.6Ca) die-casting magnesium alloys[J].Mater Sci Eng A,2004,A385:286-291.
  • 5ZHANG Z,TREMBLAY R,DUBE D.Microstructure and creep resistance of Mg-10Zn-4Al-0.15Ca Permanent moulding alloy[J].Mater Sci Technol,2002,18:433-437.
  • 6BOURGEOIS L,MENDIS C L,MUDDLE B C,NIE J F.Characterization of quasicrystalline primary intermetallic particles in Mg-8wt% Zn-4wt% Al casting alloy[J].Philosophical Magazine Letters.2001,81(10):709-718.
  • 7MENDIS C,BOURGEOIS L,MUDDLE B,NIE J F.Effects of Ca additions on microstructures,age hardening response and creep behaviour of Mg-8Zn4Al casting alloy[A].Magnesium Technology 2003,2003 TMS Annual Meeting[C].San Diego,CA,USA,2003,183-188.
  • 8ZOU Hong-hui,ZENG Xiao-qin,ZHAI Chun-quan,DING Wen-jiang.Effects of Nd on the microstructure of ZA52 alloy[J].Mater Sci Eng A,2005,A392:229-234.
  • 9LIANG H,CHEN S L,CHANG Y A.A thermodynamic description of the Al-Mg-Zn system[J].Metall Mater Trans A,1997,A28:1725-1734.
  • 10BOURGEOIS L,MUDDLE B C,NIE J F.The crystal structure of the equilibrium ψ phase in Mg-Zn-Al casting alloys[J].Acta Mater,2001,49:2701-2711.

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