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Microstructural Evolution of Ti-5.6Al-4.8Sn-2Zr-1Mo-0.35Si-0.7Nd Titanium Alloy with Carbon Additions 被引量:1

Microstructural Evolution of Ti-5.6Al-4.8Sn-2Zr-1Mo-0.35Si-0.7Nd Titanium Alloy with Carbon Additions
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摘要 The effect of carbon addition on microstructural evolution was studied in a near-α titanium alloy (Ti-5.6Al- 4.8Sn-2Zr-1Mo-0.35Si-0.7Nd). It was found that flake and ribbon titanium carbides with a NaCl crystal structure formed in the as-cast alloys with carbon additions of over 0.17 wt pct. Flake carbide particles are the product of eutectic transformation and precipitate from the high-temperature β phase. The ribbon carbide particles are primary phases formed prior to the nucleation of any metallic phases. The as-cast alloys with carbide precipitation after heat-treatment at βt-30℃ followed by water quenching showed the spheroidization of α lamellae and partial dissolution of carbide particles. After annealing at βt+15℃, carbide particles are mostly distributed at the grain boundary and spheroidized through mixed grain boundary plus bulk diffusions. The effect of carbon addition on microstructural evolution was studied in a near-α titanium alloy (Ti-5.6Al- 4.8Sn-2Zr-1Mo-0.35Si-0.7Nd). It was found that flake and ribbon titanium carbides with a NaCl crystal structure formed in the as-cast alloys with carbon additions of over 0.17 wt pct. Flake carbide particles are the product of eutectic transformation and precipitate from the high-temperature β phase. The ribbon carbide particles are primary phases formed prior to the nucleation of any metallic phases. The as-cast alloys with carbide precipitation after heat-treatment at βt-30℃ followed by water quenching showed the spheroidization of α lamellae and partial dissolution of carbide particles. After annealing at βt+15℃, carbide particles are mostly distributed at the grain boundary and spheroidized through mixed grain boundary plus bulk diffusions.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第5期616-620,共5页 材料科学技术(英文版)
关键词 Titanium alloy Carbon Microstructure Heat treatment CARBIDE Titanium alloy Carbon Microstructure Heat treatment Carbide
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  • 1[1]J.C.Williams and E.A.Starke Jr:Acta Mater.,2003,51,5775. 被引量:1
  • 2[2]S.L.Semiatin,V.Seetharaman and I.Weiss:Mater.Sci.Eng.,1998,A243,1. 被引量:1
  • 3[3]D.Eylon,S.Fujishiro,P.J.Postans and F.H.Froes:J.Met.,1984,36,55. 被引量:1
  • 4[4]R.R.Boyer:Mater.Sci.Eng.,1996,A213,103. 被引量:1
  • 5[5]H.M.Flower:Mater.Sci.Technol.,1990,3,1082. 被引量:1
  • 6[6]G.P.Li,D.Li,Y.Y.Liu and Q.J.Wang:Proc.of Xi'an Int.Titanium Conf.,International Academic Publishers,Beijing,1999,446. 被引量:1
  • 7[7]S.Z.Zhang,G.P.Li,Q.J.Wang,Y.Y.Liu and R.Yang:Mater.Sci.Technol.,2004,20,167. 被引量:1
  • 8[8]J.Q.Jiang,T.S.Lim,Y.J.Kim and H.S.Chung:Mater.Sci.Technol.,1996,12,362. 被引量:1
  • 9[9]E.L.Zhang,S.Y.Zeng and Z.J.Zhu:J.Mater.Sci.,2000,35,5989. 被引量:1
  • 10[10]Y.X.Jin,S.Y.Zeng and H.W.Wang:Rare Metal.Mat.Eng.,2002,31,358. 被引量:1

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