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Delayed Fracture Behavior of CrMo-Type High Strength Steel Containing Titanium 被引量:6

Delayed Fracture Behavior of CrMo-Type High Strength Steel Containing Titanium
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摘要 The delayed fracture behaviors of CrMo-type high strength steels containing different amount of titanium(0to 0.10%)were studied.The steels were quenched at 880℃ and tempered from 400℃ to 650℃,and a wide range of tensile strength was obtained.The sustained load tensile test was carried out by using notched tensile specimens in Walpole solution.The experimental results showed that with higher strength,the Ti-microalloyed steels show higher resistance to delayed fracture compared with non-microalloyed steel due to titanium beneficial role and microstructure changes.The undissolved TiC is uniformly distributed as strong hydrogen traps,retarding or preventing the diffusion and accumulation of hydrogen to lower-interaction energy sites,such as prior austenite and martensite lath boundaries in stress concentration area.Meanwhile,the grain refining effect of titanium is also an important factor to improve the delayed fracture resistance of Ti-microalloyed steels.The characteristics of delayed fracture remain nearly the same with titanium addition. The delayed fracture behaviors of CrMo-type high strength steels containing different amount of titanium(0to 0.10%)were studied.The steels were quenched at 880℃ and tempered from 400℃ to 650℃,and a wide range of tensile strength was obtained.The sustained load tensile test was carried out by using notched tensile specimens in Walpole solution.The experimental results showed that with higher strength,the Ti-microalloyed steels show higher resistance to delayed fracture compared with non-microalloyed steel due to titanium beneficial role and microstructure changes.The undissolved TiC is uniformly distributed as strong hydrogen traps,retarding or preventing the diffusion and accumulation of hydrogen to lower-interaction energy sites,such as prior austenite and martensite lath boundaries in stress concentration area.Meanwhile,the grain refining effect of titanium is also an important factor to improve the delayed fracture resistance of Ti-microalloyed steels.The characteristics of delayed fracture remain nearly the same with titanium addition.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2005年第1期43-49,共7页 钢铁研究学报(英文版)
基金 Item Sponsored by National Key Fundamental Research and Development Project of China(G1998061503) National Science and Technology Development Project of China(2002BA314B08)
关键词 TITANIUM delayed fracture high strength steel CrMo steel titanium delayed fracture high strength steel CrMo steel
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  • 1Jae Sun Baek,Jung Gu Kim,Do Haeng Hur,Joung Soo Kim.Anodic film properties determined by EIS and their relationship with caustic stress corrosion cracking of Alloy 600[J].Corrosion Science.2002(5)
  • 2J.K. Heuer,J.F. Stubbins.An XPS characterization of FeCO3 films from CO2 corrosion[J].Corrosion Science.1999(7)

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