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Microstructure Evolution and Mechanical Properties of HR3C Steel during Long-term Aging at High Temperature 被引量:13

Microstructure Evolution and Mechanical Properties of HR3C Steel during Long-term Aging at High Temperature
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摘要 Microstructure evolution and the changes in mechanical properties of HR3 Csteel during long-term aging at650,700 and 750℃ were investigated.The precipitated phases of the aging steel included M23C6 carbides,Z-phase and a trace amount of Nb(C,N).The M23C6 carbides were distributed mainly at the grain boundary,while Z-phase was mainly inside the grains.Amounts of both M23C6 carbides and Z-phase during the aging process increased with increasing aging period and temperature.Coarsening of M23C6 carbides was influenced significantly by aging time and temperature,while the size of the Z-phase was relatively less affected by the aging time and temperature,which had a steady strengthening effect.Coarsening of the M23C6 carbides was the main reason for the decline in high temperature yield strength during long-term aging at 750℃.The M23C6 carbides were linked into a continuous chain along the grain boundary which accounted for the decrease of toughness during aging. Microstructure evolution and the changes in mechanical properties of HR3 Csteel during long-term aging at650,700 and 750℃ were investigated.The precipitated phases of the aging steel included M23C6 carbides,Z-phase and a trace amount of Nb(C,N).The M23C6 carbides were distributed mainly at the grain boundary,while Z-phase was mainly inside the grains.Amounts of both M23C6 carbides and Z-phase during the aging process increased with increasing aging period and temperature.Coarsening of M23C6 carbides was influenced significantly by aging time and temperature,while the size of the Z-phase was relatively less affected by the aging time and temperature,which had a steady strengthening effect.Coarsening of the M23C6 carbides was the main reason for the decline in high temperature yield strength during long-term aging at 750℃.The M23C6 carbides were linked into a continuous chain along the grain boundary which accounted for the decrease of toughness during aging.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2014年第8期765-773,共9页 钢铁研究学报(英文版)
基金 Item Sponsored by National High-Tech Research and Development Program(863Program)of China(2012AA03A501) International Science and Technology Cooperation Program of China(2012DFG51670)
关键词 HR3C steels microstructure evolutions mechanical propertys aging HR3C steels microstructure evolutions mechanical propertys aging
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  • 1F. Masuyama , lSI] Int. 41 (2001) 612-625.
  • 2J. Z. Wang, Z. D. Liu , S. C. Cheng, H. S. Bao, J. Iron Steel' Res. Int. 18 (2011) No. 10, 54-58.
  • 3A. Natori , Stainless Steel Europe 4 (1992) No.16, 20-25.
  • 4J. Z. Wang, Z. D. uo, H. S. Bao , S. C. Cheng, B. Wang, J. Iron Steel Res. Int. 20 (2013) 54-58.
  • 5T. Sourmail, Mater. Sci. Techno!. 17 (2001) 1-14.
  • 6M. Vach , T. Kunikovd , M. Domdnkovd , P. Seve, L. Caplov ic , P. Gogola , J. Janovec , Mater. Charact. 59 (2008) 1792- 1798.
  • 71. Park, F. Masuyama, T. Endo, Key Eng. Mater. 171-174 (2000) 445-452.
  • 8A. Iseda, H. Okada, H. Sernba , M. Igarashi, Energy Mater. 2 (2007) 199-206.
  • 91. uo. C. i,?. Y. Yao , Physical Chemistry Phase Analysis of Steel and Iron, Nickel-based Alloy, Shanghai Scientific &. Technical Publishers, Shanghai, 1984.
  • 10J. Z. Wang, Z. D. Liu, S. C. Cheng, H. S. Bao, Special Steel 32 (2011) No.3, 61-64.

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