Effect of low temperature aging on hall-petch coefficient in ferritic steels containing a small amount of carbon and nitrogen

Satoshi Araki, Kohei Fujii, Daichi Akama, Toshihiro Tsuchiyma, Setsuo Takaki, Takahito Ohmura, Jun Takahashi

研究成果: ジャーナルへの寄稿記事

6 引用 (Scopus)

抄録

Effect of aging treatment at 373 K on Hall-Petch coefficient (ky) was investigated in consideration of the change in friction stress associated with carbide/nitride precipitation in ferritic steels containing 60 ppm carbon or nitrogen (C60 and N60). Tensile tests revealed that the ky was monotonously increased with increasing aging time in both steels, and also, C60 exhibited a larger ky value than that of N60 under the same aging time. As a result of 3DAP analysis and theoretical calculation for grain boundary segregation of carbon and nitrogen, the ky corresponded to the amount of carbon and nitrogen existing at grain boundary. There was no difference in the effect on ky increment between both elements. The larger ky in C60 under the same aging condition was due to the larger amount of segregated carbon compared with nitrogen.

元の言語英語
ページ(範囲)491-497
ページ数7
ジャーナルTetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan
103
発行部数8
DOI
出版物ステータス出版済み - 1 1 2017

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Ferritic steel
Hall effect
Nitrogen
Carbon
Aging of materials
steels
nitrogen
carbon
Grain boundaries
grain boundaries
Temperature
Steel
tensile tests
Nitrides
carbides
nitrides
Carbides
friction
Friction

All Science Journal Classification (ASJC) codes

  • Condensed Matter Physics
  • Physical and Theoretical Chemistry
  • Metals and Alloys
  • Materials Chemistry

これを引用

Effect of low temperature aging on hall-petch coefficient in ferritic steels containing a small amount of carbon and nitrogen. / Araki, Satoshi; Fujii, Kohei; Akama, Daichi; Tsuchiyma, Toshihiro; Takaki, Setsuo; Ohmura, Takahito; Takahashi, Jun.

:: Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan, 巻 103, 番号 8, 01.01.2017, p. 491-497.

研究成果: ジャーナルへの寄稿記事

Araki, Satoshi ; Fujii, Kohei ; Akama, Daichi ; Tsuchiyma, Toshihiro ; Takaki, Setsuo ; Ohmura, Takahito ; Takahashi, Jun. / Effect of low temperature aging on hall-petch coefficient in ferritic steels containing a small amount of carbon and nitrogen. :: Tetsu-To-Hagane/Journal of the Iron and Steel Institute of Japan. 2017 ; 巻 103, 番号 8. pp. 491-497.
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abstract = "Effect of aging treatment at 373 K on Hall-Petch coefficient (ky) was investigated in consideration of the change in friction stress associated with carbide/nitride precipitation in ferritic steels containing 60 ppm carbon or nitrogen (C60 and N60). Tensile tests revealed that the ky was monotonously increased with increasing aging time in both steels, and also, C60 exhibited a larger ky value than that of N60 under the same aging time. As a result of 3DAP analysis and theoretical calculation for grain boundary segregation of carbon and nitrogen, the ky corresponded to the amount of carbon and nitrogen existing at grain boundary. There was no difference in the effect on ky increment between both elements. The larger ky in C60 under the same aging condition was due to the larger amount of segregated carbon compared with nitrogen.",
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AU - Araki, Satoshi

AU - Fujii, Kohei

AU - Akama, Daichi

AU - Tsuchiyma, Toshihiro

AU - Takaki, Setsuo

AU - Ohmura, Takahito

AU - Takahashi, Jun

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AB - Effect of aging treatment at 373 K on Hall-Petch coefficient (ky) was investigated in consideration of the change in friction stress associated with carbide/nitride precipitation in ferritic steels containing 60 ppm carbon or nitrogen (C60 and N60). Tensile tests revealed that the ky was monotonously increased with increasing aging time in both steels, and also, C60 exhibited a larger ky value than that of N60 under the same aging time. As a result of 3DAP analysis and theoretical calculation for grain boundary segregation of carbon and nitrogen, the ky corresponded to the amount of carbon and nitrogen existing at grain boundary. There was no difference in the effect on ky increment between both elements. The larger ky in C60 under the same aging condition was due to the larger amount of segregated carbon compared with nitrogen.

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