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Elucidation and modeling oftnecanisms of fatigue fracture in a ultra-fine grained steel

Research Project

Project/Area Number 12650081
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeSingle-year Grants
Section一般
Research Field Materials/Mechanics of materials
Research InstitutionNagoya University

Principal Investigator

AKINIWA Yashiaki  Nagoya Univ., Grad. School ofEng., Assoc. Professor, 工学研究科, 助教授 (00212431)

Co-Investigator(Kenkyū-buntansha) TANAKA Hirosi  Kobe Univ, Dep. Mech. Eng., Assoc. Professor, 工学部, 助教授 (80236629)
TANAKA Keisuke  Nagoya Univ., Grad. School ofEng., Professor, 工学研究科, 教授 (80026244)
Project Period (FY) 2000 – 2001
Project Status Completed (Fiscal Year 2001)
Budget Amount *help
¥3,800,000 (Direct Cost: ¥3,800,000)
Fiscal Year 2001: ¥1,400,000 (Direct Cost: ¥1,400,000)
Fiscal Year 2000: ¥2,400,000 (Direct Cost: ¥2,400,000)
KeywordsFatigue / Microstructure / Crackinitiation / Crack propagation / Fatigue limit / Slip band / 微細組織
Research Abstract

The crack propagation rate is lower and the crack opening stress intensity factor (Kop) is higher in ultra fine-grained (UF) specimens than that in edium-grained (M) specimens when compared at the same stress intensity. UF specimens with the largest number of bifurcations and the highest roughness yield the highest Kop.
The distinctive characteristic of fatigue crack initiation in UF specimens is the formation of complex slip deformation. Fatigue cracks initiate from the boundary between the grains with complex slip deformation. Fatigue cracks in M specimens initiates from simple slip lines within the grains.
UF specimens possess not only higher resistance against fatigue crack initiation and the early propagation, but also superior resistance against the propagation of long fatigue cracks.
Propagation and non-propagation of fatigue, cracks was modeled. The slip band interacting with grain boundary was analyzed on the basis of that model. Non-propagating cracks initiated in smooth specimens were classifed into three categories.

Report

(3 results)
  • 2001 Annual Research Report   Final Research Report Summary
  • 2000 Annual Research Report
  • Research Products

    (23 results)

All Other

All Publications (23 results)

  • [Publications] Y.Akiniwa: "Analysis of crack closure behavior of small fatigue cracks interacting with grain structure"Material Science Research International. STP. 64-69 (2001)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] H.Kimura: "Atomic force microscopy observation of fatigue crack initiation in ultrafine-grained steel"Material Science Research International. STP. 117-122 (2001)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] H.Kimura: "Microstructural effect on the initiation and propagation behavior of fatigue cracks in ultrafine-grained steel"Proc. Int. Symp. Ultrafine Grained Steels. 244-247 (2001)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Y.Akiniwa: "Simulation of propagation of small fatigue cracks interacting with grain boundary"Proc. Int. Conf. Fracture. 2.5.5 (2001)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] H.Kimura: "Observation of fatigue crack initiation and early propagation in ultrafine-grained steel by atomic force microscopy"Proc. Int. Conf. Fracture. 17.4.3 (2001)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] 秋庭 義明: "超微細粒鋼における疲労き裂伝ぱに及ぼす微視組織の影響"日本機械学会東海支部第50期総会講演会講演論文集. 179-180 (2001)

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Yoshiaki Akiniwa Kesisuke Tanaka, Hidehiko Kimura,Jyun Kondo. Tadashi Ishikawa: "Analysis of crack closure behavior of small fatigue cracks interacting with grain structure"Material Science Research International, STP. 64-69 (2001)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] HidehikoKiinura, Yoshiaki Akiniwa, Kesisuke Tanaka, Jyun Kondo, Tadashi Ishikawa: "Atomic force microscopy observation of fatigue crack initiation in ultrafine-grained steel"Material Science Research International, STPy. 64-69 (2001)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Hidehiko Kimura, Yoshiaki Akmiwa, Kesisuke Tanaka, Jyun Kondo, Tadashi Ishikawa: "Microstructural effect on the initiation and propagation behavior of fatigue cracks in ultrafine-grained steel"Proc : Int. Symp. Ultrafine Grained Steels. 244-247 (2001)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Yoshiaki Akmiwa, Kesisuke Tanaka, Hidehiko Kimura, Jyun Kondo, Tadashi Ishikawa: "Simulation of propagation of small fatigue cracks interacting with grain goundary"Proc. Int. Conf. Fracture. 2.5.5 (2001)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Hidehiko Kimura, Yoshiaki Akmiwa, Kesisuke Tanaka, Jyun Kondo, Tadashi Ishikawa: "Observation of fatigue crack initiation and early propagation in ultrafine-grained steel by atomic force microscopy"Proc. Int. Conf. Fracture. 17.4.3 (2001)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Hidehiko Kimura, Yoshiaki Akmiwa, Kesisuke Tanaka, Jyun Kondo, Tadashi Ishikawa: "Initiation and propgation behavior of fatigue cracks in steel with ultra fine grained insurface layers"Proc. 10th, Iketani Conf. Mater. Res. Toward 21st Century. 75-76 (2000)

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2001 Final Research Report Summary
  • [Publications] Y. Akiniwa: "Analysis of crack closure behavior of small fatigue cracks interacting with grain structure"Material Science Research International. STP. 64-69 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] H. Kimura: "Atomic force microscopy observation of fatigue crack initiation in ultrafine-grained steel"Material Science Research International. STP. 117-122 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] H. Kimura: "Microstructural effect on the initiation and propagation behavior of fatigue cracks in ultrafine-grained steel"Proc. Int. Symp. Ultrafine Grained Steels. 244-247 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] Y. Akiniwa: "Simulation of propagation of small fatigue cracks interacting with grain boundary"Proc. Int. Conf. Fracture. 2.5.5 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] H. Kimura: "Observation of fatigue crack initiation and early propagation in ultrafine-grained steel by atomic force microscopy"Proc. Int. Conf. Fracture. 17.4.3 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] 秋庭 義明: "超微細粒鋼における疲労き裂伝ぱに及ぼす微視組織の影響"日本機械学会東海支部第50期総会講演会講演論文集. 179-180 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] 秋庭義明: "超微細粒鋼における疲労き裂伝ぱに及ぼす微視組織の影響"日本材料学会第25回疲労シンポジウム講演論文集. 23-26 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] 木村英彦: "超細粒鋼(SUF鋼)における疲労き裂発生過程の微視的観察"日本材料学会第25回疲労シンポジウム講演論文集. 39-42 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] 秋庭義明: "離散転位モデルによる微小疲労き裂伝ぱの解析"日本材料学会第25回疲労シンポジウム講演論文集. 75-78 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] Hidehiko Kimura: "Initiation and Propagation Behavior of Fatigue Cracks in Steel with Ultra Fine Grains in Surface Layers"Proc.10th Iketani Conf.Mater.Res.Toward 21st Century. 75-76 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] 秋庭義明: "超微細粒鋼における疲労き裂伝ぱに及ぼす微視組織の影響"日本機械学会東海支部第50期総会講演会講演論文集. 013-1. 263-265 (2000)

    • Related Report
      2000 Annual Research Report

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Published: 2000-04-01   Modified: 2016-04-21  

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