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Volumn 52, Issue 8, 2004, Pages 2337-2348

Austenite to bainite phase transformation in the heat-affected zone of a high strength low alloy steel

Author keywords

Bainitic steels; Electron backscattering diffraction; Mean field analysis; Phase transformation; Welding

Indexed keywords

AUSTENITE; BAINITE; BRITTLE FRACTURE; COMPOSITE MICROMECHANICS; CRACK PROPAGATION; CRYSTALLOGRAPHY; FAILURE (MECHANICAL); GRAIN BOUNDARIES; HEAT AFFECTED ZONE; OPTICAL MICROSCOPY; PHASE TRANSITIONS; TRANSMISSION ELECTRON MICROSCOPY; WELDING;

EID: 1842864125     PISSN: 13596454     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.actamat.2004.01.025     Document Type: Article
Times cited : (322)

References (50)
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    • 0031672282 scopus 로고    scopus 로고
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    • Ohmori Y. The crystallography and the mechanism of upper bainite formation. Inoue K., Mukherjee K., Otsuka K., Chen H. Displacive phase transformations and their applications in materials engineering, the minerals. 1998;85 Metals and Material Society, Metals Park, OH.
    • (1998) Displacive Phase Transformations and Their Applications in Materials Engineering, the Minerals , pp. 85
    • Ohmori, Y.1
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    • 1842839193 scopus 로고    scopus 로고
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    • M. Koiwa, K. Otsuka, & T. Miyazaki. Sendai, Japan: The Japan Institute of Metals
    • Matsuoka S., Sakata K., Furukimi O., Obara T. Orientational morphology of low carbon steel rolled in nonrecrystallized austenite region. Koiwa M., Otsuka K., Miyazaki T. International Conference of the Solid-Solid Phase Transformations '99. 1999;1537 The Japan Institute of Metals, Sendai, Japan.
    • (1999) International Conference of the Solid-Solid Phase Transformations '99 , pp. 1537
    • Matsuoka, S.1    Sakata, K.2    Furukimi, O.3    Obara, T.4
  • 46
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    • Ph.D dissertation, Ecole des Mines de Paris, Paris, France
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    • Lambert-Perlade, A.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.