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Détail de l'auteur
Auteur Goro Miyamoto
Documents disponibles écrits par cet auteur
Affiner la rechercheMapping the parent austenite orientation reconstructed from the orientation of martensite by EBSD and its application to ausformed martensite / Goro Miyamoto in Acta materialia, Vol. 58 N° 19 (Novembre 2010)
[article]
in Acta materialia > Vol. 58 N° 19 (Novembre 2010) . - pp. 6393–6403
Titre : Mapping the parent austenite orientation reconstructed from the orientation of martensite by EBSD and its application to ausformed martensite Type de document : texte imprimé Auteurs : Goro Miyamoto, Auteur ; Naomichi Iwata, Auteur ; Naoki Takayama, Auteur Année de publication : 2011 Article en page(s) : pp. 6393–6403 Note générale : Métallurgie Langues : Anglais (eng) Mots-clés : Lath martensite Electron backscattering diffraction Austenite Steels Orientation relationship Résumé : A new method is developed for reconstruction of the local orientation of the parent austenite based on the orientation of lath martensite measured by electron backscattered diffraction. The local orientation of austenite was obtained by least squares fitting as the difference between the experimental data and the predicted martensite orientation was minimal, assuming the specific orientation relationship (OR) between martensite and the parent austenite. First, the average OR between austenite and lath martensite was precisely determined and it was shown that both close packed planes and directions between martensite and the parent austenite deviated by more than 1° in low carbon martensite. The quality of the reconstructed austenite orientation map depended strongly on the OR used for the calculation. When Kurdjumov–Sachs (K–S) or Nishiyama–Wasserman (N–W) ORs were used the austenite orientation was frequently mis-indexed as a twin orientation with respect to the true orientation because of the mirror symmetry of (0 1 1)α stacking in the K–S or N–W ORs. In contrast, the frequency of mis-indexing was significantly reduced by using the measured OR, where the close packed planes and directions were not parallel. The deformation structure in austenite was successfully reconstructed by applying the proposed method to ausformed martensite in low carbon steel. DEWEY : 669 ISSN : 1359-6454 En ligne : http://www.sciencedirect.com/science/article/pii/S1359645410005057 [article] Mapping the parent austenite orientation reconstructed from the orientation of martensite by EBSD and its application to ausformed martensite [texte imprimé] / Goro Miyamoto, Auteur ; Naomichi Iwata, Auteur ; Naoki Takayama, Auteur . - 2011 . - pp. 6393–6403.
Métallurgie
Langues : Anglais (eng)
in Acta materialia > Vol. 58 N° 19 (Novembre 2010) . - pp. 6393–6403
Mots-clés : Lath martensite Electron backscattering diffraction Austenite Steels Orientation relationship Résumé : A new method is developed for reconstruction of the local orientation of the parent austenite based on the orientation of lath martensite measured by electron backscattered diffraction. The local orientation of austenite was obtained by least squares fitting as the difference between the experimental data and the predicted martensite orientation was minimal, assuming the specific orientation relationship (OR) between martensite and the parent austenite. First, the average OR between austenite and lath martensite was precisely determined and it was shown that both close packed planes and directions between martensite and the parent austenite deviated by more than 1° in low carbon martensite. The quality of the reconstructed austenite orientation map depended strongly on the OR used for the calculation. When Kurdjumov–Sachs (K–S) or Nishiyama–Wasserman (N–W) ORs were used the austenite orientation was frequently mis-indexed as a twin orientation with respect to the true orientation because of the mirror symmetry of (0 1 1)α stacking in the K–S or N–W ORs. In contrast, the frequency of mis-indexing was significantly reduced by using the measured OR, where the close packed planes and directions were not parallel. The deformation structure in austenite was successfully reconstructed by applying the proposed method to ausformed martensite in low carbon steel. DEWEY : 669 ISSN : 1359-6454 En ligne : http://www.sciencedirect.com/science/article/pii/S1359645410005057