Growth Characteristics of Thin Foil Martensites in an Fe-4.1%Mn-1.25%C Alloy
Author:
Affiliation:
1. Graduate School, Osaka University
2. Institute of Scientific and Industrial Research, Osaka University
Publisher
Japan Institute of Metals
Subject
General Engineering
Link
https://www.jstage.jst.go.jp/article/matertrans1960/22/6/22_6_392/_pdf
Reference7 articles.
1. 1) W. Pitsch: Phil. Mag., 4 (1959), 577.
2. 2) Z. Nishiyama, K. Shimizu and K. Sugino: Acta Met., 9 (1961), 620.
3. 3) G. Thomas: Met. Trans., 2 (1971), 2373.
4. 4) R. Oshima and C. M. Wayman: Trans. JIM, 16 (1975), 73.
5. 5) T. Maki and C. M. Wayman: Acta Met., 25 (1977), 681.
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1. Bainite and stress-induced martensite in an AISI type 300 steel: an X-ray diffraction study of the microstructure by the Rietveld method;Journal of Applied Crystallography;2005-01-19
2. Microstructural characterization of stress-induced martensites evolved at low temperature in deformed powders of Fe–Mn–C alloys by the Rietveld method;Journal of Alloys and Compounds;2002-11
3. Microstructural characterization of Fe–Mn–C martensites athermally transformed at low temperature by Rietveld method;Materials Science and Engineering: A;2002-08
4. A Dynamic Study of Strain-Induced γ→α′ Martensitic Transformation in an Fe-Cr-Ni Alloy;Journal of the Japan Institute of Metals;1988
5. HVEM in situ Observation of Isothermal Martensitic Transformation under Applied Stress;Transactions of the Japan Institute of Metals;1985
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