Comments on the paper “Electron Microscope Observation of the Austenite and the Martensite in High Aluminum Steel (Supplement)”
Author:
Affiliation:
1. Faculty of Engineering Science, Department of Material Physics, Osaka University
2. Department of Metallurgy and Mining Engineering, University of Illinois at Urbana-Champaign
Publisher
Japan Institute of Metals
Subject
General Engineering
Link
https://www.jstage.jst.go.jp/article/matertrans1960/16/2/16_2_111/_pdf
Reference5 articles.
1. 1) T. Tadaki, K. Shimizu and T. Watanabe: Trans. JIM, 12 (1971), 386.
2. 2) R. Oshima and C. M. Wayman: Met. Trans., 3 (1972), 2163.
3. 3) T. Tadaki and K. Shimizu: Trans. JIM, 15 (1974), 365.
4. 4) L. S. Palatnik, I. A. Tananko and Yu. G. Bohro: Sov. Phys. Cryst, 9 (1964), 163.
5. 5) K. Lohberg and W. Schmidt: Arch. Eisenhüttenw., 12 (1937), 607.
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1. Origin of Abnormally Large Tetragonality of Martensite in High Carbon Iron Alloys Containing Aluminum;Materials Transactions, JIM;1992
2. Electron microscope observations of phase decompositions in an austenitic Fe-8.7Al-29.7Mn-1.04C alloy;Materials Characterization;1990-04
3. Spinodal decomposition and mechanical properties of an austenitic Fe-30wt.%Mn-9wt.%Al-0.9wt.%C alloy;Materials Science and Engineering: A;1989-05
4. Rapid solidification of intermetallic compounds;International Materials Reviews;1988-01
5. Age hardening of an Fe-30Mn-9Al-0.9C alloy by spinodal decomposition;Scripta Metallurgica;1988-01
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