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Articles

The Transformation Behaviour of Low-Carbon Iron-Manganese Alloys

Pages 166-173 | Published online: 18 Jul 2013

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Read on this site (3)

F. Nikbakht, M. Nasim, C. Davies, E. A. Wilson & H. Adrian. (2010) Isothermal embrittlement of Fe–8Mn alloys at 450°C. Materials Science and Technology 26:5, pages 552-558.
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N. C. Law, P. R. Howell & D. V. Edmonds. (1979) Structure of lath martensite and occurrence of retained austenite in as-quenched Fe-V-C low-alloy steels. Metal Science 13:9, pages 507-515.
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Articles from other publishers (18)

Hongcan Chen, Wei Xu, Qun Luo, Qian Li, Yu Zhang, Jingjing Wang & Kuo-Chih Chou. (2022) Thermodynamic prediction of martensitic transformation temperature in Fe-C-X (X=Ni, Mn, Si, Cr) systems with dilatational coefficient model. Journal of Materials Science & Technology 112, pages 291-300.
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Jung-Su Kim, Sang Yong Shin, Joong Eun Jung, Jae Young Park & Young Won Chang. (2015) Effects of tempering temperature on microstructure and tensile properties of Fe–12Mn steel. Materials Science and Engineering: A 640, pages 171-179.
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Jaehong Yoo, Kyutae Han, Younghwan Park & Changhee Lee. (2014) Correlation between microstructure and mechanical properties of heat affected zones in Fe–8Mn–0.06C steel welds. Materials Chemistry and Physics 146:1-2, pages 175-182.
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F. Moszner, S.S.A. Gerstl, P.J. Uggowitzer & J.F. Löffler. (2014) Atomic-scale characterization of prior austenite grain boundaries in Fe–Mn-based maraging steel using site-specific atom probe tomography. Acta Materialia 73, pages 215-226.
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F. Moszner, E. Povoden-Karadeniz, S. Pogatscher, P.J. Uggowitzer, Y. Estrin, S.S.A. Gerstl, E. Kozeschnik & J.F. Löffler. (2014) Reverse α′→γ transformation mechanisms of martensitic Fe–Mn and age-hardenable Fe–Mn–Pd alloys upon fast and slow continuous heating. Acta Materialia 72, pages 99-109.
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F. Moszner, S.S.A. Gerstl, P.J. Uggowitzer & J.F. Löffler. (2014) Structural and chemical characterization of the hardening phase in biodegradable Fe–Mn–Pd maraging steels. Journal of Materials Research 29:9, pages 1069-1076.
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Hossein Beladi, Gregory S. Rohrer, Anthony D. Rollett, Vahid Tari & Peter D. Hodgson. (2014) The distribution of intervariant crystallographic planes in a lath martensite using five macroscopic parameters. Acta Materialia 63, pages 86-98.
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N.H. Heo, J.W. Nam, Y.-U. Heo & S.-J. Kim. (2013) Grain boundary embrittlement by Mn and eutectoid reaction in binary Fe–12Mn steel. Acta Materialia 61:11, pages 4022-4034.
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F. Moszner, A.S. Sologubenko, M. Schinhammer, C. Lerchbacher, A.C. Hänzi, H. Leitner, P.J. Uggowitzer & J.F. Löffler. (2011) Precipitation hardening of biodegradable Fe–Mn–Pd alloys. Acta Materialia 59:3, pages 981-991.
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M. Nasim, B.C. Edwards & E.A. Wilson. (2000) A study of grain boundary embrittlement in an Fe–8%Mn alloy. Materials Science and Engineering: A 281:1-2, pages 56-67.
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P. Marinelli, A. Baruj, S. Cotes, A. Fernández Guillermet & M. Sade. (1999) The γ↔α′ martensitic transformation in Fe-Mn and Fe-Mn-Co alloys: experiments, thermodynamic analysis and systematics of driving forces. Materials Science and Engineering: A 273-275, pages 498-502.
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Patrick M. Kelly. (1992) Crystallography of Lath Martensite in Steels. Materials Transactions, JIM 33:3, pages 235-242.
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P.M. Kelly, A. Jostsons & R.G. Blake. (1990) The orientation relationship between lath martensite and austenite in low carbon, low alloy steels. Acta Metallurgica et Materialia 38:6, pages 1075-1081.
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C. Sarasola, J.J. Urcola & M. Fuentes. (1981) Analysis of habit plane traces in iron-carbon lath martensite. Metallography 14:4, pages 295-306.
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Arun Kumar Patwardhan & M.L. Mehta. (1981) Microstructure-mechanical property correlation in a forged 0.03C-4 Mn-Si-Mo-Nb high strength low alloy „mar“ steel. Archiv für das Eisenhüttenwesen 52:6, pages 225-229.
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M. Fuentes, J.Gil Sevillano, J.J. Urcola & J.C. Zubillaga. (1980) A transmission electron microscopy study of lath martensite habit planes in FeCu alloys. Materials Science and Engineering 43:2, pages 109-113.
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Y. Inokuti & B. Cantor. (1977) The formation of martensite in splat-quenched Fe-Mn and Fe-Ni-C alloys. Journal of Materials Science 12:5, pages 946-958.
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Mitsutane FUJITA & Iku UCHIYAMA. (1974) Formation of ε Phase in Fe-Mn Alloys Under High Pressure and Its Stability Under Tensile Stress. Tetsu-to-Hagane 60:5, pages 525-539.
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