The interface structure of martensite in Fe3 Pt (original) (raw)

Microstructure and Crystallographic Features of Martensite Transformed from Ultrafine-Grained Austenite in Fe–24Ni–0.3C Alloy

Hamidreza Jafarian

MATERIALS TRANSACTIONS, 2012

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Martensite/austenite interfaces in ultrafine grained Fe–Ni–C alloy

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Characterisation of Microstructure of Isothermally Transformed Martensite in Low Temperature in Powder and Bulk State of Fe–23Ni–3.6Mn (mass%) Alloy by Rietveld's Method

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Japanese Journal of Applied Physics, 2000

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Effects of coherent interfaces in the freshly formed ironnickelcarbon martensites

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Acta Metallurgica et Materialia, 1992

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Structure Features of Martensite and Residual Austenite during Treatment with Concentrated Energy Fluxes

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Advanced Materials Research, 2009

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Misorientation distribution between martensite and austenite in Fe-31 wt%Ni-0.01 wt%C

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Characterisation of microstructure of isothermal martensite formed at low temperature in powder of Fe–23Ni–3.3Mn alloy by Rietveld method

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Materials Science and Engineering A-structural Materials Properties Microstructure and Processing, 1999

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QUANTITATIVE ANALYSIS FOR THE DISPLACEMENT OF TENT–SHAPED SURFACE RELIEF OF LATH MARTENSITE IN Fe–BASED ALLOY

Xinfu Gu

Acta Metallurgica Sinica -Chinese Edition-

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Characterization of martensite in Fe–25%Ni–15%Co–5%Mo alloy

Emre GÜLER

Journal of Physics and Chemistry of Solids, 2009

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Nucleation and growth of martensite in fe-32.3% Ni alloy

Sudhansu Dash

Acta Metallurgica, 1966

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New observations on formation of thermally induced martensite in Fe–30%Ni–1%Pd alloy

Saffet NEZİR

Bulletin of Materials Science, 2013

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Effect of Thermocycling on the Structure of Martensite and Kinetics of Martensitic Transformation in Alloy Fe – 30% Ni – 3% Pd

Yasin Göktürk YILDIZ

Metal Science and Heat Treatment, 2017

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Influence of austenite and martensite strength on martensite morphology

Christopher L Magee

1971

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Aspects of thermal martensite in a FeNiMnCo alloy

Muhammed güler

Micron, 2010

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Structure and microstructure evolution during martensitic transformation in wrought Fe–26Mn–0.14C austenitic steel: an effect of cooling rate

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Journal of Applied Crystallography, 2007

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The microstructure of metastable austenite in X5CrNi18-10 steel after its strain-induced martensitic transformation

Agnieszka Kurc-Lisiecka

Materiali in tehnologije, 2016

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3D structural and atomic-scale analysis of lath martensite: Effect of the transformation sequence

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Martensite in Steels : its Significance, Recent Developments and Trends

Anne Schulz-Beenken

Le Journal de Physique IV, 1997

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Identification of stress-induced nucleation sites for martensite in Fe-31.8 wt% Ni-0.02 wt% C alloy

Marc Meyers

Acta Metallurgica et Materialia, 1992

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Dislocation activities at the martensite phase transformation interface in metastable austenitic stainless steel: An in-situ TEM study

Dierk Raabe

Materials Science & Engineering A 703 (2017) 236–243, 2017

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New observations on the formation of athermal martensite in Fe–Ni–Mo alloys

Hakan güngüneş

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Some characteristics of thermally induced martensite in Fe–30%Ni–3.6%Mo alloy

Hakan güngüneş

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Martensite reversion in an Fe–21%Mn–0.1%C alloy

Franco Gauzzi

Materials Science and Engineering: A, 1999

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Nucleation and growth in martensitic transformations of ordered Fe3Pt alloys

Shun Muto

Metallurgical Transactions A, 1988

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Numerical Investigation of the Interaction Between the Martensitic Transformation Front and the Plastic Strain in Austenite

Julia Kundin

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Microstructure and crystallographic features of lath martensite in Fe10Cr10Ni2W maraging steel

Hamidreza Jafarian

Materials Science and Engineering: A, 1992

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The role of phase compatibility in martensite

Rémi Delville

Journal of Applied Physics, 2012

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A transmission electron microscopy study of lath martensite habit planes in FeCu alloys

Javier Gil Sevillano

Materials Science and Engineering, 1980

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Some aspects of thermally induced martensite in Fe–30% Ni–5% Cu alloy

Emre GÜLER

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Effect of martensite embryo potency on the martensitic transformations in steels—A 3D phase-field study

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Journal of Alloys and Compounds, 2013

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Revisiting the Structure of Martensite in Iron-Carbon Steels

Chol Syn

MATERIALS TRANSACTIONS, 2008

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