The role carbon plays in the martensitic phase transformation of an Fe–Mn–Al alloy

We observed direct evidence that 18R martensite is induced by carbon atoms in the BCC grains of an Fe–27.0wt.%Mn–5.3wt.%Al–0.1wt.%C alloy via high-temperature quenching. A single BCC phase structure formed 18R martensite in the present study. The lowest carbon content found for the formation of 18R...

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Published inScripta materialia Vol. 48; no. 3; pp. 295 - 300
Main Authors Cheng, Wei-Chun, Liu, Chia-Fu, Lai, Yi-Fan
Format Journal Article
LanguageEnglish
Published New York, NY Elsevier Ltd 01.02.2003
Elsevier Science
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Abstract We observed direct evidence that 18R martensite is induced by carbon atoms in the BCC grains of an Fe–27.0wt.%Mn–5.3wt.%Al–0.1wt.%C alloy via high-temperature quenching. A single BCC phase structure formed 18R martensite in the present study. The lowest carbon content found for the formation of 18R martensite is 0.035 wt.% in Fe–Mn–Al alloys.
AbstractList We observed direct evidence that 18R martensite is induced by carbon atoms in the BCC grains of an Fe–27.0wt.%Mn–5.3wt.%Al–0.1wt.%C alloy via high-temperature quenching. A single BCC phase structure formed 18R martensite in the present study. The lowest carbon content found for the formation of 18R martensite is 0.035 wt.% in Fe–Mn–Al alloys.
We observed direct evidence that 18R martensite is induced by carbon atoms in the bcc grains of an Fe-27.0 wt pct Mn-5.3 wt pct Al-0.1 wt pct C alloy via high-temperature quenching. A single bcc phase structure formed 18R martensite in this study. The lowest carbon content found for the formation of 18R martensite is 0.035 wt pct in Fe-Mn-Al alloys. (Author)
Author Cheng, Wei-Chun
Lai, Yi-Fan
Liu, Chia-Fu
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Cites_doi 10.1016/S0921-5093(01)01498-8
10.1016/0956-716X(92)90049-K
10.1016/0921-5093(91)90372-T
10.1016/0956-716X(90)90286-P
10.1016/0956-716X(95)00363-Z
10.1016/0956-716X(90)90331-A
10.1016/0956-716X(90)90583-3
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10.1016/0956-7151(91)90282-6
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Issue 3
Keywords 18R martensite
Fe–Mn–Al alloys
BCC
Carbon
Quenching
Property composition relationship
Phase transformations
Electron diffraction
Martensitic transformations
Ternary alloys
Experimental study
Carbon additions
Transmission electron microscopy
Aluminium alloys
BCC lattices
Manganese alloys
Microstructure
Iron base alloys
Language English
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Snippet We observed direct evidence that 18R martensite is induced by carbon atoms in the BCC grains of an Fe–27.0wt.%Mn–5.3wt.%Al–0.1wt.%C alloy via high-temperature...
We observed direct evidence that 18R martensite is induced by carbon atoms in the bcc grains of an Fe-27.0 wt pct Mn-5.3 wt pct Al-0.1 wt pct C alloy via...
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SubjectTerms 18R martensite
Applied sciences
BCC
Carbon
Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Fe–Mn–Al alloys
Martensitic transformations
Materials science
Metals. Metallurgy
Phase diagrams and microstructures developed by solidification and solid-solid phase transformations
Physics
Quenching
Title The role carbon plays in the martensitic phase transformation of an Fe–Mn–Al alloy
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