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 in | Scripta materialia Vol. 48; no. 3; pp. 295 - 300 |
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Main Authors | , , |
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Language | English |
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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. |
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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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CitedBy_id | crossref_primary_10_1007_s11837_014_1088_7 crossref_primary_10_1007_s10751_015_1127_y crossref_primary_10_2355_isijinternational_47_898 crossref_primary_10_1007_s11661_005_0038_y crossref_primary_10_1007_s10853_018_2551_6 crossref_primary_10_1016_j_matchar_2012_12_008 crossref_primary_10_1007_s10751_017_1425_7 crossref_primary_10_1016_j_msea_2009_06_022 crossref_primary_10_1016_j_matdes_2010_12_032 crossref_primary_10_1016_j_msea_2004_09_055 crossref_primary_10_1007_s11661_011_1067_3 crossref_primary_10_1063_1_3266848 crossref_primary_10_1007_s11661_013_2083_2 crossref_primary_10_1007_s11661_020_06054_y crossref_primary_10_1016_j_msea_2015_06_096 crossref_primary_10_1016_j_scriptamat_2014_02_021 crossref_primary_10_1016_j_matdes_2015_11_115 crossref_primary_10_1016_j_proeng_2011_04_366 crossref_primary_10_1016_j_matdes_2011_06_004 crossref_primary_10_2320_matertrans_M2014108 |
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 10.1007/BF02652336 10.1016/0956-7151(91)90282-6 |
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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 |
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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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