Influence of C Content and Annealing Temperature on Microstructure and Mechanical Properties of 400°C Transformed Steel Containing Retained Austenite
In order to evaluate the influence of C content and annealing temperature on the mechanical properties of steels containing retained austenite, cold-rolled sheets containing 0.12 to 0.4 C, 1.2 Si, and 1.5 Mn have been intercritically annealed and isothermally transformed at 400°C. Annealing near AC1...
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Published in | ISIJ International Vol. 31; no. 11; pp. 1348 - 1353 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
The Iron and Steel Institute of Japan
15.11.1991
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Subjects | |
Online Access | Get full text |
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Summary: | In order to evaluate the influence of C content and annealing temperature on the mechanical properties of steels containing retained austenite, cold-rolled sheets containing 0.12 to 0.4 C, 1.2 Si, and 1.5 Mn have been intercritically annealed and isothermally transformed at 400°C. Annealing near AC1 temperature followed by the 400°C isothermal transformation for 100 to 300 sec results in the best combination of strength and ductility. The ultimate tensile strength ranges from 590 Mpa in the 0.12 C steel to 980 Mpa in the 0.4 C steel. The total elongation varies 39 to 33%, and is ranked well above that of conventional ferrite-martensite dual-phase steels at the comparable strength. Amounts of retained austenite in these specimens are 7 to 20% and linearly related to the C contents of the steel. Mechanical stability of the retained austenite is fairly improved compared to that found in conventional dual-phase steels, and enhances the ductility at high strength. Better combinations of strength and ductility are maintained even in the lower C steels due to the contribution of an increased amount of highly ductile ferrite. |
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ISSN: | 0915-1559 1347-5460 |
DOI: | 10.2355/isijinternational.31.1348 |