Effect of deformation in the intercritical area on the grain refinement of retained austenite of 0.4C trip steel
The increasing volume fraction of ferrite evidenced in this work confirms that reconstructive transformation (ferrite formation) is accelerated by plastic deformation of parent phases, whereas the decreasing volume fraction of bainite demonstrates that bainite formation characterized by IPS shape de...
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Published in | Scripta materialia Vol. 40; no. 9; pp. 1003 - 1008 |
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Main Authors | , |
Format | Journal Article |
Language | English |
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New York, NY
Elsevier Ltd
09.04.1999
Elsevier Science |
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Abstract | The increasing volume fraction of ferrite evidenced in this work confirms that reconstructive transformation (ferrite formation) is accelerated by plastic deformation of parent phases, whereas the decreasing volume fraction of bainite demonstrates that bainite formation characterized by IPS shape deformation is mechanically stabilizing the remaining austenite. The present study proves the stabilization of retained austenite shown by an increase in volume fraction and its carbon content, as a result of deformation in the intercritical area. The grain refinement of retained austenite is a consequence of the increasing density and type of ferrite nucleation sites and the stabilization of residual austenite against bainitic transformation. |
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AbstractList | The increasing volume fraction of ferrite evidenced in this work confirms that reconstructive transformation (ferrite formation) is accelerated by plastic deformation of parent phases, whereas the decreasing volume fraction of bainite demonstrates that bainite formation characterized by IPS shape deformation is mechanically stabilizing the remaining austenite. The present study proves the stabilization of retained austenite shown by an increase in volume fraction and its carbon content, as a result of deformation in the intercritical area. The grain refinement of retained austenite is a consequence of the increasing density and type of ferrite nucleation sites and the stabilization of residual austenite against bainitic transformation. |
Author | Basuki, Arif Aernoudt, Etienne |
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Cites_doi | 10.1179/mst.1996.12.7.610 10.2472/jsms.30.611 10.2355/isijinternational.36.603 |
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Keywords | Grain size Retained austenite Grain refining Hot rolling Austenite Carbon steels Mechanical properties Thermomechanical treatments Steels Experimental study Microstructure |
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SubjectTerms | Applied sciences Cross-disciplinary physics: materials science; rheology Exact sciences and technology Materials science Metals. Metallurgy Other heat and thermomechanical treatments Physics Treatment of materials and its effects on microstructure and properties |
Title | Effect of deformation in the intercritical area on the grain refinement of retained austenite of 0.4C trip steel |
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