Modelling of the dynamic recrystallization of austenite in low alloy and microalloyed steels
Using torsional tests in the austenite phase, the dynamic recrystallization of a selection of low alloy and microalloyed steels was studied and Avrami's equation was modelled. The model is based on the experimental determination of flow curves and their subsequent modelling, making it possible...
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Published in | Acta materialia Vol. 44; no. 1; pp. 165 - 171 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier Ltd
01.01.1996
Elsevier Science |
Subjects | |
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Abstract | Using torsional tests in the austenite phase, the dynamic recrystallization of a selection of low alloy and microalloyed steels was studied and Avrami's equation was modelled. The model is based on the experimental determination of flow curves and their subsequent modelling, making it possible to calculate the recrystallized fraction (Xd) as a function of all the variables which intervene in hot deformation: temperature, strain rate, austenite grain size and the chemical composition of the steel. The influence of the first three variables is quantified using the Zener-Hollomon parameter where the activation energy is expressed as a function of the content of each alloy. The start of dynamic recrystallization was determined by regression, finding a value of 0.95ϵp. In testing conditions all the elements were found in solution in the austenite, except Ti which was found partially precipitated. The results of these tests indicate that C, Si (low content), Mn and V have hardly any influence on the start of recrystallization while Mo, Ti and especially Nb delay it. Finally, the dynamic recrystallization kinetics are illustrated through the study of the microstructure during deformation. |
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AbstractList | Using torsional tests in the austenite phase, the dynamic recrystallization of a selection of low alloy and microalloyed steels was studied and Avrami's equation was modelled. The model is based on the experimental determination of flow curves and their subsequent modelling, making it possible to calculate the recrystallized fraction (Xd) as a function of all the variables which intervene in hot deformation: temperature, strain rate, austenite grain size and the chemical composition of the steel. The influence of the first three variables is quantified using the Zener-Hollomon parameter where the activation energy is expressed as a function of the content of each alloy. The start of dynamic recrystallization was determined by regression, finding a value of 0.95ϵp. In testing conditions all the elements were found in solution in the austenite, except Ti which was found partially precipitated. The results of these tests indicate that C, Si (low content), Mn and V have hardly any influence on the start of recrystallization while Mo, Ti and especially Nb delay it. Finally, the dynamic recrystallization kinetics are illustrated through the study of the microstructure during deformation. Using torsional tests in the austenite phase, the dynamic recrystallization of a selection of low alloy and microalloyed steels was studied and Avrami's equation was modelled. The model is based on the experimental determination of flow curves and their subsequent modelling, making it possible to calculate the recrystallized fraction (X sub d ) as a function of all the variables which intervene in hot deformation: temperature, strain rate, austenite grain size and the chemical composition of the steel. The influence of the first three variables is quantified using the Zener-Hollomon parameter where the activation energy is expressed as a function of the content of each alloy. The start of dynamic recrystallization was determined by regression, finding a value of 0.95 epsilon sub p . In testing conditions all the elements were found in solution in the austenite, except Ti which was found partially precipitated. The results of these tests indicate that C, Si (low content), Mn and V have hardly any influence on the start of recrystallization while Mo, Ti and especially Nb delay it. Finally, the dynamic recrystallization kinetics are illustrated through the study of the microstructure during deformation. |
Author | Medina, S.F. Hernandez, C.A. |
Author_xml | – sequence: 1 givenname: S.F. surname: Medina fullname: Medina, S.F. organization: Centro Nacional de Investigaciones Metalúrgicas (CENIM-CSIC), Av. Gregorio del Amo 8, 28040-Madrid, Spain – sequence: 2 givenname: C.A. surname: Hernandez fullname: Hernandez, C.A. organization: Universidad Autónoma de México (UNAM), Facultad de Química D, 04510 D.F. Mexico |
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Keywords | Grain size Temperature range 1000-4000 K Microalloyed steel Torsion test Austenite Mechanical properties Dynamical recrystallization Low alloy steels Microstructure Modeling Flow stress |
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Snippet | Using torsional tests in the austenite phase, the dynamic recrystallization of a selection of low alloy and microalloyed steels was studied and Avrami's... |
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SubjectTerms | Applied sciences Cross-disciplinary physics: materials science; rheology Deformation, plasticity, and creep Exact sciences and technology Materials science Metals. Metallurgy Physics Treatment of materials and its effects on microstructure and properties |
Title | Modelling of the dynamic recrystallization of austenite in low alloy and microalloyed steels |
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