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Prediction of Continuous Cooling Transformation Diagrams for Dual-Phase Steels from the Intercritical Region
Authors:V. Colla   M. DeSanctis   A. Dimatteo   G. Lovicu  R. Valentini
Affiliation:(1) PERCRO-CEIICP, Scuola Superiore Sant’Anna, Polo Sant’Anna Valdera, 56125 Pontedera, PI, Italy;(2) Department of Chemical Engineering, Industrial Chemistry and Materials Science, Pisa University, 56100 Pisa, Italy;;
Abstract:The purpose of the present work is the implementation and validation of a model able to predict the microstructure changes and the mechanical properties in the modern high-strength dual-phase steels after the continuous annealing process line (CAPL) and galvanizing (Galv) process. Experimental continuous cooling transformation (CCT) diagrams for 13 differently alloying dual-phase steels were measured by dilatometry from the intercritical range and were used to tune the parameters of the microstructural prediction module of the model. Mechanical properties and microstructural features were measured for more than 400 dual-phase steels simulating the CAPL and Galv industrial process, and the results were used to construct the mechanical model that predicts mechanical properties from microstructural features, chemistry, and process parameters. The model was validated and proved its efficiency in reproducing the transformation kinetic and mechanical properties of dual-phase steels produced by typical industrial process. Although it is limited to the dual-phase grades and chemical compositions explored, this model will constitute a useful tool for the steel industry.
Keywords:
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