The objective of this research project was the setting up of a model able to predict the microstructure which, taking into account the rolling schedule and cooling, will be able to provide the mechanical and microstructural characteristics after rolling. The model was developed starting from the theoretical knowledge proposed by many researchers who have dealt with these issues, and the experience gained in the design of rolling systems. In order to allow the maximum working flexibility to the final user, the PROMET system requires to fill in the thermomechanical conditions for rod rolling (preheating temperature, pass reduction, temperature, interpass time, strain rate and cooling profile), and a database of more than 100 steel types was developed, containing CCT curves and the mechanical properties relative to the cooling rate. The tool provides the CCT curves, suitably modified to take into account the microstructure of the rolled, superimposed with the cooling trajectory set up by the operator, as well as mechanical and microstructural data of interest for that particular class of steels. The PROMET system was validated by direct comparison with the properties of rod rolled products under controlled conditions, obtaining an excellent prediction capability.

Previsione delle caratteristiche qualitative di prodotti laminati tramite definizione dei parametri termomeccanici di lavorazione: il sistema Promet 4.0 / Pegorin, F.; EL MEHTEDI, Mohamad; Spigarelli, Stefano; Lainati, A.. - In: LA METALLURGIA ITALIANA. - ISSN 0026-0843. - STAMPA. - 9(2012), pp. 5-11.

Previsione delle caratteristiche qualitative di prodotti laminati tramite definizione dei parametri termomeccanici di lavorazione: il sistema Promet 4.0

EL MEHTEDI, Mohamad
;
SPIGARELLI, Stefano;
2012-01-01

Abstract

The objective of this research project was the setting up of a model able to predict the microstructure which, taking into account the rolling schedule and cooling, will be able to provide the mechanical and microstructural characteristics after rolling. The model was developed starting from the theoretical knowledge proposed by many researchers who have dealt with these issues, and the experience gained in the design of rolling systems. In order to allow the maximum working flexibility to the final user, the PROMET system requires to fill in the thermomechanical conditions for rod rolling (preheating temperature, pass reduction, temperature, interpass time, strain rate and cooling profile), and a database of more than 100 steel types was developed, containing CCT curves and the mechanical properties relative to the cooling rate. The tool provides the CCT curves, suitably modified to take into account the microstructure of the rolled, superimposed with the cooling trajectory set up by the operator, as well as mechanical and microstructural data of interest for that particular class of steels. The PROMET system was validated by direct comparison with the properties of rod rolled products under controlled conditions, obtaining an excellent prediction capability.
2012
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11566/86363
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