The austempering kinetics of a ductile iron (ADI) was studied by means of dilatometry. Small samples (10mm length, 4mm diameter) were austenitized between 850-900°C and austempered at different temperatures in the range 320-370°C. The austenite decomposition to form acicular ferrite and Carbon enriched austenite is evidenced by a net expansion which follows the typical kinetics of diffusional transformations, described by the JMA equation x(t)=1-exp(-(kt)n). The activation energy was calculated assuming fixed stages of transformation, namely 10 and 90% at different austempering temperatures. At the lowest austenitizing temperature (850°C) the transformation may be described by a single value of the activation energy (23,95 kJ/mol). On the other side, at 900°C the kinetics showed an influence of the austempering temperature: in the lowest temperature range the activation energy was in the same range of that calculated at 850°C (26,07 kJ/mol), whilst in the highest one it was considerably lower (6,2 KJ/mol). This behavior could be correlated to the coarser ausferrite microstructure arising from high temperature austenitizing and the different carbon redistribution during isothermal treatment.

Austempering kinetics of a ductile iron / Pellizzari, M., Menapace, C., Straffelini, G., Cazzolli, M., Dal Molin, M., Vettore, F., Veneri, E.. - (2015). (European Conference on Heat Treatment 2015 and 22nd Heat Treatment and Surface Engineering from Tradition to Innovation Congress, IFHTSE 2015 ita 2015).

Austempering kinetics of a ductile iron

Pellizzari, M.;Menapace, C.;Straffelini, G.;Cazzolli, M.;Dal Molin, Marco;
2015-01-01

Abstract

The austempering kinetics of a ductile iron (ADI) was studied by means of dilatometry. Small samples (10mm length, 4mm diameter) were austenitized between 850-900°C and austempered at different temperatures in the range 320-370°C. The austenite decomposition to form acicular ferrite and Carbon enriched austenite is evidenced by a net expansion which follows the typical kinetics of diffusional transformations, described by the JMA equation x(t)=1-exp(-(kt)n). The activation energy was calculated assuming fixed stages of transformation, namely 10 and 90% at different austempering temperatures. At the lowest austenitizing temperature (850°C) the transformation may be described by a single value of the activation energy (23,95 kJ/mol). On the other side, at 900°C the kinetics showed an influence of the austempering temperature: in the lowest temperature range the activation energy was in the same range of that calculated at 850°C (26,07 kJ/mol), whilst in the highest one it was considerably lower (6,2 KJ/mol). This behavior could be correlated to the coarser ausferrite microstructure arising from high temperature austenitizing and the different carbon redistribution during isothermal treatment.
2015
European Conference on Heat Treatment 2015 and 22nd IFHTSE Congress - Heat Treatment and Surface Engineering from Tradition to Innovation
Italia
Associazione Italiana di Metallurgia
9788898990030
Pellizzari, M.; Menapace, C.; Straffelini, G.; Cazzolli, M.; Dal Molin, Marco; Vettore, F.; Veneri, E.
Austempering kinetics of a ductile iron / Pellizzari, M., Menapace, C., Straffelini, G., Cazzolli, M., Dal Molin, M., Vettore, F., Veneri, E.. - (2015). (European Conference on Heat Treatment 2015 and 22nd Heat Treatment and Surface Engineering from Tradition to Innovation Congress, IFHTSE 2015 ita 2015).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/189217
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