Mean-field model for the growth and coarsening of stoichiometric precipitates at grain boundaries
Creators
- 1. Materials Center Leoben Forschungsgesellschaft mbH, 8700 Leoben (Austria)
- 2. Christian Doppler Laboratory for Early Stages of Precipitation, Institute of Materials Science and Technology, Vienna University of Technology, 1040 Vienna (Austria)
Description
In this paper, a model for growth and coarsening of precipitates at grain boundaries is developed. The concept takes into account that the evolution of grain boundary precipitates involves fast short-circuit diffusion along grain boundaries as well as slow bulk diffusion of atoms from the grain interior to the grain boundaries. The mathematical formalism is based on a mean-field approximation, utilizing the thermodynamic extremal principle. The model is applied to the precipitation of aluminum nitrides in microalloyed steel in austenite, where precipitation occurs predominately at the austenite grain boundaries. It is shown that the kinetics of precipitation predicted by the proposed model differs significantly from that calculated for randomly distributed precipitates with spherical diffusion fields. Good agreement of the numerical solution is found with experimental observations as well as theoretical treatment of precipitate coarsening
Availability note (English)
Available from http://dx.doi.org/10.1088/0965-0393/18/1/015011Additional details
Identifiers
- DOI
- 10.1088/0965-0393/18/1/015011;
- PII
- S0965-0393(10)24695-8;
Publishing Information
- Journal Title
- Modelling and Simulation in Materials Science and Engineering
- Journal Volume
- 18
- Journal Issue
- 1
- Journal Page Range
- [19 p.]
- ISSN
- 0965-0393
INIS
- Country of Publication
- United Kingdom
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 45005531
- Subject category
- S36: MATERIALS SCIENCE;
- Descriptors DEI
- ALUMINIUM NITRIDES; APPROXIMATIONS; AUSTENITE; DIFFUSION; ELECTRICAL FAULTS; GRAIN BOUNDARIES; LOW ALLOY STEELS; MEAN-FIELD THEORY; NUMERICAL SOLUTION; PRECIPITATION; SPHERICAL CONFIGURATION
- Descriptors DEC
- ALLOYS; ALUMINIUM COMPOUNDS; CALCULATION METHODS; CARBON ADDITIONS; CONFIGURATION; IRON ALLOYS; IRON BASE ALLOYS; MATHEMATICAL SOLUTIONS; MICROSTRUCTURE; NITRIDES; NITROGEN COMPOUNDS; PNICTIDES; SEPARATION PROCESSES; STEELS; TRANSITION ELEMENT ALLOYS