A revisited Johnson–Mehl–Avrami–Kolmogorov model and the evolution of grain-size distributions in steel

Author:

Hömberg Dietmar1,Patacchini Francesco Saverio2,Sakamoto Kenichi3,Zimmer Johannes4

Affiliation:

1. Weierstrass Institute for Applied Analysis and Stochastics, Mohrenstr. 39, 10117 Berlin, Germany and Department of Mathematical Sciences, NTNU, Alfred Getz vei 1, 7491 Trondheim, Norway

2. Department of Mathematics, Imperial College London, South Kensington Campus, London SW7 2AZ, UK

3. Mathematical Science & Technology Research Lab., Advanced Technology Research Laboratories, Technical Development Bureau, Nippon Steel & Sumitomo Metal Corporation, 20-1 Shintomi, Futtsu-City, Chiba 293-8511, Japan

4. Department of Mathematical Sciences, University of Bath, Bath BA2 7AY, UK

Abstract

Abstract The classical Johnson–Mehl–Avrami–Kolmogorov approach for nucleation and growth models of diffusive phase transitions is revisited and applied to model the growth of ferrite in multiphase steels. For the prediction of mechanical properties of such steels, a deeper knowledge of the grain structure is essential. To this end, a Fokker–Planck evolution law for the volume distribution of ferrite grains is developed and shown to exhibit a log-normally distributed solution. Numerical parameter studies are given and confirm expected properties qualitatively. As a preparation for future work on parameter identification, a strategy is presented for the comparison of volume distributions with area distributions experimentally gained from polished micrograph sections.

Funder

EPSRC

Leverhulme Trust

Publisher

Oxford University Press (OUP)

Subject

Applied Mathematics

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