Three-Dimensional Cellular Automata Simulation of the Austenitizing Process in GCr15 Bearing Steel

Author:

Su FuyongORCID,Liu Wenli,Wen Zhi

Abstract

On the basis of the two-dimensional cellular automaton model, a three-dimensional cellular automaton model of austenitizing process was established. By considering the orientation of pearlite layer and the direction of austenite grain growth, the velocity of the interface was calculated during the austenitizing process. The austenitizing process of GCr15 steel was simulated, and the anisotropy of grain growth rate during austenitization was demonstrated by simulation results. By comparing the simulation results with the experimental data, it was found that the calculated results of the three-dimensional cellular automaton model established in this paper were in good agreement with the experimental results. By using this model, the three-dimensional austenitizing process of GCr15 steel at different temperatures and under different processing times can be analyzed, and the degree of austenitization can be predicted.

Funder

National Natural Science Foundation of China

National Key R&D Program of China

Publisher

MDPI AG

Subject

General Materials Science

Reference20 articles.

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2. Isothermal formation of austenite in eutectoid plain carbon steel

3. Pearlite to austenite transformation in an Fe–2.6Cr–1C alloy

4. Principles of the Austenitization of Steels;Brooks,1992

5. Nucleation of austenite from pearlitic structure in an Fe–0.6C–1Cr alloy

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