Study of Grain Growth in a Ni-Based Superalloy by Experiments and Cellular Automaton Model

Author:

Liu Yan-XingORCID,Ke Zhi-Jiang,Li Run-Hua,Song Ju-Qing,Ruan Jing-Jing

Abstract

The grain growth behavior in a typical Ni-based superalloy was investigated using isothermal heat treatment experiments over a holding temperature range of 1353–1473 K. The experimental results showed that the grain structure continuously coarsened as the holding time and holding temperature increased during heat treatment. A classical parabolic grain growth model was used to explore the mechanism of grain growth under experimental conditions. The grain growth exponent was found to be slightly above 2. This indicates that the current grain growth in the studied superalloy is mainly governed by grain boundary migration with a minor pinning effect from the precipitates. Then, the grain growth in the studied superalloy during isothermal heat treatment was modelled by a cellular automaton (CA) with deterministic state switch rules. The microscale kinetics of grain growth is described by the correlation between the moving velocity and curvature of the grain boundary. The local grain boundary curvature is well evaluated by a template disk method. The grain boundary mobility was found to increase with increasing temperature. The relationship between the grain boundary mobility and temperature has been established. The developed CA model is capable of capturing the dependence of the grain size on the holding time under different holding temperatures.

Funder

National Natural Science Foundation of China

KEY Laboratory of Robotics and Intelligent Equipment of Guangdong Regular Institutions of Higher Education

Publisher

MDPI AG

Subject

General Materials Science

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