Effect of Grain Boundary Energy in Recrystallization Simulation by Phase Field Method

Author:

Wu Yan1,Yan Ren Chuang1,Qin Er Wei2,Chen Wei Dong3

Affiliation:

1. Wuhan Polytechnic University

2. Beijing Research Institute of Precise Mechanical and Electronic Control Equipment

3. China Space Sanjiang Group Co., LTD

Abstract

In this paper, the effect of grain boundary energy in AZ31 Mg alloy with multi-order parameters phenomenological phase field model has been discussed during the progress of recrystallization. The average grain size of the recrystallization grain at a certain temperature and a certain restored energy but various grain boundary energies have been studied, and the simulated results show that the larger the grain boundary energy is, the larger the average grain size will be, and the speed of grain growth will increase with the increase of grain boundary energy. Additionally, temperature will also increase the grain growth rate.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference12 articles.

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2. T. Lan, Y. Shao, Z. He, W. Chen, X. Gao. Computer simulation on grain growth kinetics contorlled by inter phase diffusion[J]. Acta Scim Nat Univ Sunyatseni. 39(2000) 122-124.

3. X. G. Zhang, Y. P. Zong, M. T. Wang, Y. Wu. A physical model to express grain boundaries in grain growth simulation by phasefield method[J]. Acta Phys. Sin. 60 (2011) 068201.

4. J. Z. Zhu, Z. K. Liu, V. Vaithyanathan. Linking phase-field model to CALPHAD: application to precipitate shape evolution in Ni-base alloys[J], Scrip. Mater. 46(2002) 401-406.

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