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      Recrystallization Microstructure Prediction of a Hot-Rolled AZ31 Magnesium Alloy Sheet by Using the Cellular Automata Method

      1 , 2 , 2 , 2 , 2 , 3
      Mathematical Problems in Engineering
      Hindawi Limited

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          Abstract

          A large reduction rolling process was used to obtain complete dynamic recrystallization (DRX) microstructures with fine recrystallization grains. Based on the hyperbolic sinusoidal equation that included an Arrhenius term, a constitutive model of flow stress was established for the unidirectional solidification sheet of AZ31 magnesium alloy. Furthermore, discretized by the cellular automata (CA) method, a real-time nucleation equation coupled flow stress was developed for the numerical simulation of the microstructural evolution during DRX. The stress and strain results of finite element analysis were inducted to CA simulation to bridge the macroscopic rolling process analysis with the microscopic DRX activities. Considering that the nucleation of recrystallization may occur at the grain and R-grain boundary, the DRX processes under different deformation conditions were simulated. The evolution of microstructure, percentages of DRX, and sizes of recrystallization grains were discussed in detail. Results of DRX simulation were compared with those from electron backscatter diffraction analysis, and the simulated microstructure was in good agreement with the actual pattern obtained using experiment analysis. The simulation technique provides a flexible way for predicting the morphological variations of DRX microstructure accompanied with plastic deformation on a hot-rolled sheet.

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          Most cited references31

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          Kinetics of flow and strain-hardening

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            A review of dynamic recrystallization phenomena in metallic materials

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              Correlation of plastic deformation and dynamic recrystallization in magnesium alloy ZK60

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                Author and article information

                Journal
                Mathematical Problems in Engineering
                Mathematical Problems in Engineering
                Hindawi Limited
                1024-123X
                1563-5147
                September 16 2019
                September 16 2019
                : 2019
                : 1-15
                Affiliations
                [1 ]University of Science and Technology Liaoning, Department of Mechanical Engineering and Automation, Anshan, Liaoning 114051, China
                [2 ]University of Science and Technology Liaoning, Research Center of Roll Casting Technology for Magnesium Alloys, Anshan, Liaoning 114051, China
                [3 ]Department of Materials Science and Engineering, Saitama Institute of Technology, Fusaiji 1690, Fukaya, Saitama 369-0293, Japan
                Article
                10.1155/2019/1484098
                c1153475-310b-42f2-858c-f2f831d0c90e
                © 2019

                http://creativecommons.org/licenses/by/4.0/

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