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Application of mesoscale modeling optimization to development of advanced materials
作者姓名:SONG  Xiaoyan
作者单位:School of Materials Science and Engineering, Beijing University of Technology, Beijing 100022, China
摘    要:The rapid development of computer modeling in recent years offers opportunities for materials preparation in a more economic and efficient way. In the present paper, a practicable route for research and development of advanced materials by applying the visual and quantitative modeling technique on the mesoscale is introduced. A 3D simulation model is developed to describe the microstructure evolution during the whole process of deformation, recrystallization and grain growth in a material containing particles. In the light of simulation optimization, the long-term stabilized fine grain structures ideal for high-temperature applications are designed and produced. In addition, the feasibility, reliability and prospects of material development based on mesoscale modeling are discussed.

关 键 词:mesoscale    computer  simulation    Monte  Carlo  technique    deformation    recrystallization    grain  growth.

Application of mesoscale modeling optimization to development of advanced materials
SONG Xiaoyan.Application of mesoscale modeling optimization to development of advanced materials[J].Progress in Natural Science,2004,14(8):656-663.
Authors:Song Xiaoyan
Institution:School of Materials Science and Engineering, Beijing University of Technology, Beijing 100022, China
Abstract:The rapid development of computer modeling in recent years offers opportunities for materials preparation in a more economic and efficient way. In the present paper, a practicable route for research and development of advanced materials by applying the visual and quantitative modeling technique on the mesoscale is introduced. A 3D simulation model is developed to describe the microstructure evolution during the whole process of deformation, recrystallization and grain growth in a material containing particles. In the light of simulation optimization, the long-term stabilized fine grain structures ideal for high-temperature applications are designed and produced. In addition, the feasibility, reliability and prospects of material development based on mesoscale modeling are discussed.
Keywords:mesoscale  computer simulation  Monte Carlo technique  deformation  recrystallization  grain growth
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