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多晶体晶粒尺度三维组织建模及可视化
引用本文:秦湘阁,刘国权. 多晶体晶粒尺度三维组织建模及可视化[J]. 北京科技大学学报, 2001, 23(6): 519-522
作者姓名:秦湘阁  刘国权
作者单位:1. 北京科技大学材料科学与工程学院,北京,100083;佳木斯大学材料工程学院,黑龙江,佳木斯,154007
2. 北京科技大学材料科学与工程学院,北京,100083
基金项目:国家自然科学基金;59872003;
摘    要:采用基于Monte Carlo Potts模型的仿真技术对单相多晶体各向同性晶粒组织进行了三维建模,利用OpenGL图形接口,在所建多晶体组织模型数据结构的基础上进而实现了三维可视化和任意角度观测,结果表明,所建几何图像模型可以很好地仿真预定细观组织结构参数的三维多晶体组织,不但满足模型化研究所要求的统计意义上的准确性,而且非常符合实际材料显微组织的多变性特征,可望用作细观尺度多晶材料加工过程数值模拟和细观力学计算的基本组织模型。

关 键 词:多晶体 显微组织 材料模型化 蒙特卡罗仿真 晶粒尺度模型 三维可视化 多晶材料 材料力学
修稿时间:2001-08-06

3D Modeling and Visualization of Polycrystalline Material Microstructure at Grain Scale with Time Scale
QIN Xiangge,LIU Guoquan Materials Science and Engineering School,UST Beijing,Beijing ,China, College of Material Engineering,Jiamusi University,Jiamusi ,China. 3D Modeling and Visualization of Polycrystalline Material Microstructure at Grain Scale with Time Scale[J]. Journal of University of Science and Technology Beijing, 2001, 23(6): 519-522
Authors:QIN Xiangge  LIU Guoquan Materials Science  Engineering School  UST Beijing  Beijing   China   College of Material Engineering  Jiamusi University  Jiamusi   China
Affiliation:QIN Xiangge,LIU Guoquan Materials Science and Engineering School,UST Beijing,Beijing 100083,China, College of Material Engineering,Jiamusi University,Jiamusi 154007,China
Abstract:Microstructure evolution of polycrystalline materials plays an important role on properties of materials. 3D modeling of microstructures of polycrystalline materials is implemented using Monte Carlo Pot- ts-model simulation. The modeling includes many microstructural parameters, such as grain size and grain size distribution, grain shape, grain orientation, properties of grain and grain boundary. Three-dimensional visual- ization of so-constructed microstructures is further carried out. The results show that these models can simulate polycrystalline microstructures with various parameters, and can be used as meso-scale models of numeric simulations of processes and of meso-mechanics computation for polycrystalline materials.
Keywords:polycrystalline microstructure  materials modeling  Monte Carlo simulation  grain scale model  3D visualization
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