基于元胞自动机模型的框架特性,构建了基于扩展的元胞自动机的模型框架MicrosCA.该模型不是针对某一具体应用的实际模型,而是一个通用的模型框架,阐述了构建微观组织模拟元胞自动机模型的主要思想、微观模型与其它模型间的集成.在此基础上,可以针对不同应用问题,对其进行适当细化和具体化,以适合各种组织演变问题的分析研究.
参考文献
[1] | 赵松年.元胞自动机和复杂性研究[J].物理,1994(09):566. |
[2] | D·罗伯.计算材料学[M].北京:化学工业出版社,2002 |
[3] | W.J.Boettinger;S.R.Coriell .Solidification microstructures: recent developments, future directions[J].Acta materialia,2000(1):43-70. |
[4] | M.Rappaz;J.L.Desiolles .Modelling of solidification microstructures[J].Materials Science Forum,2000(0):389-396. |
[5] | 郭洪民,危仁杰,杨湘杰.一种改进的模拟凝固微观组织的宏微观耦合模型[J].特种铸造及有色合金,2003(05):26-28. |
[6] | Hesselharth H W;Gobel I P .Simulation of recrystallization by Cellular Automaton[J].Acta Materialia,1991,39(09):2135-2143. |
[7] | Marx V;Rehev F R;Gotlstein G .Simlation of primary recrystallization using a modified three dimensional celllar automaton[J].Acta Materialia,1999,47(04):1212-1230. |
[8] | Stephen Wolfram.Theory and Application of Cellular Automaton[C].Singapore:World Scientific,1986:305. |
[9] | Brown SGR. .Simulation of diffusional composite growth using the cellular automaton finite difference (CAFD) method[J].Journal of Materials Science,1998(19):4769-4773. |
[10] | 李才伟;吴金平 .岩石中结晶颗粒竞争生长的随机元胞自动机模拟[J].地球科学-中国地质大学学报,1996,21(06):593-595. |
[11] | Stephen Wolfram .CA as models of complexity[J].Nature,1984,311(04):419-424. |
[12] | Stephen Wolfram.Theory and application of Cellular Automaton[C].Singapore:World Scientific,1986:126-170. |
[13] | Ch A Gandin;J L Desbiolles;M Rappaz.A Three-Dimensional Cellular Automaton-Finite Element Model for the Prediction of Solidification Grain Structure[J].Metallurgical and Materials Transactions A:Physical Metallurgy and Materials Science,1999(30A):3153-3165. |
[14] | Weiming FENG;Qingyan XU;Baicheng LIU .Microstructure Simulation of Aluminum Alloy Using Parallel Computing Technique[J].ISIJ International,2002(7):702-707. |
[15] | 柳白成;荆涛.铸造工程的模拟仿真与质量控制[M].北京:机械工业出版社,2001 |
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