期刊文献+

AZ91镁合金的热压缩行为(Ⅱ)--元胞自动机模拟 被引量:4

Hot compression behavior of AZ91 alloy(Ⅱ)——Cellular automata simulation
在线阅读 下载PDF
导出
摘要 采用基于动态再结晶的元胞自动机模型模拟分析AZ91镁合金热压缩过程中的流变行为及组织演变。模型中,通过参数的引入间接地考察第二相粒子对增加位错增长速率及降低晶界移动速率的影响。对比分析应力—应变曲线、组织演变、稳态组织中的平均晶粒尺寸及晶粒边数分布,模拟结果与实验结果的良好一致性表明本文作者提出的元胞自动机模型可以用于AZ91合金动态再结晶过程的模拟研究。 The cellular automata (CA) model with dynamic recrystallization (DRX) is proposed and used to investigate the flow behavior and microstructure evolution during hot compression of AZ91 alloy. In the simulation, the effects of the second phase particles on the accumulation of dislocation density and resistance of the migration of grain boundaries have been taken into account by the introduction of the physical parameters. Comparisons of flow curves, microstructure evolution, distribution of average grain size and number of grain side in final microstructure show that the simulated results agree very well with the experimental ones, suggesting that the present CA model is feasible to study the DRX process of AZ91 alloy.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2008年第2期243-249,共7页 The Chinese Journal of Nonferrous Metals
基金 国家自然科学基金资助项目(50505026) 上海市自然科学基金资助项目(05ZR14075)
关键词 AZ91合金 热压缩 动态再结晶 析出相 元胞自动机 AZ91 alloy hot compression dynamic recrystallizaiton precipitates cellular automata
  • 相关文献

参考文献18

  • 1BROWN S G R, WILLIAMS T, SPITTLE J A. A cellular automaton model of the steady-state "free" growth of a non-isothermal dendrite[J].Acta Metall Mater, 1994, 42: 2893-2898.
  • 2BROWN S G R, BRUCE N B. A 3-dimensional cellular automaton model of 'free' dendritic growth[J]. Scripta Metall Mater 1995, 32: 241-246.
  • 3HE Yi-zhu, DING Han-lin, LIU Liu-fa, KEESAM Shin. Computer simulation of 2D grain growth using a cellular automata model based on the lowest energy principle[J]. Mater Sci Eng A, 2006, 429: 236-246.
  • 4DING Han-lin, HE Yi-zhu, LILT Liu-fa, DING Wen-jiang. Cellular automata simulation of grain growth in three dimensions based on the lowest-energy principle[J]. J Crystal Growth, 2006, 293: 489-497.
  • 5HESSELBARTH H W, GOBEL I R. Simulation of recrystallization by cellular automata[J]. Acta Metall, 1991, 39: 2135-2143.
  • 6肖宏,柳本润.采用Cellular automaton法模拟动态再结晶过程的研究[J].机械工程学报,2005,41(2):148-152. 被引量:16
  • 7何燕,张立文,牛静,裴继斌.元胞自动机方法对动态再结晶过程的模拟[J].材料热处理学报,2005,26(4):120-124. 被引量:30
  • 8MCQUEEN H J. Initiating nucleation of dynamic recrystallization, primarily in polycrystals[J]. Mater Sci Eng A, 1988, 101: 149-160.
  • 9SAKAI T, AKBEN M G, JONAS J J. Dynamic recrystallization during the transient deformation of a vanadium microalloyed steel[J]. Acta Metall, 1983, 31: 631-641.
  • 10ROBERTS W, AHLBLOM B. A nucleation criterion for dynamic recrystallization during hot working[J]. Acta Metall, 1978, 26: 801-813.

二级参考文献31

  • 1Frost H J, Ashby M F. Deformation-mechanism maps,the Plastic and Creep of Metals and Ceramics. Oxford:Pergamon Press, 1982.
  • 2Yanagimoto J, Karhausen K, Brand A J, et al. Incremental formulation for the prediction of flow stress and microstmctural change in hot forming. Trans. ASME: J. Manufact.Sci. Eng., 1998, 120(5): 316~322.
  • 3Karhausen K, Kopp R. Model for integrated process and micro-structure simulation in hot forming. Steel Research,1992, 63 (6): 247~256.
  • 4Yanagimoto J, Liu J. Incremental formulation for the prediction of microstructural change in multi-pass hot forming. ISIJIntemational, 1999, 39(2): 171~175.
  • 5Kwon O. A technology for the prediction and control of microstrucmral changes and mechanical properties in steel. ISIJInternational, 1992, 32(3): 350~358.
  • 6Beynon J H, Sellars C M. Modeling microstructure and its effects during multipass hot rolling. ISIJ International,1992, 32(3): 359~367.
  • 7Rollett A D, Luton M J, Srolovitz D J. Microstmcmral simulation of dynamic recrystallization. Acta Metall.Mater., 1992, 40(1): 43~55.
  • 8Peczak P, Luton M J. The effect of nucleation models on dynamic recrystallization I homogeneous stored energy distribution. Phil. Mag. B., 1993, 68(1): 115~144.
  • 9Ding R, Guo Z X. Coupled quantitative simulation of microstructural evolution and plastic flow during dynamic recrystallization. Acta Mater., 2001, 49(16): 3 163~3 175.
  • 10Marx V, Reher F R, Gottstein G. Simulation of primary recystallization using a modified three-dimensional cellular automaton. Acta Mater., 1999, 47 (4): 1 219~1 230.

共引文献36

同被引文献64

引证文献4

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部