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为了改善动态再结晶恒形核率模型的模拟精度,基于动态再结晶模拟理论和闭环控制原理,提出了一种采用实验与模拟的流变应力差的闭环控制和黄金搜索法来确定真实瞬态形核率的方法,通过HPS485wf钢动态再结晶过程的元胞自动机仿真研究检验了它的合理性和应用效果.结果表明,这一方法合理、可行,可有效确定瞬态形核率,使得动态再结晶流变应力的模拟精度及其稳定性显著改善,并有益于提高其面积分数的模拟精度.

参考文献

[1] Rollett A D;Luton M J;Srolovitz D J .Microstructural simulation of dynamic recrystallization[J].ACTA METALLURGICA ET MATERIALIA,1992,40(01):43-55.
[2] Peczak P A .Monte Carlo study of influence of deformation temperature on dynamic recrystallization[J].ACTA METALLURGICA ET MATERIALIA,1995,43(03):1279-1291.
[3] R. L. Goetz;V. Seetharamn .Modeling dynamic recrystallization using cellular automata[J].Scripta materialia,1998(3):405-413.
[4] R. DING;Z. X. GUO .COUPLED QUANTITATIVE SIMULATION OF MICROSTRUCTURAL EVOLUTION AND PLASTIC FLOW DURING DYNAMIC RECRYSTALLIZATION[J].Acta materialia,2001(16):3163-3175.
[5] M. Qian;Z.X. Guo .Cellular automata simulation of microstructural evolution during dynamic recrystallization of an HY-100 steel[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2004(1/2):180-185.
[6] Xiao N M;Zheng C W;Li D Z et al.A simulation of dynamic recrystallization by coupling a cellular automaton method with a topology deformation technique[J].COMPUTATIONAL MATERIALS SCIENCE,2005,41(03):366-374.
[7] 邓小虎,张立文,何燕,裴继斌,卢愈.应变速率对金属动态再结晶影响的数值模拟[J].塑性工程学报,2007(02):24-29.
[8] Tomohiro Takaki;Tomoyuki Hirouchi;Yousuke Hisakuni .Multi-Phase-Field Model to Simulate Microstructure Evolutions during Dynamic Recrystallization[J].Materials transactions,2008(11):2559-2565.
[9] 卢瑜,张立文,邓小虎,裴继斌,王赛,张国梁.纯铜动态再结晶过程的元胞自动机模拟[J].金属学报,2008(03):292-296.
[10] Takaki, T;Hisakuni, Y;Hirouchi, T;Yamanaka, A;Tomita, Y .Multi-phase-field simulations for dynamic recrystallization[J].Computational Materials Science,2009(4):881-888.
[11] Fei Chen;Zhenshan Cui;Juan Liu;Xiaoxun Zhang;Wen Chen .Modeling and simulation on dynamic recrystallizationof 30Cr2Ni4MoV rotor steel using the cellularautomaton method[J].Modelling and simulation in materials science and engineering,2009(7):075015:1-075015:19.
[12] N. Yazdipour .Microstructure Evolution Modeling during and after Deformation in 304 Austenitic Stainless Steel through Cellular Automaton Approach[J].International journal of multiscale computational engineering,2009(5):381-393.
[13] Baojun YU,Xiaojun GUAN,Lijun WANG,Qingkai ZENG,Qianqian LIU,Yu CAO.Mesoscale simulation of discontinuous dynamic recrystallization using the cellular automaton method[J].金属学报(英文版),2011(04):287-294.
[14] Jin Z Y;Liu J;Cui Z S et al.Identification of nucleation parameter for cellular automaton model of dynamic recrystallization[J].Transactions Nonferrous Metals Society China,2010,20:458-464.
[15] 王丽君 .桥梁钢热压缩变形动态再结晶行为的双尺度模拟[D].山东大学,2011.
[16] F. Montheillet;O. Lurdos;G. Damamme .A grain scale approach for modeling steady-state discontinuous dynamic recrystallization[J].Acta materialia,2009(5):1602-1612.
[17] 麻晓飞,关小军,刘运腾,申孝民,王丽君,宋述同,曾庆凯.基于改进转变规则的晶粒长大CA模型[J].中国有色金属学报,2008(01):138-144.
[18] 王丽君,关小军,赵健,禹宝军,曾庆凯,孙琴,刘千千.HPS485wf桥梁钢奥氏体动态再结晶规律及其本构关系模型[J].材料热处理学报,2010(10):147-151.
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