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Two-dimensional cellular automaton model for simulating structural evolution of binary alloys during solidification 被引量:4

Two-dimensional cellular automaton model for simulating structural evolution of binary alloys during solidification
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摘要 Two-dimensional cellular automaton(CA)simulations of phase transformations of binary alloys during solidification were reported.The modelling incorporates local concentration and heat changes into a nucleation or growth function,which is utilized by the automaton in a probabilistic fashion.These simulations may provide an efficient method of discovering how the physical processes involved in solidification processes dynamically progress and how they interact with each other during solidification.The simulated results show that the final morphology during solidification is related with the cooling conditions.The established model can be used to evaluate the phase transformation of binary alloys during solidification. Two-dimensional cellular automaton(CA) simulations of phase transformations of binary alloys during solidification were reported. The modelling incorporates local concentration and heat changes into a nucleation or growth function, which is utilized by the automaton in a probabilistic fashion. These simulations may provide an efficient method of discovering how the physical processes involved in solidification processes dynamically progress and how they interact with each other during solidification. The simulated results show that the final morphology during solidification is related with the cooling conditions. The established model can be used to evaluate the phase transformation of binary alloys during solidification.
作者 张林 张彩碚
机构地区 School of Science
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2006年第6期1410-1416,共7页 中国有色金属学报(英文版)
基金 Project(50572013) supported by the National Natural Science Foundation of China Project(G2000067104) supported by the National Basic Research Program of China
关键词 binary alloys phase transformation SOLIDIFICATION DIFFUSION NUCLEATION computer simulation cellular automaton binary alloys phase transformation solidification diffusion nucleation computer simulation cellular
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  • 1[1]X.Tong,C.Beckermann and A.Karma: Modeling of Casting,Welding and Advanced Solidification Processes VIII,The Minerals,Metals & Materials Society,1998,613.
  • 2[2]I.Steinbach and G.J.Schmitz: Modeling of Casting,Welding and Advanced Solidification Processes VIII,The Minerals,Metals & Materials Society,1998,521.
  • 3[3]Nikolas Provatas,Nigel Goldenfeld and Jonathan A.Dantzig: Modeling of Casting,Welding and Advanced Solidification Pro-cesses VIII,The Minerals,Metals & Materials Society,1998,533.
  • 4[4]S.L.Wang,R.F.Sekerka and A.A.Wheeler,B.T.Murray,S.R.Coriell,R.J.Braun and G.B.McFadden: Physica D.,1993,(69),189.
  • 5[5]A.A.Wheeler,B.T.Murray and R.J.Schaefer: Physica D.,1993,(66),243.
  • 6Kobayashi R 1993 Physica D 63 410.
  • 7Wheeler A A, Murray B T and Schaefer R J 1993 Physica D 66 243.
  • 8Karma A and Rappel W J 1996 Phys. Rev. Lett. 77 4050.
  • 9Li Q and Beckermann C 1998 Phys. Rev. E 57 3176.
  • 10Yu Y M et al 2001 Acta Phys. Sin. 50 2423 (in Chinese).

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  • 1张华,倪红卫,陈光友,成日金,刘吉刚.Al-Si合金凝固组织的三维模拟及预测[J].过程工程学报,2009,9(S1):92-96. 被引量:5
  • 2郭敬杰,刘新田,李刚.计算机模拟方法在晶粒长大过程研究中的进展[J].机械,2006,33(7):52-54. 被引量:1
  • 3Zhifeng ZHANG Jun XUN Likai SHI.Study on Multiple Electromagnetic Continuous Casting of Aluminum Alloy[J].Journal of Materials Science & Technology,2006,22(4):437-440. 被引量:13
  • 4申孝民,关小军,张继祥,刘运腾,麻晓飞,赵宪明.有限元与Monte Carlo方法耦合的冷轧纯铝板再结晶模拟[J].中国有色金属学报,2007,17(1):124-130. 被引量:14
  • 5Oldfield W. A quantitative approach to casting solidification: freezing of cast iron[J]. ASM Trans, 1966,59 (2) : 945- 960.
  • 6Rappaz M, Gandin C A, Desbiolles J L, et al. Prediction of grain structures in various solidification processes[J]. Metallurgical and Materials Transactions A, 1996,27 (3): 695-705.
  • 7Zhu P P, Srhith R W. Dynamic simulation of crystal growth by monte-carlo method[J]. Acta Metall, 1992,40 (12) :3 369-3 379.
  • 8Penrose O, Fife P C. Thermodynamically consistent models of phase field type for the kinetics of phase transitions[J]. Physical D,1990,43(10) :44-62.
  • 9Zhu M F, Hong C P. A modified cellular automation model for the simulation of dendritic growth in solidification of alloys [J]. ISIJ International, 2001,41 (5) :436- 445.
  • 10Gandin C A, Desbiolles J L, Rappaz M, et al. A threedimensional cellular automation-finite element model for the prediction of solidification Grain Structures [J]. Metallurgical and Materials Transactions A-Physsical Metalluegy and Materials Science, 1999,30 (12): 3 153- 3 165.

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