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Computer Simulation of Microstructure Evolution of 82B Rod at Different Cooling Rates 被引量:7

Computer Simulation of Microstructure Evolution of 82B Rod at Different Cooling Rates
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摘要 According to thermodynamics and kinetics of phase transformation,a mathematical model of phase transformation was proposed,and the microstructure evolution of an 82B rod at different cooling rates was simulated by using the FEM software Marc/Mentat,based on the measurement of time-temperature transformation(TTT)curves of the 82B rod.The simulated results were in good agreement with the actual measurements.From the results of computer simulation it was found that the cooling rate of the 82B rod,after laying,should be controlled within 5-8 ℃/s.In the microstructure of rod there were over 95% of pearlite volume fraction and a small quantity of dispersive martensite(less than 5%). According to thermodynamics and kinetics of phase transformation,a mathematical model of phase transformation was proposed,and the microstructure evolution of an 82B rod at different cooling rates was simulated by using the FEM software Marc/Mentat,based on the measurement of time-temperature transformation(TTT)curves of the 82B rod.The simulated results were in good agreement with the actual measurements.From the results of computer simulation it was found that the cooling rate of the 82B rod,after laying,should be controlled within 5-8 ℃/s.In the microstructure of rod there were over 95% of pearlite volume fraction and a small quantity of dispersive martensite(less than 5%).
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2008年第2期56-59,64,共5页
基金 Item Sponsored by the National Doctorate Fund by the Ministry of Education of China(20020008011)
关键词 computer simulation microstructure evolution controlled cooling 82B rod computer simulation microstructure evolution controlled cooling 82B rod
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  • 1徐祖耀,李文聚,黄心俐.奥氏体在非连续冷却时的转变[J]金属学报,1965(03).
  • 2Yvonne Leeuwen,Simone Vooijs,Jilt Sietsma,Sybrand Zwaag.The effect of geometrical assumptions in modeling solid-state transformation kinetics[J].Metallurgical and Materials Transactions A.1998(12)
  • 3S. J. Jones,H. K. D. H. Bhadeshia.competitive formation of inter- and intragranularly nucleated ferrite[J].Metallurgical and Materials Transactions A.1997(10)

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