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Static and Metadynamic Recrystallization of Low Carbon Steels During Mechanical Deformation
作者姓名:沈丙振  方能炜  沈厚发  柳百成
作者单位:DepartmentofMechanicalEngineering,TsinghuaUniversity,Beijing100084,China
基金项目:SupportedbytheFundamentalResearchProgramoftheMinistryofScienceandTechnologyofChina(No.G2000067208-3)
摘    要:Static and metadynamic recrystallization models were developed with the coefficients determined by multiple nonlinear regression analyses to describe microstructure evolution in low carbon steels.The effects of initial grain size, deformation temperature, strain, and strain rate on the austenitic recrystallized volume fraction and grain size were studied using a Gleeble machine. The results show that deformation reduces the grain size when the recrystallized volume fraction is large. The static recrystallized volume fraction increases with increasing deformation temperature, strain, and strain rate, and decreasing initial grain size. The grain size during metadynamic recrystallization is independent of the deformation strain and the initial grain size. The recrystallized volume fraction, the grain size, and the grown grain size calculated by the correlations are consistent with the measured values.

关 键 词:静态重结晶  位变动力重结晶  低碳钢  机械变形  微结构

Static and Metadynamic Recrystallization of Low Carbon Steels During Mechanical Deformation
SHEN Bingzhen,FANG NengweiSHEN Houfa,LIU Baicheng.Static and Metadynamic Recrystallization of Low Carbon Steels During Mechanical Deformation[J].Tsinghua Science and Technology,2004,9(6):622-627.
Authors:SHEN Bingzhen  FANG NengweiSHEN Houfa  LIU Baicheng
Institution:SHEN Bingzhen,FANG NengweiSHEN Houfa,LIU Baicheng Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China
Abstract:Static and metadynamic recrystallization models were developed with the coefficients determined by multiple nonlinear regression analyses to describe microstructure evolution in low carbon steels. The effects of initial grain size, deformation temperature, strain, and strain rate on the austenitic recrystal-lized volume fraction and grain size were studied using a Gleeble machine. The results show that deformation reduces the grain size when the recrystallized volume fraction is large. The static recrystallized volume fraction increases with increasing deformation temperature, strain, and strain rate, and decreasing initial grain size. The grain size during metadynamic recrystallization is independent of the deformation strain and the initial grain size. The recrystallized volume fraction, the grain size, and the grown grain size calculated by the correlations are consistent with the measured values.
Keywords:microstructure  static recrystallization  metadynamic recrystallization  low carbon steel
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