摘要
在热模拟实验机上模拟了连续退火过时效工艺,研究了过时效温度和过时效时间对0.08C-0.15Si-1.50Mn钢组织和性能的影响。结果表明:过时效温度为350-550℃,保温时间1-20 min时,实验钢组织均由铁素体及分布在铁素体晶粒间的贝氏体组成;实验钢抗拉强度与贝氏体中M-A岛含量和M-A岛中的碳含量有关;随过时效温度升高,M-A岛含量出现“峰值”,随过时效时间延长,M-A岛中的碳含量也出现“峰值”。
Effect of overaging temperature and holding time in continuous annealing process on microstructure and properties of 0.08C-1.20Mn-0.15Si Steel was studied by using thermal simulation method. Microstructures were observed by using optical and scanning electron microscope and mechanical properties of heat treated samples were determined. The results show that microstructures consist of ferrite matrix and bainite distributed intergranular ferrite. The tensile strength of test steel depends on M-A island content and carbon concentration of M-A islands. Peak value of M-A island content appears when overaging temperature increases and peak value of carbon concen- tration of M-A islands appears when holding time increases which lead to peak value of tensile strength.
出处
《钢铁研究学报》
CAS
CSCD
北大核心
2009年第2期48-53,共6页
Journal of Iron and Steel Research
基金
国家高技术研究发展计划(863计划)资助项目(2001AA332020)
关键词
连续退火
过时效
保温时间
显微组织
性能
continuous annealing
overaging
holding time
microstructure
property