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铰线钢盘条控冷工艺研究
引用本文:万五霞,杭乃勤,王伯文,卓钊,程向龙.铰线钢盘条控冷工艺研究[J].武钢技术,2009,47(5):34-38.
作者姓名:万五霞  杭乃勤  王伯文  卓钊  程向龙
作者单位:武汉科技大学材料与冶金学院,湖北,武汉,430081
摘    要:分析绞线钢在控冷过程中水冷段和风冷段传热和相变的数学模型,由现场工艺确定的边界条件,通过大型商用有限元软件Marc/Mentat及二次开发技术,模拟轧后控制冷却过程中水冷线的温度场以及风冷线的温度场和组织场的全过程,并和实际结果对比,对现场生产制定合理的工艺制度、提高产品的综合性能具有重要的指导意义。

关 键 词:高速线材  温度  组织转变  有限元模拟

Research on controlled cooling technics for stranded wire rod
WAN Wu-xia,HANG Nai-qin,WANG Bo-wen,ZHUO Zhao,CHENG Xiang-long.Research on controlled cooling technics for stranded wire rod[J].Wisco Technology,2009,47(5):34-38.
Authors:WAN Wu-xia  HANG Nai-qin  WANG Bo-wen  ZHUO Zhao  CHENG Xiang-long
Affiliation:(School of Materials and Metallurgy, Wuhan University of Science and Technology,Wuhan 430081, China)
Abstract:The math model of heat transfer and phase transformation of the wire rod at the blast cooling and water cooling zones in the process of controlled cooling is analyzed and the boundary conditions are determined by the process adopted on-site and the over-all evolution process of the temperature fields of water cooling line and air cooling line as well as the structure field in the process of controlled cooing after rolling is simulated and the results of simulation are compared with the practical ones. It is proved that our work is of great importance for real manufacturers to establish appropriate production process and improve the comprehensive properties of products.
Keywords:high-speed wire rod  temperature  microstructure evolution  FEM simulation
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