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Microstructure and strengthening parameters of ultra—thin hot strip of low carbon steel
引用本文:HaoYu YonglinKang 等.Microstructure and strengthening parameters of ultra—thin hot strip of low carbon steel[J].北京科技大学学报(英文版),2002,9(5):356-359.
作者姓名:HaoYu  YonglinKang
作者单位:[1]MaterialScienceandEngineeringSchool,UniversityofScienceandTechnologyBeijing,Beijing100083,China [2]MaterialScienceandEngineeringSchool,UniversityofScienceandTechnologyBeijing,Beijin
摘    要:The microstructure and precipitation mechanism of ultra-thin hot strip produced by CSP technology were analyzed by electron back scattered diffraction(EBSD),H-800 transmission electron microscope(TEM) and thermodynamics theory.The EBSD results show that the finishing hot rolling microstructures are mixture of recrystallized and deformed austenite.After phase transformation,ferrite grains embody subastructures and dislocations that led ultra-thin hot strip high strength and relatively low elongation rate.TEM observations show that there are a lot of fine and dispersive precipitates in microstructures.Most of aluminium nitrides are in grains.While coexisted precipitates of MnS along grain boundaries,Coexisted precipitates compose cation-vacancy type oxides such as Al2O3 in the core,while MnS at the fringe of surface.At the same time,reasons for microstructure refinement and strengthening effect were invstigated.

关 键 词:低碳钢  微结构参数  强硬化参数

Microstructure and strengthening parameters of ultra-thin hot strip of low carbon steel
Hao Yu,Yonglin Kang,Hongbo DONG.Microstructure and strengthening parameters of ultra-thin hot strip of low carbon steel[J].Journal of University of Science and Technology Beijing,2002,9(5):356-359.
Authors:Hao Yu  Yonglin Kang  Hongbo DONG
Abstract:The microstructure and precipitation mechanism of ultra-thin hot strip produced by CSP technology were analyzed by electron back scattered diffraction (EBSD), H-800 transmission electron microscope (TEM) and thermodynamics theory. The EBSD results show that the finishing hot rolling microstructures are mixture of recrystallized and deformed austenite. After phase transformation, ferrite grains embody substructures and dislocations that led ultra-thin hot strip high strength and relatively low elongation rate. TEM observations show that there are a lot of fine and dispersive precipitates in microstructures. Most of aluminium nitrides are in grains, while coexisted precipitates of MnS along grain boundaries. Coexisted precipitates compose cation-vacancy type oxides such as A1,O, in the core , while MnS at the fringe of surface. At the same time, reasons for microstructure refinement and strengthening effect were investigated.
Keywords:CSP  EBSD  microstructure  precipitation  strengthening
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