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Growth Rate,Microstructure and Phase Composition of Oxide Scales for Three Typical Steels in Simulated Continuous Casting Process
作者姓名:Nan WANG  Jian-hong DONG  Wei-jun HUANG  Bo LI  Min CHEN
作者单位:School of Materials and Metallurgy,Northeastern University
基金项目:Sponsored by National Natural Science Foundation of China(51174052,51174049,51374062,51374057);Fundamental Research Funds for the Central Universities of China(110402009)
摘    要:Growth rate,microstructure and phase composition of scale layer formed during oxidation in 56%H2O-9%O2-N2 and following continuous cooling in ambient air were experimentally investigated by means of optical microscopy,scanning electron microscopy(SEM),energy-dispersive spectroscopy(EDS)and X-ray diffraction(XRD)for45,20 CrMnTi and TTS443 Msteels respectively,to examine the effects of strand surface temperature and steel composition on the scale formation in simulated continuous casting process.The growth rates were found to be approximately parabolic and the calculated activation energy of TTS443 Msteel is much higher than those of the two other steels.For 45 and 20CrMnTi steels,the scale layers were looser and a distinct gap formed at the scale-substrate interface at higher strand surface temperature.The dominant phases within the scale were iron oxides except for FeO·Cr2O3phase simultaneously existing in the oxide scale of 20 CrMnTi steel.On the other hand,the scale layer formed on TTS443 Msteel was compact and tightly attached to the steel surface.At both lower and higher strand surface temperature,iron oxide was main phase in external layer of the scale,while chromia was dominant in inner layer with an appreciable Cr enrichment.

关 键 词:氧化过程  物相组成  20CrMnTi钢  型钢  连铸过程  显微组织  模拟  扫描电子显微镜
收稿时间:27 February 2014

Growth Rate,Microstructure and Phase Composition of Oxide Scales for Three Typical Steels in Simulated Continuous Casting Process
Nan WANG,Jian-hong DONG,Wei-jun HUANG,Bo LI,Min CHEN.Growth Rate,Microstructure and Phase Composition of Oxide Scales for Three Typical Steels in Simulated Continuous Casting Process[J].Journal of Iron and Steel Research,2014,21(12):1065-1072.
Authors:Nan WANG  Jian-hong DONG  Wei-jun HUANG  Bo LI  Min CHEN
Abstract:Growth rate, microstructure and phase composition of scale layer formed during oxidation in 56% H2O-9%O2-N2 and following continuous cooling in ambient air were experimentally investigated by means of optical microscopy, scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDS) and X-ray diffraction (XRD) for 45, 20CrMnTi and TTS443M steels respectively, to examine the effects of strand surface temperature and steel composition on the scale formation in simulated continuous casting process. The growth rates were found to be approximately parabolic and the calculated activation energy of TTS443M steel is much higher than those of the two other steels. For 45 and 20CrMnTi steels, the scale layers were looser and a distinct gap formed at the scalc-sub-strate interface at higher strand surface temperature. The dominant phases within the scale were iron oxides except for FeO ? Cr2 O3 phase simultaneously existing in the oxide scale of 20CrMnTi steel. On the other hand, the scale layer formed on TTS443M steel was compact and tightly attached to the steel surface. At both lower and higher strand surface temperature, iron oxide was main phase in external layer of the scale, while chromia was dominant in inner layer with an appreciable Cr enrichment.
Keywords:oxide scale  growth rate  microstructure  phase composition  continuous casting
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