(2) Long Hong-ming; Wang Hong-tao; Di Zhan-xia*; Chun Tie-jun; LiuZheng-gen; Influence of hydrogen-enriched atmosphere under coke oven gasinjection on reduction swelling behaviors of oxidized pellet , Journal ofCentral South University, 2016, 23(8): 1890-1898.
(3) Wang, Ping; Wu, Yu; Meng, Qing min; Di, Zhan xia*; Interaction reactionbetween the degradation of coke and the reduction of iron ore in oxygen blastfurnace under hydrogen-enriched operation , Ironmaking and Steelmaking, 2019,47(3): 290-295.
[1]He Fei,Wang Haijun, Zhu Zhenghai. Numerical investigation of effect of casting speedon flow characteristics of molten steel in multistrand tundish[J]. ISIJInternational, 2019, 59(7): 1250-1258. (SCI刊源,IF1.427)
[2]He Fei,Zhou Li. Formation mechanism and influence factors of the sticker between solidifiedshell and mold in continuous casting of steel[J]. High Temperature Materialsand Processes. 2019, 38: 192-198. (SCI刊源,IF0.427)
[3]He Fei,Zhang Lingying. Prediction model of end-point phosphorus content in BOFsteelmaking process based on PCA and BP neural network[J]. Journal of Process Control,2018, 66:51-58. (SCI刊源,IF3.316)
[4]He Fei,Shi Jiashun, Zhou Li, et al. Monte Carlo calculation of view factors betweensome complex surfaces: Rectangular plane and parallel cylinder, rectangularplane and torus, especially cold-rolled strip and W-shaped radiant tube incontinuous annealing furnace[J]. International Journal of Thermal Sciences,2018, 134: 465-474. (SCI刊源,IF3.488)
[5]He Fei,Zhang Lingying. Mold breakout prediction in slab continuous casting based oncombined method of GA-BP neural network and logic rules[J]. InternationalJournal of Advanced Manufacturing Technology, 2018, 95(9-12): 4081-4089. (SCI刊源,IF2.496)
[6]QianHaitao, He Fei(通讯作者),Xie Xi’an, et al. Recovery mechanism of the sticking-type breakout duringcontinuous casting of steel[J]. Ironmaking & Steelmaking, 2019, 46(3),259-268.(SCI刊源,IF1.578)
[7]He Fei, Zhang Lingying, Xu Qiyan. Optimization of flowcontrol devices for a T-type five-strand billet caster tundish: water modelingand numerical simulation[J]. China Foundry, 2016, 13(3): 166-175.(SCI刊源,IF0.733)
[8]HeFei, Zhou Li, Deng Zhihao. Novel mold breakoutprediction and control technology in slab continuous casting[J]. Journal ofProcess Control, 2015 (29): 1-10. (SCI刊源,IF3.316)
[9]HeFei, He Dongfeng, Xu Anjun, etc. Development and applicationof mould breakout prediction system with online thermal map for steelcontinuous casting[J]. Ironmaking & Steelmaking, 2015, 42(3): 194-208.(SCI刊源,IF1.578,该论文获IOM3学会2017年度“Adrian Normanton Award”奖,国内首次)
[11]HeFei, He Dongfeng, Xu Anjun,et al. Hybrid model of molten steel temperature prediction based on ladle heatstatus and artificial neural network[J]. Journal of Iron and Steel Research,International, 2014, 21(2): 181-190. (SCI刊源,IF1.382)
[12]He Fei, Xu Anjun, Wang Hongbing, et al. End temperatureprediction of molten steel in LF based on CBR[J]. Steel Research International,2012, 83(11): 1079-1086.(SCI刊源,IF1.522)