个人简介
学习经历
2005/03 - 2008/07,东北大学,钢铁冶金研究所,研究生/博士
2002/09 - 2005/03,东北大学,钢铁冶金研究所,研究生/硕士
1998/09 - 2002/07,东北大学,冶金科学与工程,本科生/学士
工作经历
2020/01至今,东北大学,冶金学院,教授、博士生导师
2016/01 - 2019/12,东北大学,冶金学院,副教授、硕士生导师
2011/04 - 2015/12,东北大学,材料与冶金学院,讲师
2009/03 - 2011/03,加拿大McMaster大学,材料科学与工程系,博士后
2006/12 - 2009/03,东北大学,材料与冶金学院,助教,讲师
研究领域
(1)高炉炼铁
(2)烧结球团
(3)直接还原
(4)低碳炼铁新技术
近期论文
查看导师新发文章
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[1] 专著:高炉炉料中合理利用含MgO原料的基础理论研究,辽宁科学技术出版社,17万字,ISBN:978-7-5591-1444-0,2019.12(独立主编).
[2] Optimizing Iron Ore Proportion Aimed for Low Cost by Linear Programming Method [J]. Metallurgical and Materials Transactions B, 2022, 53(6): 4075-4086(通讯作者).
[3] Simulation of the internal temperature field and flow field in a double-layer sintering bed [J]. ACS Omega, 2022, 12(7): 46777-46786(通讯作者).
[4] 高比例酸性炉料对高炉操作的影响及应对措施[J].钢铁,2022,57(7):16-25(通讯作者).
[5] Effects of liquidus temperature and liquid amount on the fluidity of bonding phase and strength of sinter [J]. ISIJ International, 2021, 61(1): 86-92(第1作者).
[6] Theoretical yield of metallic Fe by COG in a shaft furnace in the case of O2 pyrolysis [J]. ISIJ International, 2021, 61(1): 129-137(第1作者).
[7] Reaction characteristics between sinter and serpentine [J]. Metallurgical and Materials Transactions B, 2020, 51(3): 937-944(第1作者).
[8] Three-segment control theory of MgO/Al2O3 ratio based on viscosity experiments and phase diagram analyses at 1500°C [J]. Journal of Iron and Steel Research International, 2020, 27(6): 624-630(第1作者).
[9] Fundamentals of the reduction of SFC in CO/CO2 gas at 1000 °C [J]. ISIJ International. 2020, 60(10): 2191-2198(第1作者).
[10] Distribution of reformed coke oven gas in shaft furnace [J]. Journal of Iron and Steel Research International. 2020, 27(12): 1382-1390(第1作者).
[11] Reducing parameters on the size of ferronickel particles in the reduced laterite nickel ores [J]. Metallurgical and Materials Transactions B, 2020, 51(6): 2653-2662(第1作者).
[12] K2O对烧结矿强度影响的实验研究[J].钢铁,2020,55(8):37-43(通讯作者).
[13] 红土镍矿的高料层碳热还原试验研究[J].钢铁,2020,55(11):1-10(通讯作者).
[14] 竖炉还原工艺中焦炉煤气消耗量与产量的热力学计算[J].钢铁,2020,55(12):10-18(通讯作者).
[15] 高炉渣适宜镁铝比分段管控的分析与应用[J].钢铁,2019,54(10):13-17(第1作者).
[16] 基于相图分析铁酸钙流动性及烧结矿强度[J].钢铁,2019,54(5):9-13(通讯作者).
[17] Carbothermic reduction of ore–coal composite pellets in a tall pellets bed [J]. Minerals, 2018, 8, 550(第1作者).
[18] Effects of reducing time on metallization degree of carbothermic reduction of tall pellets bed [J]. ISIJ International, 2016, 56(1): 88-93(第1作者).
[19] Adiabatic carbon rate of alternative ironmaking processes to produce hot metal [J]. Steel Research International, 2014, 85(1): 35-43(第1作者).
[20] Experimental investigation on direct reduction followed by magnetic separation for Nb2O5-bearing ore [J]. ISIJ International, 2013, 53(8): 1358-1364(第1作者).