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个人简介

受教育经历 1) 1998.09–2003.09, 东北大学, 材料加工工程, 博士, 导师: 王国栋 2) 1994.09–1998.09, 东北大学, 金属压力加工, 学士 研究工作经历 1) 2012.01-至今, 东北大学, 轧制技术及连轧自动化国家重点实验室, 教授、博士生导师 2) 2011.01-2012.01, 东北大学, 轧制技术及连轧自动化国家重点实验室, 教授 3) 2006.01-2011.01, 东北大学, 轧制技术及连轧自动化国家重点实验室, 副教授 4) 2003.09-2006.01, 东北大学, 轧制技术及连轧自动化国家重点实验室, 讲师

研究领域

1) 材料成形过程组织性能预测与控制; 2) 先进钢铁材料的开发与应用技术; 3) 高品质电工钢的新工艺及理论; 4) 快速热处理工艺及物理冶金原理

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

1) Evolution of cube texture in strip-cast non-oriented silicon steels, Scripta Mater ,87, pp17-20, 2014/9, EI,SCI (IF:3.74) 2) High-permeability and thin-gauge non-oriented electrical steel through twin-roll strip casting, Mater Des,136, pp23~33,2017/9, EI,SCI(IF:4.364) 3) Microstructure evolution and mechanical properties of a hot-rolled directly quenched and partitioned steel containing proeutectoid ferrite, Mat Sci Eng A, 607, pp460-475, 2014/6, EI,SCI (IF: 3.094) 4) Correlation between deformation behavior and austenite characteristics in a Mn-Al type TRIP steel, Mat Sci Eng A, 698, pp126-135,2017/6, EI,SCI(IF: 3.094) 5) Effect of two-step intercritical annealing on microstructure and mechanical properties of hot-rolled medium manganese TRIP steel containing delta-ferrite, Mat Sci Eng At, 688, pp40-55, 2017/3, EI,SCI(IF:3.094) 6) Effect of pre-annealing prior to cold rolling on the precipitation, microstructure and magnetic properties of strip-cast non-oriented electrical steels, J Mater Sci Technol, 33(12), pp1465-1474, 2017/8, EI,SCI(IF: 2.764) 7) Effect of rapid heating on a cold-rolled Mn-Al transformation-induced plasticity steel with coarse delta-ferrite, Sci Adv Mater, 9 (11),pp1953~1959,2017/12, EI,SCI(IF:1.671) 8) Effect of strip casting on magnetic anisotropy of non-oriented electrical steels, Sci Adv Mater, 9 (10) ,pp1822~1827, 2017/12, EI,SCI(IF:1.671) 9) High strength-toughness combination of a low-carbon medium-manganese steel plate with laminated microstructure and retained austenite, Mat Sci Eng A, 707, pp270~279,2017/12, EI,SCI (IF:3.094) 10) Austenite stability and its effect on the toughness of a high strength ultra-low carbon medium manganese steel plate,675, Mat Sci Eng A,pp153~163, 2016/10, EI,SCI(IF:3.094) 11) Effect of annealing after strip casting on texture development in grain oriented silicon steel produced by twin roll casting,Mater Charact, 107, pp79-84, 2015/9,EI,SCI(IF: 2.714) 12) Development of microstructure and texture in strip casting grain oriented silicon steel,J Magn Magn Mater, 379, pp161-166, 2015/4,EI,SCI(IF:2.63) 13) Evolution of recrystallization microstructure and texture during rapid annealing in strip-cast non-oriented electrical steels, J Magn Magn Mater, 381,pp 433-439, 2015/5,EI,SCI (IF:2.63) 14) Austenite stabilization and high strength-elongation product of a low silicon aluminum-free hot-rolled directly quenched and dynamically partitioned steel, Mater Charact,104, pp23-30, 2015/6,EI, SCI(IF:2. 714) 15) Relationships among crystallographic texture, fracture ehavior and charpy impact toughness in API X100 pipeline steel,Mat Sci Eng A, 641, pp 96-106, 2015/8,EI,SCI(IF:3.094) 16) Microstructure-properties relationship in a one-step quenched and partitioned steel,Mat Sci Eng A, 589, pp101-111, 2014/1,EI,SCI(IF: 3.094) 17) Influences of crystallography and delamination on nisotropy of Charpy impact toughness in API X100 pipeline steel,Mat Sci Eng A, 607,pp 53-62, 2014/6,EI,SCI(IF: 3.094) 18) Effect of partitioning procedure on icrostructure and mechanical properties of a hot-rolled directly quenched and partitioned steel,Mat Sci Eng A, 594, pp 149-160, 2014/1,EI,SCI(IF: 3.094); 19) Effect of intercritical deformation on microstructure and mechanical properties of a low-silicon aluminum-added hot-rolled directly quenched and partitioned steel, Mat Sci Eng A, 656, pp 200-215, 2016/2, EI,SCI(IF: 3.094) 20) Modelling of microstructure evolution during hot rolling of a high-Nb HSLA steel, J Mater Sci, 45(10), pp2580-2590, 2010/5,EI,SCI(IF:2.599)

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