姓名 | 王卫领 | 性别 | 男 |
出生年月 | 1987年10月 | 政治面貌 | 中共党员 |
职称 | 副教授 | 职务 | 党支部组织委员 |
办公电话 | 024-83671706 | ||
电子邮箱 | wangwl@smm.neu.edu.cn | ||
学习工作经历: 学习经历 1. 2006/08~2010/07,东北大学,冶金工程专业,本科生/学士 2. 2010/09~2017/01,东北大学,钢铁冶金专业,直博生/博士 工作经历 1. 2017/05~2020/12,东北大学冶金学院,讲师 2. 2021/01~至今,东北大学冶金学院,副教授 | |||
主要研究方向: 1. 金属凝固组织演变数值计算方法 2. 钢的微介观凝固理论与质量控制 3. 不规则连铸坯凝固在线高效预测 | |||
近年讲授课程: 1.《金属凝固》 2.《现代冶金仿真实训》 | |||
所在团队情况: 先进冶炼-连铸工艺与装备研究所(东北大学重点创新团队) | |||
人才培养情况: 独立指导硕士5名,协助朱苗勇教授指导博士3名、硕士4名 | |||
科研项目情况: 主持国家自然科学基金面上项目和青年项目各1项、国家重点研发计划子课题1项以及中国博士后科学基金、东北大学博士后科学基金和中央高校基本科研业务费等校级和省部级项目5项;执行并完成了宝钢、邯钢和凌钢等钢企的横向课题6项。 | |||
论文著作: 1. 罗腾飞,王卫领,刘宗辉,等.GCr15轴承钢连铸冷却速率下凝固原位观察[J].钢铁,2022,57(2):73-84. 2. 康吉柏,王卫领,罗腾飞,等.20CrMnTi钢160 mm×160 mm方坯内部质量控制[J].钢铁,2021,56(2):82-92. 2. Wang W L, Wang Z H, Yin S W, et al. Numerical Simulation of Solute Undercooling Influenced Columnar to Equiaxed Transition of Fe-C Alloy with Cellular Automaton [J]. Computational Materials Science, 2019, 167, 52-64. 3. Wang W L, Yin S W, Luo S, et al. Recalescence and Segregation Phenomena During Equiaxed Dendritic Solidification of Fe-C Alloy [J]. Metallurgical and Materials Transactions B, 2019, 50(4), 1531-1541. 4. Wang W L, Ji C, Luo S, et al. Modeling of Dendritic Evolution of Continuously Cast Steel Billet with Cellular Automaton [J]. Metallurgical and Materials Transactions B, 2018, 49(1): 200-212. 5. 朱苗勇,娄文涛,王卫领.炼钢与连铸过程数值模拟研究进展[J].金属学报,2018,54(2):131-150. 6. Wang W L, Wang Z H, Luo S, et al. Influence of Forced Flow on the Dendritic Growth of Fe-C Alloy: 3D vs 2D Simulation [J]. Metallurgical and Materials Transactions B, 2017, 48(6): 3109-3119. 7. Wang W L, Luo S, Zhu M Y. Numerical Simulation of Three-Dimensional Dendritic Growth of Alloy: Part I-Model Development and Test [J]. Metallurgical and Materials Transactions A, 2016, 47(3): 1339-1354. 8. Wang W L, Luo S, Zhu M Y. Numerical Simulation of Three-Dimensional Dendritic Growth of Alloy: Part II-Model Application to Fe-0.82WtPctC Alloy [J]. Metallurgical and Materials Transactions A, 2016, 47(3): 1355-1366. 9. Wang W L, Luo S, Zhu M Y. Numerical Simulation of Dendritic Growth of Continuously Cast High Carbon Steel [J]. Metallurgical and Materials Transactions A, 2015, 46(1): 396-406. 10. Wang W L, Luo S, Zhu M Y. Dendritic Growth of High Carbon Iron-Based Alloy Under Constrained Melt Flow [J]. Computational Materials Science, 2014, 95: 136-148. 11. Wang W L, Luo S, Zhu M Y. Development of a CA-FVM Model with Weakened Mesh Anisotropy and Application to Fe-C Alloy [J]. Crystals, 2016, 6(11): 147. 12. Wang W L, Zhu M Y, Cai Z Z, et al. Micro-Segregation Behavior of Solute Elements in the Mushy Zone of Continuous Casting Wide-Thick Slab [J]. Steel Research International, 2012, 83(12): 1152-1162. 13. 王卫领,蔡兆镇,朱苗勇.包晶钢宽厚板坯连铸结晶器的热流密度与热行为[J].北京科技大学学报,2013,35(4):510-516. 14. Jiang D B, Wang W L, Luo S, et al. Numerical Simulation of Slab Centerline Segregation with Mechanical Reduction During Continuous Casting Process [J]. International Journal of Heat and Mass Transfer, 2018, 122: 315-323. 15. Jiang D B, Wang W L, Luo S, et al. Mechanism of Macrosegregation Formation in Continuous Casting Slab: A Numerical Simulation Study [J]. Metallurgical and Materials Transactions B, 2017, 48(6): 3120-3131. 16. Luo S, Wang W L, Zhu M Y. Cellular Automaton Modeling of Dendritic Growth of Fe-C Binary Alloy with Thermosolutal Convection [J]. International Journal of Heat and Mass Transfer, 2018, 116: 940-950. 17. Luo S, Wang W L, Zhu M Y. Validation and Simulation of Cellular Automaton Model for Dendritic Growth During the Solidification of Fe-C Binary Alloy with Fluid Flow [J]. ISIJ International, 2016, 56(4): 564-573. 18. Feng Y, Wang W L, He Q, et al. A novel investigation of initial solidified shell thickness of continuously cast slab based on solidification structure [J]. Steel Research International, 2016, 87(7): 859-870. 19. Su W, Wang W L, Luo S, et al. Heat Transfer and Central Segregation of Continuously Cast High Carbon Steel Billet [J]. Journal of Iron and Steel Research International, 2014, 21(6): 565-574. | |||
教学奖励: | |||
科研奖励: (1) 2018年冶金科学技术一等奖; (2) 2018年东北大学优秀博士后; (3) 2018年东北大学优秀博士论文。 | |||
社会兼职: | |||
个人寄语: 踏踏实实做人,勤勤恳恳做事。 |