李亦庄,男,教授/博士生导师
办公地点:RAL354
联系电话:024-83680246
1、个人简介
东北大学教授、博导,入选国家级“四青”人才,沈阳市杰出人才(B类)等。聚焦材料学与力学学科交叉的创新应用,专攻高性能钢铁材料的研发与落地。近五年研究成果以第一作者身份在Acta Materialia、Journal of the Mechanics and Physics of Solids、International Journal of Plasticity等国际顶级材料和力学期刊发表。担任JMST、MRL等期刊青年编委、以及Nature Communications、Acta Materialia、Scripta Materialia等期刊审稿人,获2023年Acta Materialia杰出审稿人奖。作为项目负责人承担“十四五”国家重点研发计划项目课题、国家自然科学基金面上项目、科技部高端外国专家引进计划、辽宁省应用基础研究计划等。
2、教育与工作经历:
工作经历:
2022.08–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
2018.12–2022.04,香港大学, 机械工程系, 博士后
教育经历:
2016. 9–2016. 12, 荷兰埃因霍温理工大学, 材料科学与工程, 访问学者
2014. 9–2018. 11, 香港大学, 材料科学与工程, 博士
2012. 9–2014. 6, 香港大学, 机械工程, 学士
2010. 9–2014. 6, 上海交通大学, 机械工程及自动化, 学士
3、研究方向:
我主要围绕金属塑性变形的共性基础问题开展富有特色的研究工作,该方向涉及材料科学与固体力学的学科交叉,涉及实验、理论与模拟的融合。研究兴趣包括:(1)金属结构材料的塑性变形机理及本构理论;(2)高强韧材料(例如先进高强钢)的强韧化机制、微结构调控及性能优化;(3)金属基复合材料的设计开发及多尺度力学行为;(4)晶体塑性有限元方法。欢迎对金属材料、塑性力学、有限元仿真等研究方向感兴趣的同学报考我的硕/博士生,我将结合自己的科研经验,全心投入与学生科研工作的指导与探讨,悉心培养学生的逻辑分析及批判性思维能力、论文写作能力和学术表达能力,让学生少走弯路。
4、获奖及荣誉:
1)Acta Materialia杰出审稿人奖,2023
2)香港大学机械工程系Best thesis award,2019
3)香港大学博士生全额奖学金,2014-2018
4)香港大学本科一等荣誉(First class honor),2014
5)香港大学方氏奖学金,2013
6)上海交通大学本科生优秀奖学金,2011,2012
5、教学情况:
1)《纳米技术》,本科通识选修类,24课时,主讲
2)《计算材料学》,本科专业方向类,24课时,主讲
3)《材料成形理论》,博士生课程,16课时,主讲
6、代表性科研项目:
1)国家级青年人才项目,主持
2)国家重点研发计划项目课题,2022YFB3707501,数据驱动的不锈钢研发-生产-应用技术,2022.11-2025.10,主持
3)国家自然科学基金面上项目,52374382,基于陶瓷颗粒析出竞争机制的高模量钢界面调控及力学响应,2024.1-2027.12,主持
4)科技部高端外国专家引进计划,G2023128003L,数据驱动的多组元合金强塑性分析与优化设计,2023.1-2024.12,主持
5)辽宁省应用基础研究计划,2023JH2/101300147,基于残余奥氏体组织特征调控的中锰钢动态力学性能研究,2023.1-2024.12,主持
7、代表性文章:
近五年以第一作者身份在Acta Materialia、Journal of the Mechanics and Physics of Solids、International Journal of Plasticity等材料和力学领域旗舰期刊发表。
Y.Z. Li, S.L. Zhao, S.H. He, C.P. Huang, M. X. Huang*, Enhancing yield stress and uniform elongation in an ultrathin packaging steel via controlling dislocation density, International Journal of Plasticity, 2022, 155, 103334.
Y.Z. Li, Z.Y. Liang, M. X. Huang*, Strengthening contributions of dislocations and twins in warm-rolled TWIP steels, International Journal of Plasticity, 2022, 150, 103198.
Y.Z. Li, M. X. Huang*, A dislocation-based flow rule with succinct power-law form suitable for crystal plasticity finite element simulations, International Journal of Plasticity, 2021, 138, 102921.
Y.Z. Li, M.X. Huang*, TiB2-TiC reinforced martensitic steel fabricated by conventional solidification, Metallurgical and Materials Transactions A, 2021, 52, 2144-2148.
Y.Z. Li, M. Wang, M.X. Huang*,In-situ measurement of plastic strain in martensite matrix induced by austenite-to-martensite transformation, Materials Science and Engineering A, 2021, 811, 141061.
Y.Z. Li, Z.C. Luo, Z.Y. Liang, M.X. Huang*, Effect of carbon on strain-rate and temperature sensitivity of twinning-induced plasticity steels: Modeling and experiments, Acta Materialia, 2019, 165, 278-293.
Y.Z. Li, M.X. Huang*, Carbon-dislocation interaction-induced abnormal strain-rate sensitivity in twinning-induced plasticity steels, Metallurgical and Materials Transactions A, 2019, 50(6), 2570-2575.
Y.Z. Li, M.X. Huang*, Rationalizing the Grain Size Dependence of Strength and Strain-Rate Sensitivity of Nanocrystalline fcc Metals, Metallurgical and Materials Transactions A, 2019, 50(4), 1943-1948.
Y.Z. Li, M.X. Huang*, Revealing the interfacial plasticity and shear strength of a TiB2-strengthened high-modulus low-density steel, Journal of the Mechanics and Physics of Solids, 2018, 121: 313-327.
Y.Z. Li, Z.C. Luo, H.L. Yi, M.X. Huang*, Damage Mechanisms of a TiB2-Reinforced Steel Matrix Composite for Lightweight Automotive Application, Metallurgical and Materials Transactions E, 2016, 3, 203-208.
Y.Z. Li and M.X. Huang*, A Method to Calculate the Dislocation Density of a TWIP Steel Based on Neutron Diffraction and Synchrotron X-Ray Diffraction, Acta Metallurgica Sinica, 2020, 56 (4), 487-493.
Liu, R. D., Y. Z. Li*, L. Lin, C. P. Huang, Z. H. Cao, M. X. Huang*, Strain rate sensitivity of a 1.5 GPa nanotwinned steel, Journal of Iron and Steel Research International, 2021, 1-5.
Hu, J., Li, X., Meng, Q., Wang, L., Li, Y., & Xu, W. (2022). Tailoring retained austenite and mechanical property improvement in Al–Si–V containing medium Mn steel via direct intercritical rolling. Materials Science and Engineering: A, 855, 143904.
Chen, Ronghua, Bochuan Li, Yizhuang Li, Xiaogang Wang, Chao Jiang, and Mingxin Huang. Influences of particle fraction and characteristics on damage tolerance of TiB2-reinforced steel matrix composites, Materials Science and Engineering: A, 2021, 141736.
L.T. Liu, Y.Z. Li, K.P. Yu, M.Y. Zhu, H. Jiang, P. Yu, M.X. Huang*, A novel stainless steel with intensive silver nanoparticles showing superior antibacterial property, Materials Research Letters, 9, 6, 270-277.
Bochuan Li, Kang Xu, Ronghua Chen, Yizhuang Li, Xiaogang Wang, Chao Jiang*, M.X. Huang*, On the fatigue crack propagation mechanism of a TiB2-reinforced high-modulus steel, Composites Part B, 2020, 190, 107960.
Ronghua Chen, Bochuan Li, Yizhuang Li, Zhicheng Liu, Xiangyun Long, Hongliang Yi, Xiaogang Wang, Chao Jiang*, M.X. Huang*, Revealing the fatigue crack initiation mechanism of a TiB2-reinforced steel matrix composite, International Journal of Fatigue, 2020, 130, 105276.
Z.C. Luo, B.B. He, Y.Z. Li, M.X. Huang*, Growth Mechanism of Primary and Eutectic TiB2 Particles in a Hypereutectic Steel Matrix Composite, Metallurgical and Materials Transactions A, 2017, 48, 1981-1989.
Z.Y. Liang, Y.Z. Li, M.X. Huang*, The respective hardening contributions of dislocations and twins to the flow stress of a twinning-induced plasticity steel, Scripta Materialia, 2016, 112, 28-31.
Z. Wang, Y.Z. Li, B.B. He, M.X. Huang*, Research Progress on Second Phase Strengthening and Toughening of Advanced Steels, Materials China, 2019, 38(3).
Y.Z. Li, M. X. Huang*. Interfacial Strength Characterization in a High-Modulus Low-Density Steel-Based Fe-TiB2 Composite. Characterization of Minerals, Metals, and Materials 2017. Springer, Cham, 2017. 453-460. (Conference paper)