李明
姓名 | 李明 |
教师编号 | 4288 |
性别 | 男 |
学校 | 西北工业大学 |
部门 | 力学与土木建筑学院 |
学位 | 哲学博士学位 |
学历 | 博士研究生毕业 |
职称 | 正高 |
联系方式 | 【发送到邮箱】 |
邮箱 | 【发送到邮箱】 |
人气 | |
软件产品登记测试 软件著作权666元代写全部资料 实用新型专利1875代写全部资料 集群智慧云企服 / 知识产权申请大平台 微信客服在线:543646 急速申请 包写包过 办事快、准、稳 |
综合介绍 General Introduction 在爱尔兰国立大学(高威)机械工程系瑞安环境、海洋与能源研究所 (Ryan Institute for Environmental, Marine and Energy Research) 全额奖学金资助下于2018年9月获得博士学位。博士期间曾于爱尔兰利莫瑞克大学伯纳尔研究中心 (Bernal Institute) 访问学习1年。2019年3月至2021年7月担任英国诺丁汉大学机械、材料制造系燃气轮机与传动研究中心 (Gas Turbine and Transmission Research Center) 研究员,现为西北工业大学力学与土木建筑学院教授,致力于金属结构超常环境下蠕变疲劳力学行为研究,主要内容包括高性能多尺度计算模拟及多尺度建模;工程结构疲劳与蠕变断裂分析、模拟及寿命预测;金属结构材料微力学测量及微观组织表征及与建模;小试件高温疲劳蠕变测量;高温原位中子射线衍射等。长期与世界著名大学及研究所展开密切合作,包括爱尔兰国立高威大学、爱尔兰利莫瑞克大学、圣三一大学、英国帝国理工大学、诺丁汉大学、伯明翰大学、英国卢瑟福-阿普尔顿中子衍射光源 (ISIS Neutron and Muon Source) 实验室等。长期招收具有材料、机械、固体力学、数学等背景专业硕士、博士研究生,欢迎成绩优异热爱科研的同学联系。 个人相册 教育教学教育教学 Education and teaching 教育教学 作为合作导师总计指导博士生3人: 1. 2019 - 2023, 指导博士生 Raheeg Ragab, 题目为‘Modelling Creep and Creep-fatigue Damage for CSEF Power Plant Steels taking into account Variable Ductility and Considerations for Condition Monitoring’;2. 2021 - 2025, 指导博士生 HaoZhe Chun, 题目为‘Modelling Creep-Fatigue Damage and Life Prediction for Gas Turbine Rotors’;3. 2021 - 2025,指导博士生 Aaron Kreji, 题目为‘Life Prediction of Power Plant Components with Welds under Flexible, Thermal-Mechanical Loadings and Operation Cycle Optimization’;---------------------------------------------------------------------------------------------------作为导师指导诺丁汉大学工程学院本科生2人,题目分别为 Cyclic Plasticity Behavior of Additive Manufacturing Ti64 with Defects (学生:Arisara Ketnute), Assessment of the Orientation of Ellipse Defects for Additive Manufactured Ti-6Al-4V (学生:Jianan Mao)。 荣誉获奖科学研究 Scientific Research 近年来主持的项目主要包括国家xx重大专项子课题一项、英国工程物理研究基金(EPSRC)资助项目2项、生物与化石燃料研究联盟(BF2RA)资助博士生课题3项,RWE资助博士生课题1项,英国卢瑟福-阿普尔顿(ISIS)中子衍射光源实验室合作1项,如下:1.RWE, 横向课题, GT26 Rotor Project, Modelling Creep-Fatigue Damage and Life Prediction for Gas Turbine Rotors, 2021-09 至 2025-09, 300万元, 在研, 参与;2. 工业和信息化部, 纵向课题, XXX-IV-0011-XXXX, 应力状态的动强度评估方法与流程, 2021-01 至 2023-12, 340万元, 在研, 主持;3. BF2RA, 纵向课题, Grant 31, Modelling Creep and Creep-fatigue Damage for CSEF Power Plant Steels taking into account Variable Ductility and Considerations for Condition Monitoring, 2019-01 至 2023-09, 300万元, 在研, 主持;4. ISIS Neutron Source, 纵向课题, RB2010020, Short-term Stress Relaxation on Cyclic Lattice-Strains Evolution of a New Martensitic Steel at Elevated Temperature via In-situ ND, 2020-09 至 2021-09, 40万元, 结题, 主持;5. EPSRC, 纵向课题, EP/R004951/1, Exploring Additive Manufactured Lightweight Structures for Elevated Temperature Application in Aero-engine, 2018-11 至 2021-07, 400万元, 在研, 参与;6. SFI, 纵向课题, SFI/14/IA/2604, Materials for Energy: Multi-scale, Thermo-mechanical Characterization of Advanced, High Temperature Materials for Power Generation, 2015-01 至 2019-12, 960万元, 结题, 参与;7. EPSRC, 纵向课题, EP/N509991/1, Advanced Industrial Manufacture of Next-Generation MARBN Steel for Cleaner Fossil Plant, 2015-01 至 2019-12, 300万元, 结题, 参与;8. SFI, 纵向课题, SFI/2010/IN.1/I3015, Materials for Energy: Multi-scale Through-process Characterization for Innovative Manufacture of Next-generation Welded Connections, 2011-01 至 2016-12, 960万元, 结题, 参与; 科学研究学术成果 Academic Achievements 论文发表:28. Sun, W., Li, M., Wen, Z.X., Zhou, G.Y., Yue, Z.F., Tu, S.T., Uncertainties in and recommendations to small punch tensile and creep tests for ductile materials, 2023(289), 109443. Engineering Fracture Mechanics. (通讯作者)27. Ragab, R., Pang, Y., Liu, T., Nigel, N., Li, M., Sun, W., Unravelling the effects of ratcheting and constraint on the cyclic behaviour of a martensitic steel under elevated temperature, Mechanics of Materials, 2023, https://doi.org/10.1016/j.mechmat.2023.104708. (通讯作者)26.Sun, W., Li, S., Zhou, G.Y., Li, M., Wen, Z.X., Yue, Z.F., Tu, S.T., Interpretation of non-conventional miniaturized creep test: derivation of equivalent gauge length, Journal of Materials Research and Technology, 2023(24), 4390-4404 (通讯作者)25.Sun, W., Yue, Z.F., Wen, Z.X., Li, M., An overview on material parameter inverse and its application to miniaturized testing at elevated temperature, Journal of Materials Research and Technology, 2023(22), 3132-3145.(通讯作者)24.Ragab, R.,Liu, T., Li, M., Sun, W.,Membrane stretching based creep damage analytical solutions for thin disc small punch problem, Journal of the Mechanics and Physics of Solids, 2022(165): 104928.(通讯作者)23.Yue, Z.F., Li, M., Li, L., Zhou, Z.D., Physical Manufacturing: Multidiscipline Modeling in Materials and Structure, 2022,18(4): 673-687. (通讯作者)22. Liu, F.C., Wang P.Y., Li, M., Li, L., Yue Z.F., Physical Manufacturing: From the multidisciplinary perspective , Multidiscipline Modeling in Materials and Structure, 2022, 18(3): 373-381 (通讯作者)21. Ragab, R., Parker, J., Li, M., Liu, T., Andy, M., Sun, W., Requirement for and Challenges in Developing Improved Creep Ductility based Constitutive Models for CSEF Steels. Journal of Material Research and Technology, 2022(17), 3337-3360. (通讯作者)20. Li, M., S., Maskill, Z. F., Yue, W. Sun., ‘Analytical and Inverse Methods for Determining High Temperature Properties Using Small Punch Creep: A Review’, Multidiscipline Modeling in Materials and Structures 19 (3), 441-463.19. Li, M., S., Maskill, Z.X., Wen, Z.F., Yue, W., Sun, ‘A miniaturized thin-plate low cycle fatigue test method at elevated temperature’, Fatigue & Fracture of Engineering Materials & Structures, 2022, 45(5):1361-1378.18. Li, M., Gupta, A., Bennett, C., Yue, Z.F., Sun, W., Tu, S.T., ‘Cyclic plasticity of additively manufactured Ti-6Al-4V bracket for aeroengine application’, International Journal of Mechanical Sciences, 2023(258), 108567.17.Ma, Y.L., Zhang, L., Huang, J., Wang, R., Li, T., Zhou, T.Y., Shi, Z.D., Li, J.W., Li, Y.B., Huang, G.C., Wang, Z.Y., Farida A.S., Li, M., Wang, Y., Chen H., Broadband emission Gd3Sc2Al3O12:Ce3+ transparent ceramics with a high color rendering index for high-power white LEDs/LDs, Optics Express, 6(29), 2021, 9474-9493. 16. Ma, Y.L., Zhang, L., Zhou, T.Y., Hou, C., Kang, J., Yang, S.S., Xi, X.Q., Yuan, M.X., Huang, J., Wang, R., Farida A.S., Li, M., Wang, Y., Chen H., High quantum efficiency Ce:(Lu,Y)3(Al,Sc)2Al3O12 transparent ceramics with excellent thermal stability for high-power white LEDs/LDs, Journal of Materials Chemistry C, 46,2020, https://doi.org/10.1039/D0TC04231E15. Ma, Y.L., Zhang, L., Zhou, T.Y., Sun, B.H., Hou, C., Yang, S.S., Huang, J., Wang, R., Farida A.S., Wang, Z.Y., Li, M., Chen H., Wang, Y., Dual effect synergistically triggered Ce:(Y,Tb)3(Al,Mn)5O12 transparent ceramics enabling a high color-rendering index and excellent thermal stability for white LEDs, Journal of the European Ceramic Society, 4(41), 2021, 2834-2846.14. Li, D.H., Shang, D.G., Yin, X., Chen, F., Sun, G.Q., Li, M. Sun, W., ‘A Novel Fatigue-Oxidation-Creep Life Prediction Method under Non-Proportional Loading’, Engineering Failure Analysis, 131(2022), 105805.13. Zhou, T.Y., Zhang, L., Ma, Y.L., Kang, J., Li, T., Wang, R., Huang, J., Li, J.W., Ren, H.D., Fu, Z.X., Farida A.S., Li, M., Chen H., Efficient spectral regulation in Ce:Lu3(Al,Cr)5O12 and Ce:Lu3(Al,Cr)5O12/Ce:Y3Al5O12 transparent ceramics with high color rendering index for high-power white LEDs/LDs, Journal of Advanced Ceramics, 10(5), 2021, 1107-1118. 12. Ragab, R., Parker, J., Li, M., Liu, T., Sun, W., ‘Creep Crack Growth of Grade 91Vessel Weldments Using a Modified Ductility-based Damage Model, European Journal of Mechanics / A Solids, 91(2022), 104424(通讯作者).11. Li, X.Q., Zhang, L., Kang, J., Li, Y.B.,Wang, Z.Y., Fei B., Cheng, X., Huang, G.C., Li, M., Chen, H., Chip-level Ce:GdYAG ceramic phosphors with excellent chromaticity parameters for high-brightness white LED device, Optics Express, 8(29), 2021,11938-11946. 10. Ragab, R., Parker, J., Li, M., Liu, T., Sun, W., ‘Modelling of a Grade 91 Power Plant Pressurised Header Weldment under Ultra Super-Critical Creep Conditions’, Journal of Pressure Vessels and Piping, 192(2021), 104389 (通讯作者).9. Huang, J., Ni, Y.R., Ma, Y.L., Li, Y.B., Sun, Z.X., Zhu, X.Y., Wang, R., Li, T., Xi, X.Q., Huang, G.C., Zhou, T.Y., Li, M., Ren, H.D., Zhang, L., Chen, H., Composite structure Cr: YAG/Ce: YAG and (Ce,Cr): YAG/Ce: YAG transparent ceramics with high color rendering index for white LEDs/LDs, Ceramics International, 47(8), 2021, 11415-11422.8. Li, D.H., Li, M., Shang, De.G., Gupta, A., Sun, W., ‘Physically-based modeling of cyclic softening and damage behaviors for a martensitic turbine rotor material at elevated temperature’, International Journal of Fatigue,142 (2020), 105956.7. Li, M., Benaarbia, A., Morris, A., Sun, W., ‘Assessment of potential service-life performance for MarBN steel power plant header under flexible thermomechanical operations’, International Journal of Fatigue, 135(2020), 105565.6. Li, M., PE O’Donoghue, SB Leen, ‘Micro-structure modeling of high temperature micro-crack initiation and evolution in a welded 9Cr martensitic steel’, Part L, Journal of Material: Design and Applications. 233(2020).5. Ma, Y.L., Zhang, L., Zhou, T.Y., Sun, B.H., Wang, Y., Kang, J., Gao, P., Huang, J., Farida A.S., Wong, C.W., Li, M., Chen H., High recorded color rendering index in single Ce,(Pr,Mn):YAG transparent ceramics for high-power white LEDs/LDs, Journal of Materials Chemistry C, 8, 2020, 4329-4337. 4. Li, M., Sun, F.W., Li, D.F., PE O’Donoghue, NP O’Dowd, SB Leen, ‘The effect of ferrite phases on the micromechanical response and crack initiation in the inter-critical heat-affected zone of a welded 9Cr martensitic steel,’ Fatigue & Fracture of Engineering Materials & Structures, 2018; 41(6): 1245-1259.3. Li, M., Sun, F.W., RA. Barrett, Li, D.F., PE O’Donoghue, NP O’Dowd, SB Leen, ‘The influence of inhomogeneity on the mechanical response of polycrystalline tempered martensite steel,’ Part L: Journal of Material: Design and Application, 231(2017), 1-2.2. Li, M., Richard A. Barrett, S Scully, N. M., Harrison, PE O’Donoghue, SB Leen ‘Cyclic plasticity of welded P91 material for simple and complex power plant connections’, International Journal of Fatigue, 87(2016), 391-404.1. SB Leen, Li, M., Richard A. Barrett, S Scully, PE O’Donoghue, ‘High Temperature, Multi-Material, Cyclic Plasticity of a P91 Welded Branch-Header Connection Under Cyclic Pressure', https://doi.org/10.1115/PVP2015-45605.会议报告:8. Li, M., Maskill, S., Wen, Z.X., Yue, Z.F., Sun, W., A Novel Miniature Specimen Low Cycle Fatigue Test Method at Elevated Temperatures, 11th European Solid Mechanics Conference (ESMC 2022), Galway, Ireland, 4th ~ 8th July 2022.7. Li, M., Li, D.H., Rae, Y., Yue, Z.F., Sun, W., Experimental and Numerical Modelling of Cyclic Softening and Damage Behaviours for a Turbine Rotor Material at Elevated Temperature , ICCES2022 (International Conference on Computational & Experimental Engineering and Sciences), Online Conference, 8th ~ 12nd, Jan. 2022.6. Ragab, R., Parker, J., Li, M., Liu, T., Morris, A. Sun, W., Creep Ductility-based Constitutive Models for Creep Strength Enhanced Ferritic Steels: A Review. HIDA-8 (High Temperature Plant Failures, Cracking, Damage & Life Assessment) Online Conference , 20th ~ 22nd , April 2021.5. Li, M., Sun, F.W., PE O’Donoghue, NP O’Dowd, SB Leen, Prediction of micro-crack initiation and evolution in the inter-critical heat- affected zone of a welded 9Cr martensitic steel, Material Design and Application (MDA) conference, Porto, 5th ~ 6th, July, 2018.4. Li, M.., Sun, F.W., Li, D.F., O’Donoghue, P.E., O’Dowd, N.P., Leen, S.B., The effect of ferrite phases on the localized micromechanical response and crack initiation in a welded 9Cr martensitic steel, Poster Presentation, 21st Sir Bernard Crossland, UCD, 25th ~ 26th, April, 2018.3. Li, M.., O’Donoghue, P.E., O’Dowd, N.P., S.B., Leen, The influence of material inhomogeneity on the mechanical response of polycrystalline tempered martensite steel, Energy Night, NUIG, Ireland, 8th, Mar. 2017.2. Li, M., Sun, F.W., Barrett, R.A., Li, D.F., O’Donoghue, P.E., O’Dowd, N.P., Leen, S.B., The influence of material inhomogeneity on the mechanical response of tempered martensite steel, Material Design and Application (MDA) conference, Porto, 29th, June, 2016.1. Li, M., Leen. S.B, Barrett, R.A., Scully, S., Joyce, D., O’Donoghue, P.E., High temperature, multi-material, cyclic plasticity of a P91 welded Branch-header connection under cyclic pressure . ASME Pressure Vessles & Piping conference, Boston, 19th ~ 23rd, July, 2015. 学术成果社会兼职 Social Appointments 1. Member of European Mechanics Society (欧洲力学学会), since 2022;2. Fellow of The Institution of Mechanical Engineers (FIMechE) (英国机械工程师学会成员),since 2019;3. Charted Engineer (CEng) (英国注册工程师), since 2019;4. Member of the Chinese Structural Integrity Consortium (中国结构完整性联盟成员) (CSIS), since 2021;5. Editorial Board Member of Journal of Applied Mechanics (应用力学学报青年编委), since 2022;6. 担任 Journal of the Mechanics and Physics of Solids, International Journal of Fatigue, Journal of Pressure Vessels & Piping, Fatigue & Fracture of Engineering Materials & Structures, Part L, Journal of Material: Design and Applications 等国际著名力学SCI期刊审稿人。 综合介绍 |