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的个人主页 https://teachers.jlu.edu.cn/lmzhou/zh_CN/index.htm
周立明,1982年出生,吉林大学“唐敖庆学者”英才教授,博士生导师。2001.09~2011.06,在吉林大学获得学士、硕士、博士学位;2011.11~2013.12,机械工程流动站博士后;2016.06~ 机械工程流动站博士后。2015年10月晋升吉林大学副教授,2020年10月晋升吉林大学教授,2018年评聘为博士生导师。
现任中国力学学会理事、吉林省力学学会理事长、吉林大学力学专业负责人、中国机械工业教育协会力学教学委员会委员、吉林大学机械与航空航天工程学院学术委员会委员,担任第三届应用力学与先进材料国际学术会议(ICAMAM 2024)的大会副主席、2024 International Conference on Aerospace and Mechanics (ICAM 2024)的联合主席等。获“2023年度中国机械工业科学技术奖”技术发明一等奖,2021年获全国高等学校教师自制实验教学仪器设备创新大赛自由设计一等奖(排名第2,全国仅10项)、商业路演铜奖(排名第2),主持国家级项目、省部级项目与企业项目30余项。近5年以第一作者或通信作者身份在Computer Methods in Applied Mechanics and Engineering (中科院大1区)、Composites Science and Technology (中科院大1区)等高水平期刊发表SCI论文50多篇,其中高被引论文3篇,国际权威学术期刊《Composite Structures》发表的10.1016/j.compstruct.2018.09.074被加拿大著名科研机构Advances in Engineering遴选为关键科学文章;获发明专利5件、软件著作权32件,指导吉林大学优秀研究生学位论文8篇,吉林省优秀博士学位论文2篇、吉林省硕士优秀学位论文2篇。
在科学研究方面,主要从事计算固体力学、原位测试与表征研究,提出了多物理场耦合光滑有限元法,推进了多物理场耦合光滑有限元分析模型和理论框架的建立,揭示了智能磁电弹性元器件的固有多场耦合特性及力学行为,突破了高温/复杂环境下力热耦合原位加载及原位测试技术,解决了智能复合材料服役性能测试与评价的难题。在工程应用方面,聚焦于核心力学性能的深度剖析与精准计算,为各类重型工程结构的安全与可靠提供技术支持。通过运用有限元工业软件及开发相关模型,对重型机械工程、航空航天、车辆工程等领域的结构进行力学建模,精准测算应力、应变、位移等关键指标,验证结构在静载、动载等复杂工况下的稳定性与可靠性。轻量化设计是从事的主要方向,通过拓扑优化、材料替代、结构优化等手段,去除结构冗余部分,有效降低自重,提升结构的轻质化,实现节能减排目标。在疲劳寿命分析方面,基于结构的真实工况,运用疲劳累积损伤理论,分析结构在循环载荷作用下的损伤演化过程,精准预测疲劳寿命,避免结构突发失效,为工程结构的全生命周期安全保驾护航。
2023年 指导吉林省优秀博士学位论文(兼获2022年吉林大学优秀博士学位论文)2篇
李明 2019411002 《新型多物理场耦合光滑有限元法研究》
任书慧 2019411005 《多物理场耦合稳定Node-based光滑径向基点插值法研究》
2024年 指导吉林省优秀硕士学位论文(兼获2023年吉林大学优秀硕士学位论文)1篇
曲芳亭 2020411002 《磁电弹材料的力-电-磁耦合等几何有限元法研究究》
2022年 指导吉林省优秀硕士学位论文(兼获2021年吉林大学优秀硕士学位论文)1篇
汤靖皓 2018412015 《力-电-磁-湿耦合非均匀Cell-based光滑有限元法研究》
2024年 指导吉林大学优秀硕士学位论文2篇
1. 高妍 2021412004 《磁电弹结构的力电磁热耦合Enriched有限元法研究》
2. 耿进文 2021412005 《基于CS-IGA方法的压电结构力学特性分析 》
2022年 指导优秀毕业研究生4人(博士2人,硕士2人)
任书慧 力学 博士 2019级 优秀毕业研究生 2019411005
李明 力学 博士 2019级 优秀毕业研究生 2019411002
刘延博 机械工程 硕士 2019级 优秀毕业研究生 2019414056
李昕彤 力学 硕士 2019级 优秀毕业研究生 2019412008
2020年 指导博士国家奖学金获得者2人
任书慧 力学 博士 2019级 2019411005
李明 力学 博士 2019级 2019411002
2019年 指导博士国家奖学金获得者2人
任书慧 力学 博士 2019级 2019411005
李明 力学 博士 2019级 2019411002
每年招收力学学术硕士3-4名,机械工程专业硕士3名。
主持或参加科研项目(课题情况)按时间倒序排序:
1. 吉林省科技厅重点研发-大型科研仪器功能开发项目,高温双轴拉伸/压缩材料力学性能原位测试仪功能开发与应用研究,20250206036ZP,2025.1-2026.12,48万,在研,主持
2. 国家自然科学基金委员会, 国家自然科学基金面上项目,51975243,防热复合材料超高温原位测试与多尺度耦合损伤失效机理研究,2020.1-2013.12,60万,结题,主持
3. 国家自然科学基金委员会, 国家重大科研仪器研制项目, 52227810, 共聚焦拉曼与微纳米压痕同步同位测试仪器研制, 2023-01-01 至 2027-12-31, 865万元, 在研, 参与
4. 国家重点研发计划“重大科学仪器设备开发”重点专项,2018YFF01012400,高温高频材料力学性能原位测试仪器开发与应用,2018.10-2021.09,1459万,结题,参与
5. 吉林省科技厅自然科学基金项目,20210101405JC,基于磁电换能效应的柔性磁传感器特性研究及应用,2021.07-2024.06,10万,在研,主持
6. 吉林省教育厅“十三五”科学研究规划项目,JJKH20220976KJ,异质叠层磁电传感器设计与制备关键技术研究,2022.01-2023.12,2.5万,结题,主持
7. 吉林省教育厅“十三五”科学研究规划项目,JJKH20180084KJ,非线性多物理场耦合作用下的磁电弹材料断裂机理研究,2018.01-2019.12,4万,结题,主持
8. 吉林省科技厅自然科学基金项目,20170101043JC,多物理场耦合作用下功能梯度压电材料的动态断裂机理研究及其仿生止裂结构设计开发,2017.01-2019.12,13万,结题,主持
9. 吉林省科技厅青年科研基金项目,20160520064JH,力-热-电耦合作用下功能梯度压电材料的断裂行为及其分析方法研究,2016.01-2018.12,6万,结题,主持
发表论文:
1 Wang CY, Zhou LM*. On the phase-field modeling of anisotropic fracture in functionally graded magneto-electro-elastic materials under hygrothermal environment. APPLIED MATHEMATICAL MODELLING, 2026, 156:116786.
2 Zhang Z, Cui B, Chen PX, Zhou LM*, Wu Y*. Hygro-thermo-mechanical-electro coupling inhomogeneous isogeometric analysis of functionally graded piezoelectric structures under hygrothermal environment. COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2026, 204:71-96.
3 Zhou LM, Liang GY, Wang JY, Zhu PP*. The adaptive thermo-mechanical-electro-magnetic enriched finite element method for statics analysis of functionally graded magneto-electro-elastic structures. FINITE ELEMENTS IN ANALYSIS AND DESIGN, 2026, 253:104476.
4 Wang CY, Zhou LM*. Fourth-order phase-field models with a novel family of degradation functions for brittle fracture in magneto-electro-elastic materials. ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2025, 178:106323.
5 Wang JY, Zhou LM*, Chai YB*. The adaptive hygrothermo-magneto-electro-elastic coupling improved enriched finite element method for functionally graded magneto–electro–elastic structures. THIN-WALLED STRUCTURES, 2024, 200:111970.
6 Wang, JY, Zhou LM*, Gao ZQ, Liu P*. The phase-field fracture model enriched by interpolation cover functions for brittle fracture problems. THIN-WALLED STRUCTURES, 2024, 197:111724.
7 Cai Y, Zhou LM*, Li M*. Fracture parameters evaluation for the cracked nonhomogeneous enamel based on the finite element method and virtual crack closure technique. FACTA UNIVERSITATIS-SERIES MECHANICAL ENGINEERING, 2023, 21.2:323-338.
8 Zhou LM*, Wang YZ, Chai YB*. Mechanic-electro coupling overlapping finite element method for piezoelectric structures. ARCHIVE OF APPLIED MECHANICS, 2024, 94.11:3429-3454.
9 Zhou LM, Wang JY, Wang YJ, Li XT, Chai YB*. The enriched finite element method-virtual crack closure technique for cracked structures. THIN-WALLED STRUCTURES, 2023, 187:110756.
10 Zhou LM*, Qu FT. The magneto-electro-elastic coupling isogeometric analysis method for the static and dynamic analysis of magneto-electro-elastic structures under thermal loading. COMPOSITE STRUCTURES, 2023, 315:116984.
11 Zhang QY, Xu MX, Zhou LM, Liu SH, Wang W, Zhang LT, Xie WF*, Yu CJ*. A flexible organic mechanoluminophore device. NATURE COMMUNICATIONS, 2023, 14(1), 1257.
12 Zhou LM, Wang JY, Liu MR, Li M*, Chai YB*. Evaluation of the transient performance of magneto-electro-elastic based structures with the enriched finite element method. COMPOSITE STRUCTURES, 2022, 280:114888.
13 Zhou LM, Yang H, Ma L, Zhang SZ*, Li XY*, Ren SH, Li M. On the static analysis of inhomogeneous magneto-electro-elastic plates in thermal environment via element-free Galerkin method. ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2022, 134:539-552.
14 Nie B, Meng GW, Ren SH, Wang JY, Ren Z, Zhou LM*, Liu P. Stable node-based smoothed radial point interpolation method for the dynamic analysis of the hygro-thermo-magneto-electro-elastic coupling problem. ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2022, 134: 435-452.
15 Zhou LM, Li M, Tang JH, Li F*, Zur KK. Evaluation of performance of magneto-electro-elastic sensor subjected to thermal-moisture coupled load via CS-FEM. THIN-WALLED STRUCTURES, 2021, 169:108370.
16 Zhou LM, Wang JY, Li XL, Liu CY*, Liu P*, Ren SH, Li M. The magneto-electro-elastic multi-physics coupling element free Galerkin method for smart structures in statics and dynamics problems. THIN-WALLED STRUCTURES, 2021, 169:108431.
17 Nie B, Ren SH, Li WQ, Zhou LM*, Liu CY*. The hygro-thermo-electro-mechanical coupling edge-based smoothed point interpolation method for the response of functionally graded piezoelectric structure under hygrothermal environment. ENGINEERING ANALYSIS WITH BOUNDARY ELEMENTS, 2021, 130:29-39.
18 Zhou LM, Tang JH, Tian WJ*, Xue B*, Li XY. A multi-physics coupling cell-based smoothed finite element micromechanical model for the transient response of magneto-electro-elastic structures with the asymptotic homogenization method. THIN-WALLED STRUCTURES, 2021, 165: 107991.
19 M Li, MR Liu, LM Zhou*. The static behaviors study of magneto-electro-elastic materials under hygrothermal environment with multi-physical cell-based smoothed finite element method, Composites Science and Technology, 2020, 193: 108130. (中科院大类1区小类1区)
20 SH Ren, GW Meng, B Nie, LM Zhou*, HW Zhao*. A novel stabilized node-based smoothed radial point interpolation method (SNS-RPIM) for coupling analysis of magneto-electro-elastic structures in hygrothermal environment, Computer Methods in Applied Mechanics and Engineering, 2020, 364: 112975. (中科院大类2区小类1区)
21 LM Zhou, SH Ren, B Nie, GK GUO, XY Cui*. Coupling Magneto-electro-elastic node-based smoothed radial point interpolation method for free vibration and transient analysis of Functionally Graded Magneto-Electro-Elastic structures. Chinese Journal of Aeronautics, 2020, 33 (1):227-243. (中科院大类2区)
22 ZC Ma, W Zhang, HW Zhao, FZ LU, ZH Zhang, LM Zhou*, LQ Ren. Enhanced strength and slightly reduced ductility in a high entropy alloy via cold rolling and annealing, Journal of Alloys and Compounds, 2020, 817: 152709. (中科院大类2区)
23 SH Ren, GW Meng, B Nie, LM Zhou*, HW Zhao*. A stabilized node-based smoothed radial point interpolation method for functionally graded magneto-electro-elastic structures in thermal environment, Composite Structures, 2020, 234: 111674. (中科院大类2区)
24 LM Zhou, M Li, Y Cai, HW Zhao*, EF Zhao*. The multi-physic cell-based smoothed finite element method for dynamic characterization of magneto-electro-elastic structures under thermal conditions, Composite Structures, 2020, 240: 112045. (中科院大类2区)
25 LM Zhou, SH Ren, GW Meng, ZC Ma*. Node-based smoothed radial point interpolation method for electromagnetic-thermal coupled analysis. Applied Mathematical Modelling, 2020, 78: 841-862. (中科院小类2区)
26 LM Zhou, SH Ren, CY Liu, ZC Ma*. A valid inhomogeneous cell-based smoothed finite element model for the transient characteristics of functionally graded magneto-electro-elastic structures. Compos Struct 2019;208:298-313. (中科院大类2区,高倍引论文)
27 LM Zhou, M Li, ZJ Ma, SH Ren, XL Li, JH Tang, ZC Ma*. Steady-state characteristics of the coupled magneto-electro-thermo-elastic multi-physical system based on cell-based smoothed finite element method. Compos Struct 2019; 219:111-128. (中科院大类2区)
28 LM Zhou, M Li, WJ Tian, P Liu*. Coupled multi-physical cell-based smoothed finite element method for static analysis of functionally grade magneto-electro-elastic structures at uniform temperature. Compos Struct 2019; 226:111238. (中科院大类2区)
29 Xue B, Wei BT, Ruan LX, Li FF, Jiang YS, Tian WJ, Su B, Zhou LM*. The influencing factor study on the extraction of gallium from red mud. Hydrometallurgy 2019; 186:91-97. (中科院大类2区)
30 EF Zhao, YN LU, K Cheng, LM Zhou*, WH Sun, GW Meng. Buckling failure analysis of swing outrigger used in pump truck. Engineering Failure Analysis, 2019; 105: 555-565. (中科院大类3区)
31 LM Zhou, SH Ren, GW Meng, XL Li, F Cheng*. A multi-physics node-based smoothed radial point interpolation method for transient responses of magneto-electro-elastic structures. Eng Anal Bound Elem 2019;101:371-384. (中科院大类3区)
32 LM Zhou, SH Ren, B Nie, HR Yang, P Liu*. Magneto-electro-elastic node-based smoothed point interpolation method for micromechanical analysis of natural frequencies of nanobeams. Acta Mechanica, 2019, 230:3645-3666. (中科院大类3区)
33 LM Zhou, B Nie, SH Ren, RY Liu, XL Li, Bing Xue*. Coupling magneto-electro-elastic cell-based smoothed radial point interpolation method for static and dynamic characterization of MEE structures. Acta Mechanica 2019; 230:1641-1662. (中科院大类3区)
34 LM Zhou, M Li, BK Chen, F Li, XL Li*. An inhomogeneous cell-based smoothed finite element method for the nonlinear transient response of functionally graded magneto-electro-elastic structures with damping factors. J Intel Mat Syst Str 2019;30(3):416-37. (中科院大类3区)
35 LM Zhou*, M Li, GW Meng, HW Zhao. An effective cell-based smoothed finite element model for the transient responses of magneto-electro-elastic structures. J Intel Mat Syst Str 2018;29:3006-22. (中科院大类3区)
36 LM Zhou, M Li, HW Zhao, WJ Tian. Cell-Based Smoothed Finite Element Method for the Intensity Factors of Piezoelectric Bimaterials with Interfacial Crack. International Journal of Computational Methods 2019, 16: 1850107.
37 LM Zhou*, SH Ren, Y Cai, F Li*. An Efficient Cell-Based Smoothed Finite Element Method for Free Vibrations of Magneto-electro-elastic Beams. International Journal of Computational Methods 2020; 17(4):1950001.
38 GW Meng, LH Wang, QX Zhang, SH Ren, XL Li and LM Zhou*. Coupled Thermal–Electrical–Mechanical Inhomogeneous Cell-Based Smoothed Finite Element Method for Transient Responses of Functionally Graded Piezoelectric Structures to Dynamic Loadings. International Journal of Computational Methods 2020; 17(5):1950012.
39 Ma ZC, Ma XX, Zhao HW, Zhang F, Zhou LM*, Ren LQ. Novel Crystallization Behaviors of Zr-Based Metallic Glass Under Thermo-Mechanical Coupled Fatigue Loading Condition. Acta Metallurgica Sinica (English Letters) 2019; 32:797-802. (中科院小类3区)
40 Ma ZC, Zhao HW, Du XJ, Ma XX, Qiang ZF, Zhang F, Zhou LM*, Ren LQ. Static and cyclic mechanical behaviours and fracture mechanisms of Zr-based metallic glass at elevated temperatures. Philosophical Magazine 2019; 99:835-852. (中科院大类3区)
通信地址:
吉林省长春市吉林大学机械与航空航天工程学院工程力学系
邮箱: lmzhou@jlu.edu.cn; 电话: +86 13756530857; QQ: 78728616; 微信: 13756530857
网址: https://teachers.jlu.edu.cn/lmzhou
吉林大学  固体力学  博士研究生毕业  工学博士
吉林大学  工程力学  硕士研究生毕业  工学硕士
吉林大学  机械工程  大学本科毕业  学士学位
吉林大学机械科学与工程学院 力学 教授
吉林大学 机械科学与工程学院 博士后
吉林大学 机械科学与工程学院 副教授
吉林大学 机械科学与工程学院 讲师
中国机械工业教育协会力学教学委员会委员
国际SCI期刊“Frontiers of Mechanical Engineering”特刊"Mathematical Modelling of Size-dependent Behavior of Micro/Nano-Structures and Systems"客座编辑
Composites Part B: Engineering,Journal of Manufacturing Processes,Journal of Intelligent Material Systems and Structures,Thin-walled Structures,Composite Structures,Chinese Journal of Aeronautics,ENGINEERING STRUCTURES,Journal of Materials Science,Mathematical Methods in the Applied Sciences,Micro & Nano Letters,Micromachines, Journal of Applied and Computational Mechanics,《上海交通大学学报》、《西北工业大学学报》、《湖南大学学报》、《东北大学学报 自然科学版》、《力学季刊》,《应用力学学报》等期刊审稿人。