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陆勇俊

发布日期:2026年04月13日 来源: 作者: 点击:

姓名:陆勇俊

一、个人基本情况

性别:男

出生年月:1990年09月

政治面貌:中共党员

职称:讲师

最后学历、学位:研究生、博士

E-mail:luyongjun@csust.edu.cn

二、主要学习及工作经历

1. 主要学习经历(从本科写起)

(1)2009年09月—2013年07月,西北工业大学,力学与交通运载工程学院,工程力学专业,本科;

(2)2013年09月—2015年09月,西北工业大学,力学与交通运载工程学院,固体力学专业,硕士;

(3)2015年09月—2024年12月,西北工业大学,力学与交通运载工程学院,力学专业,博士。

2. 主要工作经历

(1)2025年02月—2025年09月,西湖大学,博士后(助理研究员);

三、学科专业领域及主要研究方向

学科专业领域:力学与工程科学

主要研究方向:面向航空、航天、航海工程及其新型能源系统(氢燃料电池、锂离子电池及固态电池等)在各种制造及服役条件下先进材料和结构的力学及多物理场耦合问题理论及应用研究。

四、主要科研成果

1.代表性论文/专著:

1表示贡献相等,*表示通讯作者)

(1)Shang S,Lu Y*, Zhou H, Bi H, Li L. An Extended Energy-based Method for Dendritic Cracking in Solid-State Batteries.Acta Materialia. 2026.

(2)Y. Lu, Q. Che, X. Song, F. Wang, & X. Zhao, Stressself-relaxation arising from diffusion-induced creep in bilayer lithium-ion battery electrode.Scripta Materialia,2018,150: 164-167.

(3)Y. Lu, P. Zhang, F. Wang, K. Zhang, & X. Zhao, Reaction-diffusion-stress coupling model for Li-ion batteries: The role of surface effects on electrochemical performance.Electrochimica Acta, 2018, 274: 359-369.

(4)Y. Lu, K. Zhang, F. Wang, K. Lou, X. Zhao. Enhanced and weakened strength in brittle film-substrate structure.Materials & Design, 2016,108:455-461.

(5)陆勇俊,杨溢,王峰会,楼康,赵翔。连续梯度的功能层对燃料电池在初始还原过程中曲率及残余应力的影响。物理学报,2016,65(9): 098102.

(6)陆勇俊,张欢庆,王峰会,杨溢,楼康。扩展有限元法在结构件疲劳寿命估算中的应用。应用力学学报,2016, 33(3): 0441-06.

(7)D.Luo1,Y. Lu1,G. Zhu*, J. Li, X. Liu, H. Zhang*.Recycled micro-sized silicon anode for fast and highly stable lithium-ion storageviainterface design engineering.Journal of Energy Chemistry, 2025,107:63-73.

(8)张凯,徐鹏,关学锋,杜玉群,王柯杰,陆勇俊*。力学约束对锂离子电池双层电极中锂扩散和应力的影响.物理学报, 2025, 74(2): 020201.

(9)Yang S1,Lu Y1, Liu B, Che Q,Wang F. Modeling of cooperative defect transport and thermal mismatch in a planar solid oxide fuel cell.International Journal of Hydrogen Energy. 2023,48(33):12461-73.

(10)Shang S1,Lu Y1, Yu Z, Wang J, Wang F. Concurrent diffusion and creep in lithium-ion batteries.Mechanics of Materials. 2021,155:103731.

(11)X. Song1,Y. Lu1, F. Wang, X. Zhao, H. Chen. A coupled electro-chemo-mechanical model for all-solid-state thin film Li-ion batteries: The effects of bending on battery performances.Journal of Power Sources, 2020, 452: 227803.

(12)S. Shang,Y. Lu*, X. Cao, X. Song, M. Shi, F. Wang*. A model for oxidation-induced stress analysis of Ni-based anode-supported planar solid oxide fuel cell.International Journal of Hydrogen Energy, 2019, 44(31): 16956-16964.

(13)S. Shang,Y. Lu*, A. Zhang, X. Cao, F. Wang*, X. Zhao, Modeling cooperative creep reoxidation effect on the mechanical stability of anode‐supported solid oxide fuel cell.International Journal of Energy Research, 2018, 42(15): 4909-4916.

(14)Cao X,Lu Y, Chen Z, Zhao X, & Wang F. Phase-field investigation of dendrite suppression strategies for all-solid-state lithium metal batteries.Journal of Energy Storage. 2024, 99:113309.

(15)Cao X,Lu Y, Chen Z, Zhang K, & Wang F. A chemo-mechanical phase-field framework for dynamic fracture with viscoplastic flow for large-deformed electrode in lithium-ion batteries.Journal of Alloys and Compounds. 2023, 965:171387.

(16)Cao X,Lu Y, Song X, Yuan Z, & Wang F. Perspective of unstable solid electrolyte interphase induced lithium dendrite growth: Role of thermal effect.Electrochimica Acta. 2023, 439:141722.

(17)Song X,Lu Y, Cao X, Wang F, & Zhao X. Plastic dissipation of high-capacity electrode materials during lithiation and de-lithiation processes.Acta Mechanica. 2022, 233(6):2369-92.

(18)Song X,Lu Y, Li C, Wang F, & Zhao X. Enhancing the mechanical stability of composite electrodes by regulating the volume of active material using a prelithiation strategy.Journal of Energy Storage. 2022, 51:104390.

(19)尚帅朋,陆勇俊, 王峰会. 表面效应对纳米线电极屈曲失稳的影响.物理学报, 2022, 71(3): 033101.

(20)Cao X,Lu Y, Jiang H, & Wang F. Phase-field modeling of chemo-mechanical relaxation effect on the fracture tolerance of a tin-based electrode.Mechanics of Materials. 2020, 148:103502.

2. 所获奖励

(1)(2016、2018)两次研究生国家奖学金

(2)西北工业大学研究生荣誉称号:“自强之星”(全校仅2人)、“公益之星”(全校仅5人)