高翔

副教授

所在系所:智能汽车研究所

电子邮件:xianggao9312@sjtu.edu.cn

通讯地址:上海市闵行区东川路800号机械楼A楼227室

个人主页: https://scholar.google.com/citations?hl=zh-CN&user=HmN6QccAAAAJ&view_op=list_works&sortby=pubdate

个人简介
教学工作
科研工作
荣誉奖励

教育背景

2018-2021 北卡罗莱纳大学夏洛特分校 博士
2016-2018 北京航空航天大学 博士研究生
2012-2016 北京航空航天大学 学士

工作经历

2024.11 - 至今,副教授,博导,机械与动力工程学院,上海交通大学,上海,中国
2023.10-2024.10,博士后研究员,机械工程学院,特拉华大学,纽瓦克,美国
2021.05-2023.08,博士后研究员,机械工程与工程科学学院,北卡罗莱纳大学夏洛特分校,夏洛特,美国

研究方向

1.高容量密度锂电池材料

2.全固态电池

3.多尺度多物理场计算模型与大数据模型

4.锂离子电池安全性研究

学术兼职

• SCI期刊《Batteries》(IF=4)特刊 “Battery Safety: Recent Advances and Perspective”客座编辑(Leading Guest Editor)。
• 美国机械工程师协会(ASME)电化学能源转化与存储分会技术委员会 副主席
• 美国机械工程师协会(ASME)多功能材料分会技术委员会 委员
• 国际机械工程大会及博览会(IMECE)演讲主题组织者(2021-2024年)

2021-2023 美国北卡罗莱纳大学夏洛特分校(UNC Charlotte)
• 本科生:Introduction to Finite Element Analysis
• 本科生:Solid Mechanics
• 本科生:Basic Electric Labs

科研项目

回国前:
• 通过印刷技术实现先进电极结构,美国能源部,100万美元,主要参与,结题。
• 锂离子电池多尺度多物理场模拟及失效分析,珠海冠宇电池股份有限公司,10万美元,主要参与,结题。
• 锂离子电池多物理场模拟方法研究,澳汰尔工程软件有限公司,5万美元,主要参与,结题。
• 锂离子电池多物理场模拟方法,达索系统公司,5万美元,参与,结题。

代表性论文专著

[1] X. Gao, J. Xu. Carbon Binder Domain (CBD) Inhomogeneity in SiO/Graphite Composite Anode, Advanced Science, (2024) 2400729.
[2] X. Gao, J. Xu, Impedance inhomogeneity in SiO/Gr composite anode, Small Science, (2024), 2300291.
[3] X. Gao, S. Li, J. Xue, D. Hu, J. Xu. A Mechanistic and Quantitative Understanding of the Interactions between SiO and Graphite Particles. Advanced Energy Materials (2023) 2202584.
[4] X. Gao, S. Li, J. Xue, D. Hu, J. Xu. Toward A Fundamental Understanding of The Heterogeneous Multiphysics Behaviors of SiO/Gr Composite Anodes. Carbon Energy (2023) e385.
[5] X. Gao, Y. Jia, W. Lu, Q. Wu, X. Huang, J. Xu. Mechanistic Understanding of Reproducibility in Nail Penetration Tests. Cell Reports Physical Science 4 (2023) 1101542.
[6] Y. Jia, X. Gao, L. Ma, J. Xu. Comprehensive Battery Safety Risk Evaluation: Aged Cells versus Fresh Cells Upon Mechanical Abusive Loadings. Advanced Energy Materials (2023) 2300368.
[7] X. Duan, B. Li, X. Gao, L. Wang, J. Xu. Quantitative Understanding of Lithium Deposition-Stripping Process on Graphite Anodes of Lithium‐Ion Batteries. Advanced Energy Materials (2023) 2203767.
[8] X. Duan, J. Li, X. Gao, L. Wang, J. Xu, Understanding of Stress‐Driven Internal Short Circuit Mechanisms in Lithium‐Ion Batteries with High SOCs. Advanced Science (2023) 2302496.
[9] K. Ogata, Y. Kasuya, X. Gao, Y. Shibayama, A. Takagi, A. Yonezu, J. Xu, Adhesion Strength of an Active Material Layer/Cu Foil Interface in Silicon-Based Anodes. ACS Applied Materials & Interfaces 16 (2024), 17692-17700.
[10] X. Gao, C. Chak, Q. Hao, D. Zeng, J. Xu. Thermal Safety of Lithium-ion Batteries: Mechanism, Modeling, and Characterizations (Invited). Annual Review of Heat Transfer (2023) 669-129.
[11] X. Gao, Y. Jia, W. Zhang, C. Yuan, J. Xu. Mechanics-driven anode material failure in battery safety and capacity deterioration issues: A Review, Applied Mechanics Review 74 (2022), 060801.
[12] X. Gao, J. Xu. 3D modeling of electrochemical behavior in SiO/Gr composite anode for high energy density lithium-ion battery. Journal of Electrochemical Energy Conversion and Storage 19 (2022), 041004.
[13] X. Gao, W. Lu, J. Xu. Unlocking multiphysics design guidelines on Si/C composite nanostructures for high-energy-density and robust lithium-ion battery anode. Nano Energy 81 (2021) 105591.
[14] X. Gao, W. Lu, J. Xu. Insight into li diffusion mechanism in Si/C composite anodes for lithium-ion batteries. ACS Applied Materials & Interfaces 13 (2021) 21362-21370.
[15] X. Gao, J. Xu. Multiscale Modeling of Electro-Chemo-Mechanical Degradation in Si/C Core–Shell Anode for the Lithium-Ion Battery of High Energy Density. Journal of Electrochemical Energy Conversion and Storage 18 (2021) 020903.
[16] Y. Jia, J. Li, C. Yuan, X. Gao, W. Yao, M. Lee, J. Xu. Data-driven safety risk prediction of lithium-ion battery. Advanced Energy Materials (2021) 2003868.
[17] C. Yuan, X. Gao, Y. Jia, W. Zhang, Q. Wu, J. Xu. Coupled crack propagation and dendrite growth in solid electrolyte of all-solid-state battery. Nano Energy 86 (2021) 106057.
[18] Y. Jia, X. Gao, J. Mouillet, J. Terrier, P. Lombard, J. Xu. Effective thermo-electro-mechanical modeling framework of lithium-ion batteries based on a representative volume element approach. Journal of Energy Storage 33 (2021) 102090.
[19] B. Liu, Y. Jia, C. Yuan, L. Wang, X. Gao, S. Yin, J. Xu. Safety issues and mechanisms of lithium-ion battery cell upon mechanical abusive loading: A review, Energy Storage Materials 24 (2020) 85-112.
[20] S. Yin, Z. Hong, Z. Hu, B. Liu, X. Gao, Y. Li, J. Xu. Fabrication and multiphysics modeling of modified carbon fiber as structural anodes for lithium-ion batteries. Journal of Power Sources 476 (2020) 228532.
[21] C. Yuan, X. Gao, H. Wong, B. Feng, J. Xu. A multiphysics computational framework for cylindrical battery behavior upon mechanical loading based on LS-DYNA. Journal of Electrochemical Society 166 (2020) A1160.
[22] X. Gao, J. Xu. Modeling of Contact Stress Among Compound Particles in High Energy Lithium-ion Battery, Energy Storage Materials 18 (2019) 23-33.
[23] X. Gao, W. Lu, J. Xu. Modeling framework for multiphysics-multiscale behavior of Si–C composite anode. Journal of Power Sources 449 (2019) 227501.
[24] J. Xu, Y. Wu, X. Gao, H. Wu, N. Steven, S. Yin. Design of composite lattice materials combined with fabrication approaches, Journal of Composite Materials 0 (2018) 1-12.
[25] J. Xu, X. Gao, C. Zhang, Y. Sha. Flax Fiber-reinforced Composite Lattice Cores: A Low-cost and Recyclable Approach, Materials & Design 133 (2017) 444-454.
[26] J. Xu, W. Zhang, X. Gao, W. Meng, J. Guan. Strain rate and anisotropic microstructure dependent mechanical behaviors of silkworm cocoon shells. PLoS One 11 (2016) e0149931.

软件版权登记及专利

[1] 许骏,高翔,刘冰河,王璐冰。一种纤维状结构的锂离子电池及制备方法。中国专利:ZL2017109095602.3 (已授权)
[2] 殷莎,吴垚博,高翔,许骏。基于点阵单胞蜂窝结构的汽车保险杠和汽车。中国专利:ZL201510134396.3 (已授权)
[3] 许骏,孟万林,张雯,高翔。基于蚕茧的多层塑料油箱。中国专利:ZL201510134396.3 (已授权)
[4] 殷莎,高翔,张翀,许骏。点阵单胞蜂窝结构和单条结构的制备方法。中国专利:CN201610094768 (已授权)

• 2023年,美国电化学学会(ECS)电池分会 “MTI Corporation and the Jiang Family基金博士后研究奖” (每年1-2名)
• 2022年,第242届美国电化学学会(ECS)会议 “旅行基金奖”
• 2021年,2021电动汽车与电池安全会议(ABSC) “澳汰尔青年科学家奖”

Baidu
map