教学 本科生教学:《工程力学》等 研究生教学: 科研 科研兴趣:固态电池界面分层和电解质开裂、钠/锂离子电池储能材料力-电-化耦合建模和模拟、相场理论、扩散和相变、裂纹扩展、大变形、晶体学设计、有限元计算 科研项目:承担德国唯一的电池研究卓越集群(Post Lithium Storage Cluster of Excellence)子课题(约134万/3.64亿)、美国南加州大学科研项目(约25万)和德国KHYS研究基金(约9万),参与美国空军研究实验室项目(约325万)等。 代表性成果 [1]Zhang, T.* , Kamlah, M., and McMeeking, R.M.. Modeling storage particle delamination and electrolyte cracking in cathodes of solid state batteries. Journal of the Mechanics and Physics of Solids, 2024, 185: 105551. [2]Zhang, T., Zhang, D., and Balakrishna, A.R.. Coupling Diffusion and Finite Deformation in Phase Transformation Materials. Journal of the Mechanics and Physics of Solids, 2024, 183: 105501.
[3]Zhang, T.*, Sotoudeh, M., Groß, A., McMeeking, R.M., and Kamlah, M.. 3D microstructure evolution in NaxFePO4 storage particles for sodium ion batteries. Journal of Power Sources, 2023, 565: 232902.
[4]Ciavarella, M., Zhang, T., and McMeeking, R.M.. External work rate and dissipation during crack growth in a viscoelastic material. Journal of the Mechanics and Physics of Solids, 2022, 169: 105096.
[5]Zhang, T.* and Kamlah, M.. Microstructure evolution and intermediate phase-induced varying solubility limits and stress reduction behavior in sodium ion batteries particles of NaxFePO4 (0 < x < 1). Journal of Power Sources, 2021, 483: 229187. [6] Zhang, T.* and Kamlah, M.. Phase-field modeling of the particle size and average concentration dependent miscibility gap in nanoparticles of LixMn2O4, LixFePO4, and NaxFePO4 during insertion. Electrochimica Acta, 2019, 298: 31-42.
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