长续航锂离子动力蓄电池热滥用模型的有限元模拟研究任务书
2020-06-11 22:20:57
1. 毕业设计(论文)的内容和要求
以长续航锂离子电池为研究对象,对其热滥用工况进行模拟研究
2. 参考文献
(1) Baggetto, L.; Niessen, R. A. H.; Roozeboom, F.; Notten, P. H. L.High Energy Density All-Solid-State Batteries: A Challenging Concept Towards 3D Integration. Adv. Funct. Mater. 2008, 18 (7), 1057-1066.
(2) Ferrari, S.; Loveridge, M.; Beattie, S. D.; Jahn, M.; Dashwood, R.J.; Bhagat, R. Latest Advances in the Manufacturing of 3D Rechargeable Lithium Microbatteries. J. Power Sources 2015, 286, 25-46.
(3) Long, J. W.; Dunn, B.; Rolison D.R.; White, H.S. ThreeDimensional Battery Architectures. Chem. Rev. 2004, 104(10), 4463-4492.
(4) Bachman, J. C.; Muy, S.; Grimaud, A.; Chang, H.-H.;Pour, N.; Lux, S. F.; Paschos, O.; Maglia, F.; Lupart, S.; Lamp, P.; Giordano, L.; Shao-Horn, Y. Inorganic Solid-State Electrolytes for Lithium Batteries: Mechanisms and Properties Governing Ion Conduction. Chem. Rev.2016, 116 (1), 140-62.
(5) Dudney, N. J.; Jang, Y. I. Analysis of Thin-film Lithium Batteries with Cathodes of 50 nm to 4 μm Thick LiCoO2. J. Power Sources 2003, 119-121, 300-304.
3. 毕业设计(论文)进程安排
2017.1.1-2017.1.13 文献检索、文献翻译 2017.02.20-2017.03.10 完成开题报告 2017.03.10-2017.4.30论文写作 2017.5-2017.6 绘制图纸