Experiment on Extinguishing Thermal Runaway in a Scaled-Down Model of an Electric Vehicle Battery
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s12239-024-00065-z.pdf
Reference19 articles.
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2. Fang, J., Cai, J., & He, X. (2021). Experimental study on the vertical thermal runaway propagation in cylindrical Lithium-ion batteries: Effects of spacing and state of charge. Applied Thermal Engineering, 197, 117399.
3. Feng, X., Sun, J., Ouyang, M., Wang, F., He, X., Lu, L., & Peng, H. (2015). Characterization of penetration induced thermal runaway propagation process within a large format lithium ion battery module. Journal of Power Sources, 275, 261–273.
4. Held, M., Tuchschmid, M., Zennegg, M., Figi, R., Schreiner, C., Mellert, L. D., & Nachef, L. (2022). Thermal runaway and fire of electric vehicle lithium-ion battery and contamination of infrastructure facility. Renewable and Sustainable Energy Reviews, 165, 112474.
5. Huang, P., Ping, P., Li, K., Chen, H., Wang, Q., Wen, J., & Sun, J. (2016). Experimental and modeling analysis of thermal runaway propagation over the large format energy storage battery module with Li4Ti5O12 anode. Applied Energy, 183, 659–673.
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