Computed Tomography Analysis of Li-Ion Battery Case Ruptures

Author:

Kong LingxiORCID,Hu Xiaosong,Gui Guan,Su Yan,Pecht Michael

Publisher

Springer Science and Business Media LLC

Subject

Safety, Risk, Reliability and Quality,General Materials Science

Reference23 articles.

1. Ditch B (2018) The impact of thermal runaway on sprinkler protection recommendations for warehouse storage of cartoned lithium-ion batteries. Fire Technol 54:359–377. https://doi.org/10.1007/s10694-017-0687-6

2. Wang Q, Shao G, Duan Q, Chen M, Li Y, Wu K, Liu B, Peng P, Sun J (2016) The efficiency of heptafluoropropane fire extinguishing agent on suppressing the lithium titanate battery fire. Fire Technol 52:387–396. https://doi.org/10.1007/s10694-015-0531-9

3. Chen M, He Y, De Zhou C, Richard Y, Wang J (2016) Experimental study on the combustion characteristics of primary lithium batteries fire. Fire Technol 52:365–385. https://doi.org/10.1007/s10694-014-0450-1

4. Yenduri A, Sumant O (2018) Lithium ion battery market by component (cathode, anode, electrolytic solution, and others) and end-use industry (electrical & electronics, automotive, and industrial): global opportunity analysis and industry forecast, 2018 - 2025. https://www.alliedmarketresearch.com/lithium-ion-battery-market. Accessed 8 Nov 2019

5. FAA Office of Security and Hazardous Materials Safety (2019) Events with smoke, fire, extreme heat or explosion involving lithium batteries. https://www.faa.gov/hazmat/resources/lithium_batteries/media/Battery_incident_chart.pdf. Accessed 8 Nov 2019

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