Abuse behavior of high-power, lithium-ion cells

Abuse behavior of high-power, lithium-ion cells Published accounts of abuse testing of lithium-ion cells and components are summarized, including modeling work. From this summary, a set of exothermic reactions is selected with corresponding estimates of heats of reaction. Using this set of reactions, along with estimated kinetic parameters and designs for high-rate batteries, models for the abuse behavior (oven, short-circuit, overcharge, nail, crush) are developed. Finally, the models are used to determine that fluorinated binder plays a relatively unimportant role in thermal runaway. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of Power Sources Elsevier

Abuse behavior of high-power, lithium-ion cells

Journal of Power Sources, Volume 113 (1) – Jan 1, 2003

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Publisher
Elsevier
Copyright
Copyright © 2002 Elsevier Science B.V.
ISSN
0378-7753
D.O.I.
10.1016/S0378-7753(02)00488-3
Publisher site
See Article on Publisher Site

Abstract

Published accounts of abuse testing of lithium-ion cells and components are summarized, including modeling work. From this summary, a set of exothermic reactions is selected with corresponding estimates of heats of reaction. Using this set of reactions, along with estimated kinetic parameters and designs for high-rate batteries, models for the abuse behavior (oven, short-circuit, overcharge, nail, crush) are developed. Finally, the models are used to determine that fluorinated binder plays a relatively unimportant role in thermal runaway.

Journal

Journal of Power SourcesElsevier

Published: Jan 1, 2003

References

  • Electrochem. Commun.
    Venkatachalapathy, R.; Lee, C.W.; Lu, W.; Prakash, J.
  • J. Power Sources
    Biensan, Ph.; Simon, B.; Peres, J.P.; de Guibert, A.; Broussely, M.; Bodet, J.M.; Perton, F.
  • J. Power Sources
    Tobishima, S.; Yamaki, J.

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