The Cell Cooling Coefficient for Lithium Ion Batteries

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  • čas přidán 10. 09. 2024

Komentáře • 10

  • @vasuguvera5912
    @vasuguvera5912 Před 4 lety +4

    Thank you for such wonderful explanation about the cell cooling coefficient effect on battery performance. any layman can get to understand about the process. once again thank you for your such hard research work.

  • @meghanack9219
    @meghanack9219 Před 3 lety +1

    thanks for the video it was really helpful 😊

  • @christianad5358
    @christianad5358 Před 3 lety +1

    There is a mistake in min 3:15 approx. It says 40 degrees below, and it’s *Above

    • @electrochemicalscienceande8804
      @electrochemicalscienceande8804  Před 3 lety +1

      We are trying to demonstrate that very large temperature gradients are required on some tab cooled cells because their tabs are not well designed for tab cooling. In this example, we highlight that the tabs must be kept 40degC below the maximum temperature of the cell in operation in order to remove the heat through the tabs at the required rate

  • @adrianlangridge8282
    @adrianlangridge8282 Před 2 lety +2

    Why not use both TAB and surface cooling techniques?

  • @kunalpardikar7402
    @kunalpardikar7402 Před 3 lety +1

    What software do you use to create these animations in this video?

  • @kunalpardikar7402
    @kunalpardikar7402 Před 3 lety +1

    Is thermal runaway the same as short circuit due to dendrite growth?

    • @electrochemicalscienceande8804
      @electrochemicalscienceande8804  Před 3 lety +2

      In extreme cases, dendrite growth can cause an internal short-circuit within any lithium-ion battery. An internal short-circuit can lead to rapid heat generation from the battery and thermal runaway. Thermal runaway can also be caused by other events, for example through mechanical stress to the battery or through over-charging of the battery. Thermal runaway refers to any case where the battery self-heats and then rises very rapidly in temperature. We recently published a review on fire safety in lithium-ion batteries which is open access and can be found here: iopscience.iop.org/article/10.1149/1945-7111/aba8b9/meta