The thermal runaway model used is a semi-empirical model based on a kinetic equation, parametrised by three parameters (m,n,p). It is believed that this kinetic equation can describe any reaction. The choice of parameters is often made without justifications. We assumed it necessary to develop a method to select the parameters. The method proposed is based on data coming from an accelerating rate calorimeter (ARC) test. The method has been applied on data obtained for cells aged on different conditions. Thanks to a post-mortem analysis and simulations carried out using the parameters obtained, we have shown that the ageing mechanisms have a major impact on the parameters
In this work, commercial 18650 lithium-ion cells with LiMn2O4, LiFePO4, and Li(Ni0.33Mn0.33Co0.33)O2...
Li-ion batteries are already being used in several applications, from portable devices to the automo...
Lithium-ion batteries have gained a vast and ever-growing popularity as the choice for a high energy...
International audienceThermal runaway model used is a semi-empirical model based on a kinetic equati...
The thermal runaway (TR) is the main safety concern of lithium-ion batteries (LIBs). Methods for pre...
International audienceAmong different solutions for storage systems dedicated to stationary and auto...
The thermal runaway (TR) is one of the most dangerous phenomena related to lithium-ion batteries. Fo...
Lithium ion (Li-ion) cells are the most prominent electrochemical energy storage device in todays wo...
International audienceLi-ion secondary rechargeable batteries are becoming the preferred solution to...
International audienceThe main safety issue pertaining to operating Li-ion batteries is relating to ...
Li-ion batteries are currently the preferred solution to store electrical energy. However, their saf...
The thermal behavior of Li-ion cells is an important safety issue and has to be known under varying ...
Understanding the behavior of Li-ion cells during thermal runaway is critical to evaluate the safety...
The thermal behavior of Li-ion cells is an important safety issue and has to be known under varying ...
A particular safety issue with Lithium-ion (Li-ion) cells is thermal runaway (TR), which is the exot...
In this work, commercial 18650 lithium-ion cells with LiMn2O4, LiFePO4, and Li(Ni0.33Mn0.33Co0.33)O2...
Li-ion batteries are already being used in several applications, from portable devices to the automo...
Lithium-ion batteries have gained a vast and ever-growing popularity as the choice for a high energy...
International audienceThermal runaway model used is a semi-empirical model based on a kinetic equati...
The thermal runaway (TR) is the main safety concern of lithium-ion batteries (LIBs). Methods for pre...
International audienceAmong different solutions for storage systems dedicated to stationary and auto...
The thermal runaway (TR) is one of the most dangerous phenomena related to lithium-ion batteries. Fo...
Lithium ion (Li-ion) cells are the most prominent electrochemical energy storage device in todays wo...
International audienceLi-ion secondary rechargeable batteries are becoming the preferred solution to...
International audienceThe main safety issue pertaining to operating Li-ion batteries is relating to ...
Li-ion batteries are currently the preferred solution to store electrical energy. However, their saf...
The thermal behavior of Li-ion cells is an important safety issue and has to be known under varying ...
Understanding the behavior of Li-ion cells during thermal runaway is critical to evaluate the safety...
The thermal behavior of Li-ion cells is an important safety issue and has to be known under varying ...
A particular safety issue with Lithium-ion (Li-ion) cells is thermal runaway (TR), which is the exot...
In this work, commercial 18650 lithium-ion cells with LiMn2O4, LiFePO4, and Li(Ni0.33Mn0.33Co0.33)O2...
Li-ion batteries are already being used in several applications, from portable devices to the automo...
Lithium-ion batteries have gained a vast and ever-growing popularity as the choice for a high energy...