The thermal runaway (TR) is one of the most dangerous phenomena related to lithium-ion batteries. For this reason, there are different proposals in the literature for its modelling. Most of these proposed models take into account the decomposition reactions between the internal components of the cell, and base the adjustment of the parameters on numerous abuse tests that lead to the appearance of TR. However, these tests are destructive, require specific equipment, present a high economic cost and are very time consuming. This paper proposes a modelling method which enables the development of TR models with the use of fewer resources. This method is based on chemical kinetics, which allow a simplification of the general modelling process pu...
The thermal runaway model used is a semi-empirical model based on a kinetic equation, parametrised b...
The proliferation of lithium-ion batteries enables electric devices such as cell phones to electric ...
[EN] The urgent need for reducing the carbon dioxide emissions has led to the powertrain electrifica...
The thermal runaway (TR) is the main safety concern of lithium-ion batteries (LIBs). Methods for pre...
International audienceThe main safety issue pertaining to operating Li-ion batteries is relating to ...
[EN] This paper presents a novelsimulation approach consisting of coupling fundamental and applicate...
Li-ion batteries are currently the preferred solution to store electrical energy. However, their saf...
Lithium-ion batteries have gained a vast and ever-growing popularity as the choice for a high energy...
Lithium ion (Li-ion) cells are the most prominent electrochemical energy storage device in todays wo...
The high capacity and voltage properties demonstrated by lithium-ion batteries render them as the pr...
International audienceLi-ion secondary rechargeable batteries are becoming the preferred solution to...
Since the commercialization of Lithium-Ion Battery (LIB) by Sony Inc. in 1991 until today, recurrent...
Les batteries lithium-ion s'affichent comme de bons candidats pour assurer le stockage réversible de...
The thermal runaway model used is a semi-empirical model based on a kinetic equation, parametrised b...
The proliferation of lithium-ion batteries enables electric devices such as cell phones to electric ...
[EN] The urgent need for reducing the carbon dioxide emissions has led to the powertrain electrifica...
The thermal runaway (TR) is the main safety concern of lithium-ion batteries (LIBs). Methods for pre...
International audienceThe main safety issue pertaining to operating Li-ion batteries is relating to ...
[EN] This paper presents a novelsimulation approach consisting of coupling fundamental and applicate...
Li-ion batteries are currently the preferred solution to store electrical energy. However, their saf...
Lithium-ion batteries have gained a vast and ever-growing popularity as the choice for a high energy...
Lithium ion (Li-ion) cells are the most prominent electrochemical energy storage device in todays wo...
The high capacity and voltage properties demonstrated by lithium-ion batteries render them as the pr...
International audienceLi-ion secondary rechargeable batteries are becoming the preferred solution to...
Since the commercialization of Lithium-Ion Battery (LIB) by Sony Inc. in 1991 until today, recurrent...
Les batteries lithium-ion s'affichent comme de bons candidats pour assurer le stockage réversible de...
The thermal runaway model used is a semi-empirical model based on a kinetic equation, parametrised b...
The proliferation of lithium-ion batteries enables electric devices such as cell phones to electric ...
[EN] The urgent need for reducing the carbon dioxide emissions has led to the powertrain electrifica...