The effect of calendar aging on the thermal safety of 4.6 Ah pouch cells with a LiMn2O4 (LMO) cathode was investigated by a battery test calorimeter (BTC) that can be used to determine the heat evolved during an uncontrolled exothermic runaway reaction. Cells were stored at 55 °C and 100% state of charge (SOC) for accelerated aging, and they were taken out after 10, 20, 40, 68, and 90 days of storage to obtain different aging states. Those cells were then put into the BTC for thermal safety tests. The results show the cell thermal safety improves after aging: (1) the self-heating temperature increases; (2) the thermal runaway temperature increases; and (3) the exothermal rate during the process of thermal runaway decreases. The cell voltage...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
International audienceSecond life of lithium-ion batteries is under investigation because it could b...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...
International audienceAmong different solutions for storage systems dedicated to stationary and auto...
A method for thermal ramp experiments on cylindrical 18650 Li-ion cells has been established. The me...
Thermal stability is one of several factors affecting the safety properties of lithium-ion cells. Th...
International audienceLithium-ion technology meets the needs of multiple applications thanks to its ...
Lithium-ion batteries offer great energy and power densities but the thermal stability is an issue o...
International audienceLi-ion secondary rechargeable batteries are becoming the preferred solution to...
The impact of cycling at low temperatures on the thermal and mechanical abuse behavior of commercial...
The thermal stability evaluation of materials in a soft-pack commercial cell is tested using C80 cal...
Li-ion batteries had a great development in recent years, and their use has grown massively because ...
Understanding the behavior of Li-ion cells during thermal runaway is critical to evaluate the safety...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
International audienceSecond life of lithium-ion batteries is under investigation because it could b...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...
International audienceAmong different solutions for storage systems dedicated to stationary and auto...
A method for thermal ramp experiments on cylindrical 18650 Li-ion cells has been established. The me...
Thermal stability is one of several factors affecting the safety properties of lithium-ion cells. Th...
International audienceLithium-ion technology meets the needs of multiple applications thanks to its ...
Lithium-ion batteries offer great energy and power densities but the thermal stability is an issue o...
International audienceLi-ion secondary rechargeable batteries are becoming the preferred solution to...
The impact of cycling at low temperatures on the thermal and mechanical abuse behavior of commercial...
The thermal stability evaluation of materials in a soft-pack commercial cell is tested using C80 cal...
Li-ion batteries had a great development in recent years, and their use has grown massively because ...
Understanding the behavior of Li-ion cells during thermal runaway is critical to evaluate the safety...
Lithium-ion batteries (LIBs) are employed when high energy and power density are required. However, ...
International audienceSecond life of lithium-ion batteries is under investigation because it could b...
The understanding of the aging behavior of lithium ion batteries in automotive and energy storage ap...