Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Research on Influencing Factors About Temperature of Short Circuit Area in Lithium-Ion Power Battery

View through CrossRef
Abstract As the main power source for electric vehicles, lithium-ion power batteries have always been the focus of public safety. Lithium-ion batteries may occur thermal runaway after internal short circuit caused by mechanical abuse. It is extremely important to study the influencing factors of thermal runaway. In this article, the quasi-static battery extrusion test is used to study the changes of load, voltage, and temperature during the short circuit process of lithium-ion batteries and to observe the influencing factors that may cause thermal runaway. The electrochemical–electrical–thermal multi-physics coupling model was established by comsol multi-physics simulation software to simulate the thermal behavior of the battery after short circuit. The effects of short circuit cases, state of charge (SOC), and voltage maintenance time after short circuit on the thermal runaway of the battery are studied. By comparing the experimental results, the short circuit case of the battery caused by mechanical abuse is judged. The research results have played a certain reference role in the future research on battery mechanical abuse and internal short circuit.
Title: Research on Influencing Factors About Temperature of Short Circuit Area in Lithium-Ion Power Battery
Description:
Abstract As the main power source for electric vehicles, lithium-ion power batteries have always been the focus of public safety.
Lithium-ion batteries may occur thermal runaway after internal short circuit caused by mechanical abuse.
It is extremely important to study the influencing factors of thermal runaway.
In this article, the quasi-static battery extrusion test is used to study the changes of load, voltage, and temperature during the short circuit process of lithium-ion batteries and to observe the influencing factors that may cause thermal runaway.
The electrochemical–electrical–thermal multi-physics coupling model was established by comsol multi-physics simulation software to simulate the thermal behavior of the battery after short circuit.
The effects of short circuit cases, state of charge (SOC), and voltage maintenance time after short circuit on the thermal runaway of the battery are studied.
By comparing the experimental results, the short circuit case of the battery caused by mechanical abuse is judged.
The research results have played a certain reference role in the future research on battery mechanical abuse and internal short circuit.

Related Results

Ion Intercalation into Vanadium Sulfides for Battery Applications
Ion Intercalation into Vanadium Sulfides for Battery Applications
Global battery manufacturing capacity will more than double by 2021 to about 280,000 megawatt-hours.1 Rechargeable batteries make up a significant fraction of battery manufacturing...
Lithium Surface Modification for Enhanced Cycle Life and Safety of Lithium Batteries
Lithium Surface Modification for Enhanced Cycle Life and Safety of Lithium Batteries
Lithium (Li) metal is an ideal anode material for rechargeable batteries due to its extremely high theoretical specific capacity (3860 mAh/g), low density (0.59 g/cm3) and the lowe...
Lithium Prospectivity in the Northeast German and Thuringian Ba-sins
Lithium Prospectivity in the Northeast German and Thuringian Ba-sins
Over the years many boreholes have been drilled into the Northeast German Basin (NEGB) in pursuit of the exploration of hydrocarbons. As well as gaining important information regar...
Research on high-rate and repeat frequency discharge lithium battery for electromagnetic launch primary power supply
Research on high-rate and repeat frequency discharge lithium battery for electromagnetic launch primary power supply
Abstract Lithium battery with excellent comprehensive performance can effectively improve the firing frequency of railgun, firing times of railgun, system integratio...
Investigation on the Anode Surface of High Specific Energy Li-Ion Batteries
Investigation on the Anode Surface of High Specific Energy Li-Ion Batteries
Lithium-ion batteries have become the most popular secondary battery of electric cars, electronic products and power grids with high specific energy and cycle life. Currently, the ...
Data-Driven Decision Making in Battery Technology – How to Compete in Global Battery Industry?
Data-Driven Decision Making in Battery Technology – How to Compete in Global Battery Industry?
Battery technology is regarded as a crucial key technology for the energy transition and thus a sustainable future, as batteries can store and distribute renewable energy to cover ...
Li-NMC Temperature Modelling Based on Realistic Internal Resistance
Li-NMC Temperature Modelling Based on Realistic Internal Resistance
Lithium-ion battery (LIB) produce heat when it is put under charging and discharging process. The heat generated during charging and discharging are directly related to the interna...
Research and Development of Fire Alarm Detection Device for Lithium Ion Battery Based on Strain Measurement
Research and Development of Fire Alarm Detection Device for Lithium Ion Battery Based on Strain Measurement
Abstract In order to realize the fire alarm of lithium ion battery, a fire alarm detection device is developed based on the principle of strain measurement. This pap...

Back to Top