Lianshan Lin, Jianlin Li
The deployment of Li-ion batteries covers a wide range of energy storage applications, from mobile phones, e-bikes, electric vehicles (EV) to stationary energy storage systems. However, safety issue such as thermal runaway is always one of the most important concerns preventing Li-ion batteries from further market penetration. A standardized single-side indentation test protocol was developed to mechanically induce an internal short-circuit. The cell voltage, compressive load, indenter stroke, and temperature at the indentation point are measured in time series. The test data of each cell, along with cell parameters such as dimensions, mass, chemistry, state of charge (SOC), capacity, are integrated to calculate a thermal runaway severity score from 0 to100. Complete data collection process including the original measured record, test method, severity score calculation scheme is presented in this article. The thermal runaway severity analysis and the more than 100 tested Li-ion battery records provide a good.
@article{fe1266d3-9d90-4293-8234-1a83f9ac9122,
title={Dataset of mechanically induced thermal runaway measurement and severity level on Li-ion batteries},
author={Lianshan Lin and Jianlin Li},
year={2024},
language={en}
}TY - JOUR TI - Dataset of mechanically induced thermal runaway measurement and severity level on Li-ion batteries AU - Lianshan Lin AU - Jianlin Li PY - 2024 LA - en ER -
Roger Rumbu
"Powering in Progress: A Comprehensive Guide to Battery Technology" is a journey into the heart of this dynamic and indispensable energy storage pheno
Toyohashi University of Technology
All-solid-state sodium-ion batteries are a promising technology for large-scale energy storage owing to the abundance and low cost of sodium resources
Yaya Dagal D
This document presents an educational module on electrochemical energy storage systems—primary cells, accumulators, and batteries—with specific emphas
TohoKu University
This article reports the development of a hybrid polymeric solid electrolyte designed to enhance the safety and performance of lithium-ion batteries (
PNAS Nexus
This article reports the design and characterization of a high-performance, truly solid polymer electrolyte for lithium-based batteries, addressing lo
Riken
This article reports the development of a room-temperature hydride ion (H⁻)-conducting solid electrolyte, representing a significant advance toward pr