Skip to main content

Swedish researchers test Li-ion batteries to destruction

Researchers at Sweden’s SP Fire Research are involved in a project to develop safer battery systems for electrified vehicles, together with Atlas Copco, Chalmers University of Technology and Elforsk, with financial support from the Swedish Energy Agency. Lithium-ion batteries (Li-ion) offer great energy and power densities accompanied with long battery life time. In an abuse situation however, e.g. in case of mechanical deformation or overheating, the flammable electrolyte of the Li-ion battery might pos
October 16, 2015 Read time: 2 mins
Researchers at Sweden’s SP Fire Research are involved in a project to develop safer battery systems for electrified vehicles, together with Atlas Copco, Chalmers University of Technology and Elforsk, with financial support from the Swedish Energy Agency.

Lithium-ion batteries (Li-ion) offer great energy and power densities accompanied with long battery life time. In an abuse situation however, e.g. in case of mechanical deformation or overheating, the flammable electrolyte of the Li-ion battery might pose a risk.

The project includes various destructive tests on commercial Li-ion battery cells to study the cell response in terms of temperature, gas, fire and explosion in electrical abuse tests including overcharge and short circuit tests and exposure to fire.

SP believes that today there are no intrinsically safe Li-ion cells with usable properties. Experience from the consumer market shows that there is a small probability (ppm-level or less) for internal short circuiting in Li-ion cells, potentially resulting in a so called thermal runaway and a battery fire. In a large battery pack, with many cells, the probability of a thermal runaway will increase due to the use of more cells. This leads to an increased risk of a cell safety incident and it is important to minimise its consequences. For example, the cell-to-cell propagation of a thermal runaway in a single cell can be affected by battery pack design.

The tests showed that higher battery electrical charge level (state-of-charge) gives a higher heat release rate (HRR) while the total heat release (THR) is roughly the same for all charge levels. Gas emissions were also measured. The Li-ion cell contains fluorine that can form highly toxic compounds such as hydrogen fluoride (HF) that can be released.

Tests were also carried out using simulation tools to model the heat transfer in a pack of five cells with the aim of predicting the cell-to cell heat spread for a five-cell-pack. Using the Finite-Element software Comsol Multiphysics, the results corroborated those obtained from the experimental tests.

Related Content

  • Launch of UK wind hydrogen refuelling station
    September 22, 2015
    Energy storage and clean fuel company ITM Power has launched its first public access hydrogen refuelling station at the Advanced Manufacturing Park, just off the M1, Junction 33 in South Yorkshire, funded by InnovateUK. The site, which as a public access refuelling station is the first of its kind in the UK, consists of a 225kW wind turbine coupled directly to an electrolyser, 220kg of hydrogen storage, a hydrogen dispensing unit and a 30kW fuel cell system capable of providing backup power generation fo
  • Researchers develop remote traffic pollution detection system
    September 19, 2013
    A group of research centres and companies in Madrid has created what is said to be the first infrared and remote system able to detect pollutants from cars on highways up to three lanes. The goal is to be able to conduct a global test of automobile emissions. According to the researchers, the prototype, which is ready to be marketed, can make an intelligent measurement of highway traffic by collecting real-time data on traffic density, emissions and consumption associated with each vehicle, and weather c
  • Car makers test next generation connected car communications technology
    July 11, 2016
    Audi, Deutsche Telekom, Huawei, Toyota Motor Europe and other car manufacturers are currently carrying out technical field trials on testing LTE-Vehicular (LTE-V), which is seen as a potential enabler for road safety applications and traffic control services as well as emerging automated driving use. The tests, which are being carried out on the A9 motorway in Germany, with the objective of assessing the performance of LTE-V for connected vehicle communications during its standardisation process. LTE
  • CRASH Predicts ‘unpredictable’ in traffic incidents
    November 11, 2015
    Road crashes are not as random as they may appear and analysing data can reveal patterns that can help various authorities target their resources more accurately. David Crawford reports. Figures from the US National Highway Traffic Safety Administration (NHTSA) show that in 2013 there were 32,719 people killed on American roads and 2.31 million injured. While these form part of an overall 25% drop over the decade from 2004, US Transportation Secretary Anthony Foxx continues to stress that reaching the procl