P3-071
Since the electrochemical impedance spectroscopy (EIS) is a powerful tool to estimate the state of a lithium-ion battery cell, its implementation in electric vehicles is driven forward in many research activities. Within this context, we present results on a distributed system for single cell impedance measurements within a larger battery unit. The system is characterized […]
P1-11
As the first commercial sodium-ion-batteries (SIBs) are available for purchase, it is possible to investigate material composition. Gaining an insight into the material composition of these SIBs is of interest not only for the classification of possible safety risks and hazards, but also in regards to recycling. Herein we report the preliminary investigations of the […]
P5-040
The lifetime of Li-ion Batteries (LIB) depends on the reversible amount of Li ions and electrons (= active Li), defining Li inventory and cell capacity. Active Li loss (ALL) occurs at the negative electrode (= anode) predominantly via electrolyte reduction and formation of the solid electrolyte interphase (SEI). Nevertheless, given interference of the cathode, anode […]
P5-006
A fast and accurate lifetime estimation of a lithium-ion batteries is decisive for planning a sustainable technological future. For this purpose, batteries are aged using the highest possible current rates in accelerated cyclic aging tests excluding test pauses. This strategy, however, can lead to electrolyte-motion-induced salt inhomogeneity (EMSI) [1], which disrupts the homogeneity of lithium […]
P5-062_Wind
Recent years have witnessed an exponential increase in battery research, driven by the need to develop efficient and sustainable energy storage systems. One of the main tools in battery research is battery cycling experiments, providing insights into the performance, lifetime and quality of the battery. Due to the large variety of battery testing equipment and […]
P2-014_Wind
The safety of the Li-ion battery is known to be a critical issue due to its high energy density and the high flammability of most of its components. Here we report on observations of significant gassing in large commercial Li-ion pouch cells during end-of-life (EoL) storage at supposedly ideal storage temperature, as well as the […]
P2-014_Wind
The safety of the Li-ion battery is known to be a critical issue due to its high energy density and the high flammability of most of its components. Here we report on observations of significant gassing in large commercial Li-ion pouch cells during end-of-life (EoL) storage at supposedly ideal storage temperature, as well as the […]
P1-040
Lithium-ion batteries have consolidated their leadership in the market due to their high energy density and cycling stability, but concerns about the environmental impacts of their constituent materials have opened the door to investigating alternative technologies. BATTERIEdigital® has developed a Digital Cell Designer based on performance parameters of specific cell types and the respective cell […]
P3-023
With the growth of electric vehicles and stationary energy storage, accurately assessing battery suitability for second-life applications is essential. This study presents a machine learning approach that utilizes clustering techniques to identify aging mechanisms and determine previous usage conditions, offering a robust framework for second-life evaluation. Traditional assessments of state of health (SOH), which rely […]
P3-021
Multiphysics models have shown potential to support the design of battery systems at beginning of life and control during operation conditions, but still show limitations on the lifetime prediction. Thus, despite significant advances in recent years, the determination and accurate parameterization of descriptive degradation models for battery systems remains an open problem which primarily relies […]