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02.04.2025 12:31

Getting More Out of the Battery with Simulations: Fraunhofer ITWM Presents Innovations for Electromobility

Swenja Broschart Pressestelle
Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM

    Researchers at the Fraunhofer Institute for Industrial Mathematics ITWM are using innovative technologies to focus on battery behavior during charging and discharging, the optimization of battery production and the aging of batteries. They use modern simulation tools and innovative measurement techniques to drive forward the further development of battery cells for electric cars. They will be presenting their research results at the Battery Show Europe 2025 from June 3 to 5.

    The electrodes are a central component of battery cells. The microscopic structure of the electrodes has a decisive influence on the behavior of the entire battery cell. The Fraunhofer ITWM's BEST simulation software makes it possible to simulate the three-dimensional microstructure of electrodes in detail. Through these simulations, our researchers gain important insights into the behaviour of the battery cell: »We can use these insights to predict how the cell will behave during charging and discharging and then make targeted optimizations to improve the performance and efficiency of the battery« explains Dr. Jochen Zausch, team leader of »Electrochemistry and Batteries«.

    Predicting Battery Aging by Simulation

    Battery cells age both during active use and during storage. There are many factors that influence the ageing behavior. For example, mechanical stress during operation can cause parts of the cell to become inactive such that they no longer contribute to charge exchange. In addition, chemical side reactions take place, which result in a loss of capacity and increased internal resistance, which impedes performance. »We are working on gaining a better understanding of the cells and are researching how these special ageing processes can be slowed down in order to save resources and energy in battery production in the long term « explains Dr. Falco Schneider, expert in battery cell ageing. Several ageing models and analysis methods are integrated into the latest version of the BEST software.

    Simulation-Based Optimization of Battery Production

    The researchers at Fraunhofer ITWM are also focusing on battery production, which is being driven forward in the state government-funded project »Digitalization of Battery Cell Production to Create a Battery Twin for the Entire Product Life Cycle«, or DiBaZ for short. A key aspect is the simulation and optimization of the central steps in the production of batteries, such as calendering the electrodes, electrolyte wetting and battery cell formation or foam encapsulation of cells within modules for insulation, using proven tools such as FeelMath, FLUID and FOAM.

    DiBaZ brings together various areas of expertise at the Fraunhofer ITWM to develop a digital twin for all process steps in battery production. »Through the work in this project, we can offer our industrial partners methods and models that not only simulate processes from battery production, but also enable non-destructive quality control and include energy management with predictive control« explains Dr. Konrad Steiner, coordinator of the project.

    Quality Assurance in Battery Production

    The Fraunhofer ITWM has also further developed its terahertz measurement technology and offers new possibilities for inspecting the electrode coating for battery cells. Inspection systems based on terahertz radiation are non-contact and non-destructive optical methods. Most importantly, they are also completely harmless to health. »The results of tests on terahertz measurement technology are promising and show the great potential of this technology for the production of battery cells« says Dr. Joachim Jonuscheit, deputy Head of the Department »Material Characterization and Testing« at the Fraunhofer ITWM.

    Presentation at the Battery Show Europe 2025

    At the Battery Show Europe 2025 from June 3 to 5, our experts will be represented with an exhibit on inline layer thickness measurement of battery foil coatings. Our researchers will also be presenting the latest developments of our simulation tool BEST as well as possibilities for physical cell simulation and the simulation of battery production processes.

    Meet us at the joint stand of the Fraunhofer Battery Alliance in Hall 10, Stand J40. We look forward to your visit!


    Wissenschaftliche Ansprechpartner:

    Dr. Joachim Jonuscheit
    Deputy Head of Department »Materials Characterization and Testing«
    Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM
    Fraunhofer-Platz 1
    67663 Kaiserslautern
    Phone +49 631 31600-4911
    joachim.jonuscheit@itwm.fraunhofer.de

    Dr. Jochen Zausch
    Team leader »Electrochemistry and Batteries« in the department »Flow and Material Simulation«
    Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM
    Fraunhofer-Platz 1
    67663 Kaiserslautern
    Phone +49 631 31600-4688
    jochen.zausch@itwm.fraunhofer.de


    Weitere Informationen:

    https://www.itwm.fraunhofer.de/en/press-publications/press-releases/2025/2025_04...


    Bilder

    The physics-based simulation software BEST of Fraunhofer ITWM offers deeper insights into the internal electrochemical transport processes for various cell formats of Li-ion batteries.
    The physics-based simulation software BEST of Fraunhofer ITWM offers deeper insights into the intern ...

    Fraunhofer ITWM

    The pilot plant for battery cells of our project partner, the Fraunhofer Research Institution for Battery Cell Production FFB.
    The pilot plant for battery cells of our project partner, the Fraunhofer Research Institution for Ba ...

    Studio Wiegel for Fraunhofer FFB


    Merkmale dieser Pressemitteilung:
    Journalisten, Wirtschaftsvertreter
    Elektrotechnik, Energie, Mathematik, Verkehr / Transport
    überregional
    Forschungs- / Wissenstransfer
    Englisch


     

    The physics-based simulation software BEST of Fraunhofer ITWM offers deeper insights into the internal electrochemical transport processes for various cell formats of Li-ion batteries.


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    The pilot plant for battery cells of our project partner, the Fraunhofer Research Institution for Battery Cell Production FFB.


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