In order to further enhance its competitiveness in the field, Germany hopes to apply its advanced industrial manufacturing capabilities in the field of power batteries.
Foreign media reports that researchers and partners of the Karlsruhe Institute of Technology (KIT) in Germany are undertaking a project AgiloBat, dedicated to the rapid production of batteries in terms of form, material and quantity.
Germany believes that existing systems for producing battery cells cannot manufacture various formats or variable quantities, and they cannot use various materials. Although it can produce high-quality standardized batteries, it does not specifically meet the needs of different customers.
Therefore, scientists from the KIT Institute and partners of the Baden-Württemberg Solar Energy and Hydrogen Research Center (ZSW) and Fraunhofer Institute for Chemical Technology (ICT) developed an agile production system, developed and Equipment and factories for flexible and efficient production, thus accelerating the pace of R & D and production of German power batteries.
KIT President Holger Professor Hanselka said: "In terms of electric vehicles, Germany, as a major automobile manufacturing country, faces the problem of how to catch up with international competitors in battery production.
In the AgiloBat project, KIT researchers and partners are committed to finding an innovative production system with a high degree of flexibility and open technology to get rid of the existing rigid production line, thereby shortening the battery cell development cycle and accelerating the production of battery systems.
Therefore, the project method is clearly different from the established battery manufacturing and design, and the focus is on overall optimization in terms of resources, costs, and performance. The basic idea is to make the battery system better adapt to various application environments and spaces.
For example, batteries used in electric vehicles must meet other requirements than batteries in electric tools. In the future production process, these requirements will be translated into battery parameters. Flexible shape batteries optimized for various requirements are combined in a suitable battery system.
In this way, energy density or fast charging capacity can also be adapted. Intelligent interconnection and modular production can not only produce battery cells with smaller specifications for battery companies, but also cost-effectively mass-produce.
The project leader of the KIT Production Science Institute Fleischer said: "In order to flexibly produce a variety of batteries, it is necessary to expand the existing understanding of the manufacturing steps of individual cells. In addition, the individual production steps must be combined to ensure that the pilot test The factory successfully carried out prototype production.
It is understood that the AgiloBat project is a four-year project funded by 4.5 million euros from the Ministry of Science, Research and Art (MWK) of Baden-Württemberg. In the next phase, the Federal Ministry of Education and Research (BMBF) plans to fund up to 14 million euros.
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