This publication-based dissertation presents a methodology for identifying and evaluating the required dryness levels in the production of lithium-ion battery cells with nickel-rich cathode active materials. By combining experimental material analyses with production logistics and cost modeling, the study introduces a practical approach to applying this framework. Within this work, it is demonstrated that the energy consumption in production could be reduced significantly through a targeted design of the production environment.
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This publication-based dissertation presents a methodology for identifying and evaluating the required dryness levels in the production of lithium-ion battery cells with nickel-rich cathode active materials. By combining experimental material analyses with production logistics and cost modeling, the study introduces a practical approach to applying this framework. Within this work, it is demonstrated that the energy consumption in production could be reduced significantly through a targeted desi...
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