During the production of lithium-ion batteries, liquid electrolyte is filled into the cell, enabling charging and discharging. While current experimental studies provide insights into this process, they are costly, time-consuming, and limited in scope. This work develops a comprehensive numerical model to simulate electrolyte filling across various cell designs and process parameters. Considering multiple scales and validated with experimental data, the model advances the state of the art and provides a framework for future studies.
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During the production of lithium-ion batteries, liquid electrolyte is filled into the cell, enabling charging and discharging. While current experimental studies provide insights into this process, they are costly, time-consuming, and limited in scope. This work develops a comprehensive numerical model to simulate electrolyte filling across various cell designs and process parameters. Considering multiple scales and validated with experimental data, the model advances the state of the art and pr...
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