[Poster Presentation]Simulation and Characterization of the Drying Process in Lithium-Ion Battery Electrodes Based on Pore Network Modeling

Simulation and Characterization of the Drying Process in Lithium-Ion Battery Electrodes Based on Pore Network Modeling
ID:80 Submission ID:13 View Protection:ATTENDEE Updated Time:2025-09-30 11:02:35 Hits:89 Poster Presentation

Start Time:2025-10-10 14:30 (Asia/Shanghai)

Duration:20min

Session:[P] Poster Presentation » [P1] Poster Presentation 1

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Abstract
The pore emptying stage during the drying of lithium-ion battery electrodes directly influences the microstructure and battery performance, yet its multiphysics coupling mechanisms remain insufficiently revealed. This study develops a comprehensive mathematical model for electrode pore emptying during the drying process. The model integrates several key physical phenomena, including non-Newtonian fluid flow, particle adsorption and topological coupling, evaporative phase change, and gas-phase transport mechanisms. An extended Hoshen–Kopelman algorithm is used to solve the model efficiently. The results indicate that liquid clusters of solvent within the graphite skeleton undergo fragmentation during evaporation and subsequently reach a dynamic equilibrium state. The distribution of conductive additive particles is jointly determined by evaporation-induced retention and flow-driven adsorption. The synergistic effect between structural homogeneity and low-temperature drying conditions facilitates the attainment of an optimal particle distribution state, providing theoretical guidance for optimizing electrode performance.
 
Keywords
Lithium-ion battery electrode,Pore network modeling,Drying characteristics
Speaker
Bing Dong
Beijing Institute of Petrochemical Technology, China

Submission Author
Bing Dong Beijing University of Technology
Peng Wang Beijing Institute of Petrochemical Technology
Haobo Cao Beijing Institute of Petrochemical Technology
Dongxu Han Beijing Institute of Petrochemical Technology
Yujie Chen Beijing Institute of Petrochemical Technology
Dongliang Sun Beijing Institute of Petrochemical Technology
Bo Yu Beijing University of Technology;Yangtze University
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