Investigation on mechanical and microstructural evolution of lithium-ion battery electrode during the calendering process
Author:
Publisher
Elsevier BV
Subject
General Chemical Engineering
Reference34 articles.
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1. Wetting performance analysis of porosity distribution in NMC111 layered electrodes in lithium-ion batteries using the Lattice Boltzmann Method;Energy Reports;2024-12
2. Deformation and fracture mechanisms in the calendering process of lithium-ion battery electrodes;Applied Energy;2024-11
3. Hierarchical Yolk‐Shell Silicon/Carbon Anode Materials Enhanced by Vertical Graphene Sheets for Commercial Lithium‐Ion Battery Applications;Advanced Functional Materials;2024-09-14
4. 2D Discrete Element Simulation of Electrode Structural Evolutions in Li‐Ion Battery During Drying and Calendering;Energy Technology;2024-08-24
5. Characterization and quantification of multi-field coupling in lithium-ion batteries under mechanical constraints;Journal of Energy Chemistry;2024-08
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