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  4. Phase-field methods for deformation processes in lithium-ion batteries
 
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2018
Doctoral Thesis
Title

Phase-field methods for deformation processes in lithium-ion batteries

Other Title
Phasenfeld-Methoden für Deformierungsprozesse in Lithium-Ion Batterien
Abstract
A fast numerical method for an advanced electro-chemo-mechanical model is developed which is able to capture phase separation processes in porous materials. This method is applied to simulate lithium-ion battery cells, where the complex microstructure of the electrodes is fully resolved. The intercalation of ions into the popular cathode material LFP leads to a separation into lithium-rich and lithium-poor phases. The large concentration gradients result in high mechanical stresses. A phase-field method applying the Cahn-Hilliard equation is used to describe the diffusion. For the sake of simplicity, the linear elastic case is considered. Numerical tests for fully resolved three-dimensional granular microstructures are discussed in detail.
Thesis Note
Zugl.: Kaiserslautern, TU, Diss., 2018
Author(s)
Hofmann, Tobias
Person Involved
Heiko, Andrä
Hauptreferent
Latz, Arnulf
Korreferenten
Müller, Ralf
Korreferenten
Beck, Tilmann
Vorsitzende
Seewig, Jörg
Dekan
Publisher
Technische Universität Kaiserslautern  
Publishing Place
Kaiserslautern
File(s)
Download (6.77 MB)
Rights
Use according to copyright law
DOI
10.24406/publica-fhg-282179
Language
English
Fraunhofer-Institut für Techno- und Wirtschaftsmathematik ITWM  
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