This chapter centers on the modeling of materials for energy storage, with a specific focus on Li-ion and Na-ion batteries. Theoretical and computational analyses not only enhance our understanding of how actual batteries behave under various conditions but also have the potential to guide the development of new materials and innovative architectures in conjunction with experimental approaches. Thus, modeling can significantly contribute to the design and prediction of the lifespan of energy storage materials and devices. Batteries exhibit inherent multi-physics and multi-scale characteristics in both space and time. We aim to investigate the mechanical aspects encompassed by multi-physics modeling concepts, methodologies, and simulations at varying scales. In this chapter, we will review the fundamental components of a state-of-the-art electrolytic cell, define their purpose, operational functioning, and mechanical response accounting for various classes of materials.

Mechanics of Batteries

Serpelloni, Mattia;Cabras, Luigi;Esmizadeh, Sahar;Yildiz, Erkin;Bastanfar, Marzieh;Berlato, Manuel;Salvadori, Alberto
2024-01-01

Abstract

This chapter centers on the modeling of materials for energy storage, with a specific focus on Li-ion and Na-ion batteries. Theoretical and computational analyses not only enhance our understanding of how actual batteries behave under various conditions but also have the potential to guide the development of new materials and innovative architectures in conjunction with experimental approaches. Thus, modeling can significantly contribute to the design and prediction of the lifespan of energy storage materials and devices. Batteries exhibit inherent multi-physics and multi-scale characteristics in both space and time. We aim to investigate the mechanical aspects encompassed by multi-physics modeling concepts, methodologies, and simulations at varying scales. In this chapter, we will review the fundamental components of a state-of-the-art electrolytic cell, define their purpose, operational functioning, and mechanical response accounting for various classes of materials.
2024
Ateneo di appartenenza
Comprehensive Mechanics of Materials, Volume 1-4
PE8_8 Mechanical and manufacturing engineering (shaping, mounting, joining, separation)
PE8_3 Civil engineering, maritime/hydraulic engineering, geotechnics, waste treatment
PE8_4 Computational engineering
Esperti anonimi
Inglese
Internazionale
STAMPA
4
335
354
20
9780323906470
Elsevier
Oxford
REGNO UNITO DI GRAN BRETAGNA
Degradation and aging; Finite elements; Large strains; Mechanics of energy storage materials; Multi-physics modeling; Multi-scale modeling
Goal 7: Affordable and clean energy
2 Contributo in Volume::2.1 Contributo in volume (Capitolo o Saggio)
8
268
none
Serpelloni, Mattia; Cabras, Luigi; Esmizadeh, Sahar; Yildiz, Erkin; Bastanfar, Marzieh; Valizadeh, Negin; Berlato, Manuel; Salvadori, Alberto
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/622052
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