Title of article :
A finite strain model of stress, diffusion, plastic flow, and electrochemical reactions in a lithium-ion half-cell
Author/Authors :
Bower ، نويسنده , , A.F. and Guduru، نويسنده , , P.R. and Sethuraman، نويسنده , , V.A.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
We formulate the continuum field equations and constitutive equations that govern deformation, stress, and electric current flow in a Li-ion half-cell. The model considers mass transport through the system, deformation and stress in the anode and cathode, electrostatic fields, as well as the electrochemical reactions at the electrode/electrolyte interfaces. It extends existing analyses by accounting for the effects of finite strains and plastic flow in the electrodes, and by exploring in detail the role of stress in the electrochemical reactions at the electrode–electrolyte interfaces. In particular, we find that that stress directly influences the rest potential at the interface, so that a term involving stress must be added to the Nernst equation if the stress in the solid is significant. The model is used to predict the variation of stress and electric potential in a model 1-D half-cell, consisting of a thin film of Si on a rigid substrate, a fluid electrolyte layer, and a solid Li cathode. The predicted cycles of stress and potential are shown to be in good agreement with experimental observations.
Keywords :
Chemo-mechanical processes , Elastic-viscoplastic material , diffusion , Bulk , Electro-mechanical processes
Journal title :
Journal of the Mechanics and Physics of Solids
Journal title :
Journal of the Mechanics and Physics of Solids