Title of article :
Numerical modeling of electrochemical–mechanical interactions in lithium polymer batteries
Author/Authors :
Stephanie Golmon، نويسنده , , Kurt Maute، نويسنده , , Martin L. Dunn، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
13
From page :
1567
To page :
1579
Abstract :
This paper presents a multi-scale finite element approach for lithium batteries to study electrochemical–mechanical interaction phenomena at macro- and micro-scales. The battery model consists of a lithium foil anode, a separator, and a porous cathode that includes solid active materials and a liquid electrolyte. We develop a multi-scale approach to analyze the surface kinetics and electrochemical–mechanical phenomena within a single spherical particle of the active material. Homogenization techniques relate parameters in the micro-scale particle model to those in the macro-scale model describing the lithium ion transport, electric potentials and mechanical response based on porous electrode theory.
Keywords :
Porous electrode theory , homogenization , Finite element method , Multi-Scale Modeling
Journal title :
Computers and Structures
Serial Year :
2009
Journal title :
Computers and Structures
Record number :
1210545
Link To Document :
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