The advanced synthetic and natural materials, such as piezoelectric ceramics, electroactive polymers and biological soft tissues, exhibit the multi‐physical or physicochemical coupling behaviors. The coupling behavior involves the thermal‐mechanical, electric‐mechanical and electrochemicalmechanical interactions. The coupling phenomena can be modeled in the microscopic and macroscopic levels. In the microscale, the material consists of the solid, fluid and ions. The domain FE technique can be used to model the deformation of the solid and the flow of the fluid. In the macroscale, the mixture theory can be applied to description of the coupled response of the continuum under coupled thermal, electrical, chemical and mechanical loadings. A weak form of the governing equations is established by means of variational principle and a multi‐field finite element (MFE) method is developed for numerical modeling of the coupling behavior of advanced materials.
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1 March 2005
Review Article|
March 01 2005
A General Procedure for Modeling Physicochemical Coupling Behaviour of Advanced Materials ‐ Part I: Theory Available to Purchase
Qing‐Sheng Yang;
Qing‐Sheng Yang
Numerical Simulation Center for Engineering, Dept. of Engineering Mechanics, Beijing University of Technology, Beijing, 100022, China
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Cai‐Qin Cui;
Cai‐Qin Cui
Numerical Simulation Center for Engineering, Dept. of Engineering Mechanics, Beijing University of Technology, Beijing, 100022, China
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Xu‐Zhi Lu
Xu‐Zhi Lu
Numerical Simulation Center for Engineering, Dept. of Engineering Mechanics, Beijing University of Technology, Beijing, 100022, China
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Publisher: Emerald Publishing
Online ISSN: 1573-6113
Print ISSN: 1573-6105
© Emerald Group Publishing Limited
2005
Multidiscipline Modeling in Materials and Structures (2005) 1 (3): 223–230.
Citation
Yang Q, Cui C, Lu X (2005), "A General Procedure for Modeling Physicochemical Coupling Behaviour of Advanced Materials ‐ Part I: Theory". Multidiscipline Modeling in Materials and Structures, Vol. 1 No. 3 pp. 223–230, doi: https://doi.org/10.1163/157361105774538584
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