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Integrated Ferroelectrics
An International Journal
Volume 101, 2008 - Issue 1
144
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Original Articles

FINITE ELEMENT ANALYSIS WITH A FERROELECTRIC AND FERROELASTIC MATERIAL MODEL

, &
Pages 164-173 | Received 24 Feb 2007, Accepted 12 Apr 2007, Published online: 20 Sep 2010
 

ABSTRACT

Domain wall motion and phase transformations are driven by stress and electric field, are rate and temperature dependent, and can occur at relatively low stress and electric field levels due to field concentrators such as pores and electrode edges. Analysis of this behavior requires multiaxial material models with hysteresis in a finite element code. This work describes the current state of research in the area of constitutive modeling and finite element analysis of ferroelectric materials. It begins with a description of the large field experimental characterization of ferroelectric behavior including observed effects of field induced phase transformations. Constitutive modeling using a phenomenological approach (macroscale) is discussed followed by the micromechanical approach (microscale). These constitutive models connect the variables of stress, strain, electric field, electric displacement, temperature, and entropy. In addition to these relations, mechanics problems require satisfying electro-mechanical equilibrium and compatibility conditions. The final section presents results of finite element analysis using a ferroelectric material model.

Acknowledgments

The authors gratefully acknowledge the support of the Army Research Office under grant DAAD19-02-1-0214 for support of this work.

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