Energy Functions And Basic Equations For Ferroelectrics


Autoria(s): 李海军; 王自强
Data(s)

2009

Resumo

Energy functions (or characteristic functions) and basic equations for ferroelectrics in use today are given by those for ordinary dielectrics in the physical and mechanical communications. Based on these basic equations and energy functions, the finite element computation of the nonlinear behavior of the ferroelectrics has been carried out by several research groups. However, it is difficult to process the finite element computation further after domain switching, and the computation results are remarkably deviating from the experimental results. For the crack problem, the iterative solution of the finite element calculation could not converge and the solutions for fields near the crack tip oscillate. In order to finish the calculation smoothly, the finite element formulation should be modified to neglect the equivalent nodal load produced by spontaneous polarization gradient. Meanwhile, certain energy functions for ferroelectrics in use today are not compatible with the constitutive equations of ferroelectrics and need to be modified. This paper proposes a set of new formulae of the energy functions for ferroelectrics. With regard to the new formulae of the energy functions, the new basic equations for ferroelectrics are derived and can reasonably explain the question in the current finite element analysis for ferroelectrics.

Identificador

http://dspace.imech.ac.cn/handle/311007/26574

http://www.irgrid.ac.cn/handle/1471x/8771

Idioma(s)

英语

Fonte

Acta Mechanica, 2009, 206: 69-80

Palavras-Chave #Electric-Mechanical Behavior #Finite-Element Model #Constitutive Model #Piezoelectric Materials #Fracture-Mechanics #Switching Model #Single-Crystals #Domain Switch #Ceramics #Hysteresis
Tipo

期刊论文