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SECTION A: PIEZOELECTRIC PROPERTIES AND DEVICES

Micromechanics of Ferroelectrics: From Domain Walls to Piezoceramic Devices

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Pages 79-87 | Received 05 Sep 2006, Accepted 11 Sep 2006, Published online: 08 Jun 2007
 

Abstract

A micromechanical approach utilizing the features of thermally activated domain wall motion is applied to simulate the structural changes in ferroelectric ceramics for the basic processes employed in piezoelectric devices. The approach combines an Arrhenius equation (with the temperature insensitive pre-exponential factor) for the domain wall mobility and a time-dependent constitutive model, using the volume fractions of domains with representative polarization directions as structural (internal) variables. Computer simulation of the piezoceramic poling process in a sheet actuator with interdigitated electrodes shows the formation of the inhomogeneous poling state and peculiarities of the nonlinear longitudinal piezoelectric effect.

**Permanent address: Institute of Crystallography RAS, Moscow, Russia.

Acknowledgments

Support by Deutsche Forschungsgemeinschaft is gratefully acknowledged.

Notes

**Permanent address: Institute of Crystallography RAS, Moscow, Russia.

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