Mechanics of electroelastic bodies under biasing fields

Author:

Yang Jiashi1,Hu Yuantai2

Affiliation:

1. Department of Engineering Mechanics, University of Nebraska, Lincoln, NE 68588-0526, USA

2. Department of Mechanics, Huazhong University of Science and Technology, Wuhan 430074, China

Abstract

This is a review article on the mechanics of small-amplitude motions superposed on finite biasing or initial fields in an electroelastic body. It begins with a summary of the nonlinear theory of electroelasticity, which is the theoretical foundation for the theory of small fields superposed on a bias. This theory, obtained by different approaches, and the development of structural theories for electroelastic beams, plates, and shells under biasing fields are discussed. Applications of these theories for small fields superposed on biasing fields in the buckling of thin electroelastic structures, frequency stability of piezoelectric resonators for time-keeping and telecommunication, acoustic wave sensors based on frequency shifts due to biasing fields, characterization of nonlinear electroelastic materials by propagation of small-amplitude waves in electroelastic bodies under biasing fields, and electrostrictive ceramics which operate under a biasing electric field are reviewed. A summary of some current and possible future research topics in this field is given. The article contains 166 references.

Publisher

ASME International

Subject

Mechanical Engineering

Reference166 articles.

1. Dokmeci MC (1988), Recent progress in the dynamic applications of piezoelectric crystals, Shock Vib. Dig. 20, 3–20.

2. Wang J and Yang JS (2000), Higher-order theories of piezoelectric plates and applications, Ann. Glaciol. 53, 87–99.

3. Rao SS and Sunar M (1994), Piezoelectricity and its use in disturbance sensing and control of flexible structutes: a survey, Appl. Mech. Rev. 47, 113–123.

4. Sunar M and Rao SS (1999), Recent advances in sensing and control of flexible structures via piezoelectric materials technology, Appl. Mech. Rev. 52, 1–15.

5. Chee CYK , Tong L, and Steven GP (1998), A review on the modeling of piezoelectric sensors and actuators incorporated in intelligent structures, J. Intell. Mater. Syst. Struct. 9, 3–19.

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