Special Topics in the Theory of Piezoelectricity

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Piezoelectricity has been a steadily growing field, with recent advances made by researchers from applied physics, acoustics, materials science, and engineering. This collective work presents a comprehensive treatment of selected advanced topics in the subject. Every chapter is self-contained and written by international experts who elaborate on special topics.

Key features include:

* Systematic exposition of topics: from a brief summary of the 3-dimensional theory of linear piezoelectricity to selected topics within the linear theory; and the theory of small fields superposed on a finite bias;

* Provides a broad overview of piezoelectric (or electroelastic) materials such as single crystals and ceramics that play a key role in this innovative field; examples provided throughout;

*Treats new applications to piezoelectric materials and devices in electronics engineering and civil, mechanical, and aerospace engineering structure;

* Examines in detail numerical analysis methods to optimize the design of piezoelectric structures and devices.

This book is written for an intermediate graduate level and is intended for researchers, mechanical engineers, and applied mathematicians interested in the advances of piezoelectricity and its new applications, and may be used as a supplemental text to a course where piezoelectricity is a focus.

Also by Jiashi Yang: An Introduction to the Theory of Piezoelectricity, © 2005 Springer, 978-0-387-23573-8.

Author(s): Jiashi Yang (auth.), Jiashi Yang (eds.)
Edition: 1
Publisher: Springer-Verlag New York
Year: 2009

Language: English
Pages: 329
Tags: Special Functions;Optics and Electrodynamics;Continuum Mechanics and Mechanics of Materials;Theoretical and Applied Mechanics

Front Matter....Pages i-xii
Basic Equations....Pages 1-12
Green’s Functions....Pages 13-46
Two-Dimensional Static Problems: Stroh Formalism....Pages 47-80
Fracture and Crack Mechanics....Pages 81-136
Boundary Element Method....Pages 137-168
Waves in Strained/Polarized Media....Pages 169-246
Fully Dynamic Theory....Pages 247-280
Nonlocal and Gradient Effects....Pages 281-318
Back Matter....Pages 319-329