Fracture Mechanics of Piezoelectric and Ferroelectric Solids

, (Autoren)

Buch | Hardcover
XX, 417 Seiten
2013 | 2014
Springer Berlin (Verlag)
978-3-642-30086-8 (ISBN)
160,49 inkl. MwSt
Fracture Mechanics of Piezoelectric and Ferroelectric Solids presents a systematic and comprehensive coverage of the fracture mechanics of piezoelectric/ferroelectric materials, which includes the theoretical analysis, numerical computations and experimental observations. The main emphasis is placed on the mechanics description of various crack problems such static, dynamic and interface fractures as well as the physical explanations for the mechanism of electrically induced fracture.
The book is intended for postgraduate students, researchers and engineers in the fields of solid mechanics, applied physics, material science and mechanical engineering.
Dr. Daining Fang is a professor at the School of Aerospace, Tsinghua University, China; Dr. Jinxi Liu is a professor at the Department of Engineering Mechanics, Shijiazhuang Railway Institute, China.

Introduction.- Physical and Material Properties of Dielectrics.- Fracture of Piezoelectric/Ferroelectric Materials-Experiments and Results.- Basic Equations of Piezoelectric Materials.- General Solutions to Electromechanical Coupling Problems of Piezoelectric Materials.- Fracture Mechanics of Homogeneous Piezoelectric Materials.- Interface Fracture Mechanics of Piezoelectric Materials.- Dynamic Fracture Mechanics of Piezoelectric Materials.- Nonlinear Fracture Mechanics of Ferroelectric Materials.- Fracture Criteria.- Electroelastic Concentrations Induced by Electrodes in Piezoelectric Materials.- Electric-Induced Fatigue Fracture.- Numerical Method for Analyzing Fracture of Piezoelectric and Ferroelectric Materials.

Erscheint lt. Verlag 2.8.2013
Zusatzinfo XX, 417 p.
Verlagsort Berlin
Sprache englisch
Maße 155 x 235 mm
Gewicht 798 g
Themenwelt Mathematik / Informatik Mathematik Wahrscheinlichkeit / Kombinatorik
Technik Maschinenbau
Schlagworte Electrically induced fracture • Electromechanical coupling • ferroelectric materials • fracture mechanics • piezoelectric materials • TUP
ISBN-10 3-642-30086-3 / 3642300863
ISBN-13 978-3-642-30086-8 / 9783642300868
Zustand Neuware
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