Electromagneto-Mechanics of Material Systems and Structures - Info and Reading Options
By Yasuhide Shindo
"Electromagneto-Mechanics of Material Systems and Structures" was published by Wiley & Sons, Incorporated, John in 2016 - Hoboken, it has 304 pages and the language of the book is English.
“Electromagneto-Mechanics of Material Systems and Structures” Metadata:
- Title: ➤ Electromagneto-Mechanics of Material Systems and Structures
- Author: Yasuhide Shindo
- Language: English
- Number of Pages: 304
- Publisher: ➤ Wiley & Sons, Incorporated, John
- Publish Date: 2016
- Publish Location: Hoboken
“Electromagneto-Mechanics of Material Systems and Structures” Subjects and Themes:
- Subjects: ➤ Materials, mechanical properties - Electromagnetic interactions - Mechanical properties - Materials - Electric properties - Magnetic properties
Edition Identifiers:
- The Open Library ID: OL29300867M - OL21119999W
- ISBN-13: 9781118838082
- All ISBNs: 9781118838082
AI-generated Review of “Electromagneto-Mechanics of Material Systems and Structures”:
"Electromagneto-Mechanics of Material Systems and Structures" Description:
Open Data:
Cover -- Title Page -- Copyright -- Contents -- About the Author -- Preface -- Acknowledgments -- Chapter 1 Introduction -- References -- Chapter 2 Conducting Material Systems and Structures -- 2.1 Basic Equations of Dynamic Magnetoelasticity -- 2.2 Magnetoelastic Plate Vibrations and Waves -- 2.2.1 Classical Plate Bending Theory -- 2.2.2 Mindlin's Theory of Plate Bending -- 2.2.3 Classical Plate Bending Solutions -- 2.2.4 Mindlin Plate Bending Solutions -- 2.2.5 Plane Strain Plate Solutions -- 2.3 Dynamic Magnetoelastic Crack Mechanics -- 2.4 Cracked Materials Under Electromagnetic Force -- 2.5 Summary -- References -- Chapter 3 Dielectric/Ferroelectric Material Systems and Structures -- 3.1 Basic Equations of Electroelasticity -- 3.2 Static Electroelastic Crack Mechanics -- 3.2.1 Infinite Dielectric Materials -- 3.2.2 Dielectric Strip -- 3.3 Electroelastic Vibrations and Waves -- 3.4 Dynamic Electroelastic Crack Mechanics -- 3.5 Summary -- 3.6 Piezomechanics and Basic Equations -- 3.6.1 Linear Theory -- 3.6.2 Model of Polarization Switching -- 3.6.3 Model of Domain Wall Motion -- 3.6.4 Classical Lamination Theory -- 3.7 Bending of Piezoelectric Laminates -- 3.7.1 Bimorphs -- 3.7.2 Functionally Graded Bimorphs -- 3.7.3 Laminated Plates -- 3.8 Electromechanical Field Concentrations -- 3.8.1 Laminates -- 3.8.2 Disk Composites -- 3.8.3 Fiber Composites -- 3.8.4 MEMS Mirrors -- 3.9 Cryogenic and High-Temperature Electromechanical Responses -- 3.9.1 Cryogenic Electromechanical Response -- 3.9.2 High-Temperature Electromechanical Response -- 3.10 Electric Fracture and Fatigue -- 3.10.1 Fracture Mechanics Parameters -- 3.10.2 Cracked Rectangular Piezoelectric Material -- 3.10.3 Indentation Fracture Test -- 3.10.4 Modified Small Punch Test -- 3.10.5 Single-Edge Precracked Beam Test -- 3.10.6 Double Torsion Test -- 3.10.7 Fatigue of SEPB Specimens
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