Nonlinear analysis of thin-walled smart structures / Shun-Qi Zhang.
2021
TA418.9.S62
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Title
Nonlinear analysis of thin-walled smart structures / Shun-Qi Zhang.
Author
ISBN
9789811598579 (electronic bk.)
9811598576 (electronic bk.)
9811598568
9789811598562
9811598576 (electronic bk.)
9811598568
9789811598562
Published
Singapore : Springer, [2021]
Language
English
Description
1 online resource
Item Number
10.1007/978-981-15-9857-9 doi
Call Number
TA418.9.S62
Dewey Decimal Classification
620.1/12
Summary
This book focuses on nonlinear finite element analysis of thin-walled smart structures integrated with piezoelectric materials. Two types of nonlinear phenomena are presented in the book, namely geometrical nonlinearity and material nonlinearity. Geometrical nonlinearity mainly results from large deformations and large rotations of structures. The book discusses various geometrically nonlinear theories including von Kármán type nonlinear theory, moderate rotation nonlinear theory, fully geometrically nonlinear theory with moderate rotations and large rotation nonlinear theory. The material nonlinearity mainly considered in this book is electroelastic coupled nonlinearity resulting from large driving electric field. This book will be a good reference for students and researchers in the field of structural mechanics.
Bibliography, etc. Note
Includes bibliographical references.
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Digital File Characteristics
text file
PDF
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed February 26, 2021).
Series
Springer tracts in mechanical engineering, 2195-9862
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Table of Contents
Introduction
Literature Review
Geometrically Nonlinear Theories
Nonlinear Constitutive Formations
Finite Element Formulations
Nonlinear Analysis of Piezoelectric Structures
Nonlinear Analysis of Macro-fiber Composite Structures
Conclusions and Future Work.
Literature Review
Geometrically Nonlinear Theories
Nonlinear Constitutive Formations
Finite Element Formulations
Nonlinear Analysis of Piezoelectric Structures
Nonlinear Analysis of Macro-fiber Composite Structures
Conclusions and Future Work.