Fr. 135.00

Advanced Thermal Stress Analysis of Smart Materials and Structures

English · Hardback

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Description

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This is the first single volume monograph that systematically summarizes the recent progress in using non-Fourier heat conduction theories to deal with the multiphysical behaviour of smart materials and structures. 
The book contains six chapters and starts with a brief introduction to Fourier and non-Fourier heat conduction theories. Non-Fourier heat conduction theories include Cattaneo-Vernotte, dual-phase-lag (DPL), three-phase-lag (TPL), fractional phase-lag, and nonlocal phase-lag heat theories. Then, the fundamentals of thermal wave characteristics are introduced through reviewing the methods for solving non-Fourier heat conduction theories and by presenting transient heat transport in representative homogeneous and advanced heterogeneous materials. The book  provides the fundamentals of smart materials and structures, including the background, application, and governing equations. In particular, functionally-graded smart structures made of piezoelectric, piezomagnetic, and magnetoelectroelastic materials are introduced as they represent the recent development in the industry.

A series of uncoupled thermal stress analyses on one-dimensional structures are also included. The volume ends with coupled thermal stress analyses of one-dimensional homogenous and heterogeneous smart piezoelectric structures considering different coupled thermopiezoelectric theories. Last but not least, fracture behavior of smart structures under thermal disturbance is investigated and the authors propose directions for future research on the topic of multiphysical analysis of smart materials.       




List of contents

Heat conduction and moisture diffusion theories.- Basic Problems of Non-Fourier Heat Conduction.- Multiphysics of smart materials and structures.- Coupled thermal stresses in advanced and smart materials.- Thermal Fracture of Advanced Materials based on Fourier Heat Conduction.- Advanced thermal fracture analysis based on non-Fourier heat conduction models.- Future Perspectives.

Summary


This is the first single volume monograph that systematically summarizes the recent progress in using non-Fourier heat conduction theories to deal with the multiphysical behaviour of smart materials and structures. 
The book contains six chapters and starts with a brief introduction to Fourier and non-Fourier heat conduction theories. Non-Fourier heat conduction theories include Cattaneo-Vernotte, dual-phase-lag (DPL), three-phase-lag (TPL), fractional phase-lag, and nonlocal phase-lag heat theories. Then, the fundamentals of thermal wave characteristics are introduced through reviewing the methods for solving non-Fourier heat conduction theories and by presenting transient heat transport in representative homogeneous and advanced heterogeneous materials. The book  provides the fundamentals of smart materials and structures, including the background, application, and governing equations. In particular, functionally-graded smart structures made of piezoelectric, piezomagnetic, and magnetoelectroelastic materials are introduced as they represent the recent development in the industry.

A series of uncoupled thermal stress analyses on one-dimensional structures are also included. The volume ends with coupled thermal stress analyses of one-dimensional homogenous and heterogeneous smart piezoelectric structures considering different coupled thermopiezoelectric theories. Last but not least, fracture behavior of smart structures under thermal disturbance is investigated and the authors propose directions for future research on the topic of multiphysical analysis of smart materials.       



Product details

Authors Abdolhamid Akbarzadeh, Hamid Akbarzadeh, Zengta Chen, Zengtao Chen
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 01.01.2019
 
EAN 9783030252007
ISBN 978-3-0-3025200-7
No. of pages 304
Dimensions 161 mm x 237 mm x 23 mm
Weight 638 g
Illustrations X, 304 p. 104 illus., 44 illus. in color.
Series Structural Integrity
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

B, engineering, Solid Mechanics, Testing of materials, Characterization and Analytical Technique, Materials science, Characterization and Evaluation of Materials, Mechanics, Mechanics, Applied, Maths for engineers, Mathematical modelling, Mathematical Modeling and Industrial Mathematics, Mathematical models

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