
Classical And Computational Solid Mechanics
World Scientific Publishing Co Pte Ltd
Published on 17. July 2017
Book
Paperback/Softback
860 pages
978-981-4713-65-8 (ISBN)
Description
The second edition provides an update of the recent developments in classical and computational solid mechanics. The structure of the book is also updated to include five new areas: Fundamental Principles of Thermodynamics and Coupled Thermoelastic Constitutive Equations at Large Deformations, Functional Thermodynamics and Thermoviscoelasticity, Thermodynamics with Internal State Variables and Thermo-Elasto-Viscoplasticity, Electro-Thermo-Viscoelasticity/Viscoplasticity, and Meshless Method. These new topics are added as self-contained sections or chapters. Many books in the market do not cover these topics.This invaluable book has been written for engineers and engineering scientists in a style that is readable, precise, concise, and practical. It gives the first priority to the formulation of problems, presenting the classical results as the gold standard, and the numerical approach as a tool for obtaining solutions.
More details
Series
Edition
Second Edition
Language
English
Place of publication
Singapore
Singapore
Target group
College/higher education
Dimensions
Height: 229 mm
Width: 152 mm
Thickness: 46 mm
Weight
1222 gr
ISBN-13
978-981-4713-65-8 (9789814713658)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Persons
Author
Univ Of California, San Diego, Usa
Univ Of California, San Diego, Usa & Hong Kong Univ Of Science & Technology, Hong Kong
Utc Aerospace Systems, Usa
Content
Introduction; Tensor Analysis; Stress Tensor; Analysis of Strain; Conservation Laws; Elastic and Plastic Behavior of Materials; Linearized Theory of Elasticity; Solutions of Problems in Linearized Theory of Elasticity by Potentials; Two-Dimensional Problems in Linearized Theory of Elasticity; Variational Calculus, Energy Theorems, Saint-Venant's Principle; Hamilton's Principle, Wave Propagation, Applications of Generalized Coordinates; Elasticity and Thermodynamics; Finite Element Methods; Mixed and Hybrid Formulations; Finite Element Methods for Plates and Shells; Functional Thermodynamics and Thermoviscoelasticity; Thermodynamics with Internal State Variables and Thermoviscoplasticity; Electro-Thermo-Viscoelasticity/Viscoplasticity; Meshless Method;