Cover image for Elastic and inelastic stress analysis
Title:
Elastic and inelastic stress analysis
Edition:
Rev. ed
Publication Information:
Englewood Cliffs : Prentice Hall, 1997
ISBN:
9781560326861

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30000005169986 TA418 S48 1997 Open Access Book Book
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Summary

Summary

Presents certain key aspects of inelastic solid mechanics centered around viscoelasticity, creep, viscoplasticity, and plasticity. It is divided into three parts consisting of the fundamentals of elasticity, useful constitutive laws, and applications to simple structural members, providing extended treatment of basic problems in static structural mechanics, including elastic and inelastic effects. It contains worked-out examples and end-of-chapter problems.


Reviews 1

Choice Review

Shames and Cozzarelli's effort constitutes a follow-up to strength of materials or stress analysis courses. Lucidly written by these experienced authors, this book, intended for senior undergraduate and graduate students, seems to be more appropriate for the latter. Its clear competitor is Y.C. Fung's Foundation of Solid Mechanics (1965) but the two works differ sufficiently to be able to coexist in a library. Fung gives a stronger theoretical background and includes such topics missing from the book under review: general tensors, finite strain, elastic potentials, energy theorems, Muskehelishvili's method, calculus of variations, and thermodynamics. On the other hand, Shames and Cozzarelli put more emphasis on material properties and, in particular, on viscous behavior of materials. There is also a fair amount of discussion on flexure of beams, but thin plate theory is practically ignored. A modest number of references, mostly to other texts; adequate illustrations. A generous selection of problems at the end of each chapter is a welcome feature. A useful addition for a graduate-level library.-R. Solecki, University of Connecticut


Table of Contents

Preface
Part I Fundamentals
1 Introduction to Cartesian Tensors
2 Stress
3 Strain
Part II Useful Constitutive Laws
4 Behavior of Engineering Materials
5 Linear Elastic Behavior
6 Linear Viscoelastic Behavior
7 Introduction to Nonlinear Viscoelastic Behavior:Creep
8 Plasticity
9 Boundary Value Problems
Part III Applications to Simple Structural Members
10 Flexure of Beams
11 Torsion of Shafts
12 Plane Strain
13 Plane Stress
Appendixes