Elasticity Theory Applications and Numerics 4th Edition by Martin Sadd – Ebook PDF Instant Download/Delivery: 9780128159873, 0128159871
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Product details:
ISBN 10: 0128159871
ISBN 13: 9780128159873
Author: Martin H. Sadd
Elasticity: Theory, Applications, and Numerics, Fourth Edition, continues its market-leading tradition of concisely presenting and developing the linear theory of elasticity, moving from solution methodologies, formulations, and strategies into applications of contemporary interest, such as fracture mechanics, anisotropic and composite materials, micromechanics, nonhomogeneous graded materials, and computational methods.
Developed for a one- or two-semester graduate elasticity course, this new edition has been revised with new worked examples and exercises, and new or expanded coverage of areas such as treatment of large deformations, fracture mechanics, strain gradient and surface elasticity theory, and tensor analysis. Using MATLAB software, numerical activities in the text are integrated with analytical problem solutions. Online ancillary support materials for instructors include a solutions manual, image bank, and a set of PowerPoint lecture slides.
- Provides a thorough yet concise introduction to linear elasticity theory and applications
- Offers detailed solutions to problems of nonhomogeneous/graded materials
- Features a comparison of elasticity solutions with elementary theory, experimental data, and numerical simulations
- Includes online solutions manual and downloadable MATLAB code
Table of contents:
Part 1 – Foundations and Elementary Applications
Chapter 1: Mathematical Preliminaries
Chapter 2: Deformation: Displacements and Strains
Chapter 3: Stress and Equilibrium
Chapter 4: Material Behavior—Linear Elastic Solids
Chapter 5: Formulation and Solution Strategies
Chapter 6: Strain Energy and Related Principles
Chapter 7: Two-Dimensional Formulation
Chapter 8: Two-Dimensional Problem Solution
Chapter 9: Extension, Torsion, and Flexure of Elastic Cylinders
Part 2 – Advanced Applications
Chapter 10: Complex Variable Methods
Chapter 11: Anisotropic Elasticity
Chapter 12: Thermoelasticity
Chapter 13: Displacement Potentials and Stress Functions: Applications to Three-Dimensional Problems
Chapter 14: Nonhomogeneous Elasticity
Chapter 15: Micromechanics Applications
Chapter 16: Numerical Finite and Boundary Element Methods
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Tags: Martin Sadd, Elasticity, Theory, Applications, Numerics

