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Advanced Strength and Applied Elasticity

Advanced Strength and Applied Elasticity - 4th edition

ISBN13: 978-0130473929

Cover of Advanced Strength and Applied Elasticity 4TH 03 (ISBN 978-0130473929)
ISBN13: 978-0130473929
ISBN10: 0130473928
Cover type:
Edition/Copyright: 4TH 03
Publisher: Prentice Hall, Inc.
Published: 2003
International: No

List price: $136.00

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Advanced Strength and Applied Elasticity - 4TH 03 edition

ISBN13: 978-0130473929

Ansel Ugural and Saul Fenster

ISBN13: 978-0130473929
ISBN10: 0130473928
Cover type:
Edition/Copyright: 4TH 03
Publisher: Prentice Hall, Inc.

Published: 2003
International: No
Summary

Appropriate for all courses covering strength and elasticity in the context of aeronautical, civil, or mechanical engineering disciplines.

Systematic, comprehensive, and practical, this classic exploration of real-world stress analysis has been thoroughly updated to reflect the latest methods and issues. It provides carefully balanced coverage of material mechanics, theory of elasticity methods, and computer-oriented numerical methods, all supported with a broad range of fully worked illustrative examples, many taken directly from actual engineering practice. Coverage includes: strain and stress-strain relationships; two-dimensional problems in elasticity; material failure criteria; bending of beams; torsion of prismatic bars; axisymmetrically loaded members; beams on elastic foundations; energy methods; elastic stability; plastic behavior of materials; plates and shells; and more. Additions to the Fourth Edition include enhanced coverage of failure criteria; fracture mechanics; compound cylinders; numerical methods; energy and variational methods; buckling of stepped columns; and common shell types. The book also provides an extensive set of sample problems, as well as tables covering software for principle stresses and area properties; beam deflection, material properties, and conversion factors.

Features

  • NEW--Updated to reflect the latest stress analysis techniques and methods--Includes new coverage of failure criteria, fracture mechanics, compound cylinders, numerical methods, energy and variational methods, buckling of stepped columns, and common shell types.
    • Helps students master both traditional and state-of-the-art stress analysis techniques.
  • Extensive set of illustrative examples and real-life problems--Contains a wide range of examples and case studies, many drawn from actual engineering practice, including rational design procedure, buckling, stress concentrations, and strain measurement.
    • Gives students insight into stress analysis in real-world environments, not just theory.
  • Tables covering a wide range of important topics--Presents detailed tables covering software for principal stresses and area properties; beam deflection; material properties; and conversion factors.
    • Provides resources and tools students can use to solve a wide variety of stress analysis problems.
  • State-of-the-art numerical methods--Offers in-depth coverage of numerical methods that lend themselves to computerization.
    • Shows students how to solve problems that resist analytical treatment.

Author Bio

Ugural, Ansel C. : New Jersey Institute of Technology

Ansel C. Ugural, Ph.D., is Research Professor at New Jersey Institute of Technology. He has held various faculty and administrative positions at Fairleigh Dickinson University, and he taught at the University of Wisconsin. Ugural has considerable industrial experience in both full-time and consulting capacities. A member of several professional societies, he is the author of the books Mechanics of Materials, Stresses in Plates and Shells, and Mechanical Design: An Integrated Approach.


Fenster, Saul K. : New Jersey Institute of Technology

Saul K. Fenster, Ph.D., is Professor at New Jersey Institute of Technology, where he served as a president for over two decades. In addition to experience in industry, he has held varied positions at Fairleigh Dickinson University and taught at the City University of New York. Fenster, a Fellow of the American Society of Mechanical Engineers and the American Society for Engineering Education, is co-author of a text on mechanics.

Table of Contents

1. Analysis of Stress.
2. Strain and Stress-Strain Relations.
3. Two-Dimensional Problems in Elasticity.
4. Material Failure Criteria.
5. Bending of Beams.
6. Torsion of Prismatic Bars.
7. Numerical Methods.
8. Axisymmetrically Loaded Members.
9. Beams on Elastic Foundations.
10. Energy Methods.
11. Elastic Stability.
12. Plastic Behavior of Materials.
13. Plates and Shells.

Appendix A. Indicial Notation.
Appendix B. Solution of the Stress Cubic Equation.
Appendix C. Moments of Composite Areas.
Appendix D. Tables.
References.
Answers to Selected Problems.
Index.

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