Wednesday, June 26, 2013

[B500.Ebook] PDF Download Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han

PDF Download Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han

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Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han

Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han



Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han

PDF Download Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han

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Plasticity for Structural Engineers, by Wai Fah Chen, D.J. Han

Plasticity for Structural Engineers is a practical work that provides engineers and students in structural engineering or structural mechanics with the background needed to make the transition from fundamental theory to computer implementation and engineering practice. It sets out initially to examine the stress-strain behaviors of materials under simple test conditions, goes on to show how these behaviors can be generalized under combined stresses, and finally outlines the finite element implementation of the generalized stress-strain relations for the solution of practical steel and concrete structural problems. Plasticity for Structural Engineers not only offers the reader an understanding of the fundamental principles and theory of plasticity in a form that does not require extensive mathematical experience, but also provides the reader with a compact and convenient summary of the modern development of concrete plasticity and limit analysis in structural engineering.

  • Published on: 2011-11-09
  • Dimensions: 9.21" h x 1.26" w x 6.14" l,
  • Binding: Paperback
  • 624 pages

Review
One of the best books on the elastic and plastic behavior of structural elements under complex stress conditions. --M. Grujicic, Clemson University

Professors Chen and Han are to be congratulated for their quite unique contribution... a treasure on the bookshelf of those who seriously commit themselves in the study of structural plasticity --Applied Mechanics Reviews

About the Author
Dr. Wai-Fah Chen was Professor and Dean of the College of Engineering at the University of Hawaii from 1999 to 2006. From 1976 to 1999, he was Head of the Department of Structural Engineering at Purdue University and George E. Goodwin Distinguished Professor of Civil Engineering; prior to that he taught at Lehigh University. The author of more than 300 peer-reviewed publications and author or co-author of 20 books, his primary areas of research are constitutive modeling of engineering materials, soil and concrete plasticity, structural connections, and structural stability. He received his Ph.D. from Brown University. He is a member of the U.S. National Academy of Engineering and an Honorary member of the American Society of Civil Engineers.

Most helpful customer reviews

4 of 4 people found the following review helpful.
Plasticity
By Carlos Eduardo Foltran
For those who want to study hard the beyond-elastic-limit behavior of the materials, this book is a good choice. After an introduction to tensorial mathematics and Einstein's indicial notation, the plastic models are presented to the reader. On its first part, it is presented a general theory of plasticity for any kind of materials as metals, rocks, soils and concretes. Several examples of practical applications are given. On the second part, the study is concerned on metal plasticity and a numerical finite element approach is presented. The theory presented in this book is very complete and deeply explained, but the language in many parts is bit confuse, which makes the study more difficult. If you are looking for an introductory reading, it could be a good idea to try "Continuum Theory of Plasticity", by Akhtar S. Khan. This other one has a simpler language and more usual mathematical notation.

1 of 1 people found the following review helpful.
Good book at an affordable price!
By Yeong-bin Yang
This book provides a comprehensive treatment for the plasticity and inelastic behaviors of structural members under combined stresses. It covers all aspects of plasticity for both steel and reinforced concrete structures. While structural engineers will find this book a useful reference for elastic and plastic analysis and design of framed structures, university professors will find it a good textbook for courses on plasticity and limit analysis. I am delighted to know the book is now available at an affordable price for university adoption.

1 of 1 people found the following review helpful.
Wonderful book for plasticity
By Satish C. Chaparala
This is one of the wonderful books in plasticity. Especially the language in the book is self explanatory. Worked out examples provided in this book gives the reader a clear picture of concepts. As the title suggests, this is mainly focussed on plasticity in structures. If you are interested in plasticity in metal forming, rolling, contact etc, refer to mathematical theory of plasticity by Hill.

See all 6 customer reviews...

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