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Plasticity for Structural Engineers

Plasticity for Structural Engineers

List Price: $59.00
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Product Info Reviews

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Rating: 3 stars
Summary: Plasticity
Review: 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.

Rating: 5 stars
Summary: concepts in plasticity
Review: I found this book extremely helpful in getting an intutive feel to all the math used in plasticity. Specially the worked out example very nicely enforce the concepts learnt in each section before moving on to the next.

Rating: 5 stars
Summary: a fine plasticity book
Review: This book is one of the best plasticity books that I have read. It is pretty clear and has a lot of illuminating illustrations. It also has a good number of worked out examples to the point.

Rating: 5 stars
Summary: Wonderful book for plasticity
Review: 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.


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