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Plastic Design of Frames: Volume 2: Applications

Plastic Design of Frames: Volume 2: Applications

Plastic Design of Frames: Volume 2: Applications Hardback - 1971 - 1st Edition

by Jaques Heyman

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Hardback. New. Understanding the theory of structures is fundamental to structural engineers and architects. Plastic Design of Frames; Volume 1. Fundamentals provides a broad introduction to the mathematics behind a range of structural processes. This companion book Plastic Design of Frames; Volume 2. Applications provides additional advanced topics and case studies.
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Details

  • Title Plastic Design of Frames: Volume 2: Applications
  • Author Jaques Heyman
  • Binding Hardback
  • Edition number 1st
  • Edition 1
  • Condition New
  • Pages 302
  • Volumes 1
  • Language ENG
  • Publisher Cambridge University Press, London
  • Publication date 1971-02-02
  • Illustrated Yes
  • Features Illustrated, Index
  • Bookseller's Inventory # B9780521079846
  • ISBN 9780521079846 / 0521079845
  • Weight 1.35 lbs (0.61 kg)
  • Dimensions 9 x 6 x 0.81 in (22.86 x 15.24 x 2.06 cm)
  • Category Technology & Industrial Arts
  • Library of Congress subjects Structural design, Plastic analysis (Engineering)
  • Library of Congress Catalogue Number 69019370
  • Dewey Decimal Code 624.177
  • Quantity available 10

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Reader reviews for Plastic Design of Frames: Volume 2: Applications

From the publisher

A good grasp of the theory of structures - the theoretical basis by which the strength, stiffness and stability of a building can be understood - is fundamental to structural engineers and architects. Yet most modern structural analysis and design is carried out by computer, with the user isolated from the processes in action. Plastic Design of Frames; Volume 1. Fundamentals provides a broad introduction to the mathematics behind a range of structural processes. The basic structural equations have been known for at least 150 years, but modern plastic theory has opened up a fundamentally new way of advancing structural theory. Paradoxically, the powerful plastic theorems can be used to examine 'classic' elastic design activity, and strong mathematical relationships exist between these two approaches. Some of the techniques used in this book may be familiar to the reader, and some may not, but each of the topics examined will give the structural engineer valuable insight into the basis of the subject. This companion book Plastic Design of Frames; Volume 2. Applications provides additional advanced topics and case studies. This lucid volume provides a valuable read for structural engineers and others who wish to deepen their knowledge of the structural analysis and design of buildings.
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