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Finite Element Analysis and­ Design of Metal Structures

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Format
Hardback, 218 pages
Published
United Kingdom, 1 October 2013

Traditionally, engineers have used laboratory testing to investigate the behavior of metal structures and systems. These numerical models must be carefully developed, calibrated and validated against the available physical test results. They are commonly complex and very expensive. From concept to assembly, Finite Element Analysis and Design of Metal Structures provides civil and structural engineers with the concepts and procedures needed to build accurate numerical models without using expensive laboratory testing methods. Professionals and researchers will find Finite Element Analysis and Design of Metal Structures a valuable guide to finite elements in terms of its applications.


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Product Description

Traditionally, engineers have used laboratory testing to investigate the behavior of metal structures and systems. These numerical models must be carefully developed, calibrated and validated against the available physical test results. They are commonly complex and very expensive. From concept to assembly, Finite Element Analysis and Design of Metal Structures provides civil and structural engineers with the concepts and procedures needed to build accurate numerical models without using expensive laboratory testing methods. Professionals and researchers will find Finite Element Analysis and Design of Metal Structures a valuable guide to finite elements in terms of its applications.

Product Details
EAN
9780124165618
ISBN
0124165613
Other Information
Illustrated
Dimensions
22.9 x 15 x 1.5 centimeters (0.42 kg)

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Build accurate numerical models without using expensive laboratory testing methods.

Table of Contents

1. Introduction

2. The general steps of finite element analysis

3. Finite element modelling

4. Linear and nonlinear finite element analyses

5. Examples for finite element models of metal columns

6. Examples for finite element models of metal beams

7. Examples for finite element models of metal tubular connections

8. Design examples for metal tubular connections

About the Author

Dr. Ehab Ellobody is Professor of Steel Bridges and Structures at Tanta University in Egypt. He attained his PhD from the University of Leeds, UK in 2002 in the field of composite structures. Following his PhD, he joined different research groups at Tanta University, Hong Kong University of Science and Technology, The University of Hong Kong, The University of Manchester, and Sohan University. Professor Ellobody has published over 85 international journal articles and conference papers in different fields. He has two international books published by Elsevier. His deanship role from 2014 to 2020 at Sohar University, Oman, has resulted in Engineers Australia accreditation of undergraduate Engineering programs. Professor, Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong.

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