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DPSL

Physical Sciences || Materials Science

Fracture Mechanics

Author: Michael Janssen, Jan Zuidema, Russell Wanhill

Illustrations : 252 line drawings and 13 b+w photos

Master eBook ISBN10 : 0-203-59686-2

Master eBook ISBN13 : 978-0-203-59686-9

No of pages : 384

eBook Price : $59.95

Originally Published : 8 Jul 2004

In this second edition, which is the result of numerous revisions, updates and additions, the authors cover the basic concepts of fracture mechanics for both the linear elastic and elastic-plastic regimes. The fracture mechanics parameters K, G, J and CTOD are treated in a basic manner along with the text methods to determine critical values. The development of failure assessment based on elastic-plastic fracture mechanics is reflected in a comprehensive treatment.

Three chapters are devoted to the fracture mechanics characterisation of crack growth. Fatigue crack growth is extensively treated and attention is paid to the important topic of the initiation and growth of short fatigue cracks. Furthermore, sustained load fracture and dynamic crack growth are discussed, including various test techniques, e.g. the determination of the crack arrest toughness.

Finally, there are two chapters dealing with mechanisms of fracture and the ways in which actual material behaviour influences the fracture mechanics characterisation of crack growth.

This textbook is intended primarily for engineering students. It will be useful to practising engineers as well, since it provides the background to several test and design methods and to criteria for material selection.



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Table of contents : Contents. Part I: Introduction 1. An Overview Part II: Linear Elastic Fracture Mechanics 2. The Elastic Stress Files Approach 3. Crack Tip Plasticity 4. The Energy balance Approach 5. LEFM Testing Part III: Elastic-Plastic Fracture Mechanics 6. Basic Aspects of Elastic-Plastic Fracture Mechanics 7. EPFM Testing Failure Assessment Using EPFM 8. Failure Assessment Using EPFM Part IV: Fracture Mechanics Concepts for Crack Growth 9. Fatigue Crack Growth 10. Sustained Load Fracture 11. Dynamic Crack Growth and Arrest Part V: Mechanisms of Fracture in Actual Materials 12. Mechanisms of Fracture in Metallic Materials 13. The Influence of Material Behaviour on Fracture Mechanics Properties.


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