Fatigue Crack Growth: Mechanics, Behavior & Prediction

Author:   Alphonse F Lignelli
Publisher:   Nova Science Publishers Inc
ISBN:  

9781606924761


Pages:   264
Publication Date:   15 December 2009
Format:   Hardback
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Fatigue Crack Growth: Mechanics, Behavior & Prediction


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Overview

Fatigue is one of the primary reasons for the failure of structural components. The life of a fatigue crack has two parts, initiation and propagation. Dislocations play a major role in the fatigue crack initiation phase. It has been observed in laboratory testing that after a large number of loading cycles dislocations pile up and form structures called persistent slip bands (PSB). Fatigue crack growth is a crucial subject in the aircraft, railroad and other transportation industries as well as in the biomedical industry. This book presents the latest research in the field.

Full Product Details

Author:   Alphonse F Lignelli
Publisher:   Nova Science Publishers Inc
Imprint:   Nova Science Publishers Inc
Dimensions:   Width: 26.00cm , Height: 2.00cm , Length: 18.00cm
Weight:   0.780kg
ISBN:  

9781606924761


ISBN 10:   1606924761
Pages:   264
Publication Date:   15 December 2009
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

Table of Contents

Preface; Real-time Fatigue Damage Monitoring via In Situ Ultrasonic Sensing; Advances in the Numerical Modelling of Fatigue Crack Closure Using Finite Elements; Textural Fractography of Fatigue Fractures; A Novel Fractography for Investigation of Fatigue Fracture Process in Materials; Fatigue Behavior Model for Short Fibre Glass Reinforced Polyamides; The Effect of Overload Plastic Zone on Fatigue Crack Propagation after Overloading; Fatigue Crack Growth Prediction in Asphalt Concrete Materials with Damage Mechanics Model; Fracture Strength Evaluation of Center-Crack Tensile Specimens Made of Heat-Treated Wrought Aluminum Alloys; Index.

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