Advanced Methods of Fatigue Assessment

The book in hand presents advanced methods of brittle fracture and fatigue assessment. The Neuber concept of fictitious notch rounding is enhanced with regard to theory and application. The stress intensity factor concept for cracks is extended to pointed and rounded corner notches as well as to loc...

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Bibliographic Details
Main Authors: Radaj, Dieter, Vormwald, Michael (Author)
Format: eBook
Language:English
Published: Berlin, Heidelberg Springer Berlin Heidelberg 2013, 2013
Edition:1st ed. 2013
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Advanced Methods of Fatigue Assessment  |h Elektronische Ressource  |c by Dieter Radaj, Michael Vormwald 
250 |a 1st ed. 2013 
260 |a Berlin, Heidelberg  |b Springer Berlin Heidelberg  |c 2013, 2013 
300 |a XIV, 490 p  |b online resource 
505 0 |a Generalised Neuber Concept of Fictitious Notch Rounding -- Extended Stress Intensity Factor Concepts -- Local Strain Energy Density Concept -- Elastic–Plastic Fatigue Crack Growth 
653 |a Mechanics, Applied 
653 |a Engineering design 
653 |a Solids 
653 |a Solid Mechanics 
653 |a Engineering Design 
653 |a Materials / Analysis 
653 |a Characterization and Analytical Technique 
700 1 |a Vormwald, Michael  |e [author] 
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082 0 |a 620.0042 
520 |a The book in hand presents advanced methods of brittle fracture and fatigue assessment. The Neuber concept of fictitious notch rounding is enhanced with regard to theory and application. The stress intensity factor concept for cracks is extended to pointed and rounded corner notches as well as to locally elastic-plastic material behaviour. The averaged strain energy density within a circular sector volume around the notch tip is shown to be suitable for strength-assessments. Finally, the various implications of cyclic plasticity on fatigue crack growth are explained with emphasis being laid on the DJ-integral approach.   This book continues the expositions of the authors’ well known reference work in German language ‘Ermüdungsfestigkeit – Grundlagen für Ingenieure’ (Fatigue strength – fundamentals for engineers)