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Advanced Methods of Fatigue Assessment
Details
Detailing novel, cutting-edge methods of evaluating brittle fracture and fatigue, this book includes enhancements to the Neuber concept of fictitious notch rounding and new applications of the DJ-integral approach to assessing cyclic plasticity crack growth.
In five chapters, this volume presents recent developments in fatigue assessment. In the first chapter, a generalized Neuber concept of fictitious notch rounding is presented where the microstructural support factors depend on the notch opening angle besides the loading mode. The second chapter specifies the notch stress factor including the strain energy density and J-integral concept while the SED approach is applied to common fillet welded joints and to thin-sheet lap welded joints in the third chapter. The forth chapter analyses elastic-plastic deformations in the near crack tip zone and discusses driving force parameters. The last chapter discusses thermomechanical fatigue, stress, and strain ranges.
Focuses on areas of substantial scientific progress Introduces new concepts Written by well-known experts Includes supplementary material: sn.pub/extras
Klappentext
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).
Inhalt
Generalised Neuber Concept of Fictitious Notch Rounding.- Extended Stress Intensity Factor Concepts.- Local Strain Energy Density Concept.- ElasticPlastic Fatigue Crack Growth.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783642429002
- Lesemotiv Verstehen
- Genre Mechanical Engineering
- Auflage 2013
- Sprache Englisch
- Anzahl Seiten 504
- Herausgeber Springer Berlin Heidelberg
- Größe H235mm x B155mm x T28mm
- Jahr 2015
- EAN 9783642429002
- Format Kartonierter Einband (Kt)
- ISBN 3642429009
- Veröffentlichung 23.06.2015
- Titel Advanced Methods of Fatigue Assessment
- Autor Michael Vormwald , Dieter Radaj
- Gewicht 756g