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This book contains an elastic-plastic analysis of accumulate damage and fracture with practical applications to engineering materials and structure fatigue life estimations. Models as well as practical applications are presented which makes the book interesting for both practitioners and theoretical researchers. Particular emphasis is laid on new approaches to the mixed-mode problem in fatigue and fracture, and especially to the fracture damage zone (FDZ) approach. The results of the demonstrated experimental and theoretical researches leads to the presentation of different crack growth models, predicting the crack growth rate and fatigue life of an initially angled crack under biaxial loads of arbitrary direction. Special attention is paid to the practical applications of the suggested models.




This book contains an elastic-plastic analysis of accumulate damage and fracture with practical applications to engineering materials and structure fatigue life estimations. Models as well as practical applications are presented which makes the book interesting for both practitioners and theoretical researchers. Particular emphasis is laid on new approaches to the mixed-mode problem in fatigue and fracture, and especially to the fracture damage zone (FDZ) approach. The results of the demonstrated experimental and theoretical researches leads to the presentation of different crack growth models, predicting the crack growth rate and fatigue life of an initially angled crack under biaxial loads of arbitrary direction. Special attention is paid to the practical applications of the suggested models.


This book contains an elastic-plastic analysis of accumulate damage and fracture with practical applications to engineering materials and structure fatigue life estimations. Models as well as practical applications are presented which makes the book interesting for both practitioners and theoretical researchers. Particular emphasis is laid on new approaches to the mixed-mode problem in fatigue and fracture, and especially to the fracture damage zone (FDZ) approach. The results of the demonstrated experimental and theoretical researches leads to the presentation of different crack growth models, predicting the crack growth rate and fatigue life of an initially angled crack under biaxial loads of arbitrary direction. Special attention is paid to the practical applications of the suggested models.
Content:
Front Matter....Pages i-viii
Mixed-mode crack behavior under plane stress and plane strain small scale yielding....Pages 1-72
Modeling of crack growth by fracture damage zone....Pages 73-130
Experimental investigation of fatigue crack propagation....Pages 131-170
Models for predicting crack growth rate and fatigue life....Pages 171-202
Practical applications....Pages 203-234
Back Matter....Pages 235-246


This book contains an elastic-plastic analysis of accumulate damage and fracture with practical applications to engineering materials and structure fatigue life estimations. Models as well as practical applications are presented which makes the book interesting for both practitioners and theoretical researchers. Particular emphasis is laid on new approaches to the mixed-mode problem in fatigue and fracture, and especially to the fracture damage zone (FDZ) approach. The results of the demonstrated experimental and theoretical researches leads to the presentation of different crack growth models, predicting the crack growth rate and fatigue life of an initially angled crack under biaxial loads of arbitrary direction. Special attention is paid to the practical applications of the suggested models.
Content:
Front Matter....Pages i-viii
Mixed-mode crack behavior under plane stress and plane strain small scale yielding....Pages 1-72
Modeling of crack growth by fracture damage zone....Pages 73-130
Experimental investigation of fatigue crack propagation....Pages 131-170
Models for predicting crack growth rate and fatigue life....Pages 171-202
Practical applications....Pages 203-234
Back Matter....Pages 235-246
....
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