Fracture Mechanics
Autor Chin-Teh Sunen Limba Engleză Paperback – 19 aug 2016
With a concise and easily understood mathematical treatment of crack tip fields, this book provides the basis for applying fracture mechanics in solving practical problems. It features a unique coverage of bi-material interfacial cracks, with applications to commercially important areas of composite materials, layered structures, and microelectronic packaging. A full chapter is devoted to the cohesive zone model approach, which has been extensively used in recent years to simulate crack propagation. A unified discussion of fracture criteria involving nonlinear/plastic deformations is also provided.
The book is an invaluable resource for mechanical, aerospace, civil, and biomedical engineers in the field of mechanics as well as for graduate students and researchers studying mechanics.
- Concise and easily understood mathematical treatment of crack tip fields (chapter 3) provides the basis for applying fracture mechanics in solving practical problems
- Unique coverage of bi-material interfacial cracks (chapter 8), with applications to commercially important areas of composite materials, layered structures, and microelectronic packaging
- A full chapter (chapter 9) on the cohesive zone model approach, which has been extensively used in recent years to simulate crack propagation
- A unified discussion of fracture criteria involving nonlinear/plastic deformations
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Specificații
ISBN-13: 9780128103371
ISBN-10: 012810337X
Pagini: 336
Dimensiuni: 191 x 235 mm
Greutate: 0.58 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 012810337X
Pagini: 336
Dimensiuni: 191 x 235 mm
Greutate: 0.58 kg
Editura: ELSEVIER SCIENCE
Cuprins
Introduction
Griffith Theory of Fracture
Elastic Stress Field Around a Crack Tip
Energy Release Rate
Mixed Mode Fracture
Crack Tip Plasticity
Elastic-Plastic Fracture Criteria
Interfacial Cracks Between Two Dissimilar Solids
Cohesive Zone Model
Appendix: Stress Intensity Factors
Griffith Theory of Fracture
Elastic Stress Field Around a Crack Tip
Energy Release Rate
Mixed Mode Fracture
Crack Tip Plasticity
Elastic-Plastic Fracture Criteria
Interfacial Cracks Between Two Dissimilar Solids
Cohesive Zone Model
Appendix: Stress Intensity Factors
Notă biografică
Neil A. Armstrong Distinguished Professor of Aeronautics and Astronautics
Ph.D., Northwestern University 1967
Awards and Major Appointments
AIAA Fellow
ASME Fellow
ASC Fellow
Research Award for excellence in faculty research, Schools of Engineering, Purdue University, 2004.
ASTM Committee D-30 Wayne W. Stinchcomb Memorial Award
Research Areas
Current research interests include the following areas:
Composite Materials and Structures
Fractures Mechanics
Smart Materials -
Nanomaterials