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Fatigue in Composite
 
 
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Fatigue in Composite [Hardcover]

Bryan Harris (Editor)

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Book Description

0849317673 978-0849317675 November 3, 2003 1
Fibre composites, like metals, exhibit a form of degradation in service described as fatigue. Engineers must understand composite fatigue because it is a causative agent of design and structural failures. Engineers need to increase their knowledge of the mechanisms that result in degradation in order to predict the life of a composite under specified conditions and produce composites with greater durability. Fatigue in Composites provides an extensive account of contemporary research on fatigue from a selection of internationally recognized researchers.

Part I introduces the concept, delivering a historical review of the fatigue behavior of fibre-reinforced plastics and illustrating fatigue test methods and fatigue under multiaxial stress systems. Part II reviews current research on micromechanical aspects, emphasizing long-term behavior, interface performance, delamination, and damage accumulation.

Part III covers the analysis and testing of fatigue behavior. Part IV details physical, micromechanical, computational, statistical, and life-prediction models for constant and variable stress. The final sections offer an overview of the wide range of composite fatigue-related problems experienced by engineers in aerospace, marine, and structural engineering.


About the Author
Bryan Harris is Professor Emeritus at Bath University, where he served as Professor of Materials Science. Dr. Harris worked for ICI Metals Division and Pratt & Whitney Aircraft, and was Editor-in-Chief of the international journal Composites Science and Technology. He also serves as Materials Consultant for Buro Happold Civil Engineers Ltd.

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Inside This Book (learn more)
First Sentence:
The engineer's perception of the phenomenon of fatigue is so closely linked with the behaviour of homogeneous, isotropic, metallic materials that there has often been a tendency to treat modern fibre composites as though they were metals. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
hybrid resin composites, hybrid fibre composites, residual fatigue strength, crack tip delaminations, relative delamination area, roadway panels, interleaved composites, matrix crack density, constant amplitude fatigue data, fatigue damage law, reduced stiffness properties, detecting fatigue damage, low cyclic stress, maximum static strength, stress wave factor, fatigue failure criteria, fatigue damage model, fatigue damage development, pure matrix regions, design strain levels, macroscopic failure modes, fatigue loading conditions, continuous fibre laminates, monotonic tensile strength, ply matrix cracks
Key Phrases - Capitalized Phrases (CAPs): (learn more)
International Conference, New York, American Helicopter Society, International Journal of Fatigue, University of Bath, Compos Mater, Elsevier Science, Journal of Materials Science, Mechanical Engineering Publications Ltd, Compos Sci, Academic Press, Engineering Fracture Mechanics, Wind Energy Conversion, Annual Forum, Elsevier Applied Science, Helicopter Fatigue Methodology, Journal of Adhesion, Specialists Meeting, Comp Mater, Mater Sci, After Spearing, International Journal of Fracture, Plenum Press, Wood Sci, After Kortschot
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