Fatigue in Composite Materials : Science and Technology of the Fatigue Response of Fibre-Reinforced Plastics

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Fatigue in Composite Materials : Science and Technology of the Fatigue Response of Fibre-Reinforced Plastics

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  • 製本 Hardcover:ハードカバー版
  • 言語 ENG
  • 商品コード 9780849317675
  • DDC分類 664

Full Description


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 AuthorBryan 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.

Contents

INTRODUCTION TO FATIGUE IN COMPOSITESA Historical Review of the Fatigue Behaviour of Fibre-Reinforced Plastics, B. HarrisFatigue Test Methods, Problems and Standards, G.D. SimsFatigue under Multiaxial Stress Systems, M.M. Shokrieh and L.B. LessardEffects of Aggressive Environments on Long-Term Behavior, F.R. JonesThe Effect of the Interface on the Fatigue Performance of Fibre Composites, C. Galiotis and C.KoimtzoglouDelamination Fatigue, R. MartinThe Fatigue of Hybrid Composites, G.F. Fernando and F.A.A. Al-KhodairiNon-Destructive Evaluation of Damage Accumulation, A.P. MouritzShort-Fibre Thermoset Composites, G. CaprinoWoven-Fibre Thermoset Composites, N.K. Naik Fatigue of Thermoplastic Composites, E.K. Gamsted and L.A. BerglundFatigue of Wood and Wood Panel Products, M.P. Ansell LIFE-PREDICTION METHODS FOR CONSTANT STRESS AND VARIABLE STRESSPhysical Modelling of Damage Development in Structural Composite Materials Under Stress, P.W.R. BeaumontMicromechanical Models, K. Reifsnider and S. CaseA Computational Meso-Damage Model for Life Prediction for Laminates, P. Ladeveze and G. LubineauA Statistical Study on Fatigue Performance of Fibre-Reinforced Composite Laminates, X. Diao, L. Ye, Y-W. MaiAnalysis of Matrix Crack-Induced Delamination in Composite Laminates under Static and Fatigue Loading, M. KashtalyahFatigue Strength of Composites under Variable Plane Stress, T.P. Philippidis and A.P. VassilopoulosLife Prediction under Service Loading Spectra, L.J. Lee and K.E. Fu A Parametric Constant-Life Model for Prediction of the Fatigue Lives of Fibre-Reinforced Plastics, B. HarrisA Neural Network Approach to Fatigue-Life Prediction, J.A. Lee and D.P. AlmondThe Fatigue Performance of Composite Structural Components, M.D. GilchristFatigue in Joints in Composite Structures, J. Schoen and R. StarikovFatigue in Filament-Wound Structures, D. Perreux and F. ThiebaudFatigue of FRP Composites in Civil Engineering Applications, J.M.C. CadeiFatigue in Aerospace Applications, A.J. Davies and P.T. CurtisFatigue and Durability of Marine Composites, P. Davies, D. Choqueuse, and A. Roy