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Fatigue in Composites

Fatigue in Composites
  • Author : Bryan Harris
  • Publsiher : Woodhead Publishing
  • Release : 14 November 2003
  • ISBN : 9781855736085
  • Pages : 742 pages
  • Rating : 5/5 from 1 ratings
GET THIS BOOKFatigue in Composites

Summary:
Fiber 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 which result in degradation in order to predict the life of a composite under specified conditions and produce composites with greater durability. This book provides an extensive account of contemporary research on fatigue from a selection of internationally recognized researchers. Part one introduces the concept, delivering a historical review of the fatigue behavior of fiber-reinforced plastics and illustrating fatigue test methods and fatigue under multiaxial stress systems. The second part reviews current research on micromechanical aspects, emphasizing long-term behavior, interface performance, delamination, and damage accumulation. The next two sections cover the analysis and testing of fatigue behavior and detail physical, micromechanical, computational, statistical, and life-prediction models for constant and variable stress. The final parts offer an overview of the wide range of composite fatigue-related problems experienced by engineers in aerospace, marine, and structural engineering.


Fatigue in Composites

Fatigue in Composites
  • Author : Bryan Harris
  • Publisher : Woodhead Publishing
  • Release : 14 November 2003
GET THIS BOOKFatigue in Composites

Fiber 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 which result in degradation in order to predict the life of a composite under specified conditions and produce composites with greater durability. This book provides an extensive account of contemporary research on fatigue from a selection of internationally recognized researchers. Part

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Fatigue of Composite Materials

Fatigue of Composite Materials
  • Author : Ronald F. Gibson
  • Publisher : DEStech Publications, Inc
  • Release : 27 October 2021
GET THIS BOOKFatigue of Composite Materials

This bound edition presents multiple investigations into various aspects of fatigue in composite materials and structures. This work is divided into three sections. The first section presents research into various aspects of fatigue modeling, including prediction of fatigue life, fatigue strength and fatigue crack growth rate. The second section deals primarily with experimental characterization of fatigue in composites, and the third section discusses fatigue behavior of full-scale composite structures. This volume is the third in the American Society for Composites

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Fatigue in Composites

Fatigue in Composites
  • Author : B. Harris
  • Publisher : Elsevier
  • Release : 31 October 2003
GET THIS BOOKFatigue in Composites

This major handbook is the first authoritative survey of current knowledge of fatigue behaviour of composites. It deals in detail with a wide range of problems met by designers in the automotive, marine and structural engineering industries. Compiled from the contributions of some of the best-known researchers in the field, it provides an invaluable, practical and encyclopaedic handbook covering recent developments. Comprehensively discusses the problems of fatigue in composites met by designers in the aerospace, marine and structural engineering industries

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Fatigue of Fiber-reinforced Composites

Fatigue of Fiber-reinforced Composites
  • Author : Anastasios P. Vassilopoulos,Thomas Keller
  • Publisher : Springer Science & Business Media
  • Release : 14 July 2011
GET THIS BOOKFatigue of Fiber-reinforced Composites

Fatigue has long been recognized as a mechanism that can provoke catastrophic material failure in structural applications and researchers are now turning to the development of prediction tools in order to reduce the cost of determining design criteria for any new material. Fatigue of Fiber-reinforced Composites explains these highly scientific subjects in a simple yet thorough way. Fatigue behavior of fiber-reinforced composite materials and structural components is described through the presentation of numerous experimental results. Many examples help the reader

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Creep and Fatigue in Polymer Matrix Composites

Creep and Fatigue in Polymer Matrix Composites
  • Author : R M Guedes
  • Publisher : Elsevier
  • Release : 29 November 2010
GET THIS BOOKCreep and Fatigue in Polymer Matrix Composites

Creep is the tendency of materials to deform when subjected to long-term stress, particularly when exposed to heat. Fatigue phenomena occur when a material is subjected to cyclic loading, causing damage which may progress to failure. Both are critical factors in the long-term performance and reliability of materials such as polymer matrix composites which are often exposed to these types of stress in civil engineering and other applications. This important book reviews the latest research in modelling and predicting creep

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Fatigue of Composite Materials

Fatigue of Composite Materials
  • Author : R. Talreja
  • Publisher : CRC Press
  • Release : 27 October 1987
GET THIS BOOKFatigue of Composite Materials

Fatigue in Composites provides extensive contemporary research on fatigue from 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

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Fatigue Life Prediction of Composites and Composite Structures

Fatigue Life Prediction of Composites and Composite Structures
  • Author : Anastasios P. Vassilopoulos
  • Publisher : Woodhead Publishing
  • Release : 08 October 2019
GET THIS BOOKFatigue Life Prediction of Composites and Composite Structures

Fatigue Life Prediction of Composites and Composite Structures, Second Edition, is a comprehensive review of fatigue damage and fatigue life modeling and prediction methodologies for composites and their use in practice. In this new edition, existing chapters are fully updated, while new chapters are introduced to cover the most recent developments in the field. The use of composites is growing in structural applications in many industries, including aerospace, marine, wind turbine and civil engineering. However, there are uncertainties about their

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Fatigue of Composite Materials

Fatigue of Composite Materials
  • Author : K.L. Reifsnider
  • Publisher : Elsevier
  • Release : 02 December 2012
GET THIS BOOKFatigue of Composite Materials

This book provides the first comprehensive review of its kind on the long-term behaviour of composite materials and structures subjected to time variable mechanical, thermal, and chemical influences, a subject of critical importance to the design, development, and certification of high performance engineering structures. Specific topics examined include damage, damage characterization, and damage mechanics; fatigue testing and evaluation; fatigue behaviour of short and long fibre reinforced polymer and metal matrix materials; viscoelastic and moisture effects; delamination; statistical considerations; the modeling

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Fatigue of Textile and Short Fiber Reinforced Composites

Fatigue of Textile and Short Fiber Reinforced Composites
  • Author : Valter Carvelli,Atul Jain,Stepan Lomov
  • Publisher : John Wiley & Sons
  • Release : 10 March 2017
GET THIS BOOKFatigue of Textile and Short Fiber Reinforced Composites

This book covers several aspects of the fatigue behavior of textile and short fiber reinforced composites. The first part is dedicated to 2D and 3D reinforced textile composites and includes a systematic description of the damage evolution for quasi-static and tensile-tensile fatigue loadings. Acoustic emissions and digital image correlation are considered in order to detect the damage modes’ initiation and development. The acoustic emission thresholds of the quasi-static loading are connected to the “fatigue limit” of the materials with distinctions

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Damage and Failure of Composite Materials

Damage and Failure of Composite Materials
  • Author : Ramesh Talreja,Chandra Veer Singh
  • Publisher : Cambridge University Press
  • Release : 07 June 2012
GET THIS BOOKDamage and Failure of Composite Materials

Understanding damage and failure of composite materials is critical for reliable and cost-effective engineering design. Bringing together materials mechanics and modeling, this book provides a complete guide to damage, fatigue and failure of composite materials. Early chapters focus on the underlying principles governing composite damage, reviewing basic equations and mechanics theory, before describing mechanisms of damage such as cracking, breakage and buckling. In subsequent chapters, the physical mechanisms underlying the formation and progression of damage under mechanical loads are described

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Fatigue and Fracture of Adhesively-Bonded Composite Joints

Fatigue and Fracture of Adhesively-Bonded Composite Joints
  • Author : A P Vassilopoulos
  • Publisher : Elsevier
  • Release : 21 October 2014
GET THIS BOOKFatigue and Fracture of Adhesively-Bonded Composite Joints

It is commonly accepted that the majority of engineering failures happen due to fatigue or fracture phenomena. Adhesive bonding is a prevailing joining technique, widely used for critical connections in composite structures. However, the lack of knowledge regarding fatigue and fracture behaviour, and the shortage of tools for credible fatigue design, hinders the potential benefits of adhesively bonded joints. The demand for reliable and safe structures necessitates deep knowledge in this area in order to avoid catastrophic structural failures. This

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