Modeling Damage, Fatigue and Failure of Composite Materials

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Modelling Damage, Fatigue and Failure of Composite Materials provides the latest research on the field of composite materials, an area that has attracted a wealth of research, with significant interest in the areas of damage, fatigue, and failure. The book is a comprehensive source of physics-based models for the analysis of progressive and critical failure phenomena in composite materials, and focuses on materials modeling, while also reviewing treatments to give the reader thorough direction for analyzing failure in composite structures. Part one of the book reviews the damage development in composite materials such as generic damage and damage accumulation in textile composites and under multiaxial loading, while part two focuses on the modeling of failure mechanisms in composite materials with attention given to fibre/matrix cracking and debonding, compression failure, and delamination fracture. Final sections examine the modeling of damage and materials response in composite materials, including micro-level and multi-scale approaches, the failure analysis of composite materials and joints, and the applications of predictive failure models.

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Detaljer
  • SprogEngelsk
  • Sidetal472
  • Udgivelsesdato20-10-2015
  • ISBN139781782422860
  • Forlag Woodhead Publishing Ltd
  • FormatHardback
Størrelse og vægt
  • Vægt620 g
  • coffee cup img
    10 cm
    book img
    15,6 cm
    23,4 cm

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    Fatigue Finite element method Continuum damage mechanics Fracture mechanics Composite materials Micromechanics Stress concentration Acoustic emission Adhesive joints Curing Delamination Multiscale modeling Multiaxial Fatigue Laminates Mechanical behavior Matrix Cracking Composites Fracture Toughness Failure prediction Damage Evolution Crack Propagation Damage J-Integral Analytical modeling Voids Failure analysis Polymer composites Modelling Cohesive Zone Model Fiber Failure Laminate Textile Composites Damage mechanisms Crack initiation Energy release rate Crack formation Biaxial loads Cohesive elements Crack bridging Cohesive laws Bridging Laws Crack density Damage development Composite failure Failure theories Failure Criteria Effective laminate properties Composite strength Composite constituents Generalized Plane Strain Fiber-matrix interface failure Fiber-matrix interface Fiber microbuckling Debonding Debond propagation Interfacial friction Interface damage Interfacial fracture mechanics Interrelationships between properties Matrix-interfiber failure Micro-damage mechanics Failure plane Fatigue life diagrams Fiber waviness Fracture specimens Manufacturing defects Matrix polymer failure Multidirectional Laminates Multiscale failure analysis Ply blocking effect Ply cracking Generic damage in composite materials Global/local methods Progressive damage Point failure Singular stresses Intralaminar Cracking Synergistic damage mechanics Shear lag approach Thermoelastic constants Kink band mixed mode Multimaterial corners Postbuckling Orthotropy Mode II interfacial fracture toughness Open-hole compression Statistical damage evolution Stiffened Panels Virtual crack closure technique Transverse Cracking

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