Virtual Testing and Predictive Modeling : For Fatigue and Fracture Mechanics Allowables

Virtual Testing and Predictive Modeling: For Fatigue and Fracture Mechanics Allowables provides an overview of cost and time efficient methods in generating the fatigue and fracture data of industrial structural parts. Readers will find a systematic introduction to virtual testing to generate fatigu...

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Bibliografski detalji
Glavni autor: Farahmand, Bahram (Voditelj izdanja)
Format: Livre numérique
Jezik:Anglais
Izdano: New York, NY : Springer US 2009.
Cham : Springer Nature
Online pristup:Accès sur la plateforme de l'éditeur
Accès sur la plateforme Istex
Accès Université d'Orléans
Accès INSA CVL
Bilješka: Archives Springer e-books (Licence nationale)
Archives Springer e-books (Licence nationale)
Autres localisations: Voir dans le Sudoc
Edition sous un autre format:• Virtual testing and predictive modeling, for fatigue and fracture mechanics allowables, editor, Bahram Farahmand, Dordrecht, Springer, 2009, 1 volume (xxiii-407 pages), 978-0-387-95923-8
• Virtual Testing and Predictive Modeling, Texte imprimé, 9780387980805
• Virtual Testing and Predictive Modeling, Texte imprimé, 9781489983701
Sadržaj:
  • Virtual Testing and Its Application in Aerospace Structural Parts
  • Tools for Assessing the Damage Tolerance of Primary Structural Components
  • Cohesive Technology Applied to the Modeling and Simulation of Fatigue Failure
  • Fatigue Damage Map as a Virtual Tool for Fatigue Damage Tolerance
  • Predicting Creep and Creep/Fatigue Crack Initiation and Growth for Virtual Testing and Life Assessment of Components
  • Computational Approach Toward Advanced Composite Material Qualification and Structural Certification
  • Modeling of Multiscale Fatigue Crack Growth: Nano/Micro and Micro/Macro Transitions
  • Multiscale Modeling of Nanocomposite Materials
  • Predictive Modeling
  • Multiscale Approach to Predicting the Mechanical Behavior of Polymeric Melts
  • Prediction of Damage Propagation and Failure of Composite Structures (Without Testing)
  • Functional Nanostructured Polymer Metal Interfaces
  • Advanced Experimental Techniques for Multiscale Modeling of Materials.