Details

Title Multiscale fatigue modelling of metals.
Creators Dogahe K. J.
Collection Электронные книги зарубежных издательств ; Общая коллекция
Subjects Metals — Fatigue. ; Metals — Fatigue — Models. ; EBSCO eBooks
Document type Other
File type PDF
Language English
Rights Доступ по паролю из сети Интернет (чтение, печать, копирование)
Record key on1301483359
Record create date 3/3/2022

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  • front-matter
    • Table of Contents
    • Preface
  • 1
    • Numerical Determination of Paris Law Constants for Carbon Steel Using a Two-Scale Model
    • 1. Introduction
    • 2. Modelling approach and details
      • 2.1 Geometry of the macro-models
      • 2.2 Submodel (microstructural model) details
    • 3 Results
    • 4. Discussion and conclusions
    • References
  • 2
    • Calculation of the Wöhler (S-N) Curve Using a Two-Scale Model
    • 1. Introduction
    • 2. Fatigue crack initiation and long crack growth calculation
    • 3. Numerical determination of the Wöhler (S-N) curve
      • 3.1 Crack initiation modelling
      • 3.2 Crack growth modelling
    • 4. Results
    • 5. Discussions and conclusion
    • References
  • 3
    • On the Critical Resolved Shear Stress and its Importance in the Fatigue Performance of Steels and other Metals with Different Crystallographic Structures
    • 1. Introduction
    • 2. Materials and Methods
      • 2.1 Compression Testing of Small Pillars
      • 2.2 Size Effect or A Power-Law Relationship between CRSS and Pillar Diameter
      • 2.3 Strengthening Mechanisms
      • 2.4 Numerical Estimation of Fatigue Behavior with the Help of CRSS
    • 3. Results
    • 4. Discussion and Conclusions
    • References
  • 4
    • A Newly Discovered Relation between the Critical Resolved Shear Stress and the Fatigue Endurance Limit for Metallic Materials
    • 1. Introduction
    • 2. Methods and Materials
      • 2.1 Methods and Reference to Previous Work
      • 2.2 Materials
      • 2.3 New Insights into Previous Work
    • 3. Results
      • 3.1 Relation between the Critical Resolved Shear Stress and the Fatigue Endurance Limit
      • 3.2 Application of the Newly Discovered Relation
    • 4. Discussions
    • 5. Conclusions
    • Appendix A
    • References
  • back-matter
    • Keyword Index
    • About the Editor and Authors
    • Prof. Dr. rer. nat. Dr. h. c. Siegfried Schmauder (Author)
    • Kiarash J. Dogahe, M.Sc. (Editor)
    • Dr. Marijo Mlikota (Author)
    • Prof. dr. sc. Željko Božić (Author)

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