Fatigue Design of Components

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Table of contents
  • Contentsvii
  • Prefaceix
  • Chapter 1. Fatigue Assessment of an Automotive Suspension Component using Deterministic and Probabil1
  • Chapter 2. A Fatigue Life Assessment Methodology for Automotive Components17
  • Chapter 3. Fatigue Strength Prediction for Grey Cast Iron Components of Complex Geometry27
  • Chapter 4. Defect Sensitivity in Nodular Cast Iron for Safety Critical Components37
  • Chapter 5. Fatigue Design and Quality Control of Flapper Valves49
  • Chapter 6. Durabillty Assessments of Straddle Carrier Wheel Supports59
  • Chapter 7. Fatigue Design of Pressed Steel Sheet73
  • Chapter 8. A Multiaxial Fatigue Life Prediction Program85
  • Chapter 9. Fatigue Failure of a Connecting Rod97
  • Chapter 10. Notch Stress-Strain Analysis in Multiaxial Fatigue113
  • Chapter 11. Fracture Mechanical Fatigue Analysis of Railway Wheels with Rolling Defects125
  • Chapter 12. A Novel Fatigue Analysis Approach for Tubular Welded Joints135
  • Chapter 13. Fatigue Design of Welded Thin Sheet Structures145
  • Chapter 14. Fatigue of Welded Joints Under Complex Loading153
  • Chapter 15. Effectiveness of Improvement Methods for Welded Connections Subjected to Variable Amplit165
  • Chapter 16. Influence of Life Improvement Techniques on Different Steel Grades Under Fatigue Loading175
  • Chapter 17. On Multiaxial Fatigue Testing Time Reduction193
  • Chapter 18. Standard Fatigue Tests for Components203
  • Chapter 19. A New Method for Fatigue Life Improvement of Screws215
  • Author Index227
Book details
  • Vendor Elsevier S & T
  • SKU 9780080433189
  • ISBN-13 9780080531601

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This volume contains a selection of papers presented at Fatigue Design 95 held in Helsinki, Finland from 5-8 September 1995. The papers have been peer reviewed and present practical aspects for the design of components and structures to avoid fatigue failure.
Topics covered include: fatigue design experiences, ground vehicle components, component reliability, multiaxial fatigue, notch analysis, service loading, welded structures, probabilistics aspects in fatigue, fatigue design optimization.