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Published/Copyright: October 5, 2017

Published Online: 2017-10-5
Published in Print: 2017-10-26

©2017 Walter de Gruyter GmbH, Berlin/Boston

Articles in the same Issue

  1. Frontmatter
  2. In this issue
  3. Editorial
  4. International Symposium on Environmental Degradation under Static and Cyclic Loads in Structural Metallic Materials at Ambient Temperatures IV (Cork, Ireland, May 29–June 3, 2016)
  5. Overview
  6. Failures of metallic components involving environmental degradation and material- selection issues
  7. Environment-induced crack initiation
  8. Modeling galvanic coupling and localized damage initiation in airframe structures
  9. Electrochemical investigation of corrosion and repassivation of structural aluminum alloys under permanent load in bending
  10. Environment-induced crack growth
  11. Relationship between electrochemical processes and environment-assisted crack growth under static and dynamic atmospheric conditions
  12. Subcritical crack growth and crack tip driving forces in relation to material resistance
  13. Impact of solution conductivity and crack size on the mechanism of environmentally assisted crack growth in steam turbines
  14. Pre-exposure embrittlement of a commercial Al-Mg-Mn alloy, AA5083-H131
  15. Stress corrosion characteristics of AL-Li-X alloys: role of GB precipitate size and spacing
  16. Environmentally assisted cracking of pipeline steels in CO2 containing environment at near-neutral pH
  17. Corrosion fatigue
  18. A method to predict fatigue crack initiation in metals using dislocation dynamics
  19. A numerical model to assess the role of crack-tip hydrostatic stress and plastic deformation in environmental-assisted fatigue cracking
  20. Examination and prediction of corrosion fatigue damage and inhibition
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