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Rate Controlling Processes for Five Power Law Creep.


DE2004822659

Publication Date 2004
Page Count 14
Abstract OAK-B135 Rate-Controlling Mechanisms in Five-Power-Law Creep. The initial grant emphasized the rate-controlling processes for five power-law creep. The effort has six aspects: (1) Theory of Taylor hardening from the Frank dislocation network in five power law substructures. (2) The dual dynamical and hardening nature of dislocations in five power law substructures. (3) Determination of the existence of long-range internal stress in five-power law creep dislocation substructures. (4) Dynamic recovery mechanisms associated with dislocation heterogeneities during five power law creep. (5) Versatility of five power law creep concept to other (hcp) crystal structures. (6) Writing of a book on 'Fundamental of Creep in Metals and Alloys' by M.E. Kassner and Maria-Teresa Perez-Frado (postdoctoral scholar, funded by this project) Elsevier Press, 2004, in press. These areas are consistent with the original goals of this project as delineated in the original proposal to Basic Energy Sciences. The progress in each of these areas will be discussed separately and there will be an attempt to tie each aspect together so as to allow a summary regarding the conclusions with respect to the rate-controlling mechanisms of five power-law creep.
Keywords
  • Creep
  • Alloys
  • Metals
  • Dislocations
  • Five-power-law-creep
Source Agency
  • Technical Information Center Oak Ridge Tennessee
Corporate Authors Department of Energy, Washington, DC.
Document Type Technical Report
NTIS Issue Number 200503
Rate Controlling Processes for Five Power Law Creep.
Rate Controlling Processes for Five Power Law Creep.
DE2004822659

  • Creep
  • Alloys
  • Metals
  • Dislocations
  • Five-power-law-creep
  • Technical Information Center Oak Ridge Tennessee
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