Stress Versus Temperature Dependence of Activation Energies for Creep

Author:

Freed A. D.1,Raj S. V.1,Walker K. P.2

Affiliation:

1. National Aeronautics and Space Administration, Lewis Research Center, Cleveland, Ohio

2. Engineering Science Software, Inc., Smithfield, RI

Abstract

The activation energy for creep at low stresses and elevated temperatures is associated with lattice diffusion, where the rate controlling mechanism for deformation is dislocation climb. At higher stresses and intermediate temperatures, the rate controlling mechanism changes from dislocation climb to obstacle-controlled dislocation glide. Along with this change in deformation mechanism occurs a change in the activation energy. When the rate controlling mechanism for deformation is obstacle-controlled dislocation glide, it is shown that a temperature-dependent Gibbs free energy does better than a stress-dependent Gibbs free energy in correlating steady-state creep data for both copper and LiF-22mol percent CaF2 hypereutectic salt.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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