Creep and Fracture of Engineering Materials and Structures: Proceedings of the Third International Conference Held at University College, Swansea, 5th-10th April, 1987B. Wilshire, R. W. Evans |
Contents
CARRARD and J L MARTIN | 1 |
H NAKASHIMA and H YOSHINAGA | 15 |
E KASSNER and M E MCMAHON | 29 |
Copyright | |
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activation energy alloys applied stress austenitic axial bainite bypass calculated carbides carbon cavitation cavity growth CEGB climb component constant crack propagation crack tip creep behaviour creep crack growth creep curve creep deformation creep rupture creep strain creep strength creep tests cycle damage decrease diffusion diffusion creep dislocation ductility effect equation experimental extrapolation fatigue Figure fraction glide grain boundary heat high stress high temperature increase initial interaction interface intergranular fracture isostress load loops low stresses material matrix measured mechanism microstructure notch nucleation observed obtained oxidation parameter particles plane plane strain plastic plotted polycrystals power law precipitate predictions range region secondary creep shear shown shows SiO2 solid solution specimens stacking fault energy stainless steel steady state creep steady-state strain rate stress exponent stress reduction stress relaxation structure subgrain superalloys surface tensile thermal threshold stress Trans transition weld yield stress