Abstract

Part 1 High temperature deformation: Creep behaviour of materials Evolution of dislocation substructures during creep Dislocation motion at elevated temperatures Recovery - creep theories of pure metals Creep of solid solution alloys Creep of second phase particles strengthened materials Creep of particulates reinforced composite material High temperature deformation of intermetallic compounds Diffusional creep Superplasticity Mechanisms of grain boundary sliding Multiaxial creep models. Part 2 High temperature fracture: Nucleation of creep cavity Creep embrittlement by segregation of impurities Diffusional growth of creep cavities Cavity growth by coupled diffusion and creep Constrained growth of creep cavities Nucleation and growth of wedge - type microcracks Creep crack growth Creep damage mechanics Creep damage physics Prediction of creep rupture life Creep - fatigue interaction Prediction of creep - fatigue life Environmental damage at high temperature.

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