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- W1963605619 abstract "Methods for assessing the residual creep lifetime of components are required either because of operational problems arising before the expiry of design life or because, for economic reasons, the structure is operated beyond design life. Metallographic methods for assesing residual life are attractive because they require only small samples, are non-destructive and, in principle, measure the damage micromechanisms directly. Although the subject has developed somewhat empirically and from disparate viewpoints, in this review we attempt to bring the various ideas and results within a common framework so that differences and similarities can be judged more objectively and so that future work may evolve from a more scientific base. The strengths and limitations of Robinson's life fraction rule feature prominently because operating stresses and temperatures are rarely known precisely and are usually variable so that some simple damage accumulation rule is vital for the development of a successful remaining life procedure. It is suggested that future work should be guided by the following considerations. (1) Laboratory tests must be designed to take into account the coarsening of micro-structure during service. (2) Damage micromechanisms can be stress state sensitive so that laboratory tests under uniaxial tension are not directly applicable to service conditions. (3) Damage micromechanisms are sensitive to detailed thermal and mechanical treatment and trace element content and so laboratory tests should use the same batch of material as the component." @default.
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- W1963605619 date "1980-12-01" @default.
- W1963605619 modified "2023-09-24" @default.
- W1963605619 title "Metallographic methods of determining residual creep life" @default.
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- W1963605619 doi "https://doi.org/10.1016/0025-5416(80)90178-0" @default.
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