A Review of the Interaction of Creep and Fatigue

Author:

Ellison E. G.1

Affiliation:

1. Department of Mechanical Engineering, University of Bristol, Queen's Building, University Walk, Bristol 8.

Abstract

Many components in supersonic aircraft and modern power plant operate under cyclic conditions at increased temperatures at which creep processes also occur. Solving associated material problems depends, to a major extent, on understanding the various factors influencing behaviour, such as the effect of stress or strain cycling, dwell periods, temperature, notches, environment, multiaxial stress, ductility, and the effect of prior testing on subsequent endurance. The various methods of testing are briefly described and the mode of failure where there is interaction between creep and fatigue is discussed. Methods for predicting deformation and life are also presented. Finally, the review concludes with suggestions for future work.

Publisher

SAGE Publications

Subject

General Engineering

Reference105 articles.

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1. Creep-Fatigue Response, failure mode and deformation mechanism of HAYNES 282 Ni based superalloy: Effect of dwell position and time;International Journal of Fatigue;2022-06

2. Creep-Fatigue Behavior of a Newly Developed Ultra-Supercritical Steam Turbine Grade Nickel-Based Superalloy, HAYNES 282;Materials Performance and Characterization;2021-04-22

3. Tensile creep of asphalt concrete in repeated loading tests and its effect on energy dissipation;International Journal of Pavement Engineering;2019-08-21

4. Creep–Fatigue Interactions (Crack Initiation);Reference Module in Materials Science and Materials Engineering;2016

5. An equivalent crack growth model for creep fatigue life prediction of metals;57th AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference;2016-01-01

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