Fatigue damage evaluation of a power plant component from analysis of the dislocation structures
Author:
Publisher
Elsevier BV
Subject
General Engineering,General Materials Science
Reference6 articles.
1. Texture analysis by electron diffraction
2. Local internal stress characterization in a tensile-deformed copper single crystal by convergent-beam electron diffraction
3. Electrons et microscopes;Hawkes,1995
4. Low cycle fatigue and elasto-plastic behaviour of materials;Argillier,1998
5. Cyclic deformation of ferritic steel—I. Stress-strain response and structure evolution
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