On the ^Dgr;J-integral to characterize elastic-plastic fatigue crack growth
Elastic-plastic fatigue crack growth is evaluated by J-integral range ?JD based on a load-displacement hysteresis loop. However, physical meaning of ?JD on a crack tip field is still controversial. In this study, finite element analyses were carried out on a four-point bending rectangular specimen w...
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Veröffentlicht in: | Engineering fracture mechanics 2017-05, Vol.176, p.300 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Elastic-plastic fatigue crack growth is evaluated by J-integral range ?JD based on a load-displacement hysteresis loop. However, physical meaning of ?JD on a crack tip field is still controversial. In this study, finite element analyses were carried out on a four-point bending rectangular specimen with an edge crack under cyclic large deformation. The path-integral expression of J-integral range ?JR was also computed, and the value of ?JR was compared with the J-integral range ?JD. Crack opening occurred at a slope change point in a load-displacement hysteresis loop. The values of ?JD and ?JR based on the slope change point were almost the same. The stress range ?s distribution along the line ahead of a crack tip based on the slope change point was well characterized by ?JR ( = ?JD) as well as in the case of monotonic loading, and it was concluded that the value of ?JD could be useful to describe elastic-plastic fatigue crack growth behavior. |
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ISSN: | 0013-7944 1873-7315 |