Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5016818 | International Journal of Plasticity | 2017 | 28 Pages |
Abstract
Single crystal bend fatigue gives rise to non-symmetric slip fields and localization depending on crystallographic orientation. Modelling correctly captures slip activation and the developing non-symmetric slip fields. Oligocrystal slip is markedly heterogeneous, with grain misorientations driving strong variations, also reasonably captured by the model. Microstructure behaviour is found to vary spatially and include elastic-plastic hysteresis which is stable, and which undergoes mean stress relaxation so that plastic shakedown occurs. Remarkable variations occur between locations either side of grain boundaries, providing appropriate opportunities for fatigue crack nucleation.
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Authors
Yongjun Guan, Bo Chen, Jinwen Zou, T. Ben Britton, Jun Jiang, Fionn P.E. Dunne,