Energy Dissipation-Based Method for Fatigue Life Prediction of Rock Salt

The fatigue test for rock salt is conducted under different stress amplitudes, loading frequencies, confining pressures and loading rates, from which the evaluation rule of the dissipated energy is revealed and analysed. The evolution of energy dissipation under fatigue loading is divided into three...

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Veröffentlicht in:Rock mechanics and rock engineering 2018-05, Vol.51 (5), p.1447-1455
Hauptverfasser: He, Mingming, Huang, Bingqian, Zhu, Caihui, Chen, Yunsheng, Li, Ning
Format: Artikel
Sprache:eng
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Zusammenfassung:The fatigue test for rock salt is conducted under different stress amplitudes, loading frequencies, confining pressures and loading rates, from which the evaluation rule of the dissipated energy is revealed and analysed. The evolution of energy dissipation under fatigue loading is divided into three stages: the initial stage, the second stage and the acceleration stage. In the second stage, the energy dissipation per cycle remains stable and shows an exponential relation with the stress amplitude; the failure dissipated energy only depends on the mechanical behaviour of the rock salt and confining pressure, but it is immune to the loading conditions. The energy dissipation of fatigued rock salt is discussed, and a novel model for fatigue life prediction is proposed on the basis of energy dissipation. A simple model for evolution of the accumulative dissipated energy is established. Its prediction results are compared with the test results, and the proposed model is validated.
ISSN:0723-2632
1434-453X
DOI:10.1007/s00603-018-1402-8