JOURNAL ARTICLE

Dynamic Crack Initiation Toughness of Shale under Impact Loading

Guoliang YangXuguang LiJingjiu BiShuaijie Cheng

Year: 2019 Journal:   Energies Vol: 12 (9)Pages: 1636-1636   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

The impact loading of a notched semi-circular bend (NSCB) specimen of outcrop shale in Changning Sichuan was carried out using a split Hopkinson pressure bar (SHPB) to study the effect of shale bedding on the dynamic crack initiation toughness. Three loading configurations were tested: Crack-divider, Crack-splitter and Crack-arrester loading. Bedding plane has a significant effect on the crack initiation of shale. Under the Crack-divider and Crack-splitter modes, shale had lower dynamic crack initiation toughness. The dynamic crack initiation toughness of the shale was affected by the loading rate for all three loading configurations. The correlation between loading rate and dynamic crack initiation toughness was most significant for the Crack-arrester mode, while the Crack-splitter mode was the weakest. When loading was carried out on Crack-arrester, the bedding plane could change the direction of crack growth. In the Crack-splitter mode, only a small impact energy was needed to achieve effective expansion of a crack. The research results provide a theoretical basis for shale cracking.

Keywords:
Materials science Crack growth resistance curve Crack closure Toughness Composite material Fracture toughness Fracture mechanics Split-Hopkinson pressure bar Structural engineering Cracking Strain rate Engineering

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Citation History

Topics

Rock Mechanics and Modeling
Physical Sciences →  Engineering →  Mechanics of Materials
Drilling and Well Engineering
Physical Sciences →  Engineering →  Ocean Engineering
Geophysical Methods and Applications
Physical Sciences →  Engineering →  Ocean Engineering

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