Fracture toughness weakening effect of high static pre-loaded CSTBD granite subjected to low frequency dynamic disturbance during the rock fracture

•The fracture toughness strength weakening effect of pre-static load CSTBD sample subjected to dynamic disturbance was investigated.•The pre-static load level dominates the weakening level of fracture toughness, while the dynamic disturbance plays a promoting role and affects the weakening degree. H...

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Bibliographic Details
Published inEngineering fracture mechanics Vol. 269; p. 108566
Main Authors Wu, Wuxing, Gong, Fengqiang, Jiang, Quan, He, Lei
Format Journal Article
LanguageEnglish
Published New York Elsevier Ltd 15.06.2022
Elsevier BV
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Summary:•The fracture toughness strength weakening effect of pre-static load CSTBD sample subjected to dynamic disturbance was investigated.•The pre-static load level dominates the weakening level of fracture toughness, while the dynamic disturbance plays a promoting role and affects the weakening degree. Highly static pre-loaded rock with cracks will be generated during the deep rock engineering excavation, is subjected to low-frequency dynamic disturbance (Fd) to induce fracture failure. To investigate the fracture mechanisms of the high static pre-loaded rock with cracks, subjected to low-frequency dynamic disturbances, several tests were conducted on cracked straight through Brazilian disc (CSTBD) granite specimens using the MTS system. Based on the average static peak fracture load (Fmax) of the CSTBD specimens, three high static pre-load levels, Fp (70%, 80%, and 90% of Fmax), and the corresponding disturbance amplitude, Fa (30%, 20%, and 10% of Fmax), and low-frequency disturbance frequency, f (1, 5, 10, 30, and 50 Hz), were determined. The results revealed that the fracture toughness of the static pre-loaded CSTBD specimens subjected to low-frequency dynamic disturbance was lower than that under static load. The higher the Fp, the more significant is the decrease in fracture toughness with f. Comprehensive analysis indicates that the degree of fracture toughness weakening is highly dependent on the Fp, Fd induces strength weakening, and f affects the weakening degree.
ISSN:0013-7944
1873-7315
DOI:10.1016/j.engfracmech.2022.108566