TY - JOUR
T1 - Fracture toughness analysis on cracked ring disks of anisotropic rock
AU - Chen, C. H.
AU - Chen, C. S.
AU - Wu, J. H.
PY - 2008/8
Y1 - 2008/8
N2 - This paper presents a combination of the Boundary Element Method (BEM) and the cracked ring test to determine the mixed-mode (I-II) fracture toughness of anisotropic rocks. The proposed BEM is used to accurately calculate the Stress Intensity Factors (SIFs) of a cracked anisotropic plate. An anisotropic Hualien marble of Taiwan with a distinct foliation was selected to conduct the cracked ring tests. Based on the measurement of the failure load during the test, the mixed-mode (I-II) fracture toughness can be determined. Experimental results show that the radius ratio, inclination and crack angle significantly affect the fracture toughness. The mode-I fracture toughness (K IC ) is shown to decrease with the increase in hole diameter, whereas the mode-II fracture toughness (K IIC ) increases with the increase in hole diameter when the crack angle β is equal to 0°. The experimental methods proposed have the advantage that the material is easily prepared, the test procedure is simple, and the cost is low.
AB - This paper presents a combination of the Boundary Element Method (BEM) and the cracked ring test to determine the mixed-mode (I-II) fracture toughness of anisotropic rocks. The proposed BEM is used to accurately calculate the Stress Intensity Factors (SIFs) of a cracked anisotropic plate. An anisotropic Hualien marble of Taiwan with a distinct foliation was selected to conduct the cracked ring tests. Based on the measurement of the failure load during the test, the mixed-mode (I-II) fracture toughness can be determined. Experimental results show that the radius ratio, inclination and crack angle significantly affect the fracture toughness. The mode-I fracture toughness (K IC ) is shown to decrease with the increase in hole diameter, whereas the mode-II fracture toughness (K IIC ) increases with the increase in hole diameter when the crack angle β is equal to 0°. The experimental methods proposed have the advantage that the material is easily prepared, the test procedure is simple, and the cost is low.
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U2 - 10.1007/s00603-007-0152-9
DO - 10.1007/s00603-007-0152-9
M3 - Article
AN - SCOPUS:50849085807
SN - 0723-2632
VL - 41
SP - 539
EP - 562
JO - Rock Mechanics and Rock Engineering
JF - Rock Mechanics and Rock Engineering
IS - 4
ER -