On Tension Failure of 2-D Rock Specimens and Associated Acoustic Emission |
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Authors: | L. G. Tham H. Liu C. A. Tang P. K. K. Lee Y. Tsui |
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Affiliation: | (1) Rock Engineering Research Centre, Department of Civil Engineering, The University of Hong Kong, Hong Kong, P.R. China;(2) Center for Rockbursts and Induced Seismicity Research, Northeastern University, Shenyang, P.R. China |
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Abstract: | Summary To understand the failure mechanism of quasi-brittle materials like rock under tensile stress, observations on the failure process of granite and marble plate specimens under tension are summarized and presented. Micro- and macro-failure properties of rock plates under uniaxial tension have been characterized by using an acoustic emission technique. Acoustic emission signals associated with micro-fractures are captured to locate the sources. An algorithm based on arrival time difference is developed for this purpose. The results reveal clearly the failure processes of rock which include initiation, nucleation and propagation of micro-fractures when the axial stress is close to the peak strength of rock. It is believed that the difference in heterogeneity between granite and marble specimens leads to different fracture shapes and different behaviors of associated acoustic emissions. Numerical simulation of acoustic emissions for two-dimensional tensile test is also carried out. The simulated characteristics are in good agreement with the experimental results. |
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Keywords: | : Tension failure acoustic emission fracture rock Weibull numerical simulation. |
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