2006Chinese journal of rock mechanics and engineeringRequires access

TRUE TRIAXIAL EXPERIMENTAL STUDY ON ROCK WITH HIGH GEOSTRESS

Xia‐Ting Feng

Open publisher page 36 citations

Abstract

The complicated evolvement of stress load,which is produced by excavating underground engineering under high stress conditions,is simulated through true triaxial experiment. Under the given loading method,the experimental results about new granite in Laxiwa show that the resilient deformation is found and acoustic emission counts rate is evidently enhanced when the minor principal stress is unloaded. The enhancing extent of acoustic emission counts rate increases with the intermediate principal stress. The constitutive relation is elasto-brittle. The peak value of strength increases with the intermediate principal stress;and the ratio of increasing value of limit strength and the intermediate principal stress decrease with the intermediate principal stress. The peak value of acoustic emission counts rate depends on stress state;and the amount of peak value is equal to that of major crack after failure. Finally,the failure mechanism is discussed.

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What this paper is about

The complicated evolvement of stress load,which is produced by excavating underground engineering under high stress conditions,is simulated through true triaxial experiment. Under the given loading method,the experimental results about new granite in Laxiwa show that the resilient deformation is found and acoustic emission counts rate is evidently enhanced when the minor principal stress is unloaded. The enhancing extent of acoustic emission counts rate increases with the intermediate principal stress. The constitutive relation is elasto-brittle. The peak value of strength increases with the intermediate principal stress;and the ratio of increasing value of limit strength and the intermediate principal stress decrease with the intermediate principal stress. The peak value of acoustic emission counts rate depends on stress state;and the amount of peak value is equal to that of major crack after failure. Finally,the failure mechanism is discussed.

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Available abstract

The complicated evolvement of stress load,which is produced by excavating underground engineering under high stress conditions,is simulated through true triaxial experiment. Under the given loading method,the experimental results about new granite in Laxiwa show that the resilient deformation is found and acoustic emission counts rate is evidently enhanced when the minor principal stress is unloaded. The enhancing extent of acoustic emission counts rate increases with the intermediate principal stress. The constitutive relation is elasto-brittle. The peak value of strength increases with the intermediate principal stress;and the ratio of increasing value of limit strength and the intermediate principal stress decrease with the intermediate principal stress. The peak value of acoustic emission counts rate depends on stress state;and the amount of peak value is equal to that of major crack after failure. Finally,the failure mechanism is discussed.

Key concepts: Principal stress, Acoustic emission, Geotechnical engineering, Brittleness, Stress (linguistics), Deformation (meteorology), Constitutive equation, Materials science

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