Mechanical properties and acoustic emission response of cemented tailings backfill under variable angle shear
Author:
Publisher
Elsevier BV
Subject
General Materials Science,Building and Construction,Civil and Structural Engineering
Reference48 articles.
1. A model for the wing crack initiation and propagation of the inclined crack under uniaxial compression;Liu;International Journal of Rock Mechanics and Mining Sciences.,2019
2. Acoustic emission waveform characterization of crack origin and mode in fractured and ASR damaged concrete;Farnam;Cement and Concrete Composites.,2015
3. A probabilistic analysis of acoustic emission events and associated energy release during formation of shear and tensile cracks in cementitious materials under uniaxial compression;Vidya Sagar;Journal of Building Engineering,2018
4. Statistical study of acoustic emissions generated during the controlled deformation of migmatite specimens;Vilhelm;International Journal of Rock Mechanics and Mining Sciences,2017
5. Application of acoustic emission monitoring and signal analysis to the qualitative and quantitative characterization of the fracturing process in rocks;Rodríguez;Engineering Fracture Mechanics,2019
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