4.7 Article

Experimental study on the deformation behaviour, energy evolution law and failure mechanism of tectonic coal subjected to cyclic loads

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出版社

ELSEVIER
DOI: 10.1016/j.ijmst.2022.10.004

关键词

Tectonic coal; Cyclic loading; Deformation behaviour; Energy evolution; Failure mechanism

资金

  1. National Major Scientific Research Instrument Development Project [41727801]
  2. National Natural Science Foundation of China [42030810, 41972168]
  3. Dominant discipline support project of Jiangsu Province [2020CXNL11]
  4. Foundation of Jiangsu Key Laboratory of Coal-based Greenhouse Gas Control and Utilization [2019A001]

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The deformation behavior and mechanical properties of tectonic coal under cyclic loading were studied. It was found that the stress-strain curve of tectonic coal could be divided into four stages, and its internal structure can be damaged. Tectonic coal exhibits nonlinear energy storage characteristics and is prone to coal and gas outbursts.
Compared to intact coal, tectonic coal exhibits unique characteristics. The deformation behaviours under cyclic loading with different confining pressures and loading rates are monitored by MTS815 test system, and the mechanical and energy properties are analysed using experimental data. The results show that the stress-strain curve could be divided into four stages in a single cycle. The elastic strain and elastic energy density increase linearly with deviatoric stress and are proportional to the confining pressure and loading rate; irreversible strain and dissipated energy density increase exponentially with deviatoric stress, inversely proportional to the confining pressure and loading rate. The internal structure of tectonic coal is divided into three types, all of which are damaged under different deviatoric stress levels, thereby explaining the segmentation phenomenon of stress-strain curve of tectonic coal in the cyclic loading process. Tectonic coal exhibits nonlinear energy storage characteristics, which verifies why the tectonic coal is prone to coal and gas outburst from the principle of energy dissipation. In addition, the damage mechanism of tectonic coal is described from the point of energy distribution by introducing the concepts of crushing energy and friction energy.(c) 2022 Published by Elsevier B.V. on behalf of China University of Mining & Technology. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

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