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Failure energy evolution of coal–rock combination with different inclinations

Yongjiang Yu, Jingjing Liu, Yuntao Yang, Pengbo Wang, Zhenmeng Wang, Zhiyuan Song, Jiaming Liu, Shangqing Zhao, Jiaming Liu, Shangqing Zhao

2022Scientific Reports21 citationsDOIOpen Access PDF

Abstract

In this paper, in the deformation and damage process under different confining pressures, the energy evolution characteristics and damage mechanism of coal-rock combinations with different inclination angles are studied. Based on the brittleness indexes of coal rock combinations, the evolution rules between brittleness indexes and the inclination are explored, as well as the confining pressure of coal rock combinations; then, the influence mechanism of the inclination angle of coal rock combinations on the plastic yielding degree, energy dissipation level, crack extension and fracture speed in the pre-peak stage is revealed. The composite specimens are mainly damaged due to oblique shear and accompanied by tensile damage; In the deformation and damage, various energies of coal rock composites are distributed as a negative exponential function of the inclination angle, which is significantly affected by the change of the confining pressure.

Topics & Concepts

Overburden pressureBrittlenessCoalDissipationGeotechnical engineeringShear (geology)Deformation (meteorology)Materials scienceGeologyUltimate tensile strengthCoal miningComposite materialThermodynamicsEngineeringWaste managementPhysicsRock Mechanics and ModelingLandslides and related hazardsGeophysical Methods and Applications
Failure energy evolution of coal–rock combination with different inclinations | Litcius