Particle simulation of the failure process of brittle rock under triaxial compression Particle simulation of the failure process of brittle rock under triaxial compression

Particle simulation of the failure process of brittle rock under triaxial compression

  • 期刊名字:矿物冶金与材料学报
  • 文件大小:
  • 论文作者:Ming Xia,Ke-ping Zhou
  • 作者单位:School of Resources and Safety Engineering,Ma'anshan Institute of Mining Research
  • 更新时间:2022-10-15
  • 下载次数:
论文简介

In order to investigate the failure process of brittle rock under triaxial compression through both experimental and numerical ap-proaches, the particle simulation method was used in numerical simulations and the simulated results were compared with those of the ex-periment. The numerical simulation results, such as fracture propagation, microcrack distribution, stress-strain response, and damage patterns, were discussed in detail. The simulated results under various confining pressures (0-60 MPa) are in good agreement with the experimental results. The simulated results reveal that rock failure is caused by axial splitting under uniaxial compression. As the confining pressure in-creases, rock failure occurs in a few localized shear planes and the rock mechanical behavior is changed from brittle to ductile. Consequently, the peak failure strength, microcrack numbers, and the shear plane angle increase, but the ratio of tensile to shear microcracks decreases. The damage formation during the compression simulations indicates that the particle simulation method can produce similar behaviors as those observed through laboratory compression tests.

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