4.1 Article

Shear Behaviors of the Binary Structural Plane

期刊

GEOTECHNICAL AND GEOLOGICAL ENGINEERING
卷 36, 期 2, 页码 939-948

出版社

SPRINGER
DOI: 10.1007/s10706-017-0366-x

关键词

Binary medium; Contact interface; Direct shear test; Shear strength; Mohr-Coulomb criterion

资金

  1. National Natural Science Foundation of China [51474249, 41562016]
  2. Innovation-driven Plan in Central South University [2016CX019]
  3. Open Projects of State Key Laboratory for Geo-mechanics and Deep Underground Engineering, CUMT [SKLGDUEK1405]

向作者/读者索取更多资源

Binary-medium contact interfaces widely exist in rock engineering. They have significant impacts on the safety of rock engineering due to their poor shear behavior. A material of different strength is produced by pouring mortar of a different sand-to-cement ratio on the top of a rock-like mortar material (with the ratio of 1:1), thereby forming a binary-medium structural plane. Then, direct shear test is performed on the structural plane by applying different normal stresses. The shear strength parameters of the structural plane (cohesion c and friction angle phi) are obtained from the Mohr-Coulomb criterion. Moreover, the mechanical behaviors of the structural plane are compared with the unitary-medium specimen in the shearing process. A similar shear stress-shear displacement rule is observed in the shearing process. However, the peak and residual shear strengths of the binary structural plane are far lower than those of the unitary ones. The difference between the unitary and binary planes at cohesion c decreases with the increasing sand-cement ratio, whereas a up-down trend is observed in the friction angle phi with the increasing sand-to-cement ratio. When the upper and lower parts of the structural plane are different in sand-to-cement ratio, the cohesion of the structural plane slightly increases with the increasing ratio of the upper specimen. However, when the two parts are identical in ratio, the cohesion of the structural plane reaches the peak, and its friction angle phi substantially increases with the increasing ratio of the upper part.

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