黄景琦, 杜修力, 马超, 赵密, 刘晶波, 金浏. 岩石三维强度准则的研究[J]. 工程力学, 2018, 35(3): 30-40. DOI: 10.6052/j.issn.1000-4750.2017.03.0216
引用本文: 黄景琦, 杜修力, 马超, 赵密, 刘晶波, 金浏. 岩石三维强度准则的研究[J]. 工程力学, 2018, 35(3): 30-40. DOI: 10.6052/j.issn.1000-4750.2017.03.0216
HUANG Jing-qi, DU Xiu-li, MA Chao, ZHAO Mi, LIU Jing-bo, JIN Liu. STUDY ON THREE-DIMENSIONAL STRENGTH CRITERION FOR ROCKS[J]. Engineering Mechanics, 2018, 35(3): 30-40. DOI: 10.6052/j.issn.1000-4750.2017.03.0216
Citation: HUANG Jing-qi, DU Xiu-li, MA Chao, ZHAO Mi, LIU Jing-bo, JIN Liu. STUDY ON THREE-DIMENSIONAL STRENGTH CRITERION FOR ROCKS[J]. Engineering Mechanics, 2018, 35(3): 30-40. DOI: 10.6052/j.issn.1000-4750.2017.03.0216

岩石三维强度准则的研究

STUDY ON THREE-DIMENSIONAL STRENGTH CRITERION FOR ROCKS

  • 摘要: 结合非线性统一强度理论与Hoek-Brown强度准则,以Hoek-Brown强度准则构建子午面上的强度曲线,以非线性统一强度理论构建偏平面上的强度曲线,通过应力空间变化方法将子午面上强度曲线与偏平面上强度曲线进行结合,从而建立一种新的岩石三维强度准则。建立的强度准则在子午面上为非线性,考虑岩石材料的静水压力效应;在偏平面上强度线涵盖了从上限Drucker-Prager圆到下限Matsuoka-Nakai曲线之间的所有区域,可较好模拟岩石材料的中间主应力效应。强度面光滑、外凸,可用于建立岩石的屈服函数。强度准则共有3个材料参数mtσcmi,各参数可通过岩石试验数据确定且具有明确的物理意义。另外,该文提出一种mt的近似求解公式,总的参数可退化为σcmi,与Hoek-Brown准则基本参数一致,可由岩石常规三轴压缩试验按Hoek-Brown提出的回归公式确定。与国内外学者已开展的岩石材料三轴试验结果进行对比,建立的强度准则与试验数据吻合良好,可合理描述岩石材料的非线性强度特性。其次,通过引入地质强度指标GSI,建立的强度准则可应用于较为完整的岩体(GSI>25),对于较为破碎岩体(GSI<25)需做进一步的研究。

     

    Abstract: By employing the failure curve of Hoek-Brown criterion as a failure curve in the meridian plane, as well as the triangle failure curve of a unified strength criterion as a failure pattern in the deviatoric plane of a rock, a new three-dimensional strength criterion is proposed for an intact rock. In the meridian plane, the proposed criterion is nonlinear and can simulate the effect of hydrostatic pressure well; In the deviatoric plane, the failure curves change from the MN curved triangle to the DP circle and can take account of the influence of intermediate principal stress properly. The failure surface of the new strength criterion is continuous, smooth and convex. It can be thusly employed to develop a yield function for the constitutive model of rocks. The proposed criterion has clear physical meanings and only three parameters need to be determined by experimental results, namely σc, mi and mt. By the simple determined method for parameter mt, the parameters for the proposed criterion are reduced to σc and mi, which are same as that of original Hoek-Brown criterion. The proposed strength criterion has a good agreement with the experimental data. Moreover, by introducing the the Geological Strength Index (GSI), the proposed strength criterion also can be employed to simulate the strength of rock masses.

     

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