顺向边坡泥质夹层结构面剪切力学特性试验研究

    EXPERIMENTAL STUDY ON SHEAR MECHANICAL PROPERTIES OF ROCK BEDDING SLOPE WITH MUDDY INTERLAYER STRUCTURAL PLANE

    • 摘要: 水-力耦合作用下泥质夹层结构面抗剪强度降低是诱发顺向边坡失稳的重要原因。为探究顺向边坡泥质夹层结构面的剪切力学特性,本研究以顺向边坡中的天然泥质夹层结构面试样为对象,通过开展饱水与非饱水条件下结构面抗剪断和抗剪试验,分离综合抗剪强度中凸起体的抗剪力与结构面摩擦力分量,揭示了含水状态与荷载条件耦合作用下泥质夹层结构面的灾变机制,并构建了泥质夹层结构面抗剪力学模型。结果表明:(1)对于天然泥质夹层结构面,剪切应力-剪切位移曲线主要分为3个阶段:弹性阶段、塑性阶段、稳定阶段。(2)低法向力下的破裂面更粗糙,部分细小凸起体未被剪断;高法向力下的破裂面更光滑,破坏过程是沿凸起体的根部开裂、贯通至完全剪断。(3)天然结构面中,抗剪断试样相比于抗剪试样的摩擦系数高2.56%,黏聚力高11.46%;饱和结构面中,抗剪断试样相比于抗剪试样的摩擦系数高3.38%,黏聚力高82.29%。(4)通过分离综合抗剪强度中凸起体的抗剪力与结构面的摩擦力分量,得到的泥质夹层结构面抗剪断与抗剪力学模型能够用于根据平直结构面强度推算含泥质夹层的凹凸结构面整体抗剪性能。

       

      Abstract: The reduction in shear strength of muddy interlayer structural planes under hydro-mechanical coupling is a key factor contributing to the instability of rock bedding slopes. In this study,natural specimens of muddy interlayer structural planes from bedding slopes were used to conduct shear failure and shear strength tests under both saturated and unsaturated conditions. The contributions of shear resistance from surface protrusions and frictional resistance from the structural plane were quantitatively separated within the overall shear strength. This approach clarified the failure mechanism of muddy interlayer structural planes under coupled moisture-loading effects and led to the development of a corresponding shear mechanical model. The results indicate that: (1)For natural muddy interlayer structural planes,the shear stress-displacement curves primarily exhibit three stages: elastic deformation,plastic deformation,and a stable residual stage. (2)Under low normal stress,fracture surfaces remain relatively rough,with some fine protrusions remaining intact; under high normal stress,surfaces become smoother as failure progresses through crack initiation at the base of protrusions,followed by crack propagation and complete shearing. (3)In natural structural planes,shear failure specimens showed a 2.56% higher friction coefficient and 11.46% higher cohesion compared to specimens subjected to direct shear. Under saturated conditions,shear failure specimens exhibited a 3.38% higher friction coefficient and 82.29% higher cohesion. (4)The proposed shear failure and shear resistance models enable estimation of the overall shear performance of concave-convex structural planes with muddy interlayers based on the strength parameters of flat structural planes.

       

    /

    返回文章
    返回