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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Strength and failure modes of rock mass models with non-persistent joints
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Strength and failure modes of rock mass models with non-persistent joints

机译:非持久节理岩体模型的强度和破坏模式

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摘要

Most problems faced by the practicing rock engineer involve the evaluation of rock mass strength and deformability. The theoretical evaluation of the mechanical properties of fractured rock masses has no satisfactory answer because of the great number of variables involved. One of these variables, the influence of which over rock mass behavior is poorly documented, is the degree of fracture persistence. This paper presents the results of biaxial tests performed on physical models of rock with non-persistent joints. The failure modes and maximum strengths developed were found to depend on, among other variables, the geometry of the joint systems, the orientation of the principal stresses, and the ratio between intermediate stress and intact material compressive strength (sigma_2/sigma_c)- Tests showed three basic failure modes: failure through a planar surface, stepped failure, and failure by rotation of new blocks. Planar failure and stepped failure are associated with high strength behavior, and small failure strains, whereas rotational failure is associated with a very low strength, ductile behavior, and large deformation.
机译:从事岩石工程的工程师所面临的大多数问题都涉及对岩体强度和变形性的评估。由于涉及大量变量,因此对裂隙岩体力学特性的理论评估没有令人满意的答案。这些变量之一对岩体行为的影响记录得很少,是裂缝的持续程度。本文介绍了在非持久节理的岩石物理模型上进行的双轴测试的结果。发现的破坏模式和最大强度取决于关节系统的几何形状,主应力的方向以及中间应力与完整材料抗压强度之比(sigma_2 / sigma_c)等因素,这些测试表明三种基本的故障模式:通过平面的故障,阶梯式故障和新块旋转的故障。平面破坏和阶梯破坏与高强度行为和较小的破坏应变相关,而旋转破坏与强度非常低,延展性和较大变形相关。

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