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Shear behavior model of rock joints applicable to CNL and CNS conditions

机译:适用于CNL和CNS条件的岩石节理的剪切行为模型

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Mechanical properties of rock mass and its stability are highly affected by the mechanical and geometrical characteristics of discontinuities. One of the most important characteristics of discontinuities is shear strength and shear behavior observed in direct shear test. The direct shear test is divided into constant normal load (CNL) test and constant normal stiffness (CNS) test according to loading condition. The CNL condition is applicable to rock slope while the CNS condition corresponds to underground rock mass where the shear behavior of discontinuities depends on the stiffness of rock mass. Reliable prediction of shear behavior of rock joints for both conditions has been an important issue in rock engineering field. In this study, an empirical model of shear behavior of rock joints was proposed from direct shear tests using a servocontrolled shear testing machine. Cement mortar replicas of rock joints were tested with various normal stiffnesses (Kn), initial normal stresses (σ0), joint roughness coefficients (JRC) and joint wall compressive strengths (JCS). Results of the tests were analyzed to investigate the effects of loading condition and material properties on friction coefficient and normal displacement of the joints, and empirical models of the friction coefficient and normal displacement were suggested. In the empirical models, dimensionless terms were adopted to avoid the scale effect and therefore to enhance the applicability of the suggested models. The suggested models can be applied to predicting the shear behavior of rock joints including pre-peak and post-peak shear stress levels regardless of the loading condition. To verify the suggested models, additional shear tests of rock joints were carried out. In overall stress levels, the prediction of suggested models showed good agreement with the experimental results.
机译:岩体的机械特性及其稳定性受到不连续体的力学和几何特征的极大影响。不连续性最重要的特征之一是在直接剪切试验中观察到的剪切强度和剪切行为。根据载荷条件,直接剪切试验分为恒定法向载荷(CNL)试验和恒定法向刚度(CNS)试验。 CNL条件适用于岩质边坡,而CNS条件适用于地下岩体,其中间断的剪切行为取决于岩体的刚度。两种情况下岩石节理的剪切行为的可靠预测一直是岩石工程领域的重要课题。在这项研究中,通过使用伺服控制的剪切试验机的直接剪切试验,提出了岩石节理剪切性能的经验模型。用各种法向刚度(Kn),初始法向应力(σ0),节理粗糙度系数(JRC)和节理墙抗压强度(JCS)对岩石节理的水泥砂浆仿品进行了测试。分析了测试结果,以研究载荷条件和材料特性对接头摩擦系数和法向位移的影响,并提出了摩擦系数和法向位移的经验模型。在经验模型中,采用了无量纲术语来避免规模效应,从而提高了建议模型的适用性。所建议的模型可用于预测岩石节理的剪切行为,包括峰前和峰后的剪切应力水平,而与载荷条件无关。为了验证建议的模型,对岩石节理进行了附加的剪切试验。在总应力水平下,建议模型的预测与实验结果吻合良好。

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