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Numerical Study on Shear Strength and Failure Pattern of Jointed Rock under Shear Testing

机译:剪切测试下关节岩剪切强度和失效模式的数值研究

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The purpose of this paper is to investigate shear strength and failure pattern of rock containing two parallel open joints with different horizontal separations using RFPA{sup}(2D) (rock failure process analysis) code. Specimens are placed in a direct shear box. The upper is invariably loaded with normal stress 0.15MPa, the left is controlled by a constant increasing horizontal displacement 0.002mm/step. The whole shear failure process is visually represented and the failure pattern in reasonable accordance with previous experimental results is obtained. In general, only mixed mode (tensile and shear) is observed for the failure pattern in the numerical tests. Tensile cracks initiate from the tips of pre-existing joints respectively with an initiation angle of about 45°, then propagate towards another joint in a single stria; Shear cracks occur in the further process and the main direction of shear failure surface is roughly parallel to shear loading. The failure pattern of bridged rock is mainly controlled by the joint separation and the roughness of wavy shear failure surface is different, which is mostly influenced by the joint separation in the same way. The peak shear load, related to the failure patterns, decreases with the increase of joint separation, but the shear strength of intact rock is invariable.
机译:本文的目的是研究岩石的剪切强度和故障模式,其中包含使用RFPA {SUP}(2D)(岩石故障过程分析)代码不同水平分离的平行开放关节。标本置于直接剪切盒中。上部具有正常应力0.15MPa的较高,通过恒定的水平位移来控制左侧0.002mm /步骤。在视觉上表示整个剪切失效过程,并且获得了根据先前的实验结果合理的故障模式。通常,在数值测试中仅观察混合模式(拉伸和剪切)的故障模式。拉伸裂纹分别从预先存在的关节的尖端引发,其引发角度约为45°,然后在单一斯特里亚的另一个关节中繁殖;在进一步的过程中发生剪切裂缝,并且剪切失效表面的主方向大致平行于剪切载荷。桥接岩石的故障模式主要由关节分离控制,波浪剪切失效表面的粗糙度不同,这主要受到相同方式的关节分离的影响。与故障模式相关的峰值剪切载荷随着关节分离的增加而降低,但完整岩石的剪切强度是不变的。

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