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Geometry and loading effects on pure mode II fracture toughness of rock materials

机译:对纯模式II的几何和负载效果岩石材料的断裂韧性

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Mode II fracture due to shear loading is a significant mode of failure in rock masses and therefore it is important to study pure mode II crack growth behavior of rock materials using appropriate methods. In this paper, a set of fracture tests was conducted on a soft rock material (Guiting limestone) using two geometries of specimen: centrally cracked Brazilian disc (CCBD) and semi-circular bend (SCB), to obtain the pure mode II fracture toughness (K_(llc)). The experimental results show that the mode II fracture toughness is significantly geometry and loading dependent. Specifically, the value for K_(llc) obtained using the CCBD specimen is about 2.4 times higher than that obtained using the SCB specimen. These results cannot be interpreted using conventional fracture criteria such as the maximum tangential stress (MTS) criterion. However, it is shown that a generalized form of the MTS criterion, the GMTS criterion which accounts for the effect of the nonsingular stress term (T-stress), can provide very good predictions for the pure mode II fracture toughness of both samples. Accordingly, the mode II fracture toughness of the CCBD specimen is enhanced due to the large negative T-stress that exists in this specimen. Conversely, the mode II fracture toughness of the SCB specimen is reduced by the large positive T-stress.
机译:模式II由于剪切负载引起的裂缝是岩体的显着失效模式,因此研究岩石材料的纯模式II裂纹生长行为非常重要。在本文中,使用两种样品几何形状在软岩材料(诱导石灰石)上进行一组裂缝试验:中央裂纹的巴西圆盘(CCBD)和半圆形弯曲(SCB),以获得纯模式II断裂韧性(k_(llc))。实验结果表明,模式II断裂韧性是显着的几何形状和加载依赖性。具体地,使用CCBD样本获得的K_(LLC)的值比使用SCB样本获得的约2.4倍。这些结果不能使用诸如最大切向应力(MTS)标准的常规骨折标准来解释。然而,示出了MTS标准的广义形式,该GMTS标准估计用于非垂直应力术语(T胁迫)的效果,可以为两个样品的纯模式II断裂韧性提供非常好的预测。因此,由于该样本中存在的大负T应力,增强了CCBD样本的模式II断裂韧性。相反,SCB样品的模式II断裂韧性通过大的阳性T胁迫降低。

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