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Numerical simulation of rock failure under static and dynamic loading by splitting test of circular ring

机译:圆环劈裂试验静态载荷下岩石破坏的数值模拟

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The fracture propagation and failure process in rock are subjects of great interest in rock mechanics. In the present study, an approach combining the finite element method (FEM) and the discrete element method (DEM), named ELFEN, is adopted to simulate and investigate the failure process of a typical hard rock (Carrara marble) under static and dynamic splitting ring tests. The FDEM software is firstly validated by simulating the test of a Brazilian disk under static loading. Then, the failure of circular ring specimens is numerically studied under static and dynamic loading, with the ratio of internal to external diameter (represented by lambda) of the specimen groups varying from 0.1 to 0.6, with increments of 0.1. Under static loading, with the increase in internal diameter, the failure mode is transformed from diametrical splitting to four-fan-shaped failure (when lambda = 0.4). Under dynamic loading, four-fan-shaped failure occurs from geometric axial symmetry to axial asymmetry, which means that, with increasing internal diameter, the tensile cracks along the horizontal diametrical direction gradually deviate toward the top loading platen. The peak load of the circular ring has a descending trend with the increase in internal diameter under both loading conditions. A rational load value (peak load or crack initiation load) is suggested to calculate the tensile strength of circular rock ring specimens under the splitting ring test. Finally, the numerical results are compared with previous experimental results. The good agreement between the two sets of results, in terms of the failure modes and variation trend of the indirect tensile strength with increasing internal diameters, verify the accuracy and applicability of the FDEM approach. (C) 2017 Elsevier Ltd. All rights reserved.
机译:岩石中的断裂繁殖和失效过程是岩石力学兴趣的主题。在本研究中,采用了一种组合有限元方法(FEM)和离散元素方法(DEM),命名为Elfen的方法来模拟和研究静态和动态分裂下典型硬岩(Carrara Marble)的故障过程戒指测试。首先通过模拟静态加载下的巴西磁盘的测试来验证FDEM软件。然后,在静态和动态负载下数值研究圆环样品的失效,并在不同0.1至0.6的样本基团的外径(由Lambda表示的λ)的比例为0.1的增量。在静态负载下,随着内径的增加,故障模式从直径分裂转变为四扇形故障(当Lambda& = 0.4)。在动态负载下,四扇形故障发生从几何轴对称到轴向不对称,这意味着随着内径的增加,沿水平径向的拉伸裂缝逐渐偏离朝向顶部装载压板。圆环的峰值负荷具有下降趋势,随着负载条件下的内径增加。建议理性负载值(峰值负荷或裂纹启动负荷)计算分裂环试验下圆形岩环样品的拉伸强度。最后,将数值结果与先前的实验结果进行了比较。两组成果之间的良好一致性,就随着内径增加的间接拉伸强度的故障模式和间接拉伸强度的变化趋势,验证了FDEM方法的准确性和适用性。 (c)2017 Elsevier Ltd.保留所有权利。

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