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An Experimental Study of Dynamic Tensile Failure of Rocks Subjected to Hydrostatic Confinement

机译:静液压监禁岩体动态拉伸失效的实验研究

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摘要

It is critical to understand the dynamic tensile failure of confined rocks in many rock engineering applications, such as underground blasting in mining projects. To simulate the in situ stress state of underground rocks, a modified split Hopkinson pressure bar system is utilized to load Brazilian disc (BD) samples hydrostatically, and then exert dynamic load to the sample by impacting the striker on the incident bar. The pulse shaper technique is used to generate a slowly rising stress wave to facilitate the dynamic force balance in the tests. Five groups of Laurentian granite BD samples (with static BD tensile strength of 12.8 MPa) under the hydrostatic confinement of 0, 5, 10, 15, and 20 MPa were tested with different loading rates. The result shows that the dynamic tensile strength increases with the hydrostatic confining pressure. It is also observed that under the same hydrostatic pressure, the dynamic tensile strength increases with the loading rate, revealing the so-called rate dependency for engineering materials. Furthermore, the increment of the tensile strength decreases with the hydrostatic confinement, which resembles the static tensile behavior of rock under confining pressure, as reported in the literature. The recovered samples are examined using X-ray micro-computed tomography method and the observed crack pattern is consistent with the experimental result.
机译:了解许多岩石工程应用中受限岩石的动态拉伸失效至关重要,例如在采矿项目中地下爆破。为了模拟地下岩石的原位应力状态,利用改进的普通霍普金森压力杆系统加载巴西圆盘(BD)样品,然后通过冲击入射杆上的前锋将动态负荷施加到样品上。脉冲层技术用于产生缓慢上升的应力波,以便于测试中的动态力平衡。用不同的加载率测试五组Laurentian花岗岩BD样品(具有12.8MPa的静态BD拉伸强度为12.8MPa)。结果表明,动态拉伸强度随着静水压限制压力而增加。还观察到,在相同的静水压力下,动态拉伸强度随装载速率而增加,揭示了工程材料的所谓速率依赖性。此外,如在文献中所报道的那样,抗拉强度的抗拉强度的增量随着静压限制而降低,这类似于岩石下的岩石的静态拉伸行为。使用X射线微计算断层摄影方法检查回收的样品,观察到的裂纹模式与实验结果一致。

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