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The weakening effect of hydrostatic pressure on rock mass of different lithology

机译:静水压力对不同岩性岩体的弱化作用

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The weakening effect of hydrostatic pressure (P-w) on rock mass is an important topic in the field of underground construction. In this article, a new technique is introduced to simulate the mechanical conditions and geological processes of rock mass formation using the MTS815 Rock Mechanics Test System. With this technique, intact rock specimens of marble, sandslate, greenschist, and lamprophyre acquired from rock masses are transformed into rock mass replica specimens with structural planes whose major mechanical characteristics resemble the target rock masses. These replica specimens are subjected to hydro-mechanical interacted tri-axial compression tests to reveal the weakening effect of the hydrostatic pressure on the rock mass. The experimental results show that hydrostatic pressures of 1-4 MPa have a significant effect on the mechanical properties of the rock masses. The internal cohesion c decreased dramatically when the hydrostatic pressure increased; however, the increased pressure had less effect on the internal friction coefficient mu. The deformation modulus decreased when the hydrostatic pressure increased under low confining pressure, but barely changed when the confining pressure rose above 20 MPa. These results have provided an important basis for engineering construction planning and have created a new effective way for laboratory studies of rock mass mechanical properties.
机译:静水压力(P-w)对岩体的减弱作用是地下建筑领域的重要课题。本文介绍了一种使用MTS815岩石力学测试系统来模拟岩体形成的力学条件和地质过程的新技术。通过这种技术,将从岩体中获取的完整的大理石,砂岩,绿片岩和煌斑岩标本转换为具有主要力学特性与目标岩体相似的结构面的岩体复制品标本。对这些复制品样本进行水力-机械相互作用的三轴压缩试验,以揭示静水压力对岩体的减弱作用。实验结果表明,静水压力为1-4 MPa对岩体的力学性能有显着影响。当静水压力增加时,内部内聚力c急剧下降。但是,增加的压力对内摩擦系数μ的影响较小。在低围压下静水压力增加时,变形模量减小,而在围压超过20 MPa时,变形模量几乎不变。这些结果为工程建设规划提供了重要依据,为岩体力学性能的实验室研究创造了新的有效途径。

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