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Influence of Water Content on Mechanical Properties of Rock in Both Saturation and Drying Processes

机译:含水量对饱和和干燥过程中岩石力学性能的影响

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摘要

Water content has a pronounced influence on the properties of rock materials, which is responsible for many rock engineering hazards, such as landslides and karst collapse. Meanwhile, water injection is also used for the prevention of some engineering disasters like rock-bursts. To comprehensively investigate the effect of water content on mechanical properties of rocks, laboratory tests were carried out on sandstone specimens with different water contents in both saturation and drying processes. The Nuclear Magnetic Resonance technique was applied to study the water distribution in specimens with variation of water contents. The servo-controlled rock mechanics testing machine and Split Hopkinson Pressure Bar technique were used to conduct both compressive and tensile tests on sandstone specimens with different water contents. From the laboratory tests, reductions of the compressive and tensile strength of sandstone under static and dynamic states in different saturation processes were observed. In the drying process, all of the saturated specimens could basically regain their mechanical properties and recover its strength as in the dry state. However, for partially saturated specimens in the saturation and drying processes, the tensile strength of specimens with the same water content was different, which could be related to different water distributions in specimens.
机译:含水量对岩石材料的性能有显着影响,这是造成许多岩石工程危害的原因,例如滑坡和岩溶塌陷。同时,注水也可用于预防某些工程灾害,例如岩爆。为了全面研究含水量对岩石力学性能的影响,在饱和和干燥过程中,对含水量不同的砂岩标本进行了实验室测试。核磁共振技术用于研究水含量变化的试样中的水分布。使用伺服控制的岩石力学测试机和Split Hopkinson压力棒技术对不同含水量的砂岩标本进行压缩和拉伸测试。通过实验室测试,观察到在不同饱和度过程中,砂岩在静态和动态状态下的抗压强度和抗拉强度均降低。在干燥过程中,所有饱和标本可以基本恢复其机械性能并恢复其在干燥状态下的强度。但是,对于饱和和干燥过程中部分饱和的试样,含水量相同的试样的拉伸强度不同,这可能与试样中水分布的不同有关。

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