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Experimental Study on the Influence of Temperature on Shale Mechanical Properties under Conventional Triaxial Compression

机译:温度对常规三轴压缩下岩体力学性能影响的实验研究

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High temperature conventional triaxial compression test of shale are carried out by the MTS815 servo-controlled testing machine, based on the experimental results, the relationships between temperature and shale peak strength, elastic modulus, Poisson's ratio, cohesion, internal friction angle are investigated. Although the experimental results are discrete comparatively, the general law is obvious. When the confining pressure imposed on shale is constant and the temperature changes form 25 °C to 120°C, with the increasing of the temperature, the triaxial compression strength, shear strength gradually increase, while average elastic modulus, Poisson's ratio has a slightly decrease. The thermal stress generated by the high temperature plays a role to accommodate the deformation and the function of preventing crack propagation, thus the bearing capacity of shale samples are strengthened. But the influence of temperature on shale mechanical properties mutates when the temperature is at 80 °C. Shale peak strength dramatically decreased, average elastic modulus decreased slightly, and Poisson's ratio also increased slightly, which indicated that at 80 °C, different thermal expansivity of mineral particles of shale may cause cross-grain boundary thermal expansion incongruous, creating additional thermal stress, thus the sample's bearing capacity decreased.
机译:高温传统的页岩传统三轴压缩试验由MTS815伺服控制试验机进行,基于实验结果,研究了温度和页岩峰值强度,弹性模量,泊松比,内聚力,内摩擦角,内部摩擦角。虽然实验结果相比之下,但一般法律是显而易见的。当施加对页岩上施加的狭窄压力恒定并且温度变化25℃至120℃时,随着温度的增加,三轴压缩强度,剪切强度逐渐增加,而平均弹性模量,泊松的比例有略微减少。由高温产生的热应力起到适应变形和防止裂纹繁殖的功能的作用,因此加强了页岩样品的承载能力。但温度在温度为80℃时,温度对页岩机械性能的影响。页岩峰值强度显着降低,平均弹性模量略有下降,泊松比也略有增加,这表明在80℃下,页岩矿物颗粒的不同热膨胀性可能导致跨晶边界热膨胀不协调,产生额外的热应力,产生额外的热应力,因此,样品的承载力降低。

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