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The Uniaxial Creep Characteristics of Red Sandstone under Dry-Wet Cycles

机译:干湿循环下红砂岩的单轴蠕变特征

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Water is one of the most important factors that affect the long-term stability of geotechnical engineering structures. Rainfall often results in periodic changes in the water content in underground rock, which is subjected to alternating dry-wet cycles. In this paper, in order to study the short-term and long-term mechanical properties of red sandstone under these dry-wet cycles, a series of uniaxial compressive strength (UCS) tests and multistage creep tests have been carried out on specimens of red sandstone after being treated to different numbers of dry-wet cycles. A scanning electron microscope (SEM) was used to image the different groups of specimens. The test results have shown that the peak strength and the elastic modulus of the red sandstone decreased as the number of dry-wet cycles increased. It is worth noting that the first immersion of the specimens decreased their strength the most, and the negative logarithmic function was able to better reflect the peak strength of the red sandstone and the variation of its elastic modulus in relation to the number of dry-wet cycles. The results of the creep tests have shown that the instantaneous strain and creep strain of the sandstone increased significantly with the increase of the number of dry-wet cycles. A linear function and a negative logarithmic function can be used to describe the instantaneous strain and the creep strain, respectively. The creep duration of the red sandstone in its failure stage decreased with the increase of the number of dry-wet cycles, and the creep rate increased with the increase of the number of dry-wet cycles. Lastly, the failure modes of the red sandstone were observed; the results showed that the angle between the main crack and the axis of creep failure gradually increased with the increase of the number of dry-wet cycles and the angle of the internal friction and the cohesion decreased. In addition, the failure mode of the specimens changed from tensile failure to shear failure. The microstructure of the sandstone showed that the surface of the specimen changed from being compact to being loose, and the mineral particles in the specimen changed from being spherical to being flat and curly; this led to a decrease in the macroscopic mechanical parameters of the sandstone.
机译:水是影响岩土工程结构长期稳定性的最重要因素之一。降雨通常会导致地下岩石中的水含量的周期性变化,这对交替的干湿循环进行了交替。在本文中,为了在这些干湿循环下研究红砂岩的短期和长期力学性能,在红色标本上进行了一系列单轴抗压强度(UCS)测试和多级蠕变试验。砂岩被处理到不同数量的干湿循环后。扫描电子显微镜(SEM)用于图像不同的样本组。试验结果表明,随着干湿循环的数量增加,红色砂岩的峰强度和弹性模量降低。值得注意的是,标本的第一次浸没使它们的强度降低,负极对数函数能够更好地反映红色砂岩的峰值强度和其弹性模量的变化与干湿的数量相比循环。蠕变试验的结果表明,随着干湿循环的数量的增加,砂岩的瞬时菌株和蠕变应变显着增加。线性函数和负对数函数可用于分别描述瞬时应变和蠕变应变。随着干湿循环的数量的增加,其失效阶段的红砂岩的蠕变持续时间随着干湿循环的数量而降低,并且随着干湿循环的数量的增加,蠕变率增加。最后,观察到红砂岩的失效模式;结果表明,随着干湿循环的数量的增加和内部摩擦的角度,蠕变衰竭轴之间的角度逐渐增加,内部摩擦的角度和内聚力降低。另外,试样的故障模式从拉伸失效变为剪切失效。砂岩的微观结构表明,样品的表面从紧凑的变化为松散,标本中的矿物颗粒变为球形,以平坦和卷曲;这导致砂岩的宏观机械参数减少。

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