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Mechanical Properties of Sandstones under Initial Unloading Damage

机译:初始卸载损伤下砂岩机械性能

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To study the influence of initial unloading damage on the mechanical properties of sandstone, the repeated loading test of unloading damaged sandstone was carried out considering 8 initial unloading quantities of 100%, 93.33%, 86.67%, 80%, 73.33%, 66.67%, 40%, and 0%. The results were compared with those of the triaxial compression test of intact samples. The results show that the peak strength of intact samples is higher than that of unloading damaged samples, and the difference is more obvious when the unloading quantity is more than 80%. During the unloading process, the strain increasing rate of rock samples is obvious, and the lateral dilatation is significant, and the deformation modulus and compressive strength of the rock sample deteriorate obviously. From the energy point of view, the greater the unloading damage, the smaller the stored elastic strain energy, which leads to the decrease of peak strength. At present, the unloading fracture inside the rock sample has developed, and the failure mode of the sample gradually changes from compression shear failure to tensile shear failure. In the process of engineering rock mass excavation, the unloading area and unloading damage amount of the rock mass is a dynamic adjustment process. To ensure the safety of the engineering rock mass, it is suggested to determine reasonable reinforcement time, reinforcement area, and reinforcement measures.
机译:为研究初始卸料损伤对砂岩机械性能的影响,考虑卸载砂岩的重复装载试验,考虑到8次初始卸料量为100%,93.33%,86.67%,80%,73.33%,66.67%, 40%和0%。将结果与完整样品的三轴压缩试验进行比较。结果表明,完整样品的峰值强度高于卸载损坏样品的峰值强度,并且当卸载量大于80%时,差异更为明显。在卸载过程中,岩石样品的应变增加率是显而易见的,并且横向扩张是显着的,并且岩石样品的变形模量和抗压强度明显恶化。从能量的角度来看,卸载损坏越大,储存弹性应变能越小,导致峰强度的降低。目前,岩石样品内的卸载骨折已经开发,并且样品的失效模式从压缩剪切失败逐渐变化到拉伸剪切失效。在工程岩体挖掘过程中,卸载区域和岩石质量的卸载量是动态调节过程。为确保工程岩体的安全性,建议确定合理的加固时间,加固面积和加固措施。

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