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Experimental investigation on True Triaxial Deformation and Progressive Damage Behaviour of Sandstone

机译:砂岩真三轴变形及渐进破坏行为的试验研究

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摘要

Studying the true triaxial deformation characteristics and progressive damage behavior of sandstone is of great significance for the stability control of roadways. Both the conventional triaxial test (CTT) and the true triaxial compression test (TTT) were conducted for sandstone to investigate its deformation characteristics and the variation laws of volume strain during the progressive damage process under different confining pressures. The conducted experiments showed that both the axial and lateral strains of the rock prior to failure under CTT conditions increased with increasing confining pressure. However, with increasing intermediate principal stress (σ2) under TTT conditions, both the axial strain, and the lateral strain (ε2) gradually decreased, and the lateral strain (ε3, expansion) first slow down and then accelerated. Moreover, the anisotropic characteristics first gradually weakened and then enhanced. The variation of the volume strain increment and the volume strain rate of rock combined with the acoustic emission activity and a three-dimensional rock theoretical model with microcrack defects were analyzed in detail. During the stable crack growth stage III, the volume strain increment and volume strain rate increased with increasing confining pressure under CTT conditions, while they decrease after the initial increase with increasing σ2 under TTT conditions. During the unstable crack growth stage IV, the volume strain increment increased sharply, while the volume strain rate gradually slowed down with increasing confining pressure under CTT conditions. The internal cracks of the rock were gradually suppressed and the lateral expansion was gradually constrained. The volume strain increment first increased followed by a decrease, and the volume strain rate gradually slowed down after a noticeable acceleration with increasing σ2 under TTT conditions. The internal micro-cracks gradually evolved from inhibition (in the planes parallel to plane 1–2 and plane 2–3) to accelerated expansion (the planes along the σ2 direction), and the lateral deformation first weakened and then strengthened.
机译:研究砂岩的真三轴变形特征和渐进破坏行为对巷道稳定控制具有重要意义。对砂岩进行了常规三轴试验(CTT)和真三轴压缩试验(TTT),以研究其在不同围压下渐进破坏过程中的变形特性和体积应变的变化规律。进行的实验表明,在CTT条件下破坏之前,岩石的轴向和横向应变都随围压的增加而增加。但是,随着TTT条件下中间主应力(σ2)的增加,轴向应变和横向应变(ε2)都逐渐减小,并且横向应变(ε3,膨胀)首先减慢,然后加速。此外,各向异性特征首先逐渐减弱然后增强。详细分析了岩石的体积应变增量和体积应变率的变化以及声发射活动,并分析了具有微裂纹缺陷的三维岩石理论模型。在稳定的裂纹扩展阶段III,在CTT条件下,体积应变的增加和体积应变率随围压的增加而增加,而在TTT条件下,随着σ2的增加,体积应变的增加和体积应变率在初始增加后减小。在不稳定的裂纹扩展阶段IV,随着CTT条件下围压的增加,体积应变增加急剧增加,而体积应变速率逐渐降低。岩石的内部裂缝逐渐受到抑制,横向膨胀逐渐受到限制。在TTT条件下,随着σ2的增加,体积应变率先增加然后减小,然后逐渐减小,体积应变率逐渐降低。内部微裂纹从抑制(在平行于平面1-2和平面2-3的平面中)逐渐演化为加速膨胀(沿σ2方向的平面),并且横向变形首先减弱然后增强。

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