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Mechanical Properties of Layered Composite Coal-Rock Subjected to True Triaxial Stress

机译:对真正三轴应力进行分层复合煤岩的力学性能

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Underground mining or tunnelling activity is always associated with the composite geological formations. The mechanical properties of layered composite coal-rock subjected to true triaxial stress conditions are significantly different from those under conventional triaxial or uniaxial stress conditions. In this work, we conducted a series of true triaxial tests using the self-developed true-triaxial apparatus to investigate the mechanical response (e.g., deformation, strength, and failure characteristics) of the layered composite coal-rock (CCR). The results show that the uniaxial strength of CCR lies between the strength of pure sandstone and coal, and the direction of the bedding affects the overall strength of the samples. The true triaxial strength of both the pure rock and CCR increases first and then decreases with the increase of the intermediate principal stress. Moreover, for a given loading direction, as the thickness of the sandstone layer increased, the strength of the CCR increases. The deformation of the CCR shows more obvious plasticity than that of the pure sandstone due to the coordinated deformation of the coal and sandstone layers. In addition, a new true triaxial strength criterion expressed by the first and third equivalent principal stress invariants was proposed, which can well describe the strength characteristics of different coal rocks. The stress states, weak structural planes, and localized stress have a great influence on the failure modes of CCR. The local stress concentration near the contact surface promotes the development of the secondary failure fractures. These findings are of great significance in stability designing in deep underground engineering.
机译:地下采矿或隧道活动始终与复合地质形成相关。经过真正的三轴应力条件的分层复合煤的力学性能与常规三轴或单轴应力条件下的分层复合条件有显着差异。在这项工作中,我们使用自开发的真正三轴仪器进行了一系列真正的三轴试验,以研究层状复合煤岩(CCR)的机械响应(例如,变形,强度和失效特性)。结果表明,CCR的单轴强度位于纯砂岩和煤的强度之间,床上用品的方向影响样品的总体强度。纯岩石和CCR的真正三轴强度首先增加,然后随着中间主应力的增加而降低。此外,对于给定的负载方向,随着砂岩层的厚度增加,CCR的强度增加。由于煤和砂岩层的协调变形,CCR的变形显示比纯砂岩的变形更明显。此外,提出了由第一和第三等同基本应力不变表示的新的真正的三轴强度标准,这可以很好地描述不同煤岩的强度特征。应力状态,弱结构平面和局部应力对CCR的失效模式产生了很大影响。接触表面附近的局部应力集中促进了二次失效骨折的发育。这些发现对于深层地下工程中的稳定性设计具有重要意义。

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