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Mechanical Characteristics and Failure Characteristics of Jointed Rock under Axial Unloading and Radial Unloading

机译:轴向卸载下圆形岩石的机械特性及故障特性及径向卸载

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In this research, we used precracked rock-like materials (simulating jointed rock masses) to assess the triaxial compression of cracked specimens under axial unloading and radial unloading paths. The research goal was to comparatively analyze and research the mechanical characteristics of cracked specimens to ascertain how deformation properties, strength properties, and failure features influence the overall mechanisms in context. The test results showed that the failure of specimens did not appear at peak stress under axial unloading and radial unloading. The elastic stage, yield stage, and failure stage of the stress-strain curves were not clearly defined in the testing process. However, the stress drop and the strain of resilience of the lateral strain-axial strain curve happened under this path because the lateral strain was significantly greater than the axial strain. This in turn led the volumetric strain to remain in a state of expansion throughout the testing process. The mechanical properties under this path are mainly influenced by the crack inclination angle, the unloading speed of radial pressure, and the initial confining pressure. However, there is a difference in the influence of these three factors on their mechanical parameters; that is, the influence of the crack inclination angle is the greatest, followed by that of the initial confining pressure, while that of the unloading speed of radial pressure is relatively small. Finally, the failure characteristics of specimens often present mixed tension-shear failure under axial unloading and radial unloading.
机译:在这项研究中,我们使用预摇动的岩石状材料(模拟接合岩体)来评估轴向卸载和径向卸载路径下裂纹标本的三轴压缩。研究目标是相对分析和研究裂纹标本的机械特性,以确定变形性质,强度性能和故障特征如何影响上下文中的整体机制。测试结果表明,样品的故障在轴向卸载和径向卸载下没有出现在峰值应力下。在测试过程中没有明确限定应力 - 应变曲线的弹性级,产量阶段和失效阶段。然而,由于横向菌株显着大于轴向菌株,因此在该路径下发生了应力下降和横向应变轴向应变曲线的弹性菌株。这反过来导致体积应变在整个测试过程中保持在扩展状态。该路径下的机械性能主要受裂纹倾角,径向压力卸载速度和初始限制压力的影响。然而,这三种因素对其机械参数的影响存在差异;也就是说,裂缝倾斜角度的影响是最大的,其次是初始限制压力的影响,而径向压力的卸载速度相对较小。最后,标本的故障特性通常在轴向卸载和径向卸载下存在混合张力剪切失效。

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