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Energy Evolution Mechanism and Confining Pressure Effect of Granite under Triaxial Loading-Unloading Cycles

机译:三轴装卸循环下花岗岩的能量演化机制和狭窄压力效应

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Rock mass undergoes some deformational failure under the action of external loads, a process known to be associated with energy dissipation and release. A triaxial loading-unloading cycle test was conducted on granite in order to investigate the energy evolution pattern of rock mass under the action of external loads. The study results demonstrated: (1) The stress peaks increased by 50% and 22% respectively and the pre-peak weakening became more apparent in the ascending process of the confining pressure from 10MPa to 30MPa; the area enclosed by the hysteresis loop corresponding to 30MPa diminished by nearly 60% than that corresponding to 10MPa, indicating a higher confining pressure prohibits rock mass from plastic deformation and shifts strain toward elastic deformation. (2) In the vicinity of the strength limit, the slope of dissipation energy increased to 1.6 from the original 0.7 and the dissipation energy grew at an accelerating rate, demonstrating stronger propagation and convergence of internal cracks. (3) At a pressure of 70% of the stress peak, the elastic energy of the granite accounted for 88% of its peak value, suggesting the rock mechanical energy from the outside mostly changes into the elastic energy inside the rock, with little energy loss.(4) Prior to test specimen failure, the axial bearing capacity dropped with a decreasing confining pressure in an essentially linear way, and the existence of confirming pressure played a role in stabilizing the axial bearing capacity.
机译:岩体在外部载荷的作用下经历了一些变形故障,该方法已知与能量耗散和释放相关。在花岗岩上进行三轴装卸循环试验,以研究外部负荷作用下岩体的能量演化模式。表现出的研究结果:(1)应力峰值分别增加50%和22%,并且在狭窄压力从10MPa至30MPa的升压过程中变得更加明显。由对应于30MPa的滞后环包围的区域减少了近60%的比对应于10MPa,表示较高的限制压力禁止塑性变形的岩体并向弹性变形变为弹性变形。 (2)在强度极限附近,耗散能量的倾斜度从原始0.7的倾斜增加到1.6,耗散能量以加速率增长,展示了内裂纹的更强的繁殖和收敛性。 (3)在70%的应力峰的压力下,花岗岩的弹性能量占其峰值的88%,表明来自外部的岩石机械能大多变为岩石内的弹性能量,具有很少的能量损失。(4)在试样故障之前,轴向承载力以基本上线性的方式降低限制压力,并且确认压力的存在在稳定轴向承载力方面发挥作用。

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