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Experimental investigation on shock mechanical properties of red sandstone under preloaded 3D static stresses

机译:预应力3D静力作用下红砂岩冲击力学性能的实验研究

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摘要

Triaxial impact mechanical performance experiment was performed to study the mechanical properties of red sandstone subjected to three-dimensional (3D) coupled static and dynamic loads, i.e., three confining pressures (0, 5, and 10 MPa) and three axial pressures (11, 27, and 43 MPa). A modified 3D split Hopkinson pressure bar testing system was used. The change trend in the deformation of red sandstone and the strength and failure modes under axial pressures and confining pressures were analyzed. Results show that, when the confining pressure is constant, the compressive strength, secant modulus, and energy absorbed per unit volume of red sandstone initially increases and subsequently decreases, whereas the average strain rate exhibits an opposite trend. When the axial pressure is constant, both the compressive strength and secant modulus of red sandstone are enhanced, but the average strain rate is decreased with increasing confining pressure. The energy absorbed per unit volume is initially increased and subsequently decreased as the confining pressure increases. Red sandstone exhibits a cone-shaped compression–shear failure mode under the 3D coupled static and dynamic loads. The conclusions serve as theoretical basis on the mechanical properties of deep medium-strength rock under a high ground stress and external load disturbance condition.
机译:进行了三轴冲击力学性能实验,研究了红砂岩在三维(3D)静态和动态载荷下的力学性能,即三个约束压力(0、5和10 MPa)和三个轴向压力(11, 27和43 MPa)。使用了改进的3D拆分Hopkinson压力杆测试系统。分析了红砂岩变形的变化趋势以及在轴向压力和围压下的强度和破坏模式。结果表明,当围压恒定时,红砂岩的抗压强度,割线模量和单位体积吸收的能量先增大后减小,而平均应变率却呈现相反的趋势。当轴向压力恒定时,红砂岩的抗压强度和割线模量均得到增强,但平均应变速率随围压的增加而降低。每单位体积吸收的能量最初随着围压的增加而增加,随后减少。在3D静态和动态载荷耦合作用下,红砂岩呈现出圆锥形的压缩剪切破坏模式。这些结论为在高地应力和外部载荷扰动条件下深层中强度岩石的力学性能提供了理论依据。

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