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The effect of stress state factor on fracture of sandstones under true triaxial loading

机译:应力状态因子对真三轴载荷下砂岩断裂的影响

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摘要

Experimental results on rock deformation and fracture under true triaxial compression have revealed a misfit between strain state and stress state, strain state varying from generalized compression to generalized shear at sigma_3 not = 0. This misfit can lead to data misinterpretation during the stress field reconstruction after unloading. Fracture of rock specimens under true triaxial compression occurs by a combined longitudinal/transverse shear and produces the highest dilatancy. An increase in the hydrostatic pressure level diminishes limiting values of shear strains and suppresses the dilatancy effect. A maximum of dilatancy coincides with a maximum of fresh surface area formed during the fracture of the rock. The generalized cleavage of rocks becomes energetically disadvantageous in a true triaxial com-pressive stress field. Some sandstone becomes more brittle under true triaxial compression (sigma_2 not = 0) at low values of the minimal stress component (03) due to high initial porosity and dilatancy.
机译:真三轴压缩下岩石变形和破裂的实验结果表明,应变状态和应力状态不匹配,应变状态在sigma_3不为0时从广义压缩到广义剪切变化。这种失配会导致重建后应力场的数据错误解释。卸货。在真正的三轴压缩下,岩石试样的断裂是由纵向/横向组合剪切产生的,并产生最高的膨胀率。静水压力水平的增加减小了剪切应变的极限值并抑制了膨胀效应。膨胀率的最大值与岩石破裂期间形成的最大新鲜表面积一致。在真正的三轴压缩应力场中,岩石的广义劈裂在能量上不利。由于初始孔隙率高和膨胀率高,在最小应力分量(03)较低的情况下,某些砂岩在真正的三轴压缩(sigma_2不等于0)下变得更脆。

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