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Propagation of a shear band in sandstone

机译:砂岩中剪切带的传播

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摘要

Closed-loop, servo-controlled experiments were conducted to investigate the development of a shear band in Berea sandstone at various confining pressures. The tests were performed with the University of Minnesota Plane-Strain Apparatus, which was designed to allow the shear band to develop in an unrestricted manner. Measured load and displacements provided estimates of the stress and deformation states whereby dilatancy and friction were evaluated prior to localization. Experiments were stopped at various stages of shear-band development within the strain-softening regime. The specimens displayed a progression of deformation from inception, where the shear band was characterized by a high density of intragranular microcracks and crushed grains, to the tip where the intragranular microcracks were significantly less dense and separated by intact grains. Decreased slip deformation towards the tip of the shear band indicated that localization developed and propagated in plane. Thin-section microscopy showed porosity increase within the shear band was 3-4 grain diameters wide. Increased porosity did not extend beyond the tip of the shear band. A cohesive zone model of shear fracture, used to examine the stress field near the tip, showed similarities to principal compressive stress orientations interpreted from intragranular microcracks. Thus, propagation of the shear band could be associated with in-plane mode II fracture.
机译:进行了闭环伺服控制实验,以研究在不同围压下Berea砂岩中剪切带的发展。测试是使用明尼苏达大学平面应变仪器进行的,该仪器旨在使剪切带不受限制地扩展。测得的载荷和位移提供了应力和变形状态的估计值,从而在定位之前评估了膨胀率和摩擦力。在应变软化范围内,剪切带发展的各个阶段都停止了实验。试样从开始就表现出变形的发展,从剪切带的特征为高密度的颗粒内微裂纹和压碎的颗粒到尖端,颗粒内的微裂纹的密度显着降低并且被完整的颗粒分开。朝向剪切带尖端的滑移变形减小,表明局部在平面内发展并传播。薄层显微镜显示在剪切带内的孔隙率增加为3-4个粒径宽。孔隙率的增加并没有超出剪切带的尖端。用于检查尖端附近应力场的剪切断裂的内聚区模型显示出与从颗粒内微裂纹解释的主要压应力方向的相似性。因此,剪切带的传播可能与面内模式II断裂有关。

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