首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Experimental and Numerical Study on Failure Modes and Shear Strength Parameters of Rock-Like Specimens Containing Two Infilled Flaws
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Experimental and Numerical Study on Failure Modes and Shear Strength Parameters of Rock-Like Specimens Containing Two Infilled Flaws

机译:包含两个填充缺陷的岩石样的破坏模式和抗剪强度参数的实验和数值研究

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To investigate the influence of infilled flaws on mechanical properties and failure modes of rock masses, seven types of pre-existing infilled two-flaw specimens, which have different flaw inclination angle (alpha), rock bridge length (L-2) and rock bridge inclination angle (beta), were made from concrete. The crack coalescence process, failure modes and mechanical parameters of the specimens under triaxial or biaxial compression were studied by lab test and numerical tests, respectively. According to test results, two failure modes of specimen (shear failure, tensile-shear failure) and three rock bridge coalescence modes (tensile crack coalescence, shear crack coalescence, no coalescence) were identified. As the rock bridge length and inclination angle increase, the peak strengths of specimens also increase gradually, while the peak strengths of specimens decrease with flaw inclination angle being increase. The shear strength parameters (cohesion c and internal friction angle phi) of samples show nonlinear changes with various factors (flaw angle, rock bridge length, rock bridge angle). The particle flow code (PFC) was used to simulate the propagation process of microcracks and porosities, stress-strain curves for loading process were also obtained, numerical results are in good agreement with experimental results. The number of cracks and porosities increase rapidly in the post-peak stage, and a significant shear fracture zone was caused by cracks. This study provides a better understanding of peak strength and cracking behaviour of rock mass containing infilled flaws.
机译:为了研究填充缺陷对岩体力学性能和破坏模式的影响,我们提出了七种预先存在的填充两缺陷标本,它们具有不同的缺陷倾斜角(α),岩桥长度(L-2)和岩桥。倾斜角(β)由混凝土制成。通过实验室试验和数值试验分别研究了试样在三轴或双轴压缩下的裂纹合并过程,破坏模式和力学参数。根据测试结果,确定了两种破坏模式(剪切破坏,拉伸-剪切破坏)和三种岩桥合并模式(拉伸裂缝合并,剪切裂缝合并,无合并)。随着岩桥长度和倾角的增加,试件的峰值强度也逐渐增大,而试件的峰值强度随着缺陷倾角的增加而减小。样品的抗剪强度参数(内聚力c和内摩擦角phi)显示出随各种因素(缺陷角,岩桥长度,岩桥角度)的非线性变化。用粒子流代码(PFC)模拟了微裂纹和孔隙的传播过程,获得了加载过程的应力-应变曲线,数值结果与实验结果吻合良好。在峰后阶段,裂纹和孔隙的数量迅速增加,并且裂纹引起了明显的剪切断裂带。这项研究可以更好地理解包含填充缺陷的岩体的峰值强度和开裂行为。

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