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Discussion on Failure Mechanism and Strength Criterion of Sandstone Based on Particle Discrete Element Method

机译:基于粒子分立元素法的砂岩故障机理及强度标准探讨

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In order to study the mechanism of loading failure process of deep rock mass, particle flow numerical simulation (PFC2D) was used to carry out rock mechanical unit tests under different loading strain rates for sandstone in Haitangshan Tunnel, Fuxin. The applicability of several classical strength criteria was compared according to the test. The results show that, except Poisson's ratio, the other mechanical parameters are positively correlated with the loading strain rate, including peak strength, elastic modulus, cohesion, internal friction angle and tensile strength. And the Poisson's ratio is negatively correlated with the loading strain rate. And the crack initiation stress sigma(ci) and dilatation stress sigma(cd) increased gradually, but the effects on sigma(ci)/sigma(pk), sigma(cd)/sigma(pk) and sigma(ci)/sigma(cd) were not obvious; and at the same volume strain, the corresponding axial strain decreased gradually. The anisotropy of normal and tangential contact forces between particles increases with the increase of loading strain rate. The normal contact force was approximately symmetrical distributed up and down, while the tangential contact force was approximately symmetrical distributed in the center. The cumulative number of cracks and the number of cracks every 10 steps gradually increased with the loading strain rate, and the crack development and failure degree gradually increased, and the crack hot spot map at the shear fracture zone gradually tended to be irregular. By comparing different strength criteria, it was found that the error of ROCKER strength criterion was relatively small, and the calculation was simple. It was considered that ROCKER strength criterion was more suitable for sandstone strength prediction under different loading strain rates.
机译:为了研究深层岩体的负载破坏过程的机理,粒子流量数值模拟(PFC2D)用于在海地山隧道砂岩下进行岩石机械单元试验。根据试验比较了几种经典强度标准的适用性。结果表明,除泊松比以外,其他机械参数与负载应变率正相关,包括峰强度,弹性模量,内聚力,内部摩擦角和拉伸强度。泊松的比例与负载应变率负相关。裂纹引发应激σ(CI)和扩张应激Sigma(CD)逐渐增加,但对Sigma(CI)/ Sigma(PK),Sigma(CD)/ Sigma(PK)和Sigma(CI)/ Sigma的影响增加( CD)不明显;并且在相同的体积应变中,相应的轴向应变逐渐降低。随着负载应变率的增加,粒子之间的正常和切向接触力的各向异性增加。正常接触力大致对称分布在上下分布,而切向接触力大致对称分布在中心。每10步的累积裂缝和裂缝数量逐渐增加,随着负荷应变速率逐渐增加,并且裂缝发育和失效程度逐渐增加,剪切断裂带的裂纹热点图逐渐趋于不规则。通过比较不同的强度标准,发现摇杆强度标准的误差相对较小,并且计算简单。被认为是摇杆强度标准更适合于不同负载应变率下的砂岩强度预测。

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