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Evaluation of Mode I Fracture Toughness Assisted by the Numerical Determination of K-Resistance

机译:耐K值的数值计算辅助评估I型断裂韧性

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The fracture toughness of a rock often varies depending on the specimen shape and the loading type used to measure it. To investigate the mode I fracture toughness using semi-circular bend (SCB) specimens, we experimentally studied the fracture toughness using SCB and chevron bend (CB) specimens, the latter being one of the specimens used extensively as an International Society for Rock Mechanics (ISRM) suggested method, for comparison. The mode I fracture toughness measured using SCB specimens is lower than both the level I and level II fracture toughness values measured using CB specimens. A numerical study based on discontinuum mechanics was conducted using a two-dimensional distinct element method (DEM) for evaluating crack propagation in the SCB specimen during loading. The numerical results indicate subcritical crack growth as well as sudden crack propagation when the load reaches the maximum. A K-resistance curve is drawn using the crack extension and the load at the point of evaluation. The fracture toughness evaluated by the K-resistance curve is in agreement with the level II fracture toughness measured using CB specimens. Therefore, the SCB specimen yields an improved value for fracture toughness when the increase of K-resistance with stable crack propagation is considered.
机译:岩石的断裂韧性通常取决于样品形状和用于测量岩石的载荷类型而变化。为了研究使用半圆弯曲(SCB)样品的模式I断裂韧性,我们通过实验研究了使用SCB和V形弯曲(CB)样品的断裂韧性,后者是国际岩石力学学会广泛使用的一种样品( ISRM)建议的方法,以进行比较。使用SCB样品测得的I型断裂韧性低于使用CB样品测得的I级和II级断裂韧性值。使用二维离散元方法(DEM)进行了基于不连续力学的数值研究,以评估加载过程中SCB试样中的裂纹扩展。数值结果表明,当载荷达到最大时,亚临界裂纹扩展以及突然的裂纹扩展。使用裂纹扩展和评估点的载荷绘制K电阻曲线。通过K-电阻曲线评估的断裂韧性与使用CB样品测得的II级断裂韧性一致。因此,当考虑随着稳定裂纹扩展而增加的K阻力时,SCB试样的断裂韧性值得到了提高。

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