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首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >A damage constitutive model for intermittent jointed rocks under cyclic uniaxial compression
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A damage constitutive model for intermittent jointed rocks under cyclic uniaxial compression

机译:循环单轴压缩下间歇关节岩损伤本构模型

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摘要

A damage constitutive model is proposed to describe the deformation and strength characteristics of intermittent jointed rocks under cyclic uniaxial compression. First, a coupled damage tensor for intermittent jointed rocks is derived based on the Lemaitre strain equivalence hypothesis, which combines the Weibull statistical damage model for micro-flaws and the fracture mechanics model for macro-joints. Second, a fatigue constitutive model with an internal variable (i.e., irreversible plastic strain) is proposed to reproduce the degradation behaviors in fatigue deformation and strength of rocks under cyclic loading. Finally, a damage constitutive model with a definite physical significance is constructed for the intermittent jointed rocks under cyclic uniaxial compression. Our new model comprehensively reflects the coupled damage induced by micro-flaws and macro-joints, in which the geometric parameters and the mechanical properties of intermittent joints are considered simultaneously. Moreover, this model is able to reproduce the hysteretic stress-strain curves and the cumulative fatigue plastic deformation of rock materials under cyclic loading. In addition, a compaction coefficient, which is defined as the ratio of the secant modulus to the Young's modulus, is proposed to reflect the compaction stage of rock materials during the first loading process. To validate this new model, nine cyclic uniaxial compression tests are conducted on both intact and jointed rock samples prepared with synthetic rock-like materials. A reasonable consistency is observed between the theoretical and experimental results for the cyclic stress-strain curves and the fatigue deformation modulus.
机译:提出了一种损伤本构模型来描述循环单轴压缩下间歇性接合岩石的变形和强度特性。首先,基于Lemaitre应变等效假设来推导间歇接合岩石的耦合损伤张量,其结合了微漏和宏观关节的裂隙力学模型的Weibull统计损伤模型。其次,提出了一种具有内部变量(即不可逆塑料应变)的疲劳本构模型,以在循环载荷下再现疲劳变形和岩石强度的降解行为。最后,为循环单轴压缩下的间歇关节岩构造具有明确物理意义的损伤本构体模型。我们的新模型全面地反映了由微缺陷和宏观关节引起的耦合损伤,其中包括间歇接头的几何参数和机械性能同时考虑。此外,该模型能够在环状载荷下再现滞后应力 - 应变曲线和岩石材料的累积疲劳塑性变形。另外,建议将压实系数定义为截至杨氏模量的分割模量与杨氏模量的比率。在第一装载过程中反映岩石材料的压实阶段。为了验证这种新模型,在完整和关节岩样上进行了九个循环单轴压缩试验,用合成岩状材料制备。在循环应力 - 应变曲线和疲劳变形模量之间的理论和实验结果之间观察到合理的一致性。

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