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首页> 外文期刊>Canadian Geotechnical Journal >Constitutive model to simulate full deformation and failure process for rocks considering initial compression and residual strength behaviors
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Constitutive model to simulate full deformation and failure process for rocks considering initial compression and residual strength behaviors

机译:构成模型模拟考虑初始压缩和残余强度行为的岩石全变形和故障过程

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摘要

A constitutive model with capacity to simulate the full deformation and failure process for rocks considering initial compression and residual strength behaviors is discussed in this paper. The rock was assumed to consist of the initial voids portion and the solid skeleton portion. The full deformation model of rocks can be established by the consideration of the macroscopic deformation of rocks and the microscopic deformations of the two different portions based on the statistical damage theory. Comparisons between the experimental data from triaxial compression tests and calculated results show that the proposed constitutive model provided a good prediction of the full deformation and failure process, including the effects of initial void compression, stiffness degradation, strain hardening-softening, and residual strength.
机译:本文讨论了考虑初始压缩和残余强度行为的岩石的全变形和故障过程的能力的构成模型。 假设岩石由初始空隙部分和固体骨架部分组成。 基于统计损伤理论,通过考虑岩石的宏观变形和两种不同部分的微观变形来建立岩石的完整变形模型。 来自三轴压缩试验的实验数据与计算结果之间的比较表明,所提出的本构模型提供了对全变形和故障过程的良好预测,包括初始空隙压缩,刚度降解,硬化软化和残余强度的影响。

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