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A damage mechanical constitutive model of unloading failure for brittle-elastic rock mass

机译:脆性弹性岩体卸载破坏的损伤力学本构模型

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摘要

Based on damage mechanical theory and giving some assumptions of rock mass, a damage constitutive model of unloading failure for brittle-elastic rock mass is proposed in the paper. In the model proposed herein, the behavior of rock mass is decomposed in two parts. The first part represents topical (continuum) behavior, which obeys elastic constitutive law. The second part refers to damaged or fractured part, the behavior is such that its stiffness is assumed to be zero. The form of the model is simple and its physical meaning is clear. For verifying the model, a series of true triaxial tests of red sandstone specimens were performed. The red sandstone specimens came from the Emei Mountains in Sichuan, China. The tests adopted four experimental types that correspond to four excavation ways and obtained the stress-strain curves in each type test. By means of comparison of experimental results, it is shown that the model is very good agreement with tests. Thus, the model could be applied to unloading failure of brittle-elastic rock mass.
机译:基于损伤力学理论并给出岩体的一些假设,提出了脆性弹性岩体卸载破坏的损伤本构模型。在本文提出的模型中,岩体的行为分解为两部分。第一部分代表局部(连续体)行为,遵循弹性本构律。第二部分是指损坏或断裂的部分,其行为假定其刚度为零。该模型形式简单,物理意义清晰。为了验证模型,对红砂岩标本进行了一系列真实的三轴测试。红砂岩标本来自中国四川峨眉山。试验采用与四种开挖方式相对应的四种试验类型,并在每种试验中获得了应力-应变曲线。通过对实验结果的比较,表明该模型与试验结果吻合良好。因此,该模型可应用于脆性弹性岩体的卸载破坏。

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