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首页> 外文期刊>Journal of Civil Engineering and Management >EVALUATING ELASTIC-PLASTIC BEHAVIOUR OF ROCK MATERIALS USING HOEK-BROWN FAILURE CRITERION
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EVALUATING ELASTIC-PLASTIC BEHAVIOUR OF ROCK MATERIALS USING HOEK-BROWN FAILURE CRITERION

机译:用Hoek-Brown破坏准则评估岩石材料的弹塑性行为

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摘要

As a matter of fact, the failure criteria only predict failure's initiation in materials. And, in order to predict post-yield behaviour of materials, a much complicated formulation for stress-strain relationship is required, which we know as plasticity theory. For instance, these formulations are developed based on Mohr-Coulomb criterion for soils and Drucker-Prager criterion for concrete. According to a majority of rock mechanics researchers, the empirical and experimental Hoek-Brown failure criterion is one of the well-progressed and suitable criteria, which can efficiently predict the rock failure initiation under different stress states for various types of intact rocks and rock masses. In this article, according to the suggestion by Heok explained in his paper of 1997, this rugged mentioned criterion is considered as a yield criterion and the elastic-perfect plastic behaviour of rock masses is determined using calculating material constitutive matrix's arrays in terms of Hoek-Brown's material constants and mechanical characteristics of rock materials in the general stress space, considering associated flow rule.
机译:实际上,失效标准仅预测材料中失效的起因。并且,为了预测材料的屈服后行为,需要复杂得多的应力-应变关系公式,我们将其称为可塑性理论。例如,这些配方是根据土壤的Mohr-Coulomb准则和混凝土的Drucker-Prager准则开发的。根据大多数岩石力学研究人员的说法,经验和实验的Hoek-Brown破坏准则是发展良好且合适的准则之一,它可以有效地预测各种类型的完整岩石和岩体在不同应力状态下的岩石破坏起因。 。在本文中,根据Heok在其1997年的论文中所解释的建议,将该坚固的提及准则视为屈服准则,并通过使用Hoek-k来计算材料本构矩阵来确定岩体的弹性完美塑性行为。考虑到相关的流动规律,布朗在一般应力空间中的材料常数和岩石材料的力学特性。

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