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An enhanced bounding surface plasticity model for soft rock subjected to drained and undrained condition

机译:一种增强的柔软岩石横向表面塑性模型,受排水和不推进的条件

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摘要

A bounding surface model in general stress space is formulated for soft rock subjected to drained and undrained condition. Specifically, a UYC bounding surface is defined based on unified yield criterion by introducing bounding surface plasticity, and it can degenerate to a bounding surface adopting Mohr-Coulomb criterion or Twin-shear criterion; a UYC loading surface that is similar to the UYC bounding surface is defined; a mapping rule in general stress space is given to consider the plastic strain inside the UYC bounding surface; a modified hardening parameter and a modified stress-dilatancy is proposed to capture the residual strength and volumetric strain of soft rock, respectively. The comparison between model prediction and experimental results shows that the constitutive model well predicts the mechanical behaviours of soft rocks subjected to drained and undrained compression condition. Besides, the proposed model overcomes the limitation that the plastic strain of soft rock can't be well captured by the traditional constitutive models based on unified strength theory.
机译:将一般应力空间中的边界表面模型配制成软岩体经受排水和不推迟的病症。具体地,通过引入边界表面可塑性基于统一的屈服标准来定义UYC边界表面,并且它可以退化为采用MOHR-COULOMB标准或双剪切标准的边界表面;定义了类似于UYC边界表面的UYC装载表面;一般应力空间中的映射规则考虑UYC边界表面内的塑性应变;提出了一种改进的硬化参数和改性应力膨胀,分别捕获软岩的残余强度和体积菌株。模型预测和实验结果之间的比较表明,本构模型良好的良好预测经受排水和不推进的压缩条件的软岩的力学行为。此外,所提出的模型克服了基于统一强度理论的传统本构模型不能充分捕获软岩的塑性应变。

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