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An empirical statistical constitutive relationship for rock joint shearing considering scale effect

机译:考虑规模效应的岩石关节剪切的经验统计本构关系

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摘要

The scale effect of rock joint shearing is of great significance in rock engineering. Most existing shear constitutive models could describe the pre- and post-peak deformation of rock joints, but only in one particular scale, that is, those existing models will fail to depict the rock joint shearing in different length scales. Therefore, this study aims to establish a constitutive relationship for rock joints with considering the scale effect. Based on the assumption of a random statistical distribution of rock material strength and statistical mesoscopic damage theory, damage variables are defined as the ratio of the number of damaged elements to the total number in the shear process. Together with the nonlinear relationship between the microelement failure and the joint scale, an empirical statistical constitutive relationship for joint is established. And then, the determination method of constitutive relationship parameters and the variation laws with the scale are discussed. Results show that the predicted results of the proposed empirical relationship not only agree well with the experimental results but also fully describe nonlinear deformation, pre-peak softening, post-peak softening, residual stage, and other mechanical properties of the shear deformation of joint with different dimensions, thereby demonstrating the rationality of the constitutive relationship. The physical meaning of the constitutive relationship parameters is clear, and the expressions of the constitutive relationship parameters can be deduced from the experimental results. In addition, the influence of scale effect on the shear deformation of rock joints can be quantified using parameters, which help accurately describe the action form of scale effect. (C) 2019 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:岩石联合剪切的规模效应在岩石工程中具有重要意义。大多数现有的剪切本构模型可以描述岩壁的前峰值和后峰值变形,而是仅以一种特定的规模,即现有型号将无法描绘不同长度尺度的岩石关节剪切。因此,本研究旨在考虑尺度效应来建立岩石关节的本构关系。基于岩石材料强度和统计介面损伤理论的随机统计分布的假设,损伤变量定义为损坏元素的数量与剪切过程中总数的比率。与微调失效与联合规模之间的非线性关系一起,建立了对关节的经验统计本构关系。然后,讨论了组成型关系参数的确定方法和具有规模的变化法。结果表明,拟议的经验关系的预测结果不仅与实验结果吻合良好,而且完全描述了非线性变形,预峰值软化,峰值后峰值软化,剩余阶段和与关节剪切变形的其他机械性能不同的尺寸,从而展示了本构关系的合理性。本构关系参数的物理含义清晰,并且可以从实验结果中推导出本构成关系参数的表达。此外,可以使用参数量化比例对岩接头的剪切变形的影响,这有助于精确描述规模效应的动作形式。 (c)2019年Academie Des Sciences。由Elsevier Masson SA出版。版权所有。

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