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Numerical study on deformation and failure of reinforced sand

机译:加筋砂土变形破坏的数值研究

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In order to investigate the deformation and failure of reinforced sand, and the reinforcing mechanism of flexible and rigid reinforcement, a set of plane strain compression tests of dense Toyoura reinforced sand with planar reinforcement of a wide range of stiffness were analysed by a nonlinear finite element method. The analysis was incorporated into an energy-based elasto-plastic constitutive model for sand to develop a stress path-independent work-hardening parameter based on the modified plastic strain energy concept. Numerical results indicate that the global stress-strain relations of sand specimens are reinforced by using relatively flexible and rigid reinforcement, and an unreinforced sand specimen can be reasonably simulated by the current finite element method. It is also found that the reinforcing mechanism and progressive failure with a development of shear bands in reinforced sand can be reasonably examined by the finite element method.
机译:为了研究加筋砂的变形和破坏,以及挠性和刚性加筋的增强机理,通过非线性有限元分析了一组厚刚度宽的平面加固的稠密Toyoura加筋砂的平面应变压缩试验。方法。该分析被并入到基于能量的砂土弹塑性本构模型中,以基于改进的塑性应变能概念来开发与应力路径无关的加工硬化参数。数值结果表明,采用相对柔性和刚性的加强筋可以增强砂土的整体应力-应变关系,采用目前的有限元方法可以合理模拟无筋的砂土。还发现,通过有限元方法可以合理地检查钢筋砂中的增强机理和随着剪切带的发展而进行的破坏。

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