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An Elasto-plastic Method for Analysing the Deformation of the Railway Ballast

机译:一种分析铁路镇流器变形的弹塑性方法

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In this study, a series of monotonically drained triaxial tests were conducted using the large-scale cylindrical triaxial apparatus. The effect of particle breakage and confining pressure on the mechanical behaviour of ballast were investigated. Based on the experimental findings, mathematical expressions for critical state stress ratio and specific volume are proposed to incorporate the evolution of particle breakage during monotonic shearing. An elasto-plastic constitutive model is formulated within the critical state soil mechanics framework in order to capture the stress-strain behaviour and degradation of ballast. The non-linear variation of shear strength envelope at a given range of confining pressures is taken into account. Mathematical expressions for shear hardening and stress-dilatancy relations are proposed. The constitutive model is calibrated against the results of large-scale laboratory tests and further validated using experimental results available from past independent studies. It is proved that the proposed method can promisingly predict the deformation of the ballast layer in a typical railway environment.
机译:在该研究中,使用大规模圆柱形三轴装置进行一系列单调的三轴试验。研究了颗粒破裂和限制压力对镇流器力学行为的影响。基于实验结果,提出了用于临界状态应力比和特定体积的数学表达,以掺入单调剪切期间颗粒破裂的演变。弹性塑料本构模型在临界状态土机械框架内配制,以捕获应力 - 应变行为和镇流器的降解。考虑到给定范围的限制压力范围内的剪切强度包络的非线性变化。提出了用于剪切硬化和应力膨胀关系的数学表达。根据大规模实验室测试的结果校准本构模型,并使用过去独立研究的实验结果进一步验证。事实证明,该方法可以承诺预测典型铁路环境中镇流器层的变形。

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