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A cyclic elastoplastic-viscoplastic constitutive model for soils

机译:土的循环弹塑性-粘塑性本构模型

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摘要

An elastoplastic-viscoplastic constitutive model for soils is presented in this study, based on an original approach concerning viscous modelling. In this approach, the viscous behaviour is defined by internal viscous variables and a viscous yield surface. The model has been developed from a basic clastoplastic model (CJS model) by considering an additional viscous mechanism. The evolution of the viscous yield surface is governed by a particular hardening called 'viscous hardening'. This model is able to explain the time-dependent behaviour of soils such as creep (primary, secondary and un-drained creep rupture), stress relaxation and strain rate effects in static and cyclic loadings. The existing problems in the classical elasto-viscoplastic models related to the plasticity failure, the rapid loading and the cyclic loading are solved in the proposed model. The physical meanings and the identification strategy of model parameters are clearly given. The validation on certain triaxial test results and the simulation of cyclic triaxial test indicate the capacity of this model in prediction of time-dependent behaviour of clayey soils.
机译:基于关于粘性建模的原始方法,本研究提出了一种针对土壤的弹塑性-粘塑性本构模型。在这种方法中,粘性行为由内部粘性变量和粘性屈服面定义。该模型是根据基本的弹塑性模型(CJS模型)开发的,其中考虑了其他粘性机制。粘性屈服面的演变受称为“粘性硬化”的特殊硬化控制。该模型能够解释土壤随时间变化的行为,例如蠕变(主要,次要和不排水的蠕变破裂),应力松弛以及在静态和循环荷载下的应变率效应。该模型解决了经典弹黏塑性模型中与塑性破坏,快速加载和循环加载有关的问题。明确给出了模型参数的物理含义和识别策略。对某些三轴试验结果的验证以及循环三轴试验的仿真表明,该模型具有预测黏土的时变特性的能力。

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