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MODELLING AND SIMULATION OF RATE-DEPENDENT STRESS-STRAIN BEHAVIOUR OF GRANULAR MATERIALS IN SHEAR

机译:剪切过程中颗粒材料速率相关的应力-应变行为的建模与仿真

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References(41) A constitutive modelling of the elasto-viscoplastic stress-strain behaviour of geomaterials in shear that has been developed within a non-linear three-component model framework is validated by simulating a comprehensive series of drained triaxial compression (TC) and direct shear (DS) tests on a wide variety of granular materials. Illustrative simulations of rate-dependent stress-strain behaviour of geomaterial under typical laboratory test conditions were performed to analyse the structure of the model. The versatility of the proposed model and its applicability to a wide variety of shear loading histories is examined and demonstrated by these simulations. The following results are shown. Commonly with different basic viscosity types, Isotach, TESRA and P&N, the viscous stress component has a positive component that increases with an increase in the irreversible strain rate, which makes feasible stable and realistic simulations of rate-dependent stress-strain behaviour, including creep deformation, based on the proposed model. With different unbound granular material types having similar relative densities, the creep strain in TC tests and creep shear displacement in DS tests that develop by sustained loading at a given shear stress level for a given period tends to decrease with an increase in the particle roundness. This trend of behaviours is explained by a decrease in the viscosity type parameter, θ, associated with an increase in the particle roundness based on the simulations of these tests.
机译:参考文献(41)在非线性三分量模型框架内开发的土工材料在剪切过程中的弹黏塑性应力-应变行为的本构模型通过模拟一系列排水三轴压缩(TC)和直接作用的综合系列进行了验证对多种颗粒材料进行的剪切(DS)测试。在典型的实验室测试条件下,对岩土材料的速率相关应力-应变行为进行了说明性模拟,以分析模型的结构。这些模拟检查并证明了所提出模型的多功能性及其在各种剪切载荷历史中的适用性。显示以下结果。通常,在具有不同基本粘度类型的Isotach,TESRA和P&N时,粘性应力分量的正分量会随着不可逆应变率的增加而增加,这使得可行,稳定,逼真的模拟速率相关的应力应变行为(包括蠕变)变形,基于提出的模型。对于具有相似相对密度的不同的未结合粒状材料类型,在给定时间段内在给定剪应力水平下持续加载产生的TC测试中的蠕变应变和DS测试中的蠕变剪切位移会随着颗粒圆度的增加而降低。根据这些测试的模拟,这种行为趋势是通过粘度类型参数θ的减小与颗粒圆度的增加相关的来解释的。

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