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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Non-associative Fractional-Order Bounding-Surface Model for Granular Soils Considering State Dependence
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Non-associative Fractional-Order Bounding-Surface Model for Granular Soils Considering State Dependence

机译:考虑状态依赖性的粒状土壤非缔合分数阶边界面模型

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The constitutive behaviour of granular soil is usually non-associative and depends on the soil density and pressure. To simulate such dependence of the non-associative stress-strain response on material state, two distinct yielding and plastic potential surfaces were usually suggested in the traditional elastoplastic models, which, however, made the model to become complex. To solve this problem, a simple fractional-order plasticity model without using any plastic potential functions was proposed before. However, the model did not consider the dependence of deformation on the density and pressure of soil, which could make the model incompatible with the critical-state soil mechanics. In contrast to the previous study, a state-dependent non-associative bounding-surface model within the framework of critical-state soil mechanics is proposed in this study. The plastic flow direction is obtained using a state-dependent fractional-order differentiation of the bounding surface. To demonstrate the capability of the model, drained and undrained triaxial test results of different granular soils under a variety of initial states are simulated, from which good agreement between the model predictions and the test results is observed.
机译:粒状土壤的本构行为通常是非缔合性的,并取决于土壤的密度和压力。为了模拟非缔合应力-应变响应对材料状态的这种依赖性,通常在传统的弹塑性模型中建议使用两个不同的屈服面和塑性势面,但是这使模型变得复杂。为了解决这个问题,以前提出了一个不使用任何塑性势函数的简单分数阶可塑性模型。但是,该模型没有考虑变形对土壤密度和压力的依赖性,这可能会使模型与临界状态的土壤力学不兼容。与先前的研究相反,本研究提出了一种在临界状态土壤力学框架内的状态相关非缔合边界面模型。使用边界表面的状态相关分数阶微分来获得塑性流动方向。为了证明该模型的能力,模拟了在各种初始状态下不同粒状土壤的排水和不排水三轴试验结果,从中可以观察到模型预测与试验结果之间的良好一致性。

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