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Constitutive Modeling for Overconsolidated Clays Based on Disturbed State Concept. Ⅰ: Theory

机译:基于扰动状态概念的超固结土本构模型。 Ⅰ:理论

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摘要

The disturbed state concept (DSC) is widely used to capture the cracking, breaking, heating, softening, and hardening behaviors of geomaterials. In this study, a constitutive model for overconsolidated clays is proposed by incorporating the DSC. A new disturbance function describes the effect of the overconsolidation ratio (OCR) on the strength, dilatancy, and deformation of overconsolidated clays. This disturbance function is incorporated into the potential-failure and dilatancy stress ratios, potential-failure and dilatancy lines, and potential-failure and dilatancy surfaces at the current and referenced states. The plastic moduli also pertain to this disturbance function. With the assistance of this disturbance function, the proposed model can capture the strain hardening and volumetric contraction of normally consolidated or slightly overconsolidated clays, as well as the strain softening and volumetric expansion of highly overconsolidated clays under the drained condition. It can also capture the evolution of strength, excess pore pressure, and stress paths under the undrained condition.
机译:扰动状态概念(DSC)被广泛用于捕获土工材料的开裂,断裂,加热,软化和硬化行为。在这项研究中,通过合并DSC提出了超固结粘土的本构模型。一种新的扰动函数描述了超固结比(OCR)对超固结粘土的强度,膨胀率和变形的影响。在当前状态和参考状态下,此扰动函数被合并到潜在故障和剪胀应力比,潜在故障和剪胀线以及潜在故障和剪胀表面中。塑性模量也与该干扰函数有关。借助该扰动函数,所提出的模型可以捕获正常固结或稍超固结的黏土的应变硬化和体积收缩,以及排水条件下高度超固结的黏土的应变软化和体积膨胀。它也可以捕获不排水条件下强度,过大孔隙压力和应力路径的演变。

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