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Modified Structured Cam Clay: A generalised critical state model for destructured, naturally structured and artificially structured clays

机译:改性结构凸轮粘土:用于变形,自然结构和人工结构粘土的广义临界状态模型

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This paper presents a generalised constitutive model for destructured, naturally structured and artificially structured clays that extends the Structured Cam Clay (SCC) model. This model is designated as "Modified Structured Cam Clay (MSCC) model". The influence of structure and destructuring on the mechanical behaviour of clay can be explained by the change in the modified effective stress, which is the sum of the current mean effective stress and the additional mean effective stress due to structure (structure strength). The presence of structure increases the modified mean effective stress and yield surface, enhancing the cohesion, peak strength and stiffness. The destructuring begins when the stress state is on the virgin yield surface. After the failure (peak strength) state, the abrupt destructuring occurs as the soil-cementation structure is crushed; hence the strain softening. The soil structure is completely removed at the critical state when the yield surface becomes identical to the destructured surface. The destructuring law is proposed based on this premise. In the MSCC model, the yield function is the same shape as that of the Modified Cam Clay (MCC) model. A plastic potential is introduced so as to account for the influence of structure on the plastic strain direction for both hardening and softening behaviours. The required model parameters are divided into those describing destructured properties and those describing structured properties. All the parameters have physical meaning and can be simply determined from the conventional triaxial tests. Thus, the MSCC model is a useful tool for geotechnical practitioners. The capability of the model is verified by the test results of destructured, natural structured and artificially structured clays.
机译:本文介绍了用于结构化,自然结构化和人工结构化粘土的广义本构模型,它扩展了结构化凸轮粘土(SCC)模型。该模型被称为“改性结构凸轮粘土(MSCC)模型”。结构和破坏结构对粘土力学性能的影响可以通过改变有效应力来解释,该有效应力是由于结构(结构强度)引起的当前平均有效应力与附加平均有效应力之和。结构的存在增加了修正的平均有效应力和屈服面,增强了内聚力,峰值强度和刚度。当应力状态在原始屈服面上时,破坏开始。在破坏(峰值强度)状态后,土壤-水泥结构被破坏,会发生突然的破坏。因此应变软化。当屈服面与变形面相同时,在临界状态下土壤结构被完全去除。在此前提下提出了销毁法律。在MSCC模型中,屈服函数的形状与改良凸轮粘土(MCC)模型相同。引入塑性势是为了考虑到硬化和软化行为对塑性应变方向的结构影响。所需的模型参数分为描述结构化特性的参数和描述结构化特性的参数。所有参数都具有物理意义,可以通过常规三轴测试简单确定。因此,MSCC模型对于岩土工程从业者是有用的工具。通过变形,天然结构化和人工结构化粘土的测试结果验证了模型的功能。

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