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A Constitutive Model for Soft Clays Incorporating Elastic and Plastic Cross-Anisotropy

机译:包含弹性和塑性交叉各向异性的软土本构模型

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Natural clays exhibit a significant degree of anisotropy in their fabric, which initially is derived from the shape of the clay platelets, deposition process and one-dimensional consolidation. Various authors have proposed anisotropic elastoplastic models involving an inclined yield surface to reproduce anisotropic behavior of plastic nature. This paper presents a novel constitutive model for soft structured clays that includes anisotropic behavior both of elastic and plastic nature. The new model incorporates stress-dependent cross-anisotropic elastic behavior within the yield surface using three independent elastic parameters because natural clays exhibit cross-anisotropic (or transversely isotropic) behavior after deposition and consolidation. Thus, the model only incorporates an additional variable with a clear physical meaning, namely the ratio between horizontal and vertical stiffnesses, which can be analytically obtained from conventional laboratory tests. The model does not consider evolution of elastic anisotropy, but laboratory results show that large strains are necessary to cause noticeable changes in elastic anisotropic behavior. The model is able to capture initial non-vertical effective stress paths for undrained triaxial tests and to predict deviatoric strains during isotropic loading or unloading.
机译:天然粘土在其织物中表现出很大程度的各向异性,这最初是由粘土薄片的形状,沉积过程和一维固结引起的。许多作者提出了涉及倾斜屈服面的各向异性弹塑性模型,以再现塑性性质的各向异性行为。本文提出了一种新型的软结构粘土本构模型,该模型包括弹性和塑性性质的各向异性行为。由于天然粘土在沉积和固结后显示出横观各向异性(或横观各向同性)行为,因此该新模型使用三个独立的弹性参数将屈服面内的应力相关横观各向异性弹性行为纳入其中。因此,该模型仅包含一个具有明确物理意义的附加变量,即水平和垂直刚度之比,可以从常规实验室测试中分析得出。该模型没有考虑弹性各向异性的演变,但是实验室结果表明,大的应变对于引起弹性各向异性行为的显着变化是必要的。该模型能够捕获不排水三轴测试的初始非垂直有效应力路径,并预测各向同性加载或卸载过程中的偏斜应变。

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