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An anisotropic elastoplastic model for soft clays based on logarithmic contractancy

机译:基于对数收缩的软粘土各向异性弹塑性模型

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摘要

A new constitutive model for soft structured clays is developed based on an existing model called S-CLAY1S, which is a Cam clay type model that accounts for anisotropy and destructuration. The newmodel (E-SCLAY1S) uses the framework of logarithmic contractancy to introduce a new parameter that controls the shape of the yield surface as well as the plastic potential (as an assumed associated flow rule is applied). This new parameter can be used to fit the coefficient of earth pressure at rest, the undrained shear strength or the stiffness under shearing stress paths predicted by the model. The improvement to previous constitutive models that account for soil fabric and bonding is formulated within the contractancy framework such that the model predicts the uniqueness of the critical state line and its slope is independent of the contractancy parameter. Good agreement has been found between the model predictions and published laboratory results for triaxial compression tests. An important finding is that the contractancy parameter, and consequently the shape of the yield surface, seems to change with the degree of anisotropy; however, further study is required to investigate this response. From published data, the yield surface for isotropically consolidated clays seems ‘bullet’ or ‘almond’ shaped, similar to that of the Cam clay model; while for anisotropically consolidated clays, the yield surface is more elliptical, like a rotated and distorted modified Cam clay yield surface.
机译:基于称为S-CLAY1S的现有模型,开发了一种用于软结构粘土的新本构模型,该模型是考虑了各向异性和破坏性的Cam粘土类型模型。新模型(E-SCLAY1S)使用对数收缩框架来引入一个新参数,该参数控制屈服面的形状以及塑性势(应用假定的关联流动规则)。此新参数可用于拟合静态土压力系数,不排水的剪切强度或模型预测的剪切应力路径下的刚度。在收缩框架内对考虑到土壤织物和粘结的本构模型进行了改进,从而使该模型可以预测临界状态线的唯一性,并且其斜率与收缩参数无关。在三轴压缩试验的模型预测和已发表的实验室结果之间已经找到了很好的一致性。一个重要发现是,收缩率参数(以及屈服面的形状)似乎随各向异性程度而变化;但是,需要进一步研究以调查这种反应。根据公开的数据,各向同性固结黏土的屈服面看起来像是“子弹”形或“杏仁”形,类似于Cam黏土模型。而对于各向异性固结的粘土,其屈服面更像是椭圆形的,就像旋转变形的改性凸轮粘土的屈服面。

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