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Elastic anisotropic viscoplastic modeling of the strain-rate-dependent stress-strain behavior of K0-consolidated natural marine clays in triaxial shear tests

机译:三轴剪切试验中K0固结的天然海洋粘土的应变率相关应力-应变行为的弹性各向异性粘塑性建模

摘要

This paper presents a new three-dimensional (3D) anisotropic elastic viscoplastic (EVP) model for the time-dependent stress-strain behavior of K0-consolidated marine clays. A nonlinear creep function with a limit for the creep volumetric strain under an isotropic or odometer K0-consolidated stressing condition and a nonsymmetrical elliptical loading locus are incorporated in the 3D anisotropic EVP model. An α-line defines the inclination of the nonsymmetrical elliptical loading locus in the p'-q plane and is commonly used for natural soils. All model parameters are determined from the results of one set of consolidated undrained compression tests and an isotropic consolidation/creep test. With the parameters determined, the 3D anisotropic EVP model is used to simulate the behavior of K0-consolidation tests and the strain-rate-dependent stress-strain behaviors of the K0-consolidated triaxial compression and extension tests on natural Hong Kong marine deposit clay specimens. These triaxial K0-consolidated specimens were sheared at step-changed axial strain rates from +2 to +0.2, +20, -2 (unloading) and +2%/h (reloading) for compression tests; or from -2 to -0.2, -20, +2 (unloading), and -2%/ h (reloading) for extension tests, all in an undrained condition. The simulation results of all these tests are compared with the test results. The validation and limitations of the model are then evaluated and discussed.
机译:本文提出了一种新的三维(3D)各向异性弹性粘塑性(EVP)模型,用于K0固结海事粘土随时间的应力应变行为。在3D各向异性EVP模型中引入了非线性蠕变函数,该函数具有在各向同性或里程表K0固结应力条件下的蠕变体积应变极限以及非对称椭圆形加载轨迹。 α线定义了非对称椭圆加载轨迹在p'-q平面中的倾斜度,通常用于天然土壤。所有模型参数均由一组固结不排水压缩试验和各向同性固结/蠕变试验的结果确定。在确定参数的情况下,使用3D各向异性EVP模型模拟K0固结试验的行为以及K0固结三轴压缩和拉伸试验在天然香港海相沉积粘土标本上的应变率相关应力-应变行为。 。将这些三轴K0固结试样以逐步变化的轴向应变速率从+2剪切到+ 0.2,+ 20,-2(卸载)和+ 2%/ h(重新加载)以进行压缩测试;或从-2到-0.2,-20,+ 2(卸载)和-2%/ h(重新装载)进行延伸测试,所有这些都不排水。将所有这些测试的仿真结果与测试结果进行比较。然后评估和讨论模型的有效性和局限性。

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