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Constitutive modeling of time-dependent stress-strain behaviour of saturated soils exhibiting both creep and swelling

机译:同时显示蠕变和膨胀的饱和土时变应力-应变行为的本构模型

摘要

In general, clayey soils exhibit more or less both creep and swelling. In this paper, "creep" means viscous compression under a constant load condition in an oedometer test, while "swelling" means viscous expansion under a constant load condition in an oedometer test and is a reverse behaviour to creep for all saturated soils. Clayey soils containing the clay mineral montmorillonite show strong creep and swelling characteristics. Both creep and swelling characteristics have a significant influence on the deformation and failure of geotechnical structures. This paper presents main data from tests on a mixture of bentonite-silica sand in one-dimensional (1D) straining. Tests include (i) multistaged loading tests with unloading-reloading and enough time for creep and swelling in 1D straining and (ii) step-changed constant rate of strain (CRSN) compression tests with unloading-reloading in 1D straining as well. From the test data, the creep, swelling, and strain rate effects are observed and discussed. Based on the test data and a 1D elastic viscoplastic (1D EVP) model developed by Yin and Graham (1989, 1994), the authors propose a new 1D elastic viscoplastic model considering both creep and swelling (called 1D EVPS). The data from the multistage oedometer tests are used to calibrate the new model. After this, the new model is used to simulate the step-changed CRSN compression tests and make a comparison. In this way, the new model is verified. The new 1D EVPS is then used to simulate CRSN tests with a single strain rate, relaxation in the creep or swelling region, and constant rate of stressing tests. It is found that the new model can simulate well the strain (or stress) rate effects, loops in unloading-reloading, and stress relaxation in the creep region or stress increase in the swelling region, which are all caused by both creep and swelling of the soil.
机译:通常,粘土质土壤或多或少地表现出蠕变和溶胀。在本文中,“蠕变”是指在里程表测试中恒定载荷条件下的粘性压缩,而“溶胀”是指在里程表测试中恒定载荷条件下的粘性膨胀,并且是所有饱和土壤蠕变的反向行为。含有粘土矿物蒙脱土的粘土质土壤具有很强的蠕变和膨胀特性。蠕变和膨胀特性都对岩土结构的变形和破坏产生重大影响。本文介绍了膨润土-硅砂混合物在一维(1D)应变试验中的主要数据。测试包括(i)一阶段卸载和重载的多阶段加载测试,以及一维应变中足够的蠕变和膨胀时间,以及(ii)一维应变中的卸载-重载的阶跃恒定应变率(CRSN)压缩测试。从测试数据中观察到并讨论了蠕变,膨胀和应变率效应。基于测试数据和Yin and Graham(1989,1994)开发的一维弹性粘塑性(1D EVP)模型,作者提出了同时考虑蠕变和膨胀的新型一维弹性粘塑性模型(称为一维EVPS)。来自多级里程表测试的数据用于校准新模型。之后,使用新模型来模拟逐步更改的CRSN压缩测试并进行比较。通过这种方式,可以验证新模型。然后,新的一维EVPS用于模拟具有单一应变率,蠕变或膨胀区域的松弛以及恒定的应力测试速率的CRSN测试。结果发现,新模型可以很好地模拟应变(或应力)速率效应,卸载-再加载中的循环以及蠕变区域中的应力松弛或膨胀区域中的应力增加,这些都是由蠕变和膨胀共同引起的。土壤。

著录项

  • 作者

    Yin JH; Tong F;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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