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Modeling of strain rate effects on clay in simple shear

机译:简单剪切中黏土的应变率效应建模

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摘要

The objective of this research is the development of a new constitutive model to describe the behavior of cohesive soils under time dependent loading. In the work presented here, the modified SIMPLE DSS model is expanded to account for the effects of strain rate on clays in simple shear conditions. The response of clay soils is highly dependent on the rate of strain for both effective stress path and stress-strain behavior. The undrained shear strength is strongly influenced by strain rate both in monotonic and cyclic simple shear tests. Nevertheless, the few available experimental results cover a very limited range of loading conditions and rates. The existing literature established that the soil response display a unique relationship between shear strength and log scale of strain rate. To include the effects of strain rate, the modified simple effective stress model starts with two assumptions: (1) a specific shear strength corresponds to a specific strain rate in a unique relation; and (2) the effect of strain rate does not change the failure envelope. The proposed model is developed from the original SIMPLE DSS model, based on an effective stress formulation in a reduced stress space, and utilizing concepts related to the framework of bounding surface plasticity. The proposed model evaluationwas carried out comparing model simulations with results of simple shear tests on Boston Blue Clay and San Francisco Young Bay Mud. The model capability is useful especially in strain rate dependent responses for both monotonic and cyclic behavior, including irregular loading and step-changed condition. It was found that undrained shear strength in simple shear is directly related to strain rate effects and the responses in cyclic test show the more rate dependent behavior than those in monotonic test. The proposed model is able to predict the increase in undrained shear strength for higher strain rate.
机译:这项研究的目的是开发一种新的本构模型来描述粘性土在时间依赖性载荷下的行为。在此处介绍的工作中,改进的SIMPLE DSS模型得到扩展,以考虑应变率对简单剪切条件下粘土的影响。对于有效的应力路径和应力-应变行为,粘土的响应高度依赖于应变率。在单调和循环简单剪切试验中,不排水的剪切强度都受到应变率的强烈影响。但是,很少有可用的实验结果涵盖非常有限的加载条件和速率范围。现有文献确定土壤响应在剪切强度和应变率的对数标度之间显示出独特的关系。为了包括应变率的影响,修改后的简单有效应力模型从两个假设开始:(1)特定的剪切强度对应于特定的应变率,具有唯一关系; (2)应变率的影响不会改变破坏范围。所提出的模型是从原始的SIMPLE DSS模型开发而来的,该模型基于在减小的应力空间中的有效应力公式,并利用了与边界表面可塑性框架相关的概念。进行了拟议的模型评估,将模型模拟与波士顿蓝粘土和旧金山青年湾泥浆的简单剪力试验结果进行了比较。该模型功能特别适用于单调和循环行为(包括不规则载荷和阶跃变化条件)的应变率相关响应。研究发现,简单剪切中不排水的剪切强度与应变率效应直接相关,循环试验中的响应比单调试验中显示出更多的速率依赖性。所提出的模型能够预测较高应变速率下不排水剪切强度的增加。

著录项

  • 作者

    Jung Byoung Chan;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 en_US
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