首页> 外文学位 >Strain rate and stress relaxation in simulated pressuremeter testing in clays.
【24h】

Strain rate and stress relaxation in simulated pressuremeter testing in clays.

机译:模拟压力计在粘土中的应变率和应力松弛。

获取原文
获取原文并翻译 | 示例

摘要

The research described in this thesis was undertaken to answer issues related to cavity expansion and in situ testing using the pressuremeter. Emphasis in the research focused upon the fundamental concepts underlying the cylindrical cavity expansion theory.;Tests were performed in a cuboidal shear device at strain rates between 0.01% and 5.00% per minute on artificially sedimented kaolin clay and kaolin-silica mixture whose plasticity indices range similar to the most of the natural clays. It was found from the experiments that the normalized shear strength (with respect to 0.01%/min) increases linearly with the logarithm of strain rate. The increase in undrained shear strength in the pressuremeter stress path is about 14.3% per log cycle for kaolin clay and 15.3% for kaolin-silica mixture. The undrained shear strength in conventional triaxial tests increase about 8 to 10% for a tenfold increase in strain rate. Therefore, it can be concluded that the undrained shear strength increases about 40-50% more in pressuremeter stress path tests than in triaxial stress path tests.;A procedure to improve existing cavity expansion based models to incorporate the influence of decreasing strain rate in the surrounding soil mass was developed. The findings from the strain rate tests to simulate the pressuremeter were used to estimate differences in the interpreted undrained shear strength. Although the actual peak undrained shear strength increases with strain rate, the interpreted large strain value from the PMT expansion curve is lower due to greater strain softening behavior predicted with the model. Model parametric studies showed that there was little influence on the interpreted strength value below a threshold strain rate of 0.001%/min.;From the simulated pressuremeter test it was found that, for kaolin clay, irrespective of the initial strain level or strain rate, the relaxation time was about 200 to 250 minutes for undrained and drained conditions. Theoretical models show how to obtain creep/relaxation parameters from pressuremeter creep/relaxation tests conducted in a borehole. Several correlations are also identified in order to obtain relaxation parameters from creep parameters and empirically from plasticity index. These creep/relaxation parameters are required to predict the time-dependent behavior of soil.
机译:本文所描述的研究是为了回答与空腔膨胀和使用压力计原位测试有关的问题。研究重点放在圆柱孔扩张理论的基本概念上;在长方体剪切装置中,以每分钟0.01%至5.00%的应变率在人工沉积的高岭土和可塑性指数范围内的高岭土-二氧化硅混合物中进行了测试与大多数天然粘土相似。从实验中发现,归一化的剪切强度(相对于0.01%/ min)随应变速率的对数线性增加。对于高岭土,在压力计应力路径中不排水的剪切强度的增加约为每对数循环14.3%,对于高岭土-二氧化硅混合物为15.3%。在常规的三轴试验中,不排水的剪切强度使应变速率增加了十倍,增加了约8%至10%。因此,可以得出结论,在压力计应力路径试验中,不排水的剪切强度比在三轴应力路径试验中增加了约40-50%。周围的土壤质量得到发展。从模拟压力计的应变率测试中得到的结果被用来估计所解释的不排水抗剪强度的差异。尽管实际峰值不排水剪切强度随应变率而增加,但由于模型预测的较大的应变软化行为,因此从PMT扩展曲线得出的较大应变值较低。模型参数研究表明,在阈值应变速率0.001%/ min以下,对解释强度值的影响很小;通过模拟压力计测试发现,对于高岭土,无论初始应变水平或应变速率如何,在不排水和排水条件下,松弛时间约为200至250分钟。理论模型显示了如何从在井眼中进行的压力计蠕变/松弛测试获得蠕变/松弛参数。还确定了几种相关性,以便从蠕变参数和经验上从塑性指数获得松弛参数。这些蠕变/松弛参数是预测土壤随时间变化的行为所必需的。

著录项

  • 作者

    Skandarajah, Arumugam.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 287 p.
  • 总页数 287
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号