首页> 外文会议>Geotechnical and structural engineering congress >Influence of Mineralogy and Plasticity on the Cyclic and Post-Cyclic Behavior of Normally Consolidated Soils
【24h】

Influence of Mineralogy and Plasticity on the Cyclic and Post-Cyclic Behavior of Normally Consolidated Soils

机译:矿物学和可塑性对正常固结土壤循环和循环行为的影响

获取原文

摘要

The Anchorage Landslide following the 1964 Alaska Earthquake, damage to the Moss Landing Marine Laboratory after the 1989 Loma Prieta Earthquake, and severely distressed buildings founded on clays following the 1985 Mexico Earthquake have emphasized the current deficiencies in our understanding of the cyclic and post-cyclic behavior of clays. Although researchers have begun evaluating the behavior of clays during and following cyclic loading, information presented in the literature is inconsistent. This study systematically evaluates the effect of plasticity characteristics and mineralogical composition on the cyclic behavior and the post-cyclic shear strengths of normally consolidated clays. Eighteen samples were prepared in the laboratory by mixing kaolinite with quartz (KQ) or montmorillonite with quartz (MQ) and tested in a cyclic simple shear device under a sinusoidal loading at a frequency of 0.5 Hz. The samples were then sheared monotonically to determine the post-cyclic shear strength. In addition, cyclic simple shear testing was conducted at a consulting firm for 12 natural samples. Using the test results, cyclic strength curves were developed to represent seismic performance levels of immediate occupancy (2.5% double amplitude, DA, shear strains), life safety (5%) and collapse prevention (10%). The cyclic strength curves showed that in KQ mixtures, a smaller number of additional cycles of loading were required to cause 10% DA strains after the sample had experienced 2.5% DA strain in comparison to MQ mixtures. The cyclic resistance was found to increase as plasticity index (PI) increases. The cyclic strength curves were also observed to become increasingly linear as PI increases in KQ mixtures, but the opposite trend was observed in MQ mixtures. The lower bound post-cyclic strength was found to be 45% to 100% of the static shear strength. Moreover, the post-cyclic shear strengths were significantly higher than the strength recommended by the current guidelines. Based on the results, current guidelines for seismic evaluation of clays may need to be re-visited to ensure both safe and economic design of infrastructure.
机译:1964年阿拉斯加地震后的锚地滑坡,1989年洛姆普里塔地震后的苔藓着陆海洋实验室损坏,并在1985年墨西哥地震后的粘土上建立了严重的痛苦建筑,强调了我们对循环和循环的理解的现行缺陷粘土的行为。尽管研究人员已经开始评估粘土期间和循环加载期间的行为,但文献中呈现的信息不一致。该研究系统地评估了塑性特性和矿物学组合物对正常固结粘土的循环行为的影响和矿物学组合物的影响。通过混合石英(KQ)或蒙脱石与石英(MQ)高岭石在实验室中制备十八样品和在0.5Hz的频率的正弦负荷下,在环状简单剪切设备进行测试。然后将样品单调剪切以确定后循环剪切强度。此外,循环简单的剪切测试是在咨询公司进行12种天然样品进行的。使用测试结果,循环强度曲线的开发是为了表示立即的占用(2.5%双振幅,DA,剪切应变),生命安全(5%)和塌陷预防(10%)的抗震性能水平。循环强度曲线表明,在KQ混合物中,在与MQ混合物相比,样品经历了2.5%DA菌株后,需要较少额外的载荷循环造成10%DA菌株。发现循环抗性随着塑性指数(PI)增加而增加。当PI在KQ混合物中增加时,也观察到循环强度曲线变得越来越直的曲线,但在MQ混合物中观察到相反的趋势。发现下限的循环强度为静态剪切强度的45%至100%。此外,循环剪切强度明显高于当前指南推荐的强度。根据结果​​,目前可能需要重新访问目前的地震评估准则,以确保基础设施的安全和经济设计。

著录项

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