首页> 外文期刊>Geosynthetics International >Sand-geotextile interface characterisation through monotonic and cyclic direct shear tests
【24h】

Sand-geotextile interface characterisation through monotonic and cyclic direct shear tests

机译:通过单调和循环直接剪切试验表征砂土-土工织物的界面

获取原文
获取原文并翻译 | 示例
           

摘要

ABSTRACT: For the design and performance analyses of geosynthetic-reinforced soil structures under repeated loading, such as those induced by compaction, traffic and earthquakes, the understanding of cyclic soil–geosynthetic interface behaviour is of great interest. Nevertheless, experimental data concerning this type of behaviour are very scarce. A laboratory study was carried out and is described in this paper. This paper presents the behaviour of an interface between a silica sand and a high-strength geotextile under monotonic and cyclic loading conditions. A large-scale direct shear test device able to perform load- or displacement-controlled cyclic tests was used. The results obtained are presented and discussed, especially in terms of interface shear stiffness and damping ratio. Monotonic direct shear tests indicated that the coefficients of interaction for the sand–geotextile interface depend on the confining pressure. Cyclic direct shear tests indicated that the interface stiffness tends to increase during the first loading cycles, exhibiting slight variation after 10 cycles. Slightly higher values of shear stiffness and damping ratio were reached with displacement-controlled cyclic direct shear tests. The cyclic loading of the interface did not lead to the degradation of the post-cyclic peak shear strength; however, the post-cyclic shear strength for large displacements exhibited an important decrease.
机译:摘要:对于反复荷载下的土工合成纤维土结构(例如压实,交通和地震引起的结构)的设计和性能分析,对循环土-土工合成材料界面行为的理解非常重要。然而,关于这种行为的实验数据非常匮乏。进行了实验室研究,并在本文中进行了描述。本文介绍了在单调和循环载荷条件下硅砂和高强度土工织物之间的界面行为。使用了能够执行负载或位移控制的循环试验的大型直接剪切试验设备。给出并讨论了获得的结果,尤其是在界面剪切刚度和阻尼比方面。单调直接剪切试验表明,砂土-土工织物界面的相互作用系数取决于围压。循环直接剪切试验表明,界面刚度在第一个加载循环中趋于增加,在10个循环后表现出轻微的变化。在位移控制的循环直接剪切试验中,剪切刚度和阻尼比略高。界面的循环载荷不会导致循环后峰值剪切强度的降低;但是,大位移的循环后剪切强度却出现了重要的下降。

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