...
首页> 外文期刊>Soils and foundations >VISCOUS BEHAVIOUR OF GEOGRIDS; EXPERIMENT AND SIMULATION
【24h】

VISCOUS BEHAVIOUR OF GEOGRIDS; EXPERIMENT AND SIMULATION

机译:土工格栅的粘性行为;实验与模拟

获取原文
获取原文并翻译 | 示例

摘要

The viscous properties of three types of geogrid polymer were evaluated by sustained loading tests lasting for 30 days at a load level about a half of its nominal rupture strength. The sustained loading tests were performed during otherwise monotonic loading (ML) at constant strain or load rate, unlike the conventional creep tests, in which the strain rate immediately before the start of sustained loading, which controls the creep strain rate, is not controlled or even not recorded. The following are presented in this study. The tensile rupture strength measured by ML that was started following a 30 day-long sustained loading was essentially the same as the one at the same strain rate at rupture obtained by continuous ML without any intermission of sustained loading. This fact indicates that creep is not a degrading phenomenon. Then, if free from chemical and mechanical degrading effects, the strength of a geosynthetic reinforcement (for a given strain rate at rupture) can be maintained until late in its service life. A non-linear three-component model is used to simulate the experimental results from the previous and present studies. The model can simulate very well not only the load-strain behaviour during ML with and without step changes in the strain rate and the one after sustained loading, but also the time histories of creep strain during sustained loading for short (one hour) and long (30 days) periods.
机译:通过持续的载荷试验,在载荷水平约为其名义断裂强度的一半的情况下,将其持续30天,以评估三种类型的土工格栅聚合物的粘性。不同于传统的蠕变测试,持续载荷测试是在单调加载(ML)期间以恒定应变或载荷速率执行的,而传统的蠕变测试中,控制蠕变应变速率的持续载荷开始之前的应变率不受控制或甚至没有记录。以下是本研究的内容。在持续30天的持续载荷之后,通过ML测得的拉伸断裂强度与连续ML在不中断任何持续载荷的情况下获得的断裂应变相同时的应变率基本相同。该事实表明蠕变不是退化现象。然后,如果没有化学和机械降解作用,则可以维持土工合成材料增强材料的强度(对于给定的断裂应变率),直至其使用寿命延长。非线性三成分模型用于模拟先前和当前研究的实验结果。该模型不仅可以很好地模拟ML应变速率和阶跃变化以及持续加载后的阶跃变化时的载荷应变行为,而且还可以很好地模拟持续(短时间(一小时)和长时间)下蠕变应变的时间历程。 (30天)期限。

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