首页> 外文期刊>Soil Dynamics and Earthquake Engineering >A sand-rubber deformable granular layer as a low-cost seismic isolation strategy in developing countries: Experimental investigation
【24h】

A sand-rubber deformable granular layer as a low-cost seismic isolation strategy in developing countries: Experimental investigation

机译:砂橡胶可变形颗粒层作为发展中国家的低成本地震隔离策略:实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents experimental investigations on the feasibility of using a sand-rubber deformable granular layer as a low-cost seismic isolation strategy for developing countries. The mechanical characteristics of a potential failure mechanism inside the sand-rubber layer are investigated. Direct shear testing is performed to quantify the angle of friction of three different sand-rubber mixtures subjected to different vertical stress levels. The experimentally derived mechanical characteristics are compared to the corresponding values for pure rubber and pure sand samples. The frictional characteristics of sliding between a sand-rubber layer and a timber interface are identified. Direct shear testing is performed to quantify the quasi-static friction of the same sand rubber mixtures against a timber interface, that is part of the foundation casting, subjected to alternative vertical stresses. The effect of the shear rate and the saturation of the sand-rubber mixture on the aforementioned mechanical characteristics is presented. A uniaxial shaking table experimental setup is used for the investigation of the dynamics of a rigid sliding block and the quantification of the kinetic friction of different sliding interfaces against two different sand-rubber mixtures for two different sand-rubber layer heights. The rigid sliding block designed to slide against the sand-rubber layer is subjected to both a harmonic ramp loading and earthquake ground motion excitation. The design outcome of this static and dynamic experimental investigation is the determination of the optimum grain size ratio and the height of the sand-rubber layer, that corresponds to the lower (and more favourable from a seismic isolation view point) friction coefficient between the sand-rubber layer and the foundation. The quantification of these fundamental parameters paves the way for a holistic design of a response modification strategy for mitigating seismic damage in developing countries.
机译:本文提出了关于使用橡胶砂砾可变形颗粒层作为发展中国家低成本地震隔离策略的可行性的实验研究。研究了橡胶砂层内部潜在破坏机理的机械特性。进行直接剪切测试以量化三种承受不同垂直应力水平的不同沙橡胶混合物的摩擦角。将实验得出的机械特性与纯橡胶和纯砂样品的相应值进行比较。确定了在砂橡胶层和木材界面之间滑动的摩擦特性。进行直接剪切测试以量化相同砂橡胶混合物对木材界面(作为基础铸件的一部分)承受替代垂直应力的准静态摩擦。给出了剪切速率和砂-橡胶混合物的饱和度对上述机械特性的影响。单轴振动台实验装置用于研究刚性滑块的动力学,并针对两种不同的沙橡胶层高度,针对两种不同的沙橡胶混合物,针对不同的沙橡胶混合物,对不同滑动界面的动摩擦进行量化。设计为在沙橡胶层上滑动的刚性滑块会受到谐波斜坡载荷和地震地震动的激励。静态和动态实验研究的设计结果是确定最佳粒径比和砂-橡胶层的高度,该值对应于砂之间较低的摩擦系数(从地震隔离的角度更有利) -橡胶层和基础。这些基本参数的量化为整体设计缓解地震造成的地震破坏的应对措施策略铺平了道路。

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