首页> 外文期刊>Engineering Structures >Experimental evaluation of self-centering hybrid coupled wall subassemblies with friction dampers
【24h】

Experimental evaluation of self-centering hybrid coupled wall subassemblies with friction dampers

机译:用摩擦阻尼器自定心混合耦合壁子组件的实验评价

获取原文
获取原文并翻译 | 示例

摘要

Post-tensioned hybrid coupled wall system has desirable seismic characteristics including self-centering capability and tolerance for large nonlinear displacements with limited damage. In this study, the behavior of concrete coupled wall subassemblies with post-tensioned steel coupling beam was experimentally evaluated. In this system, the coupling beam is not embedded into the walls, and the coupling of the concrete walls is accomplished by post-tensioning the steel coupling beam to the walls using unbonded post-tensioning strands. Steel angles and friction dampers were used at the beam-to-wall connection region for energy dissipation. In the first series of tests, a friction damper with different values of the clamping force was tested under two different loading frequencies. In the second series, seven quasi-static cyclic tests were conducted on 2/3-scale subassemblies of the post-tensioned hybrid coupled wall system. The test specimens included a control specimen without energy dissipation device, a specimen with steel angles and four specimens with friction dampers. In addition, one of the tested specimens with dampers was re-tested to investigate the structural behavior and residual capacity of the system during a strong aftershock. The test parameters included the type of energy dissipation device, the initial stress of post-tensioning strands and the amount of damper normal force. The test results show that the subassemblies equipped with friction dampers exhibit excellent lateral stiffness, strength, ductility and energy dissipation and are capable of withstanding large nonlinear cyclic deformations up to the drift of 8%, without residual displacements and without significant damage to the system. Whereas the subassembly equipped with steel angles provide lower energy dissipation capacity and because of the low-cycle fatigue fracture of angles, energy dissipation and load carrying capacities of the specimen decrease significantly.
机译:后张紧的混合耦合壁系统具有所需的地震特性,包括自定心能力和具有限制损坏的大型非线性位移的公差。在该研究中,通过实验评估了具有后张紧钢耦合光束的混凝土耦合壁子组件的行为。在该系统中,耦合光束未嵌入壁中,并且混凝土壁的联接通过使用未粘附的后张紧股线将钢耦合梁缩小到壁上来实现。在光束到壁连接区域用于钢角度和摩擦阻尼器以进行能量耗散。在第一系列测试中,在两个不同的装载频率下测试具有不同夹紧力值的摩擦阻尼器。在第二系列中,在张紧后的混合耦合壁系统的2/3级子组件上进行了七个准静态循环试验。试样包括没有能量耗散装置的对照样品,具有钢角度的样品和具有摩擦阻尼器的四个标本。另外,重新测试了具有阻尼器的测试样品中的一种,以研究系统在强余震期间系统的结构行为和剩余容量。试验参数包括能量耗散装置的类型,后张紧股的初始应力和阻尼器法线的量。测试结果表明,配备有摩擦阻尼器的子组件表现出优异的横向刚度,强度,延展性和能量耗散,并且能够承受大约8%的漂移的大型非线性循环变形,而无需残余位移,并且对系统没有显着损害。虽然配备钢角的子组件提供较低的能量耗散能力,并且由于角度的低循环疲劳断裂,所以样品的能量耗散和承载能力显着降低。

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