首页> 外文期刊>Frontiers of structural and civil engine >Validation of a steel dual-core self-centering brace (DC-SCB) for seismic resistance: from brace member to one-story one-bay braced frame tests
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Validation of a steel dual-core self-centering brace (DC-SCB) for seismic resistance: from brace member to one-story one-bay braced frame tests

机译:验证钢双芯自定心撑杆(DC-SCB)的抗震性:从撑杆构件到单层单托架撑杆框架测试

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A steel dual-core self-centering brace (DC-SCB) is an innovative structural member that provides both energy dissipation and self-centering properties to structures, reducing maximum and residual drifts of structures in earthquakes. The axial deformation capacity of the DC-SCB is doubled by a parallel arrangement of two inner cores, one outer box and two sets of tensioning elements. This paper presents cyclic test results of a DC-SCB component and a full-scale one-story, one-bay steel frame with a DC-SCB. The DC-SCB that was near 8 m-long was tested to evaluate its cyclic behavior and durability. The DC-SCB performed well under a total of three increasing cyclic loading tests and 60 low-cycle fatigue loading tests without failure. The maximum axial load of the DC-SCB was near 1700 kN at an interstory drift of 2.5%. Moreover, a three-story dual-core self-centering braced frame (DC-SCBF) with a single-diagonal DC-SCB was designed and its first-story, one-bay DC-SCBF subassembly specimen was tested in multiple earthquake-type loadings. The one-story, one-bay subassembly frame specimen performed well up to an interstory drift of 2% with yielding at the column base and local buckling in the steel beam; no damage of the DC-SCB was found after all tests. The maximum residual drift of the DC-SCBF caused by beam local buckling was 0.5% in 2.0% drift cycles.
机译:钢双芯自定心撑杆(DC-SCB)是一种创新的结构构件,可为结构提供能量消散和自定心特性,从而减少了地震中结构的最大和残余漂移。 DC-SCB的轴向变形能力通过两个内芯,一个外箱和两组张紧元件的平行布置而加倍。本文介绍了DC-SCB组件和带DC-SCB的全尺寸单层,一托架钢框架的循环测试结果。测试了接近8 m长的DC-SCB,以评估其循环性能和耐久性。 DC-SCB在总共三个增加的循环负载测试和60个低循环疲劳负载测试中表现良好,没有失败。 DC-SCB的最大轴向载荷在2.5%的层间位移下接近1700 kN。此外,设计了带有单对角DC-SCB的三层双芯自定心支撑框架(DC-SCBF),并在多地震类型下测试了其第一层,单托架DC-SCBF组件标本加载。一层,一格的子组件框架试件表现良好,层间漂移达2%,柱基屈服,钢梁局部屈曲。经过所有测试,未发现DC-SCB损坏。在2.0%的漂移周期中,由光束局部屈曲引起的DC-SCBF的最大残留漂移为0.5%。

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