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Seismic performance of chevron-configured special concentrically braced frames with yielding beams

机译:具有屈服梁的人脚轮配置的特殊正常支撑框架的地震性能

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Current seismic design requirements for special concentrically braced frames (SCBFs) in chevron configurations require that the beams supporting the braces be designed to resist the demands resulting from the simultaneous yielding of the tension brace and degraded, post-buckling strength of the compression brace. Recent research, including large-scale experiments and detailed finite-element analyses, has demonstrated that limited beam yielding is not detrimental to chevron braced frame behavior and actually increases the story drift at which the braces fracture. These findings have resulted in new expressions for computing beam demands in chevron SCBFs that reduce the demand in the tension brace to be equal to the expected compressive capacity at buckling of the compression brace. In turn, the resultant force on the beam is reduced as is the required size of the beam. Further study was undertaken to investigate the seismic performance of buildings with SCBFs, including chevron SCBFs with and without yielding beams and X-braced frames. Prototype three- and nine-story braced frames were designed using all three framing systems, that is, chevron, chevron with yielding beams, and X SCBFs, resulting in six building frames. The nonlinear dynamic response was studied for ground motions simulating two different seismic hazard levels. The results were used to characterize the seismic performance in terms of the probability of salient damage states including brace fracture, beam vertical deformation, and collapse. The results demonstrate that the seismic performance of chevron SCBFs with limited beam yielding performs as well as or better than the conventionally designed chevron and X SCBFs.
机译:Chevron配置中特殊同心支撑框架(SCBF)的电流抗震设计要求要求支撑胶带的光束设计成抵抗由张力支架同时屈服和降低的压缩支架的后屈曲强度导致的需求。最近的研究,包括大规模实验和详细的有限元分析,已经证明,限量光束屈服对雪佛龙支撑框架行为并不有害,实际上增加了牙套骨折的故事漂移。这些发现导致了用于在雪佛龙SCBF中计算光束所需的新表达,从而降低张力支架中的需求等于压缩支撑弯曲的预期压缩容量。反过来,光束上的所得到的力也是光束所需的尺寸。进行了进一步的研究,以调查与SCBF的建筑物的地震性能,包括雪佛龙SCBFS,没有屈服梁和X支撑框架。使用所有三个框架系统设计了三层和九层带支撑框架,即雪佛龙,雪佛龙,带有屈服梁和X SCBF,导致六个建筑框架。研究了非线性动态响应,用于模拟两种不同地震危害水平的地面运动。结果用于表征突出损伤状态概率的地震性能,包括支撑骨折,梁垂直变形和塌陷。结果表明,具有限制光束的雪佛龙SCBF的抗震性能表现出以及比传统设计的雪佛龙和X SCBF更好。

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