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Full-Scale Cyclic Testing of an Ordinary Concentrically-Braced Frame

机译:普通同心支撑框架的全面循环测试

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Steel concentrically-braced frames (CBFs) are used extensively as lateral-force-resisting systems for low to mid-rise buildings in moderate seismic regions of the United States, such as the East Coast and Midwest. CBFs are economical because they are stiff, strong, and relatively simple to design, fabricate, and erect. Although good structural performance of CBFs for typical gravity and wind loading is well-established, there is little evidence - either from experimental research or field observation - related to CBF performance when subjected to design-basis earthquake demands. CBFs in moderate seismic regions are often not specifically detailed to achieve ductile inelastic response, so the effect of brittle limit states is largely unknown. As a result of this situation, a research project was initiated to investigate the seismic performance of CBFs in moderate seismic regions. This paper summarizes one aspect of the project: a full-scale cyclic test of a one-bay two-story Ordinary Concentrically Braced Frame - focusing on the sequence of limit states and associated system behavior. The test frame exhibited ductile response characterized by brace compression buckling and tension yielding up to nearly 1.5% frame drift and then experienced sudden strength loss due to weld fractures.
机译:钢同心支撑框架(CBFS)广泛用作横向力抵抗系统,用于在美国中度地震区域的低至中层建筑物,如东海岸和中西部。 CBFS是经济的,因为它们是僵硬的,强大,更简单的设计,制造和直立。虽然CBFS为典型重力和风装的良好结构性能是良好的,但是只有实验研究或现场观察的证据 - 无论是与CBF性能有关,当经过设计基地地震要求时。中等地震区中的CBFS通常没有特别详细以实现延性无弹性反应,因此脆性极限状态的效果在很大程度上是未知的。由于这种情况,启动了一个研究项目,以研究CBFS在中度地震区的地震性能。本文总结了该项目的一个方面:一个单架两层普通同心支撑框架的全面循环试验 - 专注于限制状态和相关系统行为的序列。测试框架表现出具有支撑压缩弯曲的延展响应,其张力产生高达近1.5%帧漂移,然后经历了由于焊缝骨折而产生的突然强度损失。

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