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首页> 外文期刊>Journal of structural engineering >Experimental Performance of a Full-Scale Spatial RC Frame with Buckling-Restrained Braces Subjected to Bidirectional Loading
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Experimental Performance of a Full-Scale Spatial RC Frame with Buckling-Restrained Braces Subjected to Bidirectional Loading

机译:具有双向负载的屈曲限制围绕具有双向载荷的全尺寸空间RC框架的实验性能

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摘要

To investigate the performance of a RC frame with buckling-restrained braces (RCF-BRB) subjected to bidirectional earthquakes, a full-scale two-story RCF-BRB was tested using substructural pseudodynamic, quasi-static, and pushover techniques. The test results showed that the RCF-BRB designed based on the current Chinese building codes exhibited reliable seismic performance, because the selected performance objectives were achieved in the tests. The specimen displayed an effective and stable energy-dissipating capacity even when the interstory drift exceeded 3%. The pushover test revealed excellent deformation capacity of the RCF-BRB, because the interstory drift ratio reached 5.9% in both loading directions. Compared with conventional gusset plates, the unconstrained gusset plates reduced the damage of the RC members significantly. The strut-and-tie model was confirmed to be reliable for the design of discontinuity regions (D-regions) of the RC beam ends with unconstrained gusset plates. (C) 2020 American Society of Civil Engineers.
机译:为了研究RC帧与经过双向地震的屈曲受限制的括号(RCF-BRB)的性能,使用子结构假实际动力学,准静态和推挽技术测试全尺寸的两层RCF-BRB。测试结果表明,基于当前中国建筑规范设计的RCF-BRB表现出可靠的地震性能,因为在测试中实现了所选的性能目标。即使颠覆漂移超过3%,标本也显示出有效且稳定的能量消散能力。推送试验显示RCF-BRB的出色变形容量,因为两个装载方向都达到了5.9%。与传统的角撑板相比,无约束的角撑板块显着降低了RC成员的损害。确认Strut-and-rib模型可靠地对RC光束的不连续区域(D型区域)的设计具有不受约束的角撑板块。 (c)2020年美国土木工程师协会。

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