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Experimental study on full-scale steel moment-resisting frames with nonstructural walls subjected to multiple earthquakes

机译:非结构墙体经受多次地震的全尺寸钢力矩抗框架的实验研究

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A cyclic loading test of a steel moment-resisting frame (SMRF) with nonstructural components was conducted to evaluate the seismic performance of steel buildings subjected to multiple earthquakes. The specimen is a singlefloor, one-span substructure of the intermediate story of typical current middle- or low-rise steel building in Japan. Two specimens were tested. The structural systems of these two specimens were the same, but the nonstructural components attached to the steel frame were different. The light gauge steel (LGS) partition wall and the autoclaved lightweight concrete (ALC) exterior wall were used as the nonstructural components of each specimen. One typical set of loading history that corresponds to one earthquake was created based on the response analysis results, and multiple sets of loadings with various levels were loaded to consider the effect of multiple earthquakes. Based on the observed visible damages, it was found that the structural component performed well under multiple earthquakes with a maximum story drift angle less than 1/50, while for the nonstructural component, the ALC wall performed better than the LGS wall. From the obtained load-deformation relationship, it was found that the strength of the structural component and the strength contribution of the LGS wall gradually decreased when subjected to multiple earthquakes, while the strength contribution of the ALC wall fluctuates within a close range. Moreover, the elastic stiffness of the structural component subjected to multiple earthquakes was almost constant, while the stiffness contribution of the nonstructural components decreased.
机译:进行了具有非结构部件的钢力矩抵抗框架(SMRF)的循环加载试验,以评估经受多次地震的钢制建筑物的地震性能。标本是日本典型电流中间或低层钢铁建筑的中间故事的单跨度的单跨度。测试了两种样品。这两个样品的结构系统相同,但附着在钢框架上的非结构部件不同。轻型钢(LGS)隔墙和高压灭菌的轻质混凝土(ALC)外壁用作每个样品的非结构组分。基于响应分析结果创建对应于一个地震的一个典型的加载历史集,并且加载了多个具有各种水平的装载量以考虑多次地震的效果。基于所观察到的可见损坏,发现结构部件在多地震下进行良好,最大故事漂移角度小于1/50,而对于非结构部件,ALC壁比LGS墙更好。从所获得的负载变形关系中发现,当经过多次地震时,结构部件的强度和LGS壁的强度贡献逐渐降低,而ALC壁的强度贡献在近距离内波动。此外,经受多次地震的结构部件的弹性刚度几乎是恒定的,而非结构组分的刚度贡献降低。

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