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Performance evaluation and strengthening of concrete structures with composite bracing members

机译:复合支撑构件对混凝土结构的性能评估与加固

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摘要

Steel bracings, in different geometrical forms, are commonly used in steel and concrete structures. The lateral stiffness of structures with concentric bracings depends on the buckling capacity of compressive bracings; in turn, this buckling phenomenon leads to a decrease in the energy dissipation capacity. Composite bracings, composed of steel cores encased in concrete, can increase their capacities. In this paper, the behavior of composite bracings is studied in two parts. At first, a number of braced frames are selected and their behaviors under cyclic loading are studied. Then, using the data obtained from the first part, two existing concrete structures, a three story and a nine story building, are selected and strengthened against seismic loadings by both the conventional concentric steel and the latter composite bracing systems. The behaviors of these structures are then studied by the push-over method and the results for the two types of bracings are compared.
机译:不同几何形式的钢制支撑件通常用于钢结构和混凝土结构中。具有同心支撑的结构的侧向刚度取决于抗压支撑的屈曲能力。进而,这种屈曲现象导致能量消耗能力的降低。由钢芯包裹在混凝土中的复合支撑可以增加其承载能力。本文分两部分研究了复合支撑的性能。首先,选择许多支撑框架,并研究它们在循环载荷下的行为。然后,使用从第一部分获得的数据,选择两个现有的混凝土结构,一个三层和一个九层的建筑物,并通过常规的同心钢和后者的复合支撑系统对地震荷载进行加固。然后,通过推覆方法研究这些结构的性能,并比较两种类型的支撑的结果。

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