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Experimental Investigation on Link Column Frame System for Reinforced Concrete Structures

机译:钢筋混凝土结构联结柱框架系统的实验研究

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The structural and non-structural components of a building is subjected to seismic forces that must have adequate strength and stiffness to minimize the inter-storey drift during structure excitations. One of the most efficient methods was proposed by Dusicka et al. [6] in the Linked Column Frame (LCF) system for steel structures. The main objective of this system is in utilizing the replaceable components that are positioned in such a way to protect the gravity load carrying system of the structure. In this paper, the concept of LCF is extends to Reinforced Concrete structures. The experimental investigation carried out in this research presents the behaviour of LCF with various connections which include rigid and hinged connection as per IS 12303-1987. Design of the LCF system should be checked to ensure that the plastic hinges developed in the links of the linked column should have reduced storey drift compared to the plastic hinges developed in the moment resisting frame system. In this experiment, cyclic load tests are carried out on a single bay frame with and without linked column. A significant reduction in the relative storey drifts along with an increase in energy dissipation of the linked column frame was noticed.
机译:建筑物的结构和非结构部件受到抗震力,该力量必须具有足够的强度和刚度,以最小化结构激发过程中的岩石间漂移。 Dusicka等人提出了最有效的方法之一。 [6]在用于钢结构的连接柱框架(LCF)系统中。该系统的主要目的是利用可更换的部件,该部件以这种方式定位,以保护结构的重力载荷系统。在本文中,LCF的概念延伸到钢筋混凝土结构。本研究中进行的实验调查介绍了LCF与各种连接的行为,包括刚性和铰接连接,根据12303-1987。应检查LCF系统的设计,以确保在抵抗框架系统中开发的塑料铰链相比,在连接柱的链接中开发的塑料铰链应具有降低的楼层漂移。在该实验中,循环负载测试在具有和无连接柱的单个托架框架上进行。注意到相对楼层漂移的显着降低以及连接柱框架的能量耗散的增加。

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